wfo9
New member
I personally didnt use that tool. I used AJ aka Fotornr lol
So how did you torque it to spec going back on. My guess is you just got it close enough with the impact.. which is probably fine....
I personally didnt use that tool. I used AJ aka Fotornr lol
Same about the indecisiveness. I plan to make mexico trips a lot more often, and a SC would be a poor choice for countries of lower grade octane.
Pulley will get messed up.....and the torque is simply way too high. They are locked on with red threadlocker and way over 200 ft/lbs. You need at least 800 to break it loose.
Hm. Worked fine on my 3rd gen. Is the 5th gen torqued down that much more?
The next few steps in the install involve stripping off the intake system. Normally you just remove the plastic intake parts exposing the aluminum intake ports (which the blower charged air cooler box bolts directly to).. However, I found quite a bit of oily grime down in my intake runners/head ports and decided to pull that and give it a good cleaning also. It was not difficult to pull, but not fun job since some gas has to spill out of the fuel rails... To clarify, that step is not part of the normal install and it added quite a bit of time. I just had trouble not cleaning it up while I was in there.
The oil comes from the PCV and it is really not a big deal, but does kill octane and I wanted to start fresh and clean. My truck also spends a lot of time in very dusty conditions offroad, so it was extra nasty. I hope the snorkel will help with the dust ingestion. My guess is most would look bad in there...
I installed an oil catch can on my 4th gen and was surprised on how much oil it “caught”
Most places I read that N/A wouldn’t benefit from it. I guess the proof is in the pudding.
I have a Moroso catch cam on my supercharged tundra. It’s a must do imho.
As far as the bypass valve goes - is it default spring open or spring closed? The reason I'm curious is relates to the situation where you do find yourself with only low octane fuel. Could you do something as simple as put a ball valve inline on the vacuum tube to effectively "turn off" the supercharger while you run low octane fuel? I was assuming it's default closed so high manifold vacuum means it's in bypass mode and low manifold vacuum results in closed butterfly - high boost. Would that harm anything? Is the ECU tune capable of handling that unexpected scenario? In the alternative could you put some other option like a simple spacer block that holds the butterfly open to accomplish the same outcome? Might make an easy, simple, and reliable option for the circumstance where you want to bypass the boost for a temporary time.
I'm probably not the target buyer - but I appreciate the build thread on this. I can't help but be intrigued by the idea of the additional power.
As far as the bypass valve goes - is it default spring open or spring closed? The reason I'm curious is relates to the situation where you do find yourself with only low octane fuel. Could you do something as simple as put a ball valve inline on the vacuum tube to effectively "turn off" the supercharger while you run low octane fuel? I was assuming it's default closed so high manifold vacuum means it's in bypass mode and low manifold vacuum results in closed butterfly - high boost. Would that harm anything? Is the ECU tune capable of handling that unexpected scenario? In the alternative could you put some other option like a simple spacer block that holds the butterfly open to accomplish the same outcome? Might make an easy, simple, and reliable option for the circumstance where you want to bypass the boost for a temporary time.
I'm probably not the target buyer - but I appreciate the build thread on this. I can't help but be intrigued by the idea of the additional power.
It's something I had planned to test out... I'm pretty sure the default position is open and positive pressure will close it....but I have asked the contacts I have at Magnuson for clarification. It could sit in the middle and use vacuum to open all the way up....
From my past experience... the bypass is typically not enough to completely eliminate boost... although you can bleed off most, it will still make a few psi under WOT... but I'm not sure in this size... all my previous setups were capable of at least 600+ hp.
Remember the throttle blade and RPM are still very much in play... in terms of airflow.. You have to have the TB open to give the compressor enough air to make boost. But once it is fully open and RPMs are up... the bypass can't typically keep up.
On the tune side.. The MAF should still be very much in charge.. My guess is the majority of what they tweak is timing and some base targets. Total guess though... these engines may very well run in a closed loop mode at all times with the wide bands being available...
I plan to capture data once I get everything up and running and things should become much more clear then.
If that air has already been accounted for by the ECU you can't just bleed it off...
I'm really trying not to be envious. I think I'll head to the shop where my current build is and touch the powerplant for a while to try and stop my power envy... I'm loving this thread.