Showing posts with label degrease. Show all posts
Showing posts with label degrease. Show all posts

Tuesday, November 17, 2020

Zed Prime

No, not like Optimus Prime. Today we celebrate getting Zed primed in 2k hi-build primer. Before I begin, the CoViD numbers are getting flat-out scary, but it doesn't seem like folks are taking this news and processing it into action. I take a walk every afternoon for some exercise around suburban residential streets and there are lots of fellow walkers or runners out there. Please remember that just because you're outside, it doesn't mean you can walk right up to me without a mask. I'm wearing one to protect you; show me the same courtesy, dammit. Now, about that primer.

Layout
panels set up for paint
set up for ease of movement
I started out by backing Nemo out of the other covered spot, and laying a big blue tarp on the driveway where it had been. I then planned my route for moving from panel to panel with a spraygun and air hose. I moved the air compressor out of the garage, but at the edge of it's power cord. I wanted to make sure I could get at different angles without bumping into wet paint, and without dropping the air hose across a panel.

Clean
This is the part that most car shows don't televise: the endless cleaning. Garage Squad is the clear exception, but I think that's because the car owner is usually doing it. Anyway, by now, dust from the Bondo is pretty much everywhere. Your hands and the oils ever-present on them (combined with Bondo dust or not), have run all over all of the panels. Both of these things ruin paint jobs. So, we start with a bottle of degreaser and a roll of paper towels. Since the car has been outside and the weather has been windy and damp, I did not feel it was necessary to shop-vac the interior before I began. I stand by that decision, but I encourage you to vacuum or air-compressor blow-out crevices at least. With bottle and towels in hand, you clean everywhere you intend to put primer. And clean the places nearby so tape will stick. I found the degreaser left a film on plastic so I had to reclean those plastic pieces with window cleaner sprayed onto paper towel so I could get tape to stick. Neat.

Mask
280ZX driver side rear quarter panel
driver side rear quarter
With everything clean, I completed the masking next. I had started a few weeks ago, masking off the engine bay and the windshield. The sides of the dashboard near the doors, the door seals and some of the door hardware all needed to be masked. The fuel inlet did too. Again, it is probably worth stating that the purpose of masking it to keep paint off of stuff you don't want painted. That sounds obvious, but sometimes we get aggressive with tape and overdo it. So, with that perspective, it is better to under mask and have a little bit of rubber or chrome get paint on it than to over-mask, and have a line of unpainted body when you pull tape. Been there; it really sucks. Removing a little paint from rubber or chrome is way better than trying to get paint on that edge after you've messed up the masking. Last, I cut up some kitchen garbage bags and covered the tires. I'm not sure if we are going to keep them or not, but either way overspray would make them worth less. 

Paint Gun Assembly
harbor freight air regulator with gauge
I knew that once I had metal etching material applied, I was all-in on priming. Metal etch is an acid that converts rust, but it also cuts into the steel, making primer adhere better, but also creating a means of rust suddenly appear where it otherwise wasn't. With mid-Fall NorthWestern Oregon weather (read: damp), you do not want to create a rust opportunity. So, I set up my paint gun next.

A while back I got 3 of those purple Harbor Freight paint guns. I figured I would have a different gun for each of the various steps: prime, paint and clear. Well, since then I got a much better gun (ATOM X27) for applying the color and clear. For primer, though, especially this high-build stuff that has some thickness to it, I did not want to put that through the new gun.

The purple Harbor Freight paint gun ships with one tip, a 1.4mm one. That is too small to reasonably throw thick primer. The Eastwood guide for this 2k high-build primer suggests anything from 1.8 to 2.5mm. So, I drilled out the 1.4mm tip with a 5/64" (1.98mm) drill bit to get as close to a 2mm hole as I could. I did this a few weeks ago during paint gun disassembly, cleaning with lacquer thinner and re-assembly. Now, with the gun set up with a nearly 2mm tip, I was about ready. For timing... from end-to-end, gun disassembly, tip-drill, cleaning and re-assembly took a little over an hour. I work slow.

280ZX passenger side rear quarter panel
passenger rear quarter
To the air-inlet, I applied plumbers tape, and then threaded on a regulator with a pressure gauge (like this, also pictured on the right here). On the threaded end went more plumbers tape and then a inline desiccant dryer/filter (like this) and more plumbers tape. To that last bit, I threaded on an air hose quick-release. I set the whole contraption into a spray gun stand (like this) that was held firm to my bench under the weight of a vice. Be advised, these things are not balanced, and need to be fixed to something -or- have the baseplate under something super heavy (like a bench vice that I never attached to the bench) or they will fall.

Etch
With the panels clean, the gun ready and the masking done, I grabbed my small bottle of Eastwood metal etch and a foam brush. Panel by panel, I liberally applied metal etch. Because it was in the upper 50'sF (14*C) and relatively damp, the metal etch stayed wet for quite a while. That's a good thing, as it gives the acid time to cut into the metal and convert any rust without creating flash-rust.

Mix a Batch
280ZX hood in high-build primer
hood looks real flat
Again, not like Letterkenny. The Eastwood hi-build 2k polyester primer requires the addition of liquid hardener: 0.2oz hardener per 10oz of primer. The cup that comes with the purple gun max's out at 20oz. so, I made 15oz batches per spray cycle. 15oz of material needs 0.3oz of hardener. Now, I have an old plastic syringe from when I was playing with biodiesel years ago that holds up to 12ml's, but it is graded in milliliters not oz. Apply some math and we need 8.87ml of hardener for 15oz of primer.

I grabbed a plastic mixing pitcher from the kitchen baking materials (did I mention that my wife loves me? I'm a lucky man.) and with blue tape marked the 15oz. line with the top edge of the tape. I did this so that I could quickly see when I hit 15oz while dumping paint from a 1-gallon pail. I opened the can, and then spent about 15 minutes thoroughly mixing the primer, deep churning the solids off the bottom so it was consistent top to bottom. 

Once mixed, I poured 15oz into the mixing pitcher (to the top of the blue tape) and opened the hardener. The hardener comes in a tube, but is as thin as water, so getting it into a syringe was not really a fruitful exercise. To solve, I removed the plunger, turned it upright (small hole at the bottom) and covered the small hole with my gloved finger. Into the now-open other end of the syringe, I squeezed just shy of 9ml in and then dumped it into the mixing pitcher. I mixed for about a minute and then poured the now-activated primer into the gun paint cup and threaded on the lid. I repeated this process 3 more times during the primer-shoot.

Prime
280ZX passenger side headlight bucket in high-build primer
passenger headlight bucket
With primer in the cup, the lid fastened, the air compressor turned on and my painting overalls on, I was ready to go. I set the air pressure at the compressor to 40 and played with the regulator at the gun to get to 30psi while spraying. I got there, but I think, in retrospect, it would have been better had I run the pressure at the compressor higher so I could get more pressure through the gun. I say that because I found that the fan was not as wide as I would have liked, which forced me to hold the gun closer to the panel (like 4 inches rather than 6-8).

It is recommended that you test your fan on cardboard. I was shooting primer and was going to be shooting multiple coats, so I was fine with getting the fan set on a fender while shooting. My car, my choice. It took me a few passes to get my pass-speed right, but after 3 coats, the coverage looks really good. I found that I was initially moving too quickly, making my first coat quite light. Also, because I have a 21 gallon air compressor, I had to wait for the pressure a few times. Honestly, I expected much more waiting.

Because of the high-build nature of the primer, I made sure that I got a nice build everywhere, and then circled back on the trouble spots (fenders) for some extra. Once it all dried overnight, the panels look very smooth, though after touching them, they will definitely require a bunch of sanding. I haven't decided if another round of primer will be necessary. I guess we'll see after the sanding. At this point, though, I am super-happy with how everything looks.

Clean Up
280ZX passenger door in high build primer
passenger door
Similar to the cleaning of the car prior to painting, the cleanup of tools gets virtually no coverage in MotorTrend / Velocity / Speed television shows. That's really too bad. I know it isn't terribly entertaining television, but ignoring it implies a bad habit of not cleaning things as the way that the professionals do it. We know that is absolutely not the case. I spent over 2 hours spraying primer and another hour cleaning up. I may be slow, but I try to be meticulous. I started by pouring some fresh lacquer thinner into the paint cup and sloshing it around. This didn't free the dried-on primer, but the still wet primer was now suspended in lacquer thinner. I sprayed the material out until the cup was empty, and then removed the air line from the gun. I removed the cup and set it aside while I poured more lacquer thinner into the measuring pitcher. I used the pitcher from this point as the cleaning "sink". I dunked the cup in the "sink" a few times while I cleaned other things so the remaining paint on it wouldn't dry.

I removed the mix nuzzle (on the end that sets the fan-direction vertical or horizontal) off the front spray gun and then pulled the needle from the rear. With a pair of channel-lock pliers, I removed the tip housing, and placed them all into the pitcher. I set the gun in last, upside down. I added more lacquer thinner and then started cleaning things with a brush, getting all primer off of everything, including the outside of the paint gun housing and the paint cup. Once everything was completely clean and wiped down (an hour later), I re-assembled the gun, wiped out the paint cup and put everything away.

Some might argue that these guns are only $15US so why bother cleaning them. To me, treating them as single-use is an environmentally hostile way to operate. Ideally, I would not even have these, and I would have high quality tools (like the ATOM X27) instead. Still, the way we treat our expensive tools is how we should treat our cheap ones, IMHO. I have heard that these start leaking after no more than 10 hours of use, so I may have a couple more jobs before this starts to fail on me. That's still more than once. 

Curing
I let the panels (and the main shell, of course) sit in-place and under the carports overnight. The following morning, it had started to sprinkle so I carefully moved the panels back into the warm garage. I will let them sit until I am ready to sand the primer. I expect I will know if another round of primer will be necessary or not from that. Either way, the window for painting this Fall is effectively closed. Even if I can get sides onto these carports, it will be very hard to warm 400 square feet of space to 70*F (21*C) when it is under 40*F (4*C) outside. Any cooler than 60*F (~15*C), the paint won't behave properly, and it seems like everyone encourages painting at temps closer to 70*F (21*C).

I have read that the polyester primer can protect the metal underneath if the primer is not disturbed (read: sanded). Once you sand it, it is much easier for moisture to get in. I don't know if that's true, but I will be leaving the car un-sanded in primer since I can't get paint on it, so we'll find out. For now, everything except the main shell is in the garage. The shell is sitting under a car port. So, it is semi-outside, but out of direct weather and (extremely limited seasonal) sunshine.

Thanks, as always, for following along. Once the Zed body parts were moved out of the car port, I moved Hapy in, so I expect to be returning to Hapy work in the next few posts. 

Thursday, October 23, 2014

Peanut Butter (no Jelly) Time

No, I won't post that dancing banana video from a few years back, but I will reflect on a valuable use for peanut butter that I didn't expect.

That's Nasty
old pic from 2011 but
check the nasty back-end
When driving along, the air directly behind the vehicle creates a vacuum.  Car designers have worked all kinds of miracles in that area over the years, but with the old loaf-of-bread shaped VW bus, the vacuum is quite significant.  I've heard of water-cooled transplant failures caused because the builder put a radiator where the engine hatch is.  The vacuum made the radiator useless, unless the builder had the fans suck air in from behind, sort of leveraging the vacuum.  Even then, those installs look pretty atrocious and would pull all kinds of crap into the radiator fins, but I digress.  The vacuum grabs up water, road grime, dripping oil... and splats it on the rear bumper, engine hatch and rear hatch.  Over time, it gets pretty grimy.

In my bus' case, it was worse.  I mentioned the transaxle gear oil leak in previous posts.  That was bad.  On top of that, for a few years I was running the original tail lights and the old housings failed.  I was broke, so I held the tail lights on with duct tape.  Yes, the bus looked horribly ghetto.  I scored a pair of new (but not China-crap) housings from the BusDepot when they were on sale a few years ago, and replaced them.  I did not, however, clean up the old duct tape sticky residue left behind by the tape.

For the Greatest Shine You Ever Tasted (from the SNL Shimmer skit)
While cleaning out the garage, Boo came out from playing in the garden and started asking about the nasty back end of the bus.  We realized that once the newly painted bumper is put on, it will look even worse.  She ducked inside, and I went back to the garage.  A couple minutes later, she had returned with a fist of paper towels and a teaspoon of peanut butter.  "Hungry?" I asked.  "No, haven't you ever done this before?" she replied, and then proceeded to put a dab of peanut butter on the nasty duct tape.  "uh... what... are.. you..," was as far as I got as a response before I saw one of the 4 tacky squares which had been left behind by the duct tape had disappeared.  In a few minutes, all 4 of the big black marks were gone.  I was converted.  I left the garage in its not-yet-organized state and grabbed some peanut butter.  I polished the whole rear end with that magical stuff.  It acted like a cleanser-wax, cleaning the oil and grime while leaving a shine (presumably from the oils in the peanut butter).  Of course, there are probably lots of little peanut bits in there which would trash an otherwise nice paint job.  For original paint, complete with rust, patina and grease-finger prints, it is magic.

For kicks, I peanut oiled all of the little rust spots I had.  The petina-style rust didn't seem very affected.  Rather than a dull spot, it shined like the paint, but otherwise, it was about the same.  The rust which was a little deeper into the steel, though, did react differently.  The rust closest to the paint was unaffected, but as I moved more than a couple MM away from the paint edge, the rust turned silver.  Trippy.  I'll re-check those spots in a couple of days to see if that lasted or was just because the peanut butter picked up some of the body color and it simply attached to the rust a little bit.  Regardless, the experimenting was fun.

Like so may other times, I didn't take many pictures beforehand, but I do have one here of the back after it was cleaned.  Wow.  And there's a shine to it now.  Yes, the paint is still atrocious, but that's part of the ongoing work-in-progress.  The journey is the destination.

Of course, it rained all night the next night.  It will be interesting to see how long a peanut oil wax job will last in a NorthWest autumn (read: nearly constant rain or mist in the air).  Today, it really looks great.

Sunday, October 12, 2014

Back Together, Test Drive

In my last posts, I covered the hazardous re-assembly of the engine-to-transaxle and the install of the combined unit at 15*.  Today, completes that journey.  In order to do the re-assembly as quickly as possible, I tried doing it a little differently.  I usually do system by system.  This time, I did it based on where I was and did everything I could before I moved.  I'm not sure I'll do that again, but it was interesting.  I cleaned every part with brake cleaner before installing it.  It made a world of difference, and I'll do that every time now.  Handling a clean part is just so much better than the oily, greasy alternative.

Lower Right Rear
Starting below the right side of the engine, there are a few things to do, starting with the CV joint.  I place a jack under the lower shock-absorber mount and lift until the tire just barely leaves the ground.  Then, with 6 new Allen-head bolts (one striped last time), attach the CV joint to the side of the transaxle and drop the tire back onto the ground.  At the front of the transaxle on the right side, is the ground strap.  It requires a 13mm socket.  Install the starter.  It requires a 17mm socket (need to verify) for the 2 bolts plus a 13mm for the B+ cable from the battery.  Plug in the trigger signal wire to the starter.  Connect the B+ wire to the Atlernator and plug in the sensor wires.  Double check all the other visible sensor wires (like on the cooling system) are plugged in.  Last, zip-tie the cooling pipes up out of the way from the axle.

Rear
Put in the rear support bar.  Don't forget to put the rear bumper mounts back in when you do the bar; they use the same bolts.  Install the support tower and the rear engine-frame mount.  If you get this far and the mount isn't lining up, check the support bar install.  If the mount and tower are on different angles, you probably mated the engine to the transaxle at something other than 15*.  Go back one posting :)  Once the rear mount is in, hook up the exhaust.  The muffler pipe has a hook that fits onto the rubber mount which is hanging off the right side of the rear support bar.  Once hanging, it should fit with enough room to maneuver the rest of the pipe without it hitting the ground nor the bus and no jacking required.

The exhaust-to-turbo mating has a gasket and 3 13mm nut/bolts.  One mount is a stud coming out of the turbo.  Because of the design, at least one of the 13mm needs to be tightened with a wrench instead of a socket.  Next comes the intake system.  Start with the non-charged air pipe from the air cleaner to the turbo.  This is held on with 10mm bolts, and most of the work is from above rather than through the rear hatch.  Next, the charged-air plumbing with the intercooler is most easily installed as a unit.  Slide the turbo-end on first, then set the intercooler and complete the system to the intake last.  The pipe clamps are a combination of slotted-screwdriver and 10mm socket.  The intercooler is held in place with bailing wire (yes, bailing wire) looped between the mounting hole on the intercooler and the open loop in the engine mount attached to the engine.  This allows for the vibration of the entire system to resonate as one.  Route the vacuum to the turbo and snap it into the channels on the plastic tubes.

Lower Left Rear
Shifting back under the bus, repeat the CV joint process for the left side.  Verify what's been done thus far from the new perspective: the turbo plumbing, the air system, the vacuum.  Hook up the bowden tube and the clutch cable to the clutch activation arm.  If you run out of adjustment threads, you need some head-washers (I used 4) between the bowden tube and the mount it slides into.  That mount is held on with 2 13mm bolts.

Lower Middle
Mount the nose of the transaxle.  Plug in the reverse wires for the reverse light switch.  Don't brain yourself on the radiator.  Thread the short hollow tube to connect the gear selector at the front of the transaxle to the long gear shift tube coming from the front of the bus.  Zip-tie the tube into place.  I'm sure that last line will upset some purists (as if the whole project hasn't already), but the original bolt/nut solution falls out; the zip-tie doesn't.

From Above
There's little left now.  Mount the coolant overflow bottle, verifing the top coolant line runs where it's suppoed to.  Plug the sensor into the bottle.  Note the coolant level, and come back and check again if its not spot-on.  Verify the vacuum bulb is set and tight.  Put the fuel filter into it's mount and tighten it down, making sure that the lines run properly.  I have a cheap $1 clear filter in front of the spendy stock filter to extend its life, but it also shows me that fuel is getting that far.  I check that for a fuel level at this point.

All Over
Last, the battery is hooked back up.  Before that, all of the electrical connections, including all sensor plugs should be double checked.  This is where the "do everything you can see" model falls apart.  By doing it one system at a time, you know everything was done.  By working zonally, you don't really know for sure without checking system by system.  At that point, you may as well have just done it that way.

Testing
This is the part everyone wants to jump to: grabbing the keys and giving a test fire.  The first time I tried this time around, I got nothing: I'd failed to hook up the battery.  Once resolved, he started right up.  I applied the clutch and shifted through the gears.  Nice and smooth.  Seatbelt on, and on the road to test.  There was less noise than I remembered.  The gears shifted easily up through 3rd (never got to  4th), and the bus felt peppy.  Overall, it was a great, albeit short, drive.  I declare the bus road-worthy again.  By the way, there wasn't a single drop of oil on the transaxle nor engine after the test drive and cool-down.  Success!

Thanks for following along.  Next time, I look at the ceiling of the bus and/or knocking the dents out of and painting the rear bumper.

Tuesday, August 12, 2008

engine bay / fuel tank bay painted

Just a brief update with this weekend's antics. After completing the de-greasing and cleaning of the engine bay and the fuel tank compartment, I performed rust treatment. The concept of rust converters is pretty much the same, and the price differential really comes down to how pure the contents are. In the end, the rattle can stuff works well for hard to get to spots, and the milky goop works fine for flat brushable areas. Of all the choices, I prefer the Eastwood Rust Encapsulator, but shipping is getting expensive, and I will usually top-coat or otherwise paint whatever I'm treating, so I use the Eastwood in targetted areas. The engine bay and fuel tank compartment weren't. I used the brush-on milky goo that you can get at NAPA. It is easy to locate locally, you can use multiple applications, it doesn't smell and it is paintable after 24 hours. Sweet.

While I was getting the rust converter, I grabbed a couple of cans of plain blue paint. I decided a while back that when the day ever came to do body work on the bus, I'd paint the lower section blue. I suppose any other color would have worked fine too, and there are probably some VW purists out there that are cringing at the thought of changing the color. Sorry, but all Dove-White is just really boring, and looks dirty/crummy pretty easily. Every time I got out of the engine compartment or out from underneath, I'd leave a fresh grease-mark with my gloved hands. That's just one more reminder that white shows everything, just like black always looks dusty. Anyway, I digress. So, I papered off the sound absorbtion and shot the fuel tank compartment and the engine bay with NAPA plain blue paint. Now, when the rest of the body is done, the engine bay will sort-of match. Well, it will match better than grease-marked Dove-White would have.

Once the paint dried, I degreased and cleaned all the wiring and re-fit the looms, including the rear light assemblies. I intend to replace those one day, as they are falling apart, but that cost will have to wait. More on the transaxle drop next time-