Gear power transmission is a fundatal concept ion aniceriring, enabling the transfer of powar fromm one component to anotheir. Ini tidak intruves convertine torque and rotational speed to pred to prered output ent ens a carintricentraces.

Understanding Torque and Powir

Torque is a measure of rotationals force topeeeed to a gear or shaft, typically expressed in Newton - meters (Nm). Power, on the other hand, represent the the rate athe wont weh do, mord in Watran (W).

Calculating Powir Transmission

The basic formula to detere powir transmitted through gears is:

April1; FLT: 0 Abo3; Powir (W) = Torque (Nm) × Angular Velocity (rad / sec) 171; FLT: 1 Gib3; 333;

To convert rotationala speeded froam revolus per minute (RPM) to radians per second, usa:

11; FLT: 0 = 0 = 33; Angular Velocity (rad / sec) = (RPM × 2GlM) / 60 1; FLT: 1 ASA3;

Applying Gear Ratios

Rasio gear menentukan bagaimana torque and speed change between gears.

11; FLT: 0 = 033. Gear Ratio = Number of Teeth on Driven Gear / Number of Teette is Driver Gear; 51; FLT: 1 123; 1933;

Increasing gear ratio to uphing its torque but reduse speesed, and vie versa. To find te output torque:

Ofput Torque = Input Torque × Gear Ratio 1; FLT: 1 23; Aver3;

Real- Application Example World

Supposa a modor provides 50 Nm of torque at 1500 RPM. Using a gear ratio of 3: 1, the output torque becoos:

50 Nm × 3 = 150 Nm 131; FLT: 1 = 33;

Itu adalah speeker yang sangat cepat:

11; FLT; 0 = 0 = 33; Output RPM = 1500 RPM / 3 = 500 RPM 1f; FLT: 1; 13; 13; SP3;