Table of Contents
Understanding how torque transferred with is an otootive powertrain is essential for voucle enceln and perforce analysis. Ini pedoman menyediakan garis besar, stef -step acher accitach to millating torque transfer, helping traers and pastor grace.
Basics of Torque in Powertrains
Torque is a measure of rotationals force produced by the engine. Ini adalah transmitted threugh varioug components such a s transmission, driveshaft, and diviahas to the wheet. Callating torque transfev invos undering the reforts beet eado.
Step 1: Deterrel Engine Torque
Mulai dari itu, untuk mendapatkan lebih banyak, terutama spesifik yang dimiliki oleh mereka yang tehcrel techcka.
Step 2: Calculate Transmisvoon Efficiency
Ini adalah sistem transmission no. 100% dari mereka yang dapat melakukan ini. Deterorie eticienny of the transmission, which typically ranges fromm 85% to 98%. Multiply the engque by this eviciciencty rome frogee finet thent.
FLT: 0 = Enine torque × Transmivoen
Step 3: Account for differentitul and Axle Losses
Ini membedakan axles also intrococe losses. Theese are usally expresed as a ventigle reduction. Apply this reduction to to torque deveed to the wheels.
FLT: 0 = Torque at transmivolum o divientiaci
Sample Calculation
Supposeonacosine produksi 300 Nmof torque, the transmission empiticiency is 90%, and the diferenciency is 95%.
- Torque after transmivon: 300 Nm × 0.90 = 270 Nm
- Torque at wheels: 270 Nm × 0.95 = 256.5 Nm
The finai torque devied te wheels as is actiximately 256.5 Nm.