The 3.4-m in length cylindrical shaft (made of unknown material) is subjected to the applied triangular torque as shown. The shaft is placed between the fixed supports A and E Given t= 8 kN-m/m and assuming the load does not cause any part of the shaft to exceed the elastic range, determine the maximum shear stress given the inner radius is 24 mm and the out radius is 34 mm.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The 3.4-m in length cylindrical shaft (made of unknown material) is subjected to the applied triangular torque as shown. The shaft is placed between the fixed supports A and B.
Given t= 8 kN-m/m and assuming the load does not cause any part of the shaft to exceed the elastic range, determine the maximum shear stress given the inner radius is 24
mm and the out radius is 34 mm.
t (kN.m/m)
O 293.037 MPa
O 206.849 MPa
O 146.518 MPa
O 83.725 MPa
O 137.900 MPa
O 195.358 MPa
O 97.679 MPa
O 68.950 MPa
Transcribed Image Text:The 3.4-m in length cylindrical shaft (made of unknown material) is subjected to the applied triangular torque as shown. The shaft is placed between the fixed supports A and B. Given t= 8 kN-m/m and assuming the load does not cause any part of the shaft to exceed the elastic range, determine the maximum shear stress given the inner radius is 24 mm and the out radius is 34 mm. t (kN.m/m) O 293.037 MPa O 206.849 MPa O 146.518 MPa O 83.725 MPa O 137.900 MPa O 195.358 MPa O 97.679 MPa O 68.950 MPa
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