Difference between revisions of "Drivetrain"
SpookySimon (talk | contribs) m (→Driveshafts: discussion) |
SpookySimon (talk | contribs) (→Shifting: formatting and outlining) |
||
| Line 20: | Line 20: | ||
These allow for an infinite combination of engine to wheel speeds. The benefits of this include allowing the engine to be run at peak power, peak efficiency, or peak torque at any vehicle speeds. The downsides are lower efficiency and a lower peak torque transfer. | These allow for an infinite combination of engine to wheel speeds. The benefits of this include allowing the engine to be run at peak power, peak efficiency, or peak torque at any vehicle speeds. The downsides are lower efficiency and a lower peak torque transfer. | ||
==Shifting== | ==Shifting== | ||
| + | ===Actuation=== | ||
| + | ====Mechanical==== | ||
"stick" | "stick" | ||
| + | ====Electronic==== | ||
| + | solenoid | ||
| + | ====Pneumatic==== | ||
| + | pneumatic solenoid<br /> | ||
| + | Which gas to use<br /> | ||
| + | * N2 | ||
| + | * compressed air | ||
| + | * CO2 | ||
| + | Valving | ||
| + | ===Automatic Shifting=== | ||
| − | + | not going to touch on driver controls (paddles or whatever) | |
| − | |||
| − | |||
| − | |||
| − | |||
| − | |||
| − | |||
| − | |||
| − | |||
=Final Drive= | =Final Drive= | ||
======Chain Drive====== | ======Chain Drive====== | ||
Revision as of 17:19, 18 May 2020
A system is needed to transfer mechanical energy from the engine to the ground (are we including tires here? I always think a drivetrain discussion without talking about tires isnt complete -simon). The train takes the rotational mechanical energy from the engine and transfers it to the wheels.
Gearing
Gearing determines crawl speed, top speed and torque availability at any vehicle speed in between.
Need to also be mindful of how much tractive for you will be generating in any given gear. This plays with tire selection and helps determine what happens when the driver firewalls the go pedal.
This also plays into forces on the differential and driveline components.
Motorcycle Gearboxes
Motorcycle engines have internal sequential gearboxes. This is means that the gearing is located inside the crankcase. The oiling is managed by the engine's oil system. Typically these are 5 (YZ450) or 6 speeds (CBR600RR).
Clutch
Most motorcycles use a wet plate clutch pack whereas most cars use a single dry plate clutch. Wet plate clutch packs are immersed in oil (wet) and use multiple friction plates (pack).
The motorcycle clutch uses a set of linear springs or a diaphram (less common). When engaged, the springs squeeze a series of clutch plates tight enough to restrict relative rotation. This mechanically links the engine output to the crankshaft. When disengaged, the plates are under no pressure and have the ability to rotate freely relative to one another. This allows the engine to spin without outputting a torque.
[we should get a simple diagram of how the torque flows through the engine here]
Talk about slipper clutches
Continuously Variable Transmissions
These allow for an infinite combination of engine to wheel speeds. The benefits of this include allowing the engine to be run at peak power, peak efficiency, or peak torque at any vehicle speeds. The downsides are lower efficiency and a lower peak torque transfer.
Shifting
Actuation
Mechanical
"stick"
Electronic
solenoid
Pneumatic
pneumatic solenoid
Which gas to use
- N2
- compressed air
- CO2
Valving
Automatic Shifting
not going to touch on driver controls (paddles or whatever)
Final Drive
Chain Drive
Belt Drive
Driveshaft
Gear Drive
CVT
Direct Drive
Differentials
- Main page: Differential
Driveshafts
- CV Joints
- tripods
- flex plates
- Half-shafts
- material
- lateral play
- do we wanna talk about splines? - maybe just mention how splines should outside the shaft diameter. also, circlip grooves/failures
- splines should what outside shaft diameter? think a word got skipped in there
- Torque Steer baby - probably make another page for this for details on concept and derivation
Validation
In vehicle simulations, including driveline affects become important the more detailed the vehicle model gets. The brake torque and horsepower are not what is seen by the tire's contact patch. A physical measurement of driveline forces should be undertaken at some point. It is not likely needed to do this every year however it should be done at least once to correlate model to reality.
This is typically a rotating measurement and typically involves the use of strain gauges. Wireless amplifiers are often needed. Several companies make them available such as Texense, Izze Racing and Lord Microstrain.
--Can talk more about the measurement in the electronics section. Maybe keep this higher level? You could right a whole section just on measurement techniques, uncertainty analysis, error influence coefficients.I think it is worth calling out a couple companies so teams at least have some direction. In the case of wireless strain gauge amps you can go down a real rabbit hole and not find what you need. As far as the gauge install itself, I think that is a lot easier to self research.