Self Assessment 4 1. A clevis pin joint as shown above uses a pin 8 mm diameter. The shear stress in the pin must not exceed 40 MPa. Determine the maximum force that can be exerted. (Answer 4.02 kN) 2. Figure 13 A rope coupling device shown uses a pin 5 mm diameter to link the two parts. If the shear stress in the pin must not exceed 50 MPa, determine the maximum force allowed in the ropes. (Answer 1.96 kN)

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please help, this is only a self assessment this is not recorded i just wanted to know the solutions of these problems thanks

Self Assessment 4
1. A clevis pin joint as shown above uses a pin 8 mm diameter. The shear stress in
the pin must not exceed 40 MPa. Determine the maximum force that can be
exerted. (Answer 4.02 kN)
2.
Figure 13
A rope coupling device shown uses a pin 5 mm diameter to link the two parts. If
the shear stress in the pin must not exceed 50 MPa, determine the maximum force
allowed in the ropes. (Answer 1.96 kN)
Transcribed Image Text:Self Assessment 4 1. A clevis pin joint as shown above uses a pin 8 mm diameter. The shear stress in the pin must not exceed 40 MPa. Determine the maximum force that can be exerted. (Answer 4.02 kN) 2. Figure 13 A rope coupling device shown uses a pin 5 mm diameter to link the two parts. If the shear stress in the pin must not exceed 50 MPa, determine the maximum force allowed in the ropes. (Answer 1.96 kN)
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