Sunday, May 10, 2015

Someday you will die somehow and something's gonna steal your carbon!

The rumors are true, I've joined the big leagues. I've improved my fabrication facilities from third world to second world. 

A few months back my auto-darkening welding mask passed away. At that point I used my other welding mask, which was a fixed shade mask. After some hard use the headband on that mask also broke, so I took the opportunity to upgrade to a quality mask. Because I'm a Miller welding equipment loyalist, I bought a variable shade, auto-darkening mask. This offers the benefit of having the ability to use both hands to position the welding gun and parts with my mask down, as well as adjusting the darkness of the lens to compensate for varying arc brightness.

A young Darth Vader experiments with SnapChat
As some of you may know, for the past two years, my primary work bench haas been a wooden kitchen chair. It's served me well and brought me a great deal of mockery from my roommate. Not only did Vaughn talk bad about my workbench, he would belittle my garbage bin which began life as a home depot shopping cart. I guess I gave into peer pressure, because last week I finally broke down and built a real work bench. Using a circular saw with a dull blade and leftover lumber that Vaughn dragged home, I took about two hours and screwed together a 12 foot workbench.

My loyal workbench of two years




That's right, not only did I upgrade from a Namibia-grade workbench to Ukraine-grade, I went to China's finest, Harbor Freight, and bought a vise. I've moved up in the world. I'm not really sure what took me so long. I probably should have done it about two years ago, but as they say, better late than eaten by a bear!

I don't remember if I posted my last attempt at a fuels rail but long story short, it was a fantastic failure. When fitting the bungs to the rail, the gaps were large and several of the bung angles were not right. When I welded the bungs to the rail, the inside diameter bubbled so that the fuel injector o-rings would never seal. That's not a good situation for vehciles that you would like to not be on fire.

I ordered all the materials again and started over, because if it's worth doing, it's wort doing twice or something like that. 

Bungs, for optimum bung-holes. Heh. Bungholes.
Fuel rail stock

Most fuel rails are relatively easy to make, because most fuel injectors are positioned perpendicular to the axis of the engine. As you can see in the photos, my fuel injectors are not. In fact, no two of my injectors share a common angle, making this rail construction about as logical as a tax form translated into Japanese and then back to English using google translate. If you've never tried this type of translation, you haven't lived. But really, it's amazing and should be considered a mandatory experience for graduating the tenth grade. Stop what you are doing right now, and try it. Use it to write Christmas cards to your in-laws, or to write a sick note for your kid who is missing school because they barfed up last night's lasagna. Seriously, who knew that kid could contain that much vomit? She's thirty-eight pounds soaking wet, for crying out loud!


In order to get the fuel rail bung angles to match the manifold bung angles, I made some "dummy injectors" that would insert into the manifold injector bungs and protrude straight out from the manifold. This would allow me to fit the rail injector bungs to the rail and achieve a minimal gap for better welds.

Dummy injectors made of brass and electrical tape
Dummy injectors installed into manifold injector bungs
Rail injector bungs slid onto dummy injectors
Rail with standoffs bolted in place
Holding rail and standoffs in place for welding
Fitted and ready to weld
Tacked in place
This time around I decided to let someone who welds for a living weld up my fuel rail. I just tacked it in place and took it to my bearded friend Ben, who then delivered the rail to his coworker. After Ben's coworker made snide comments about my tack welds he welded the rail and I paid him far too much.

Welded fuel rail
Next I turned to the fuel system. Some time last year I made a sump for my fuel tank. After looking at it for nearly a year, I decided that the sump hung too low for comfort and that I would like to shorten it. Out came the DeWalt grinder and I got to work. 

Original sump depth


New sump floor and inlet and outlet bungs
Stitch welded in place
Lower profile sump
I had been putting off the sump modification for months because despite the fact that I seem to do every job twice, I don't actually like to. With that out of the way, I could get to work on fabricating fuel lines. I think the fuel system is one of those systems like the endocrine system that you forget about and fail to realize that it's not working until HEY I'M FRIKKIN SEVEN FEET TALL. Fuel systems often get overlooked when you are modifying a modern car, but when you are building a car essentially from scratch you realize just how involved (and ridiculously expensive) a fuel system is. 

I chose to use a Bosch 044 fuel pump since it has a flow rate of about 300 liters per hour and is relatively unaffected by high fuel pressures, which is an excellent attribute for heavily turbocharged engines.

Most of the parts for a fuel system
Bosch 044 fuel pump with mounting brackets
Fuel pump mounting reinforcements welded to the floorpan under the rear seat
Bosch 044 mounting location on the Falcon

Fabricating fuel lines turned out to be far more difficult than I had anticipated. My flex lines were made from Fragola 8000 series hoses and fittings. While the -8 assemblies I installed prior to the pump were fairly easy to assemble, the -6 assemblies were near impossible. Consider this to be the definitive Fragola push-lock 8000 series -6 assembly how-to. 

Fragola recommends that you heat the hoses with a heat gun or by boiling the hose, after which you lube the fitting and press it into the hose. This is a recommendation is like honey-boo-boo's entire family. It doesn't work. At all. Forget about doing it this way because Fragola has lied to you. There are some other brands of push-lock hose that may work this way, and as I mentioned earlier, the -8 hoses work this way, but don't even waste your time if it's a Fragola -6, you are going to have to make your own tools or buy them if you can find them, though I only know of a tool for installing straight fittings. If you have 90 or 180 degree fittings you are out of luck for buying tools. I'll show how I made mine below.

Instead of paying $72 for the Oetiker hose clamp crimpers I went to China's finest, Harbor Freight, for some $2.95 pliers and with a little masaging from the DeWalt, I was making satisfactory crimps.

I'd give ya tree-fitty for this crimper
Acceptable crimps
After spending half a Saturday attempting to force a -6 fitting into a -6 hose, it was time to quit fooling around and "get a bigger hammer". A quick trip to Home Depot (I generally make three of those on a good Saturday) yielded an assortment of metal jiblets and a C-clamp. Once again, the DeWalt angle grinder came out to play.

The problem child
Metal jiblets

In the pictured above you can see that I stacked two 5/8" nuts on top of each other, and then split them along the axis. I then cut the lower part of the C-clamp off and welded half of the nut assembly in its place, and welded a -6 male fitting to the foot of the clamp screw. The hose is then laid in the welded on nut portion of the clamp and the other half is placed on the other side of the hose. The nut halves are squeezed together in the vise and the fitting which is attached to the male fitting on the clamp screw can then be pressed into the hose by tightening the clamp screw.

For 90 and 180 degree fittings, the same tool is duplicated except in this case, a different attachment is welded to the foot of the clamp screw. This attachment applies force to a lip or shoulder on the fitting in order to insert the fitting into the hose.







With the proper tools, most of which I had to make on my own, I could plumb the remainder of the fuel system. Keeping my goal of easy serviceability in mind, I also built several fuel bulkhead fittings which were welded to the unibody structure to ensure easy installation and retention of fuel lines

Main fuel line bulkhead for feed and return
Main bulkhead istalled
Fuel pressure regulator and flex lines installed

At present the fuel system is finished with the exception of  cleaning and tightening the fuel lines and inserting a pipe plug into one end of the fuel rail. As soon as I wire the chassis and engine and complete a quarter million other small tasks, Grace will wake from her twenty four year slumber.


Bonus image for reaching the end of the post






























Bonus image #2 for the faithful scrollers

Monday, April 27, 2015

She belongs to her mother and the State of Ohio

When I was in college, the turbo Ranger was my daily driver. I use that term loosely because all too often I found myself taking a bike to work for three weeks at a time while trying put a new engine in, or figure out why there was a trail of gasoline behind me when I drove, or why I kept frying fuel pumps, or was waiting for a new ECU to show up after the previous one had shorted out, or was installing yet another transmission. Not that any of those things ever happened... but they all did. And that's not even the short list of problems I had. 

One time while discussing this problem with my buddy Jackson, he said "It's like this, Davis. Your truck is like a body builder all pumped up on 'roids. The joints and bone structures just can't take that kind of stress!" He was absolutely right. The Ranger had 88 HP when new (and probably about 68 HP by the time I got it. At one point during college, I was pushing about 28 PSI through the intake and probably making four times as much power as stock. So just like a 'roid raging AHHHNUHHLD my truck was tearing itself apart at the seams because of it's own strength.

GO NOW! GET TO THE CHOPPPAH!
For this build I've realized some areas that were sorely lacking on other builds. A few of the core values for this build are ease of service (Looking at you, 2008 BYU Formula Car ), handling (the Ranger), durability and ease of use (both of the aforementioned vehicles). You may have noticed that many of the parts I've built and selected were selected to meet those targets. The parts in this post are no different. They are in a way, a stronger bone structure for the moody, lactating, bulging little engine under the hood.

In the Ranger, to hold the torque the engine was making I had to use a six puck ceramic clutch disc like the one below, coupled with a Centerforce Stg 2 pressure plate. It held but it approached the practical limitations of that clutch size and made for unpleasant city driving. A few years ago I injured my foot and it would not heal until I stopped using that clutch for a few weeks. I knew for the Falcon I had to find another way.
The stock Ford 2.3 clutch is either 8.875" or 9.25" diameter (depending on the year) while the 5.0 V8 clutch is 10.5". The larger clutch allows a lighter pressure plate, and subsequently lighter pedal feel with the same torque capacity. Canfield Engineering makes an adapter plate which I've discussed in a previous post, and Stinger Performance sells an aluminum 5.0 flywheel, drilled for the 2.3 pattern. With those parts and a 5.0 bellhousing, I could then use a 10.5" Ford Motorsport King Cobra clutch kit. It is supposed to hold in excess of 350 lb-ft with a stock pedal feel.

Spec flywheel, King Cobra clutch
Canfield adapter plate
Cluch and Flywheel looking majestic in the evening sun
Once I had bolted up the flywheel and clutch, I needed to re-install the transmission. It was easy enough to get out, I just loosened some bolts and let the transmission fall on my face. Putting it back in was a bit tougher. Luckily the kid who drives an El Camino and has a name (I assume) showed up. The kid with the name's dad rents some space behind my house (the space where backyard Steve used to live, for the long time readers who remember BYS) so he is constantly going in and out of the back yard. Anyway, I grabbed the kid with the name to help me put the transmission in and bolted it back up.

Now that the flywheel, clutch and clutch fork were in place I could finalize my clutch slave cylinder bracket. I had previously made a bracket which I felt was pushing the slave cylinder too far into the driver's footwell area. This was an issue because I would have to shape the footwell sheet metal around it and it move the accelerator pedal too close to the brake pedal. After a little angle grinder magic, the bracket was the right shape.





It's taken me far too long to finish this post, so let us xhave celebration dance comrade!


Stay tuned, I've been working hard and will be writing about it in the coming week.