Decimal Places: 2 Use hand calculations, modeling is not necessary The "Shaft" carries a torque that induces a shear force in the "Bolts". Shear Stress in the 4 bolts (kN/m) S = 40,000 "Bolt" spacing (m)C = 0.24 "Bolt" diameter (mm) d = 30 "Shaft" diameter (m) D = 0.15. Assume each "Bolt" carries the same shear force. What is the Torque (kN-m) carrying capacity of the shaft? Typ (d)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Manual Calculation 2:
Refer to image shown.
Decimal Places: 2
Use hand calculations, modeling is not necessary
The "Shaft" carries a torque that induces a shear force in the "Bolts".
Shear Stress in the 4 bolts (kN/m³) S = 40,000
"Bolt" spacing (m) C = 0.24
"Bolt" diameter (mm) d = 30
"Shaft" diameter (m) D = 0.15.
Assume each "Bolt" carries the same shear force.
What is the Torque (kN-m) carrying capacity of the shaft?
4 Typ (d)
Bolt
Shaft
Transcribed Image Text:Manual Calculation 2: Refer to image shown. Decimal Places: 2 Use hand calculations, modeling is not necessary The "Shaft" carries a torque that induces a shear force in the "Bolts". Shear Stress in the 4 bolts (kN/m³) S = 40,000 "Bolt" spacing (m) C = 0.24 "Bolt" diameter (mm) d = 30 "Shaft" diameter (m) D = 0.15. Assume each "Bolt" carries the same shear force. What is the Torque (kN-m) carrying capacity of the shaft? 4 Typ (d) Bolt Shaft
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