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A solid shaft and a hollow shaft are made of the same material and are of the same weight and length. Denoting by n the ratio c1/c2 show that the ratio Ts/Th of the torque Ts in the solid shaft to the torque Th in the hollow shaft is (a)
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- A solid 0.64-in.-diameter shaft is subjected to the torques shown. The bearings shown allow the shaft to turn freely. Determine the shear stress magnitude in shaft (3). ... 10 lb-ft 50 lb-ft 70 lb-ft |(1) 30 lb-ft A (3) B C Darrow_forwardA solid 0.64-in.-diameter shaft is subjected to the torques shown. The bearings shown allow the shaft to turn freely. Determine the shear stress magnitude in shaft (1). 10 lb-ft 50 lb-ft 70 Ib-ft | (1) 30 lb-ft A (3) B D 3150 psi O 2524 psi 1876 psi O 2331 psi O 2932 psiarrow_forward1. A steel shaft is subjected to the torques shown. The shaft is solid with a diameter of 1 in and G = 12,000 ksi. Determine: (a) internal torque (lb ft) in each segment. Include the necessary diagram to show these internal forces (b) maximum shear stress (psi) in each segment (c) rotation angle of pulley D w/r to the support of A. Follow the rule of signs given in the lecture. Include the necessary FBDs of sections.arrow_forward
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- ..arrow_forward2. In the gear system shown, the motor applies a torque of 600 N-m to the gear at A. Shafts (1) and (2) are solid shafts, and the bearings shown allow free rotation of the shafts. (a) Determine the torque TE provided by the gear system at gear E. (b) If the allowable shear stress in each shaft must be limited to 70 MPa, determine the minimum permissible diameter for each shaft. 72 teeth B 24 teeth (1) 30 teeth 60 teeth (2) Earrow_forward1. The hollow steel shaft (G=12 000000 Psi) must transmit a torque of 300000 lb-in. The total angle of twist must not exceed 3 degrees per 100 ft. the maximum shearing strength must not exceed 16000 Psi. (a) Find the inside diameter "d" if the outside diameter is equal to 12 inches. (b) Find the maximum torsional shear stress and (c) Find the maximum torsional shear strain.arrow_forward
- I at nd. end 3.8 Attaching a hollow shaft to a solid shaft creates the steel shaft. Determine the maximum torque T that may be applied to the ends of the shaft in the 3.5-m length without exceeding a shear stress of 70 MPa or a twist angle of 2.5°. For steel, use G = 83 GPa. =12 T 120mm Alvern de ww08 1914 90 ****************** 2.5m 2007 099 wwg/ 1.8m Oarrow_forwardÀ solid 0.96-in.diameter shaft is subjected to the torques shown. The bearings shown allow the shaft to turn freely. Determine the shear stress magnitude in shaft (1). 10 Ib-A 50 Ib-ft 70 Ib-ft (1) (2) 30 Ib-f (3) 827 psi O 880 psi O 956 psi 691 psi O 739 psiarrow_forward1. The 40-mm-diameter steel shaft is subjected to the torques shown. Determine the angle of twist of end B with respect to A. Use the sign convention for internal torques and take G= 75GPa. FBDs of cut sections OR an internal torque diagram is required for full credit. 80 N-m 20 N-m 30 N-m 600 mm 800 mm 200 mmarrow_forward
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