How to Calculate Bending stress at central plane of crank web of centre crankshaft at TDC position?
Bending stress at central plane of crank web of centre crankshaft at TDC position calculator uses Bending Stress in Crankweb = (6*Vertical Reaction at Bearing 1*(Centre Crankshaft Bearing1 Gap from CrankPinCentre-Length of Crank Pin/2-Thickness of Crank Web/2))/(Width of Crank Web*Thickness of Crank Web^2) to calculate the Bending Stress in Crankweb, Bending stress at central plane of crank web of centre crankshaft at TDC position is the amount of bending stress generated into the central plane of the crank web, designed for when the crank is at the top dead center position and subjected to maximum bending moment and no torsional moment. Bending Stress in Crankweb is denoted by σw symbol.
How to calculate Bending stress at central plane of crank web of centre crankshaft at TDC position using this online calculator? To use this online calculator for Bending stress at central plane of crank web of centre crankshaft at TDC position, enter Vertical Reaction at Bearing 1 (Rv1), Centre Crankshaft Bearing1 Gap from CrankPinCentre (b1), Length of Crank Pin (lc), Thickness of Crank Web (t) & Width of Crank Web (w) and hit the calculate button. Here is how the Bending stress at central plane of crank web of centre crankshaft at TDC position calculation can be explained with given input values -> 3E-5 = (6*10725*(0.09-0.043/2-0.04/2))/(0.065*0.04^2).