I have some questions about this when you have the time:
First, why not truss underneath? Do the axle housings not bend upward?
Second, I read about the warping issues - do you think that's exacerbated by the continuous bead? I realize you welded 2" and skipped around, letting it cool, but I wonder if the truss had been constructed of cut and bent plate with cutouts along the join (so not in continuous contact with the axle, welding-wise) if that might not have mitigated the drawing?
I suppose welding on a build plate that located the pumkin face and both bearing mounts would be the best approach, but I'm curious as to whether simply changing the truss design could help as well.
(I'm prepping an axle housing for my truck, and if these are prone to bending, I want to reinforce it if I can)
Toyota housings are paper thin. Any kind of heat on them warps them. DIRTCO took every precaution he could (minus burying the housing in a sand pit after welding the 2" beads). His truss and welding were very thought out, it's just the crappy thin stamped sheetmetal housings they put under our trucks. I've bent and cracked 2 rear housings and a front housing myself. They are very weak.
I have some questions about this when you have the time:
First, why not truss underneath? Do the axle housings not bend upward?
Second, I read about the warping issues - do you think that's exacerbated by the continuous bead? I realize you welded 2" and skipped around, letting it cool, but I wonder if the truss had been constructed of cut and bent plate with cutouts along the join (so not in continuous contact with the axle, welding-wise) if that might not have mitigated the drawing?
I suppose welding on a build plate that located the pumkin face and both bearing mounts would be the best approach, but I'm curious as to whether simply changing the truss design could help as well.
(I'm prepping an axle housing for my truck, and if these are prone to bending, I want to reinforce it if I can)
Couldn't agree more..
They are sort of resilient if you slightly tweak them, though. You can still get away with driving them without too much vibrations cus of the semi-float design. If you bend one pretty good though, you're SOL.
In Dirtco's situation, he has full float conversion which is MUCH TIGHTER tolerances. Even the slightest tweak in the housing can result in catastrophe.
To do it right....you need to preload the housing in a jig. How much is the harder question to answer, but the one I just did only needed 1/8" of preload in the opposite direction....AND....one other thing that makes a big difference is a design that ensures you weld 180º from each side....so in other words, if you have 3 1/8" tubes....you need a truss that fits on the top and bottom of the tubes 180º apart.
OK, so preload, OR symmetrical (welding) trusses.
How did you determine that the one you just did needed 1/8" of preload?
Both. You need to preload AND use a symmetrical truss.
I researched online....and Ford 9" builders were preloading the housings 1/4". I followed that guideline since the housings are roughly similar in design and size....but apparently the Toyota housing is a little more robust in that when I took the "after" measurement, I was pulled forward just under 1/8"....therefore, about 1/8" of preload would have been sufficient....at least on a Tundra rear axle.
wait, which direction do you preload if you are welding on opposing sides?
I like the way you've mounted the hilift. I am also not a fan of roof racks and prefer to keep all of my weight as low as possible. Although my 48" hilift currently lives diagonally across my trunk, along with a full length shovel which really decreases the usability of my storage space. I may look at mounting them directly to the roofrack rails somehow.







Dang, I need one of them. Where did you pick that up from?
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Oh snap! I found one on Amazon. Thanks for that sweet link though!
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