A drive shaft is shown below. The shaft is machined from alloy steel with S, 770...
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A drive shaft is shown below. The shaft is machined from alloy steel with S, 770 MPa and S 1000 MPa. The reliability goal for the endurance limit is 0.99. The pulley (Belt drive) diameter is 250 mm. Assume sharp fillet radii at all shoulders for estimating stress-concentration factors. Using a factor of safety of 2.0, determine the minimum allowable diameter of the shaft based on (a) a static yield analysis using the distortion energy theory and (b) the DE-ASME Elliptic fatigue criteria. (Given: T₁ 1131.8 N, T, 452.8 N, F,-884.4 N, F,-321.9 N, R₂-387.4 N, R-111.1 N. RIN =-438.5 N, R₂=2908 N, mg-8 kg, m, 10 kg.) T S Rev Rin mo Rav Dimensions in mm. A drive shaft is shown below. The shaft is machined from alloy steel with S, 770 MPa and S 1000 MPa. The reliability goal for the endurance limit is 0.99. The pulley (Belt drive) diameter is 250 mm. Assume sharp fillet radii at all shoulders for estimating stress-concentration factors. Using a factor of safety of 2.0, determine the minimum allowable diameter of the shaft based on (a) a static yield analysis using the distortion energy theory and (b) the DE-ASME Elliptic fatigue criteria. (Given: T₁ 1131.8 N, T, 452.8 N, F,-884.4 N, F,-321.9 N, R₂-387.4 N, R-111.1 N. RIN =-438.5 N, R₂=2908 N, mg-8 kg, m, 10 kg.) T S Rev Rin mo Rav Dimensions in mm. A drive shaft is shown below. The shaft is machined from alloy steel with S, 770 MPa and S 1000 MPa. The reliability goal for the endurance limit is 0.99. The pulley (Belt drive) diameter is 250 mm. Assume sharp fillet radii at all shoulders for estimating stress-concentration factors. Using a factor of safety of 2.0, determine the minimum allowable diameter of the shaft based on (a) a static yield analysis using the distortion energy theory and (b) the DE-ASME Elliptic fatigue criteria. (Given: T₁ 1131.8 N, T, 452.8 N, F,-884.4 N, F,-321.9 N, R₂-387.4 N, R-111.1 N. RIN =-438.5 N, R₂=2908 N, mg-8 kg, m, 10 kg.) T S Rev Rin mo Rav Dimensions in mm. A drive shaft is shown below. The shaft is machined from alloy steel with S, 770 MPa and S 1000 MPa. The reliability goal for the endurance limit is 0.99. The pulley (Belt drive) diameter is 250 mm. Assume sharp fillet radii at all shoulders for estimating stress-concentration factors. Using a factor of safety of 2.0, determine the minimum allowable diameter of the shaft based on (a) a static yield analysis using the distortion energy theory and (b) the DE-ASME Elliptic fatigue criteria. (Given: T₁ 1131.8 N, T, 452.8 N, F,-884.4 N, F,-321.9 N, R₂-387.4 N, R-111.1 N. RIN =-438.5 N, R₂=2908 N, mg-8 kg, m, 10 kg.) T S Rev Rin mo Rav Dimensions in mm.
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Related Book For
Vector Mechanics for Engineers Statics and Dynamics
ISBN: 978-0073212227
8th Edition
Authors: Ferdinand Beer, E. Russell Johnston, Jr., Elliot Eisenberg, William Clausen, David Mazurek, Phillip Cornwell
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