32 valve LS2/7 anyone?
Discussion
Hi All,
LS2 and LS7 engines became the new trend for Ultima builders. I wonder what can you guys do with these new 32v heads? 1000hp N/A? High revving engine?
http://www.araoengineering.com/LSX.htm



LS2 and LS7 engines became the new trend for Ultima builders. I wonder what can you guys do with these new 32v heads? 1000hp N/A? High revving engine?
http://www.araoengineering.com/LSX.htm



these heads look amazing! its a shame the company isn't quiet as good. there have been many cases of it taking over a year for people to get their heads from these guys. i think its cos they dont actually sell that many as all the reacers have to stick to 2 vavles. this leads to more developemnt of the 2 valvers and people going with the "treid and tested" route.
it would be really nice to see these on a built LS7 or new warhawk block.
Chris.
it would be really nice to see these on a built LS7 or new warhawk block.
Chris.
Throw them in the nearest skip.
The qualified version.
People have produced 4 valve heads for small & big block chevy's for over 30 years. They have never caught on.
Why? Not necessary. A load of complication for very little gain.
GM had more money to spend developing this LS series of engines that anyone here can imagine. Believe me, if this was the way to go, THEY would have done it.
You'll do well to beat a set of factory LS7 heads or C5R heads for ultimate output.
I'll wager these gimmicky heads will fall by the wayside like all the others.
The qualified version.
People have produced 4 valve heads for small & big block chevy's for over 30 years. They have never caught on.
Why? Not necessary. A load of complication for very little gain.
GM had more money to spend developing this LS series of engines that anyone here can imagine. Believe me, if this was the way to go, THEY would have done it.
You'll do well to beat a set of factory LS7 heads or C5R heads for ultimate output.
I'll wager these gimmicky heads will fall by the wayside like all the others.
Edited by P15TON on Friday 15th June 13:31
PK, can you settle this one for us?
Is the rev limit lower on the Chevy (& other push rod engines) due mainly to ...
Or all of the above???
Is the rev limit lower on the Chevy (& other push rod engines) due mainly to ...
- valve train mass & spring damping limits
- port flow volumes reaching sonic speeds and the airflow choking in the intake system
- mean piston velocity and the stroke length, hence con rod loads...?
- GM's miserly accountants demanding 100K+ mile endurance...
Or all of the above???
[quote=peterpsg]PK, can you settle this one for us?
Is the rev limit lower on the Chevy (& other push rod engines) due mainly to ...
OK, there's a lot going on here, so the answer is ....
IT DEPENDS!
The main reason is reason 1, but this can be got around by using light weight components. With the right parts, 9000 rpm plus can be done (ie Winston Cup cars) & 12000 rpm plus (drag racing eg Comp eliminator, Pro-stock, Top Alcohol)
Reason two Can be got around
Reason three can be got around
Reason four is one of the most relevant , as the 'IT DEPENDS' bit depends on what stops the individual combination you're dealing with. ie, you might have nice high flowing big cross sectional area ports, but you have heavy valves that are the 'bottleneck' in the combination.
The fifth one, not mentioned, is oiling it all effectively at high rpm.
Generally speaking then, as you fix one problem, you find another, and until you've solved them all, you can't get the RPM right up there reliably.
For example, we have an engine that never runs below 6000 rpm, and makes max power at 7800. We use pankl light weight rods & crank, honda 1.888" rod journals, all titanium valve gear etc to get that working. Getting it to survive hour long races was not in the valvetrain, but was in the oiling. We had to cut off the oil to the cam bearings ( needle roller bearings installed) put oil into the block at both the front & rear of the main oil gallery, use the small Honda size journals, tighten the bearing clearances & use 5W / 20 Oil, at a certain temperature range.
That's why saying 'I want a high revving engine' fall's into the talk is cheap department when you know what work it takes to make a high revving engine really work.
Is the rev limit lower on the Chevy (& other push rod engines) due mainly to ...
- valve train mass & spring damping limits
- port flow volumes reaching sonic speeds and the airflow choking in the intake system
- mean piston velocity and the stroke length, hence con rod loads...?
- GM's miserly accountants demanding 100K+ mile endurance...
OK, there's a lot going on here, so the answer is ....
IT DEPENDS!
The main reason is reason 1, but this can be got around by using light weight components. With the right parts, 9000 rpm plus can be done (ie Winston Cup cars) & 12000 rpm plus (drag racing eg Comp eliminator, Pro-stock, Top Alcohol)
Reason two Can be got around
Reason three can be got around
Reason four is one of the most relevant , as the 'IT DEPENDS' bit depends on what stops the individual combination you're dealing with. ie, you might have nice high flowing big cross sectional area ports, but you have heavy valves that are the 'bottleneck' in the combination.
The fifth one, not mentioned, is oiling it all effectively at high rpm.
Generally speaking then, as you fix one problem, you find another, and until you've solved them all, you can't get the RPM right up there reliably.
For example, we have an engine that never runs below 6000 rpm, and makes max power at 7800. We use pankl light weight rods & crank, honda 1.888" rod journals, all titanium valve gear etc to get that working. Getting it to survive hour long races was not in the valvetrain, but was in the oiling. We had to cut off the oil to the cam bearings ( needle roller bearings installed) put oil into the block at both the front & rear of the main oil gallery, use the small Honda size journals, tighten the bearing clearances & use 5W / 20 Oil, at a certain temperature range.
That's why saying 'I want a high revving engine' fall's into the talk is cheap department when you know what work it takes to make a high revving engine really work.
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