RPM
Author
Discussion

Jonboy_t

Original Poster:

5,038 posts

213 months

Sunday 4th July 2010
quotequote all
May be a stupid question, I'm no mechanic so excuse me if it is!

Why do normal, everyday cars only rev to between 6-8 thousand revs? Most mid-sized motorbikes have 500-750cc engines, so are about half/third the size of an everyday car, yet rev to (in some cases) over twice a car and get much better acceleration out of each gear. Just watching Fifth Gear and there was an old Merc racer on there that had a 2.4 v8 and rev'd to 19,000 rpm.

I know it's not always necessary to rev that high on a road car, but is it feasibly possible to do so when designing a sports car? And if so, why don't manufacturers do it?

maniac0796

1,292 posts

196 months

Sunday 4th July 2010
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It's a big list of things, but the main one is reliability. I'm not sure, but over a lifetime, a car probably does many more miles then a motorbike. If you were able to rev up to 10 grand or 12 grand every time you pulled away, you'd wear out bearings quicker, and the bores. An F1 cars engine which revs to 18k only lasts for a couple of races.

There's some other things aswell, to stop the engine running lean at high revs, which will overheat it, you'd either have to have more fuel being pumped in, which at low revs would make the engine horrible and lumpy, or run if on an open loop ECU which would be useless for fuel economy at low revs. Valves can't close fast enough at those speeds. I believe it's ducati who have cams which close the valve aswell as open it. The stroke on most engines is too long, so the piston has to move the same distance, but much faster.

If you look at the pistons and the bores on a 500cc engine compared to a 2000cc, or even a 1000cc engine, the size difference is huge.




DanGPR

991 posts

201 months

Sunday 4th July 2010
quotequote all
Bike engines only rev high because they HAVE to

Small engine = Low torque

Power = Torque x RPM

So, a 150bhp 1000cc bike and a 150bhp 2000cc car have massively different characteristics.

A car engine, designed to rev to 20,000 rpm would be a pig to live with every day, as it would have very little power low down in the rev range and require thrashing very severely to make any kind of progress. Imagine a VTEC engine, but having to rev it twice as high!

davepoth

29,395 posts

229 months

Sunday 4th July 2010
quotequote all
'tis all down to piston force. Steel (which they make crankshafts out of) has a certain strength, and it's the strength of the crank that's the limitation. Imagine a crankshaft that has a stroke of 50mm on it. That means that from the top of the compression stroke to the bottom of the inlet stroke the piston has to move 50mm for each explosion. There is one explosion per rev, so the piston has to move down 50mm 6,000 times per minute. so each explosion makes the piston move 50mm in 1/100 of a second, at an average speed of about 675mph.

Double the stroke, and the piston speed doubles, as does the force. So at 6,000 rpm on
the engine with the bigger stroke the crank will probably snap.

Motorbike engines have very small pistons, both in terms of stroke and bore, which means that normal steel can be used to make a high revving crank.

On racecar engines cranks are made out of much stronger metal.

anonymous-user

84 months

Sunday 4th July 2010
quotequote all
Jonboy_t said:
I know it's not always necessary to rev that high on a road car, but is it feasibly possible to do so when designing a sports car? And if so, why don't manufacturers do it?
Cost, emmissions, mass and power delivery.


bazking69

8,620 posts

220 months

Sunday 4th July 2010
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Longetivity and the fact that the general population don't want or need a car that revs past even 5000RPM.

petrolveins

1,783 posts

203 months

Sunday 4th July 2010
quotequote all
I asked the same question of a McLaren F1 engineer, and his simple answer was an F1 engine revving much higher is only expected to last for maybe two races, which of course would be useless in a road car. Road car engines are designed for durability, not a short life of very high performance like a race car engine.

Welshbeef

49,633 posts

228 months

Sunday 4th July 2010
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Even if it was possible to make a durable car engine doing 20k revs the next question would be what should the gear ratios be? In bikes 60-70mph in 1st is very common and 2nd isn't much higher nor third

So would you want a car that would do m way speeds in first?

DanGPR

991 posts

201 months

Sunday 4th July 2010
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GSX-R 1000 does 107 mph in first biggrin

That's mainly due to the fact it would loop pretty easy if it was geared any lower though.

In a car you could get away with gearing alot lower, say a top speed of 130mph instead of 190+

Welshbeef

49,633 posts

228 months

Sunday 4th July 2010
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What revs does a GSX-R 1000 do in highest gear at 70mph and what is max revs and in top gear would it physically pull the full revs ie limiter in 6th or 7th

DanGPR

991 posts

201 months

Sunday 4th July 2010
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Rev Limit is 14,000 rpm.
Bike is limited from the factory to 186mph.

70 in 6th is going to be around 5000rpm.

FrostyCab

85 posts

198 months

Sunday 4th July 2010
quotequote all
davepoth said:
'tis all down to piston force. Steel (which they make crankshafts out of) has a certain strength, and it's the strength of the crank that's the limitation. Imagine a crankshaft that has a stroke of 50mm on it. That means that from the top of the compression stroke to the bottom of the inlet stroke the piston has to move 50mm for each explosion. There is one explosion per rev, so the piston has to move down 50mm 6,000 times per minute. so each explosion makes the piston move 50mm in 1/100 of a second, at an average speed of about 675mph.

Double the stroke, and the piston speed doubles, as does the force. So at 6,000 rpm on
the engine with the bigger stroke the crank will probably snap.

Motorbike engines have very small pistons, both in terms of stroke and bore, which means that normal steel can be used to make a high revving crank.

On racecar engines cranks are made out of much stronger metal.
Exactly as he said.

Basic rule of thumb for an everyday engine, the bigger the CC the lower the maximum RPM. Best thing to compare is the slow burble of a large capacity V8 to the deafening buzz of a tiny two stroke (say model plane for instance)

You can increase the maximum RPM an engine can do by fitting stronger forged conrods, pistons, head bolts etc. but its not worth it for a basic mass produced production engine.

Ozzie Osmond

21,189 posts

276 months

Sunday 4th July 2010
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Metallurgy
Manufacturing tolerances
Cost

R1chardP

89 posts

196 months

Monday 5th July 2010
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petrolveins said:
I asked the same question of a McLaren F1 engineer, and his simple answer was an F1 engine revving much higher is only expected to last for maybe two races, which of course would be useless in a road car. Road car engines are designed for durability, not a short life of very high performance like a race car engine.
I think it's worth mentioning that one of the reasons an F1 engine can rev so highly is that they are massively oversquare (bore is often more than twice the stroke) which doesn't make for very good efficiency. In comparison, most "normal" car engines are square (bore = stroke) or pretty near to.

Thinking back a bit I think it was the S2000 (or some similar Jap roadster) that has a very high mean piston speed which is actually greater than some of the sports bikes.

As others have said, it's not particularly desireable to have a very highly revving road engine because wear on everything (bearings, piston rings, valvegear etc...) would be much greater and most drivers don't want to be cruising on the motorway with the car screaming its arse off.