Showing posts with label Kombi. Show all posts
Showing posts with label Kombi. Show all posts

Tuesday, February 17, 2026

Hapy Runs Again

Picking up where I left off last time, we had Hapy mostly in one piece, needing coolant. His exhaust was still in pieces, rear bumper on the ground and he had not started since June of 2024.
 
Coolant
full moon down the street
There is really no adventure here, but in the interest of being thorough, I topped off Hapy's coolant with some G40. I worked air bubbles out of his system by squeezing hoses, but they won't really fully work themselves free until the engine is running. So, after a couple more top-offs, I called it good and capped the overflow and coolant bottles.
 
Exhaust
The not-my-favorite, too-small-diameter, cheap exhaust installed on this engine all those years ago went back on. This was not my first choice, but I want Hapy running, so I'll circle-back on a new exhaust later. The old one came apart where the piping enters the muffler. I think the cheap muffler failed allowing the section of pipe to which the exhaust "downpipe" (we'll call it that: it's the pipe that leads from the turbo, but it does make it sound awfully grand) was welded to fall out of the muffler body. The weld is a good 4 inches from the end of the pipe which clearly fits inside the muffler body and sets inside an inner pipe within. I regret not taking a picture here; apologies.
 
ShadeTree mechanic'ing
So, I hung the muffler body by the support hook and then set to attaching the downpipe. There is one stud attached to the turbo that the 3-holed flange hangs on. Then, you swing the rest of it into place, square the gasket and send the other bolts (with washers) through. A 13mm spanner is needed for the lower bolt, but the other 2 can be approached with a socket. With the muffler swinging on its mount and the downpipe firmly a-fixed, I set the pipe into the muffler and literally hammered the muffler into the pipe with a rubber mallet. These parts will easily work themselves apart again, if I didn't do something. So, I went full shade-tree, and added a 1" angle bracket, screwed into the muffler and the pipe to hold it together. The picture on the right, here, tells the tale. Not a proud moment but that will all go to the landfill / recycler eventually.
 
Bumper
Feeling confident that Hapy would be a runner again very soon, I installed the rear bumper / tow hitch component. I detailed the original install of the tow hitch in Bus Tow Hitch. Re-install is not nearly as involved. 15mm socket needed. I set the hitch onto the TravisJack and lifted it close to where it would eventually sit and then balanced on the TravisJack while I set bolts. I fingered-on the left (driver) side and then the right (passenger) side, taking care not to drop the unit off the jack and onto me. I discovered that the exhaust pipe leaving the muffler hung in the way, but a solid kick with my boot resolved it without causing any damage to anything. Just needed some sudden blunt force. Once all 6 bolts were finger tight, I set the bumper where I wanted it depth and parallel-to-the rear-wise and torqued them down.
 
Injection Pump Prime
electrical connection cleaner
Any time I let Hapy sit undriven for a while, the injection pump loses prime. I believe this is because of a failing seal, but it's the one that's much harder to get to (and I don't have on-hand). So, I have let that sit to be solved another day. Enter the mighty MityVac. Since I disconnected the large fuel filter for the flywheel replacement, I was unsure if that filter was completely full, so I started with the line which enters the injection pump, moving to the return side of the pump next. This is relatively straightforward: disconnect the fuel line, apply vacuum with the MityVac (using the collection bottle between the pump and the fuel line, of course) until the collection bottle consistently gets fuel. Then, remove the vacuum contraption and reconnect the line. For the return line, I also clamped the return line from the injectors to the pump so I did not lose vacuum through them. Once the pump was full, I cracked the hard lines at the injectors with a 17mm spanner. This last bit of priming needs to be done by turning the ignition and counting to 5. Well, that's how I did it. When I returned to the engine compartment, each of the 4 injectors had some fuel sitting on top where the hard line connected. I snugged them back tight.
 
DeOx-it D5
Before I ran to the cab to give the engine a try, I wanted to make sure all of the plug-in bits were set. So, I went around the top of the engine, disconnecting, shooting-DeOxit D5 into the connectors and clicking them back together. This served 2 functions. First, a simple survey of the top of the engine allowed me to see if I had missed anything. Second, every electrical connection was confirmed a good-click connection and it was cleaned/deoxidized for a better connection. Having done this, and it only taking literally a minute, I intend to include a similar final survey when doing top-side maintenance going forward. Its so easy, and removes many possible variables to failures.
 
And Then It Happened
At this point, I felt that I had done everything I could to set up for a successful first start since June of 2024. I put the trans-axle into neutral turned the key to run and saw the familiar lights. With an inhale, I turned the key to start and after about 3 seconds he fired up. I didn't expect immediate, since fuel still needed to get pushed down into the injectors, but he started well and ran strong, arriving at a comfortable idle almost immediately. I left him run for a while, sitting in my shop in neutral while I checked for leaks and drips. There were none, which was little short of a miracle.
 
I thought about giving him a little test drive, but I have not solved for the electrical cord for the FrostHeater yet. Curious, though, I tried to ease him into gear, but he wouldn't. Knowing that he easily moved in and out of gear when the engine was not running, I concluded that the clutch cable needs adjusting.

Clutch Adjustment
This adjustment took a little bit of effort, but with a thicker spacer where the Bowden tube meets the mount on the transaxle, and another spacer on the adjuster, I was able to get the clutch to engage and disengage properly. The Bowden tube needs a curve in it to reduce clutch chatter, so this was needed regardless. The fact that I needed a spacer on the adjuster tells me that the cable that I replaced.. jeez.. almost 20 years ago... may be stretching. This is often a warning that the cable will fail soon. So, time to order a replacement.

I used a Velcro ties to hold the FrostHeater cable up and out of the way. But, before I wrapped it up, I tried the FrostHeater, and I think it might be broken. I'll have to do some research, but I expected the unit or at least the top hose to warm up to the touch a little bit. I did not notice any warming, so that effort may have been for nothing after all. Again, I will look into it and I may get a replacement unit, but I'll be pretty bummed if it was really only used a couple of times before it got damaged.

Here's a video of him running, probably 3 minutes after his first start in like 18 months.
 
 
 
I noticed that the rear lights were acting all weird, but a different kind of weird than usual after messing with the battery. So, I did not want to risk a drive-about. It seems like every time I touch the battery, the tail lights short-out such that stepping on the brakes completes an unexpected circuit. That's the usual. This time, the reverse lights were lit up and the blinkers were acting all strange, but only the rear. I think I may have done something with the reverse lights, like reversing the plugs when I wired up the switch, but I ran out of daylight before I could get after it. I'll diagnose and attempt to fix it next time. 

Thanks, as always for following along, and I'll post with any test-drive observations, and other improvements as they happen. At this point, I am thrilled that Hapy self-starts and can move around again--

Tuesday, February 3, 2026

Hapy Gets a FrostHeater

Today, I nearly complete the re-assembly from the flywheel (well, ring gear, really) replacement that has been an open effort since US Independence Day. I had to order a clip to hold the coolant temperature sensor in the coolant outlet flange, so this post picks up where I left off after placing that order. Before I begin, hapy belated GroundHogs Day or Imbolc, if you're a little less western in your seasonal outlook. Either way, there's 6 more weeks of winter because Spring Equinox is still 6 weeks away no matter what a Pennsylvania rodent sees. Anyway...
 
Some History 
installed
For background, Hapy was having increasing trouble starting over the past 2 years. I thought I was getting poorly manufactured starters because every time I replaced one, he would be okay to start for a few times. That was until the last couple, including a new highly-recommended starter from IDParts and a fresh local rebuild of the original TDI starter by a very reputable rebuilder. I concluded the teeth on the "ring gear" or in my case the teeth on the flywheel since this flywheel was one formed unit, had broken off enough that the starter teeth could not engage. This started a path that started with removing the engine-transaxle on my falling-into-pieces driveway, having the transaxle fall off a jack and popping off a flange, hauling Hapy in a sketchy way back to the shop, and finally, now, almost completely reassembled. When this saga completes, he would have been not running since July of 2024 (when we drove home from the final 4Peaks Music Festival).
 
FrostHeater
Frostheater is a vendor who uses a widely available Zerostart 3309040 coolant heater with hoses and brackets for a custom fit for various makes and models. If you have not tried one and are tired of cycling your glow-plugs multiple times before you can start your diesel in the winter, I suggest giving them a look. The unit Frostheater uses looks to be the top of the line from Zerostart in terms of build, capacity and cost. There are plastic other brands, and block heaters that are effectively a glue-on heating pad, but I have found these FrostHeaters to be really effective. From what I can tell, there are no moving parts. By placing the unit near the lowest point of the oil cooler loop the unit draws colder coolant from the oil cooler and the warmed coolant flows up through the upper bib into the head. That rising heated coolant then puts pressure on the coolant in the block to move into that vacuum, through the oil cooler and the loop completes. A few years ago, I installed a Frostheater into a 2004 VW Jetta Wagon (K'Lack). It worked great. We sold K'Lack to our niece a few months later, and she never used the heater. So, when we had to do a major timing belt and cam shaft maintenance, OldPoopie removed the FrostHeater, and restored the original coolant line which I left in place when I installed the Frostheater. The Frostheater and related hoses went into a box for future Hapy consideration.
 
Coolant Temperature Sensor
#6 in diagram
Before I get too far ahead of the story, I installed the coolant temperature sensor and retaining clip first. That sentence is easy to type, but the actual install is very unpleasant. In Hapy, the coolant outlet flange sits behind the fuel tank and barely above the top of the body cross-support that also contains the center-mount for the transaxle. So, there is no way to insert the clip from below, it must go in from above. Directly above the insertion point for the temperature sensor, however, is the to-the-heater side of the coolant outlet flange, leaving a 1/4" or so to fit the clip. Since the orientation of the clip is straight  up and down, there is not enough room to simply slide it in. Of course, let's not forget that you can't actually see anything because it is all on the front side of the engine. For the ALH-TDI engine install into the bay-window bus, I believe this is the single issue that challenges the install. It is minor, in the grand scheme, but it is still highly unpleasant when you need to replace this sensor.
 
So, how do we do this? With a fingernail, I find the slot on the far side (front) of the flange where the one side of the clip will go, and send one "leg" of the clip into that slot while holding the sensor firmly in place. The clip will flex hard, and the inner "leg" of the clip needs to bend somewhere while the first notch of the clip is slid in, I found that having it flex away from the flange (towards the sensor) gave me something to work with. Once the clip is most of the way down and it seems like the clip can't possibly flex any more, push the flexed inner "leg" towards the flange until it clicks into the hidden slot. I spent a couple of hours wrestling with this, and broke a clip along the way, but this method does work. These clips are inexpensive, so buy several when you need to install one. Also, I found it much easier to access the coolant flange from the driver side (the sensor side) if the charged air hose is removed.
 
FrostHeater Install
where fits FrostHeater
I could have stayed on target at this point, filled the system with coolant and started test firing the engine. In fact, I try to follow that pattern more recently: finish what you started, then do the next thing. In this case, I had already lost the coolant from just below the outlet flange and above. I figured swapping out one hose for 2 with the coolant heater was not a significant scope increase when compared to the effort to open the system to add the heater later. I figured adding it later could be years away.
 
All of the install drawings and instructions I was able to find gave very model-specific directions. I was able to determine through loosely related searches that the life of the heater is significantly extended if it does not suffer the constant vibration of being attached to the engine block. So, I looked for a place along the right side of the engine bay where it would be low enough to be nearly the lowest point relative to the engine block while still being reachable by the hoses I had on-hand. That area has a small wire bundle, the main 12V line and the diesel fuel lines, so my placement will need to be careful, but there is a section a few inches front-to-back where it could go. With that general placement decided, I shifted to hoses.
 
The BEW TDI hoses that were part of the FrostHeater kit are not an exact fit for my early ALH TDI. The top hose (red line in the drawing on the right), which runs from the top of the heater into the head hose bib which protrudes on the oil cooler side of the engine just below the coolant outlet flange (#11 in drawing), had an extra bend at the far end that I trimmed off. I felt that the extra bend made the hose want to have a large arc which would have created a hard-to-manage air pocket -or- it was a kinking risk, reducing the coolant flow. The lower hose that runs from the lower bib on the oil cooler to the lower bib on the heater simply would not work for where I could install the heater and still use the upper hose. So, I decided to reuse the hose I had originally running from the oil cooler to the head for the lower hose from oil cooler to heater (blue line in drawing).
 
viewed thru top hatch
Now, we get to hard-mounting the heater to the engine bay. The BEW install bracket on top of the heater unit was oriented to mount to the left side of something. I don't remember what. But the bracket could be easily removed with a 7/16" socket and flipped over, aligning the bracket for a right-side install. Flipping the bracket also placed the heater about an inch lower and set the angle of the bracket against the lip of the engine bay, offering some additional support. With the hoses attached, the heater unit had a smaller range of motion for deciding where to mount it without putting stress on the hoses. Still, I was able to find a spot where the bundle of wires and everything else would not get bound beneath the bracket, and marked it with a sharpie. I planned for and then drilled for a M6 rivnut. The M6 was considerably smaller than the original, but the heater is super light and I was fairly sure that bolt was designed to go into a pre-existing hole. I say "planned for" because once I got the hole drilled, there was no way I was going to be able to fit the hand-riveter into the engine bay and set the rivnut. So, instead, I simply sent the bolt through and nutted from behind like most things. It is still a M6 bolt, using washers, of course, just no fancy riv-nut. So, to remove, I will need 2 wrenches rather than one. Not a big deal.
 
Fill 'er Up
from behind approx level
With the cooling system seemingly buttoned up, it was time to add coolant and burp out the air bubbles. This is where my effort ran out of supplies: no G40 coolant on hand. I added some water to confirm there were no leaks, and after shifting the upper hose clamp on the FrostHeater, there were not any. In the picture on the right, here, you can see how well tucked up and out of the way it is, even though it is below the oil cooler. Note the dry, albeit stained, concrete floor underneath. No leaks.
 
I still need to solve for the routing of the electrical cord so it can be reached relatively easily on a cold day, but far enough out of the way that it is not subjected to flying gravel and road debris. At this point, I am looking at tucking it up behind the right rear wheel, under the battery tray and holding it in place with a strip of cable-management Velcro.It might be time to consider mud flaps back there to help protect the cable from tire kick up.
 
Last, when I removed the exhaust at the start of this project, it came apart where the pipe meets the muffler. To be honest, I was never terribly pleased with the exhaust that was put on there. But, it did last 15 years, so I can't complain too much. Still, I have a 2" exhaust kit that is a bunch of straights and turns that I intend to eventually cobble together into a better exhaust. I think, to get Hapy on the road, I will put the existing, falling apart system back in. Then, I can plan for the 2" exhaust as a near-future improvement.
 
Thanks, as always, for following along, and I intend to get coolant this week and get Hapy running next weekend.  
 

Tuesday, January 27, 2026

Hapy Re-Assembly Continues

First, thanks for following along. I know blogs have fallen far out of favor, with videos and such being the preferred means for getting information. I can't watch videos at work, but I can read, so for me, this is still viable. There's an old saying about not having a face for video, or a voice for radio, you can still print. That's me. Besides, I barely have time to do my thing and write about it, much less shoot and produce video. I don't know how those content producers get any sleep, especially the ones who aren't making any money at it, which, lets be honest, that's most of them. More power to them, and I greatly appreciate their efforts. When I finally wind down at night, I love me some car-fixin videos.
 
So, where were we? Oh yeah, Hapy was almost assembled. Well, his engine and transaxle were mated and they were mounted to the bus. That's the fun, exciting, sexy part. What's left is everything else. I stayed under the bus and finished everything there first before getting after the from-above stuff. I didn't take any pictures, mostly because with all the extra layers simply moving around under the bus is a challenge.
 
Transaxle Finish
I started at the front and worked by way backwards. This started with the nose-mount. At some point when the transaxle was removed, one of the mounting bolts broke off inside the threaded body mount. I know I need to resolve this, and practically every time I get under the bus, I shoot that broken-off bolt with some penetrating oil. I believe the front mount carries very little actual weight, but it does make sure the transaxle remains aligned. I gotta get that bolt out and replaced, but not today. With the one bolt in, I connected the grounding strap. I slid to the left side and connected the Bowden tube and clutch cable. I make a point of leaving bolts partly threaded into where they go so (a) I don't lose them and (b) so I know where they go when I return to a project 6 months later. This made installing the Bowden tube just the usual challenge and not accentuated with a bolt search first. To make the threading of the butterfly nut on the end of the cable easier, I prop up the clutch pedal and then put vice-grips where the cable meets the threaded end. Lots of tightening later, I then test the play of the pedal and slide back under a few times to make sure the pedal has an inch or so of travel before the pedal meets resistance.
 
The last thing on the transaxle is the reverse light plug. In my efforts to install, I smashed the reverse light plug quite a bit. Perhaps this happened when the transaxle fell of the jack this past summer. Hard to know. Anyway, with needle-nose pliers I straightened them out. The leads, have been in the same position for so many years that they were already pre-oriented for the right spots to plug in. 
 
Rear (Anti-)Sway Bar 
Sliding further rearward, I got after the rear sway bar. I will again mention how helpful this bar has been for handling, especially in a strong cross-wind. I will also stress how important it is to have it out of the way for a transaxle R&R. I raised the center of the bar with the TravisJack so I could use both hands on the various mounts. I made sure to put a small smear of clear, hi-temp grease (not black axle grease) on the hard bushings, finger-threaded everything and then nutted every thing down. The grease extends the life of the hard bushings, by reducing the direct-wear of hard bar twisting against them. I had not greased these previously, but we really have not run more than a few hundred miles since I put this bar on.
 
Starter
Now we're getting near the end of the below-the-bus stuff, with the starter going in. With the newer starter adapter, with the studs to hang the starter on, the install is much easier. It really is as easy as popping on there and nutting down with a 17mm socket. The top nut can be a challenge to reach, but the rest of it is easy. Pop on the 12V send from the battery and the 12V send-to-front onto the main post, nut down with a 14mm. Last, pop on the starter trigger. Done. Next!
from warmer summer days

Before sliding out, I hooked up the ground from the right side of the engine to the frame.
 
Fueling
For the most part, I left the fuel system in-tact. Right now, I start to feel the advantages of not pulling the motor all the way out of the engine bay. All I did to enable this job was remove the big Caterpillar fuel filter from the frame, and drape it on the engine. So, a couple of bolts later, the fuel system is back together, hopefully holding prime.
 
Cooling
Similar to the fueling system, I minimally disconnected the cooling system. So, I thought it would be just as easy. I lifted the overflow bottle and noticed the bottle was low, and could hear splashing noise coming from the driver side. I lowered the bottle and the steady stream stopped, so clearly there was a breach up higher in the system, and not a breech in the radiator cooling lines or something that would have potentially cost me all of the coolant. Sure enough, the coolant temperature sensor that plugs into the coolant outlet flange was loose and the c-clip was no where to be seen. It is highly likely that the clip was lost last Summer. At this point, I ordered a replacement, and moved on, but not without laughing at how, again, the coolant outlet flange bit me again. 
 
Charged Air
All I removed from the charged air system were the 2 silicone elbows that connect the inter-cooler to the system. Then, the inter-cooler can be moved out of the way for the work. The silicone elbows are held in-place with large clamps that require a special tool (or lots of patience with channel-lock pliers). I used both. Once complete, I noticed that the little blower fan I have on the inter-cooler was barely clinging to the inter-cooler so I fixed that with some new zip-ties. I intend to one day replace the air-to-air inter-cooler with an air-to-water system, reducing overall inbound air temperatures and freeing up some engine compartment space.
 
This was as far as I could really go without that little clip. So, this is where I stopped while waiting for them to arrive from ECS Tuning. While waiting for the coolant temperature sensor c-clip to arrive, I put the battery on the charger. Next time, we'll get after that little clip and whatever other adventures we uncover.
 
Thanks, as always, for following along- 
 

Tuesday, July 16, 2024

Door Cards

Today I will be picking up where I left off regarding the doors. As I described in my last post, the front doors now open, close and lock like a real car. No slamming, not funny jiggling of the handle, etc. Just open, close and lock. Well, the passenger door lock is different from the driver, but I'll swap that out once I find all my parts. Anyway, since I had to remove the cards to fix the doors, I thought I would take the opportunity to improve them.

Door Cards As-Was
foamed card installed
With operational doors, I got to thinking about how to get the door cards to hold to their respective doors. The Arizona gentleman who ran the business creating and selling these ABS door cards was looking to sell off the business a couple of years ago, so I imagine that has happened by now. He had a mixture of molly-based fasteners delivered with the cards. Either the fastener was a screw that dug into the molly which was pushed through the card into the original mounting hole or it was a push-to-hold plastic bit. Regardless, the molly's did not hold in all of the original mounting holes on my bus (YMMV). This could have been poor implementation on my part, something particular about Hapy or just less-than-ideal engineering on the fasteners. It doesn't really matter; for Hapy, they did not work. When combined with the slamming doors, the door cards would rattle and Hapy had a very junky vibe. Now that the doors no longer need to slam shut, improving the cards adherence to the doors will help un-jalopy Hapy that little bit more.

Door Cards, Mounting Upgrade
broken M4 riv-nut bit
To remedy the floppy door cards, I tried a more permanent solution: Riv-nuts and bolts. The plan: into each original mounting hole in the door, I attach a riv-nut (it's a nut that is applied with a rivet gun, basically), and then send a bolt through a washer and then the card, into the riv-nut. Such a simple plan, and while a little time-consuming, it was easy to do. Of course, I found that not all of the original holes were the same size. To fix, I used some as large as an M6 or as small as an M4. I think this is why the supplied molly-based fasteners did not work as well: the M6-sized holes were simply too big for the molly and they fell out. As shown in the picture here, too much pressure with the riveting tool and you can break it. Once I had all of the riv-nuts set, I shifted to the cards themselves.

Noise Abatement Revisit
setting riv-nut
While I had the door cards out of the bus for repairs, I applied a thin noise-absorbing closed-cell foam to the 3 cards. This material was among the things I got a few years ago when I did the sound deadening effort, and it's application to the door cards was part of that plan. At the time, the research I did (See Hapy Noises - Part 2) indicated that multiple attack vectors would bring the best result: Constrained Layered Dampener, an open cell sound deadener like Jute Thermal and then Mass Loaded Vinyl. These all really address reducing the impact of external (and mechanical) noises transferring into the cabin. Any noises or sound that make it into the cabin which are not absorbed by the seats are prone to bouncing around. I placed some larger acoustic panels (these) under the upper bunk, in the slot where the original sunroof used to go. I believe they are helping absorb some ambient sound. I also covered the ceiling with Mega Zorbe to address the sound reflection and ambient sound absorption. In the picture on the right, here, you can see the MegaZorbe applied to the inside of the outer door skin. 

Based on the tests I did at the end of the effort, the only real gains as-measured were in the "around town" (under 40mph) zone. Decibels at idle or on the highway appeared about the same. In practice, however, using a less complex "measure" like how loud we have to run the stereo to hear it on the highway, it is definitely quieter. An even less precise indicator is how loud we need to speak to each other to have a conversation: barely louder than we talk at home, which is quiet (no yelling house) where we used to have to almost yell without the stereo on. So, I am setting aside the scientific evidence and embracing the anecdotal: this implementation of the sound abatement absolutely and significantly improved our road tripping experience. I may take more readings because the numbers I took before continue to bother me.

Door Cards, Reflective Sound Absorption Added
applying the foam
So, with all that context, I decided to press forward on my original plan to apply the thin foam sheets to the hard plastic cards. I started with the cards along the sleeping deck, running from the rear hatch forward along both sides under the windows to the rear of the rock-n-roll bed (1 foot tall by about 4 feet long). I started here for 2 reasons: it was very easy and the plastic cards were jarring-cold when bare skin pressed against them while sleeping. The foam definitely improved that.

For the slider and front doors, I simply traced the door shape on the peel-off paper side of the peel-n-stick foam and cut along the line with scissors. I aligned the cut along the card and peel-stuck them down, working from one corner, down along one side and then across. I will be applying carpet later, but felt that the foam might help reduce the reflected sound while also providing a cushion under the carpet.

With the foam applied to the cards, I considered the game of "which bolt fits" for each mounting point. I could have just started trying bolts, but that felt like an exercise in frustration. So, instead, I grabbed some painters tape and marked to the outside of each hole (where the card would not cover) which bolt size to use. I set the front door cards in place using the door pull to hold the card in the right spot. Then, I simply sent bolts through a black vinyl washer and then the card into the door. Once mounted, I removed the tape. Easy-peasy. If you do this, I suggest that you do the corners first, and only threaded enough to hold. Then, skip around the card, and have all of them like that before you start tightening. Then, again, start with the corners and pay close attention to the bottom edge near the vent. These ABS cards fit perfectly, but the one hole near the bottom align the trailing edge of the door did not line up for me and I had to skip it. YMMV, of course.

slider door foamed
The door card kit included panels for the wall under the driver-side jealous window and for the partitions behind the front seats. I have yet to do those cards, but I am holding off on doing those until I am ready to fast-follow with carpet. The foam is not as scratch-resilient as the hard plastic, and those cards take the brunt of the abuse when camping or music gear is loaded, unloaded and in-motion. So, I will apply the foam and the carpet at the same time. All of that will happen at some point in the future. As it is right now, there is that little bit less noise reflection happening and when bare skin touches the side of the sleeping area, it no longer triggers a shuddering wake up. We are taking the win.

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That's it for today. Thanks, as always, for following along-

Tuesday, July 9, 2024

The Doors

Yeah.. not the band, but I really like Ray Manzarak's keyboard. It has been a very busy year, and I have not been playing with cars much until very recently. Zed, the 1979 Datsun 280ZX remains covered and completely unchanged since we moved into the farmhouse. Oliver, the 1978 MGB, on the other hand, has received some of my focus. I'll start there, and then get after the original topic. 

MGB Carb Dis-Assembled
carb tear down
I arrived at the conclusion that a participating reason for Oliver running so badly (and getting worse) could be that the carb was a little gunky when I bought him, and he has gotten little use, making it worse. So, I removed the carb, took it apart and ran it thru a sonic dip / cleaner. I ordered a comprehensive rebuilding kit from Japan, and will re-assemble the carb with those bits and gaskets. I hope this will resolve his issues so we can drive him around this summer.

Door-Slamma-Slamma
Over the course of the last few years, all 3 of the regularly used doors (driver, passenger and slider) on Hapy, the 1972 VW Bus, have become harder to open and/or close. Each had their own unique issues. Starting with the slider, it suddenly refused to close outside a venue after unloading gear for a show. It would slide as far as about an inch from being actually closed and then bang on something. I couldn't tell if it was the front edge or the trailing edge, but did not have time to really resolve. I forced it closed by pushing with steady pressure against it straight towards the bus (not pushing towards the front). Fortunately, it opened and shut with similar assistance until I fixed it.

foaming doors
The driver-side door would not close consistently. I would have to bang-bang-bang it shut until it finally latched. The lock was another issue; once locked, it would not easily become unlocked, especially if anyone touched the door handle when the door was locked. This condition only worsened to the point where the lock started to fail entirely and banging the door was not holding the door shut well enough. I had the door fly open while taking a right turn and the swinging door almost hit another car.

Of the 3 doors, the passenger door was the easiest to solve, but it was the last. That door would not shut easily because the seal in the front lower corner was tweaked. This put pressure on the door handle, which also was hard to depress, so opening the door took a firm grip. The inner door cards were not holding in-place as well as they had when I installed them, so I decided to tackle the door operation and the cards as one effort.

Slider Door Adjustment
None of these issues were stuck-on-the-side-of-the-road level, but they were all annoying and reducing the joy. I started with the slider since I had to have that door open consistently for gigs. I first considered the leading edge latch mechanism. I shot Kroil into the latch, but discovered very quickly that the leading edge latch was not the issue. After shooting Kroil into and around the trailing latch, I concluded that this also was not the issue. Still, this lubrication was long overdue. I could tell that the upper hard-bar, that applies the trailing latch was misaligned (too loose). I tightened it and that seemed to resolve the closing issue, allowing the door to close consistently. Opening the door was still inconsistent. I started looking at the lower sheathed-wire that opens the trailing latch. That sheathed-wire is similar to a bike handbrake cable with an adjustment collar near the leading edge latch. This wire was dangly-loose so I tightened it until it was taught and adjusted from there until the door would easily open from working the handle.

Driver Door Fix
'74-'79 left front door latch
Repairing the driver door operation was next most important. Once the door lock was un-unlockable from the outside, the only way into the bus was through the rear hatch. So, if the bus was loaded with gear, it was an army crawl over stuff and under the headbanger to get to the front door or even the slider. Following the instructions in the Bentley manual to remove the door latch mechanism (remove outer handle, disconnect activation bar, remove inner handle, remove lower bolt in window guide, remove bolts holding latch, wiggle free), I spent a few minutes orienting to it and figuring out how it works. Since it was not working correctly, it was not easy to determine neither what was preventing it from working correctly nor how it was supposed to work. The image to the right, here, is for a later bay bus (the early bay latch does look a little different, especially in the area of greatest interest), but it should work well enough to illustrate. For orientation purposes, the side facing away in the image faces rearward when installed in the door so what we can see are the inner guts usually hidden inside the door. Consider the part furthest to the left; that is the lock/latch mechanism which connects to the activation bar. There are 2 circled springs: one larger spiral facing up (marked 1) and a smaller one partially hidden by a tab (marked 2). On the early Bay, spring #1 is not a spiral, it looks more like a "C", but on Hapy that spring was missing. Spring #2, however, was there, and it was kinda mangled.

I attempted to un-mangle spring #2, and instead it launched from the latch into my yard. Distressed, I cleaned the latch with brake cleaner while trying to arrive at a solution. Once clean, I shot the moving parts with Kroil and worked the latch. I started to come to the conclusion that without those 2 springs, the latch and lock actually worked much better. In fact, they worked great. Curious, I re-installed the latch by literally reversing the steps. I found positioning the latch inside the door and then getting the window guide in place were the challenges. I lowered the window and started testing the latch: open, close, open close, lock, try the latch, unlock, etc. It worked like any other car door latch. I can close the door with very little effort, and it stays latched. I can lock it, it stays locked and will unlock by pulling the lock tab inside the or from the key on the outside. Attempting to open the door when locked no longer fouls the lock. I mean, I can try the handle and then immediately unlock it. Even unlocking it no longer requires moving the key like I was locking it first (which I had to do even if no one tried the handle).

Passenger Door Fix
This was the easiest fix of the 3. The Passenger door resisted closing and the handle needed Herculean grip. I repeated what I did on the driver side first: remove the latch, clean and Kroil it. Then, I re-installed. This resolved the Herculean grip issue. The door resistance stemmed from the door seal not being correctly place in the forward lower corner of the door. It was hanging on the inside edge of the door. I still intend to paint Hapy this summer, so I applied a little carpenter glue on the seal rather than the super-strong black seal adhesive. I held it in place by hand until it seemed to hold and then shut the door to really hold it in place while the glue dried. This totally fixed the close resistance.

I started on the door cards, but didn't complete that. I will post about the door card improvement once they are back in Hapy.

---

That's it for today. There have been many adventures and experiments over the last few months. I'll get to posting them as time makes itself available. Thanks, as always, for following along-

Tuesday, March 5, 2024

Hapy Heat Repeat (Part 2)

Continuing the efforts on creating some cabin heat in the old microbus, today's post covers sourcing the air for the heater from inside the bus.

Grounding
air sourcing from inside
In the last post on this topic, I mentioned that the prior attempts, and the original heat, for that matter, all pulled in air from the outside. The original heat pulled from the engine bay, sent it through heater-boxes (insulated boxes around the exhaust manifolds) and then up to the front of the bus. There was even a booster fan to push air when the engine speed was too low to push air. Years ago, I added a bilge-blower fan mid-stream to help get the air forward, and replaced large sections of pipe with insulated hose. In the end, the original system at-best, delivered warm moist air when it was raining (again, it's Oregon so that's 8 months of the year). When not-best, we got cold moist air that smelled like oil or exhaust.

When I did the ALH-TDI engine swap, I removed the original system rear of the front frame, setting a Vanagon rear-seat heater against that frame crossmember. While it didn't leak for a while, it started leaking again this past year. The unit was really never up to the task, and since it was only designed to heat the rear of a Vanagon cabin, I was probably asking too much of it. Still, it was a significant improvement over the original and bilge-blower-enhanced systems. The air was warmer more often, and exhaust-smelled less often. Overall, though, it was not "warm" in Hapy from the use of the heater, and the issue with moist air remained.

Fast forward to the Maradyne heater I just installed. Unlike the Vanagon rear-seat heater, the Maradyne is a 3-row heater core and it is almost twice the width. The core alone could provide considerably more heat. The fan is way more powerful too, so moving that heat into the cabin will be that much more  effective. What remained, however, is the air is still sourced from below the bus, so the wet roads will provide an endless supply of moist air to fling onto the inside of the windscreen. I hope I resolved that with the changes below.

Maradyne Heater Prep
purists love this
In the last post on this topic, I described how the heater was installed on an angle to minimize the ground clearance impact and so the outlets point more directly at the original air pipe. This orientation, however, meant that the brackets were hanging into the space where air intake hoses would go. So, first order of business was cutting those brackets down with the death-wheel (angle grinder). Once cleared, I could easily see that the coolant outlet jutted too far into the same air-hose space so I cut it down as well. Last, I changed the hose from the outlet from a straight hose to a 45* angled hose, routing the coolant above and away from the air inlet. While the inlet is not completely exposed now, it is considerably better. The inlets are 3" diameter and have a lip that's maybe 3/8" for a hose to fit onto. I had intended to add something more substantial for the hose to attach to, but once I got into it, I concluded that the original fan housing could hold a hose and clamp. Time will tell, and I am retaining the extensions I bought for this purpose in case I need to add them in later.

Holy Bus
Well, more like holey bus. In order to send air from inside the bus to the air intake on a fan system that is outside the bus, I need to add a hole or 2 for the air to pass through. I did not want to put air intakes in places where I would accidentally spill water (or other beverages), or get dirt and the like into it. I also did not want the air intakes to be so close to the front that the fan was effectively pulling the warm air right out of the outlet vents. I applied some cold-air-return thinking and chose to put one intake inside the rock-n-roll bed base cabinet. This cabinet is probably the coldest space in the bus (second only to my feet) and the vacuum created by the fan will draw air from the front to the back, creating room for the warmer air to enter the bus more freely. Of course, it's not like a 50+ year old microbus is sealed, but my 70+ year old house isn't either and once I tied the cold air intake into the house system, the house grew measurably warmer.

From underneath, I considered where there was a space without structure nor pipes to interfere with the air intake plumbing. With the radiator, wiring, original stuff and everything else, it is quite busy under there, but there is a space just behind the rear cross-frame (think: rear jack-point) but in front of the rear wheel well that is inside the cabinet, nearest the front outer edge. I tested a few spots with a drill to make sure that I could fit a 3-1/2" circle without hitting something neither underneath nor inside the cabinet and found a good spot. I cored a 3-1/2" hole with a hole saw. Why 3-1/2"? The inner diameter of these hoses is 3", and I felt that leaving a little extra room for wiggling was better than having it tight as would have been with a 3-1/4" hole. This turned out to be a wise decision. Once the hole was cut, I shot it and the support brackets with paint to delay (can it really be stopped when it rains 9 months of the year?) rust.

Fitting
cabin air intake
Once the hole was cut, I was on the home stretch. I found what look like air outlets with metal grills that fit a 3" hose to act as an air intake screen. I a-fixed one end of the hose to the grill, cable-tied it to be double-sure and passed the hose through the hole from above. The hose barely fit. It was so tight, I had to cut off the cable-tie because the cable tie end prevented the grill from sitting flat on the floor. Anyway, I chose an orientation that pointed the grill away from the center of the cabinet so things don't accidentally fall in or over it and then screwed it down to the wood floor of the cabinet. From underneath, I stretched out the compressed hose, stretching it along the side of the radiator, and turning it towards the fan.

I had initially planned to have 2 air intakes, one per fan intake, but after cutting the passenger-side hole, decided that I had 3" of outlet, so having only 3" of inlet was actually a fair balance. So, rather than run 2, I added a 3" wye along the passenger-side frame rail. I sent the stretched and then cut hose into the base of the wye and shifted to the fan inlet on the driver side, knowing it would be the harder of the two. I can always choose to add a driver-side inlet, but with the furnace on that side, there will be additional complexities.

The driver-side was definitely harder, but simply because the coolant outlet hose still ran across the air flow path. I twisted and bent the air hose and jammed it onto the inlet lip. I added a hose clamp while pressing the hose onto the lip, threading the clamp until it was quite secure. Content, I stretched out the hose, threading it behind the fan housing, but in front of the radiator intake to the passenger side. I added a cable-tie on the driver-side to hold the air hose in place. I cut and then sent the other end of the hose into the wye. It got another cable-tie up to the underside of the bus before it entered the wye.

The section from the passenger side air intake to the wye was a little over a foot, and was the easiest part of the install. I attached to the fan intake first, adding a hose clamp, of course. Once stretched and cut into the wye, I cable-tied the wye up near the floor of the bus, mostly out of sight. I cable-tied the passenger-side hose as well so there would be minimal pressure on the hose clamp. At this point, the air intake for the cabin "climate control" sourced from the inside of the bus.

Testing
ground clearance mostly unchanged
All that remained was testing the system, both for air flow as well as coolant. I started with the air flow, accepting that I could confirm that without running the engine. As expected, the fan blows hard, and draws through the inlet. Because the inlet is inside cabinet, it make less noise than it might have had it been placed elsewhere. Still, I will need to be aware of it when we pack things so it is not even remotely blocked.

Satisfied, I exposed the top of the engine and started it up. I had expected to simply add coolant/water while air bubbles appeared but 2 things interrupted that plan. First and worst, the injector pump started leaking all over the place. Now, to be fair, I had smelled diesel on my last couple of drives, so this was not 100% a surprise, but it still was a little bit. Second, air bubbles did not really appear. I will need to bleed the heater core segment, once I replace a seal or two in the injector pump. A seal set has been ordered, so until the kit arrives and is installed, Hapy will sit.

That's where we are at this point. I may try to bleed the heater while I wait for the seal kit, but it will depend on the weather and my workweek. Thanks, as always, for following along. More next time-

Tuesday, February 20, 2024

Hapy Speedometer Cable replaced

I mentioned in my last NewOldHouse posting that Hapy's speedometer suddenly stopped working on the way home from a party. It worked on the drive there, but didn't on the way home. Fortunately, there was lots of traffic for me to keep pace with ,but it's still annoying not having a speeod. Today's post covers the adventure of replacing the speedometer cable. Before I begin, today's my birthday, so Hapy Birthday to me, I guess.

Symptoms
working on concrete!
It makes sense to start with the symptoms I noted before the speedometer stopped working. Other than the obvious of it not working, during the drives prior, I noticed that the speedometer needle was bouncing an awful lot. This is often a sign that the cable is binding either due to age or because it hasn't been lubricated recently. Since it was the original cable, and I had never lubricated it (I know bad owner), I concluded that the cable had broken. Had I recognized these symptoms earlier, perhaps I could have prevented the failure. Ultimately, I am not sure the cable actually broke, but at this point in my process, my conclusion seemed solid. Before I began, I disconnected the battery. I did not want to pop a fuse or smoke another wire.

Removing
Someone posted on the Samba that replacing a speedometer cable took 15 minutes. I know better, and assumed it would take me hours, which proved correct. Because of the size of the holes through which the cable passes, it can only be removed one way: from the wheel up through the back of the dash. So, I started with raising the driver-side front corner and removing the front wheel, and then the grease cap. With a pair of pliers, I removed the hard rubber boot on the rear of the wheel (that the speedo cable passes through) and then pulled the cable through. I wiped off the grease and then got under the bus, pressing back the 2 sets of tabs that hold the cable to the underside. Then, the cable easily pulls through to the front of the bus.

Next, I reached around the steering column and detached the cable. In Hapy, the cable actually enters a converter box that creates a wave pulse for collecting speed and mileage for the TDI computer. I hadn't connected the wiring for that, but it was between the speedo cable and the speedometer. With the speedometer disconnected, I could pull it up through, feeding from below with one hand while pulling taught with the other. Once the cable was out, I tried turning each end, and watched the other end turn, albeit sporadically. So, the cable was good, but not working very well. Since I had a brand new cable, I decided to keep going.

Preparing
cable lubrication
I took the new cable over to the side and started working silicone-based cable lubricant into it. My process was fairly simple: shoot some into the speedometer-end of the cable until it pooled up to the lip. Then, wiggle and turn the cable from the other end until the puddle disappeared into the cable sheathing. I repeated this may times. Once I was satisfied that there was a lot of lubricant inside the cable sheathing, I laid the cable flat so the lubricant could spread out and took a long lunch.

I added a little bit of lubricant to the outside of the wheel-end of the cable so I could easily add the rubber boot and then started my re-install. I had purchased 2 circlips for the wheel end of the cable and a new grease cap. I shot the new grease cap with some wheel paint so the brassy cap would not be so grossly out of place. 

Installing
I started by passing the cable from behind the dash, choosing to not pass it through the oval hole in the steering column support. Why? That hole seemed to prevent the cable from easily installing, and actually seemed to force the cable to bend unnaturally. By skipping the hole, the cable had a much more gradual curve back behind the dash. Time will tell if this was a poor decision. Finding the hole through the floor in the nose proved to be the single most time-consuming part of my process. Since I had added holes and electric cables, I had more wrong ones to chose from. Once I found it (there are 2 original holes, one directly in front of the other. The speedo goes through the one that's rearward), the cable easily passed through and I was able to route it the rest of the way to the wheel. I refrained from securing the secure-to-body tabs at this point so I had the most play in the cable at the wheel.

I slid the rubber boot on and then passed the cable through the wheel. I left myself plenty of excess so I could add the grease cap and circlip. I found, however, that the new grease cap did not fit. It is just a hair too small. After many attempt to make it work, I abandoned the new cap and switched back to the original. Because of the nature of the grease cap, I found the grease had found its way to the edge where the cap needed to seat on the wheel. With grease on that lip, the cap would not rotate with the wheel. I think this may have been part of the bouncing speedometer needle. To remedy, I cleaned the edge of the cap and the seating lip with brake cleaner, careful not to let it near the greased wheel inside. Once clean, the cap fit on correctly and rotated in time when the wheel spun.

Satisfied with the cable attached to the wheel, I added a touch of silicone grease to outer edge of the rubber boot and fit it into the hole. I tried to fit it without the lubricant, and it would force the grease cap off. With the lubricant, the rubber seated and the cable is set. I moved to the body-securing tabs next and closed them snug. Last, I returned to the behind the dash to connect the cable.

Extra Conditions
Hapy as album cover
It was at this point, that I started to question the quality of the speedometer cable converter box. When disconnected from everything, spinning one end of the converter had no resistance: is spun normally. If I connected it to the back of the speedo and gave it a spin, the needle would move. What was interesting was when I connected the cable to other side of the box. The output would not be fluid consistent. I could spin the wheel and see the cable rotate freely by itself but as soon as I connected it to the converter box, the converter box output was all over the place. At this point I concluded that the box was the main problem. Since I had not been capturing or using the output of the box, I decided to not integrate it, connecting the cable directly to the rear of the speedo like everyone else.

To test, I spun the wheel a few times and I could see the odometer slightly move in the 10th-of-mile. I concluded that the main issue was resolved. Since I was back behind the dashboard again, I needed to confirm I hadn't done anything wrong, so I verified the running lights, fans and hazards after reconnecting the battery.

That's it for today. While it was a little frustrating getting the cable replaced, it re-excited me about working on Hapy. I have a serious backlog of things I want to do, so if the weather is willing, and I have some time, maybe I'll get after one of them next weekend. Thanks, as always, for following along-

Tuesday, March 30, 2021

Bus Tow Hitch

Today, I covered the install of a tow hitch onto Hapy, (1972 VW Bus), highlighting some of the unique factors about a 1972 VW bus as well as what is special about Hapy that makes this install particular. I am still working on the injectors and getting Hapy running, so this install kept me busy or should I say distracted from that for the weekend.

Slow Go
test fit
Back when I first got Hapy, and for the handful of years I drove him with his original mystery engine, he could barely get much of anywhere if there was more than just me inside. If we added another adult, a couple of kids, gear, food, etc for a weekend of camping every incline presented a new opportunity for my knuckles to whiten, my back to tighten and passersby to wave with a single finger. At the time, I knew of other bus-drivers who had no such problems. In fact, there was a guy from Canada who built a trailer that looked like a small single-axle version of his bus that he towed behind him as he crisscrossed Canada and the US. He called his bus the Red Tomato; sadly, I cannot find a picture, but his set up was amazing. An engine swap, and some other upgrades later, I'm no longer slowing down traffic, and the idea of a small tow-behind or just maybe using one of those tow-hitch bike racks is appealing. Dare I say a ski/board rack?

One Year Only
Of course, 1972 is a transition year for the VW bus. 1971 was the last year of the old "type1" or upright engine, making 1972 the first year of the pancake engine (in the bus). The rear transom was changed so you could no longer remove the bottom section between the tail lights for engine removal, the tail light housings were made larger, etc. On the front, 1972 was the last year of the "low light" turn signals below the headlights. So, 1972 was already a kind of a frankenbus before I got my hands on it. Arguably, if I had left it (or returned it to) stock, it would be worth more.... to some folks. Bear in mind, Hapy did not have his original engine when I got him, so any return-to-stock would not have been to a numbers-matching bus. Besides, a camperbus should be camped in, not just garaged, trailered and car-showed.

dis-assembly
In 1973, the rear bumper was changed, changing the rear end again. This means that much of the design of the engine-to-frame mount, transom, the bumper mount, etc. was unique to 1972. So, getting a rear hitch to fit was not an off-the-shelf thing. Well, it wasn't until this cat in Virginia started making them as a side job a few years ago, and selling them on TheSamba. The reviews of Jeremy's work has been super-high, and his responsiveness to email has been great. It arrived quickly, wrapped with cardboard to protect it (but not boxed, probably for less expensive shipping) and looks exactly like the pictures. You can see what it looked like in the picture on the right, here. What I didn't realize when I ordered it, the tow hitch ships with 6 super-high-strength M10 x 1.5 bolts for mounting. 

These tow hitches include an integrated bumper support, which supplants the old one. So, one of the one-year-only parts is no longer needed. For those who have purchased a bus which had it's rear bumper removed and subsequently lost, with this hitch, you only need to source a bumper (based on my look-around, WestCoastMetric, JBugs, and BusDepot now offer the 1-year-only bumper). That's easier than finding a one-year-only bumper and pair of one-year-only brackets. And, you get a tow hitch. Win-win!

One Bus Only
As unique as the 1972 VW bus rear-end design is, Hapy is more so. Recall, all those years ago when Hal and I (more Hal than I) designed the engine mount for the TDI engine? Rather than leveraging the triangle of mount holes in the frame rail sides that held the original engine mount "moustache bar", we reused the twin holes further to the rear which hold the bumper brackets. This left the triangle mount holes vacant. The tow hitch also mounts to the bus frame through something other than the triangle of holes. Once the install has completed, the engine mount and the bumper mount will each be supported independently.

I will take this opportunity to underscore that our reuse of the bumper bracket holes has been completely without issue. On surface, one could become concerned with whether the holes were designed to support the weight of a TDI engine. Consider that the bellhousing mount to the frame probably holds most of the weight, and is absolutely capable of holding the engine by itself. I say that because I have removed the rear mount and accidentally removed the support (lowered the jack. Doh!) in the past, and the engine has not budged. Also, the bumper mount needs to be capable of holding not just the bumper off the ground, but occasional additional weight of someone stepping on it. Last, it needs some level of hardiness to absorb energy from a rear-end collision. Regardless, I have never felt this design has not been more than capable of supporting the rear-end of the engine. Again, thanks Hal :)

Install Hitch Hampering
bent ear
After some careful examination of the mount, and of the bus frame, I realized that the tow hitch does not reuse the triangle engine mount, it uses a set of otherwise unused holes in the rear of the frame. This means that for a standard 1972 bus, the install does not involve the engine mounting mechanism at all. Nice work, Jeremy! The holes he targeted sit directly above the holes used by the original bumper brackets.... that we are using for our TDI engine mount. In any other 1972 bus, you could just set to tapping those holes with a M10 x 1.5 tap for the supplied bolts. With Hapy, there is always an extra hitch (pardon the pun): the right-angle brackets that are part of the engine mount hung over the outer edge of the frame by about 1/4", and prevented the hitch from setting all the way. Through the use of a cut-off wheel on my angle-grinder, that extra overhang was trimmed off. When I do the install for realsies, I will hit the bracket with the grinder so the edge is smooth. And, of course, I'll shoot the exposed steel with some black paint.

But then, we still were not quite ready. The tow hitch was tweaked partially during shipping. The 2 supports were slightly bent inwards by a 1/2" total so it would not fit around the rails. I pulled out the 3' sledgehammer and encouraged the hitch supports apart. Had the hitch not had a bent ear for the passenger-side bumper support, it could have taken me longer to realize that the shipper was a little rough with the hitch. I advise you to check the measurements and angles when you get yours. These are built on a jig, so it is not a manufacturing issue.

Preparing for the Tow Hitch
Finally, the fun part. With a floor jack, I put upward pressure on the engine support bar so I could remove the bolts on either side. Supporting the bumper with my toolbox, I dropped the last bolts and lowered the bumper. I slid it out of the way and returned the bolts back through the engine support bar. Once the engine mount was tightened back down, I removed the exhaust. I decided that it would be easier to install the hitch with it out of the way. It was at this point that I cut off the extra meat on the brackets and discovered the rough handling during shipping I mentioned above. I decided that the engine was crazy dirty, and I had gotten enough oily yuck in my fingers (I found and re-connected a breach in the compressed air / turbo pipes) that a degrease was overdue.

crazy cleaner
Product shoutout: Oil Eater. I cannot believe how effective this bio-degradeable, enviro-safe degreaser is. I have found this stuff at the dollar store and BiMart, and when I first bought it, I didn't think much about it as I'd never heard of it. Wow, this stuff cleans oily greasy messes fast. My TDI engine was a black-caked oily mess. I shot it with the OilEater, and hosed it off. To get all the little nooks I did this 3 times. No brushing, no scrubbing: just spray it on and hose it off. The engine is incredibly clean now. You can sort of see in the bottom picture. All that silver used to be black, and all that black used to be, well, black, but caked oily gross black.

At some point, the original bumper brackets, and splash pans need to be removed from your bumper. The picture at the top shows the yardsale that ensues when you do. The hitch has the corresponding holes for re-using your splash pans. I recognize that these pans help hold the front edges of the bumper to the side of the bus, but I am not sure that value offsets the cost of the junk that builds up in those pans. Leaves, pine needles, etc sit there and just encourage rust. Washing or cleaning those pans is not easy either. So, for now, I will be omitting my splash pans, and will eventually form a bracket to go from the side of the bus to the front of the bumper. As I worked the bumper, I noticed that the paint needs to be refreshed and the bolts were all rusty again. Fun in the rain-soaked Pacific NorthWest. Finding stainless steel fasteners to replace the zinc-coated or plain steel took some time, but I found them at BelMetric for about $15US delivered.

Installing The Tow Hitch
tapping last M10 hole
With the bumper and exhaust out of the way, and the engine bay clean, the install of the bumper is relatively straight forward. The 6 holes need to be tapped with a M10 x 1.5 tap. I didn't have any, nor had I ever done anything like that, but the tap and driver cost me about $18US at the corner Ace Hardware. The cutting of the threads was pretty easy too. I just took my time, making sure the tap was lined up well, and then slowly twist the tap in 1/4 turn at a time. I found that the first few threads are the most important and that it was easy to mess them up when I was removing the tap. So, my advice is to take extra care during the last few turns on the way out. It is easy to lose concentration, and then you have to do it again.

Jeremy's (the fabricator's) instructions for the install indicate that you must mount the bumper before installing the hitch. I, of course, did not do that, but it was so I could get a test fit. And, as I mentioned above, my bumper bolts have rust appearing on the bolt heads, so I'm going to replace them. The tow hitch is not balanced, wanting to tip down to the rear. I suspect that once the bumper is added, it will want to drop rearward all the more. Considering that at this point I do NOT have my exhaust installed, I expect the final install will end up another post.

note location relative
to engine mount triangle
I set the driver-side end of the bar under it's install location but on top of my toolbox. I went over to the passenger-side, lifted it into position and finger-threaded the upper rear bolt into the hole a few threads. Then, I switched to the driver-side, threading in both rear bolts, but again only a few threads. I continued to bounce back and forth wiggling the hitch and threading bolts until all of the bolts were threaded in. At this point, I pushed and pulled to get the tow hitch into it's rear-most location and then finger tightened the bolts. Last, I ratcheted them down snug (not torqued) with a 15mm socket.

Bumper On
To complete the test-fit, I set the bumper in-place and threaded the 2 outer, but rear-facing, rusty bolts through the hitch-resident bumper support and set the 13mm washers and nuts on. This gave me an approximate visual for how the finished product will look. Overall, I think it looks great. While I will miss the modesty skirt thing, and I have not yet confirmed that the exhaust will fit without modification, I will definitely appreciate having that hitch for a bike rack, or equipment shelf or for actually towing something small.

That's it for now. I will be cleaning up the bumper and exhaust, probably painting the bumper again and then repeating this install, plus re-installing the exhaust. I'm sure I'll post on it. Thanks, as always, for following along--