How to Calculate Maximum Shear Stress at Outer Surface given Total Turning Moment on Hollow Circular Shaft?
Maximum Shear Stress at Outer Surface given Total Turning Moment on Hollow Circular Shaft calculator uses Maximum Shear Stress on Shaft = (Turning Moment*2*Outer Radius Of Hollow circular Cylinder)/(pi*(Outer Radius Of Hollow circular Cylinder^4-Inner Radius Of Hollow Circular Cylinder^4)) to calculate the Maximum Shear Stress on Shaft, Maximum Shear Stress at Outer Surface given Total Turning Moment on Hollow Circular Shaft formula is defined as a measure of the maximum shear stress experienced at the outer surface of a hollow circular shaft due to the applied torque, which is crucial for assessing material strength and safety. Maximum Shear Stress on Shaft is denoted by 𝜏m symbol.
How to calculate Maximum Shear Stress at Outer Surface given Total Turning Moment on Hollow Circular Shaft using this online calculator? To use this online calculator for Maximum Shear Stress at Outer Surface given Total Turning Moment on Hollow Circular Shaft, enter Turning Moment (T), Outer Radius Of Hollow circular Cylinder (rh) & Inner Radius Of Hollow Circular Cylinder (ri) and hit the calculate button. Here is how the Maximum Shear Stress at Outer Surface given Total Turning Moment on Hollow Circular Shaft calculation can be explained with given input values -> 3.2E-13 = (4*2*5.5)/(pi*(5.5^4-5^4)).