Induction motor torque slip characteristics
Since we know the motor running torque is T = K1 * φ * sE2 * R2/( R2² + X2²) Where φ - flux per status pole I₂ - rotor current E2 rotor emf per phase. So if S = 0 then T = 0 Let's start from right hand side of the curve from point 0. Let's say, motor is running near to synchronous speed. The term sX2 approximately equals to zero negligible. Therefore, T = K1 * s * φ * E2 /R2 Assuming stator flux per pole, rotor EMF per phase, rotor resistance per phase is constant. T ⇒ s So for low value of sleep torque slip service straight line. As the load increases sleep increases. As the load further increases it touches the maximum torque point when S = R2/X2 called pull- out torque or breakdown torque. Any further increase is in load that is slip increases R2 becomes negligible. So, T ⇒ 1/s Hence after pull out torque or breakdown torque the curve will be rectangular hyperbola. Hence we can see that any further increases in load motor slow down and eventually stopped. If w...