A circular steel shaft with length, L (m) has an outer diameter, d2 (mm) and inner diameter, d1 (mm). The modulus of rigidity G = 75 Gpa. Analyze the shaft due to an applied torque, T (kN-m) at both ends. T Given: d1 = 100 mm, d2 = 150 mm, L = 1.0 m and T = 14 kN-m. What is the torsional shear stress at the outer surface in Mpa? (2) decimals)
A circular steel shaft with length, L (m) has an outer diameter, d2 (mm) and inner diameter, d1 (mm). The modulus of rigidity G = 75 Gpa. Analyze the shaft due to an applied torque, T (kN-m) at both ends. T Given: d1 = 100 mm, d2 = 150 mm, L = 1.0 m and T = 14 kN-m. What is the torsional shear stress at the outer surface in Mpa? (2) decimals)
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A circular steel shaft with length, L (m) has an outer diameter, d2 (mm) and
inner diameter, d1 (mm). The modulus of rigidity G = 75 Gpa. Analyze the
shaft due to an applied torque, T (kN-m) at both ends.
T
39
Given: d1 = 100 mm, d2 = 150 mm, L = 1.0 m and T = 14 kN-m.
What is the torsional shear stress at the outer surface in Mpa? (2)
decimals)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9711b5a6-f028-4dfb-acc9-27e9cb02e4e4%2F1788e68c-f5e4-460e-bcd1-48979a1f33a2%2Fmqxpuks_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A circular steel shaft with length, L (m) has an outer diameter, d2 (mm) and
inner diameter, d1 (mm). The modulus of rigidity G = 75 Gpa. Analyze the
shaft due to an applied torque, T (kN-m) at both ends.
T
39
Given: d1 = 100 mm, d2 = 150 mm, L = 1.0 m and T = 14 kN-m.
What is the torsional shear stress at the outer surface in Mpa? (2)
decimals)
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