Q5 The figure shows a shaft carrying three gears that rotates at 1150 rpm. Gear A delivers power to a mating gear that drives a mixer. Gear C delivers power to a different mating gear that drives a circular saw. All power comes into the shaft through gear B. Considering only torsion, compute the shearing stress in each part of the shaft. Consider stress concentrations, Material 1144 OQT 1300 GearA=10kw,Gear C=15kw. Ø20.0 A Ø30.0 Retaining ring 3x Ø40.0 Ø28.0 Groove B Ø50.0 Ø30.0 Bearing Ø20.0 C -Ø 15.0
Q5 The figure shows a shaft carrying three gears that rotates at 1150 rpm. Gear A delivers power to a mating gear that drives a mixer. Gear C delivers power to a different mating gear that drives a circular saw. All power comes into the shaft through gear B. Considering only torsion, compute the shearing stress in each part of the shaft. Consider stress concentrations, Material 1144 OQT 1300 GearA=10kw,Gear C=15kw. Ø20.0 A Ø30.0 Retaining ring 3x Ø40.0 Ø28.0 Groove B Ø50.0 Ø30.0 Bearing Ø20.0 C -Ø 15.0
Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter3: Torsion
Section: Chapter Questions
Problem 3.7.3P: A motor driving a solid circular steel shaft with diameter d = 1.5 in, transmits 50 hp to a gear at...
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