A flanged bolt coupling consists of ten steel 2-in.-diameter bolts spaced evenly around a bolt circle 14 in. in diameter. Determine the torque capacity of the coupling if the allowable shearing stress in the bolts is 6000 psi. Numeric Response
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Solved in 2 steps
- Repeat Problem 11.2-3 assuming that R= 10 kN · m/rad and L = 2 m.A flanged bolt coupling has ten (10) steel 25.4 mm diameter boltsevenly tighten around a 415 mm bolt circle. Determine the torquecapacity of the connection if the allowable shearing stress inthe bolt is 50 MN/m2A flange bolt coupling consists of 12-14mm diameter steel bolts on a bolt circle 320mm in diameter and 8-12mm diameter on a concentric bolt circle 260mm in diameter. What torque can be applied without exceeding a shearing stress of 60MPa in the bolts? B) Determine the number of 10mm steel bolts that must be used on the 320mm bolt circle of the coupling to increase the torque capacity by 6KN-m.
- (Please input the FBD together with the answer) A flanged bolt coupling consists of nine-in diameter bolts equally spaced around a bolt circle 15 inches in diameter. Determine the torque capacity of the coupling if the shear stress in the bolt is limited to 5000 psi.The compound shaft made from the same material consisting of two segments AC and CB is firmly attached to rigid supports. The allowable shear stress in the shaft is limited to 5500 psi. Determine the maximum torque TO that may be applied at C. Calculate also the angular rotation incurred by segment BC. Use G= 12 x 106 psi. (Please provide detailed solution, thank you with FBD) To = ? lb-in ϴBC = ? degreeTorsion A hollow circular shaft has inside and outside diameters of 30 mm and 40 mm respectively. The material has-a shear modulus of 60 kN/mm'. Determine the maximum stress in the shaft when it is subjected to a twist of 5 in a length of 2.5 m. What is the maximum torque the shaft can carry? For a circle / = nd*/32.
- A compound shaft consists of brass segment (1) and aluminum segment (2). Segment (1) is a solid brass shaft with an outside diameter of 0.51 in. and an allowable shear stress of 4500 psi. Segment (2) is a solid aluminum shaft with an outside diameter of 0.41 in. and an allowable shear stress of 6000 psi. Determine the magnitude of the largest torque TC that may be applied at C. Express your answer in lb-in rounded to the nearest tenths.2: If the permissible shear stress of a solid shaft is of 70MPa, the torque angle between two cross sections separated 2.5m does not exceed 3°, the applied torque is of 1400N.m and G=11Gpa a. Determine the required diameter in function of the shear stress b. Determine the required diameter in function of the angle of twistWhat is the minimum diameter of a solid steel shaft where the allowable angle of twist cannot exceed more than 5° in a 5-m length when subjected to a torque of 15 kN-m? What maximum shearing stress is developed? Use G = 85 GPa. SHOW FBD
- Calculate the maximum and minimum shear stress in a hollow circular shaft of outer diameter 20 mm and thickness 2 mm, subjected to a torque of 92.7 N-m.A flanged bolt coupling consists of ten 15-mm diameter bolts spaced evenly around abolt circle 350 ?? in diameter. Determine the torque capacity of the coupling if theallowable shearing stress in the bolts is 30 MPa.PLEASE ANSWER ASAP TY! The shaft shown has a diameter of 30 mm and is fixed at points A and B. Shear Modulus = 75 GPa. a) What is the internal torque in segment AC (in N-m)? b) Determine the maximum torsional shear stress experienced at segment AC (in MPa). c) What is the torsional shear stress at the center of the cross-section of the shaft (in MPa)? d) Determine the reactive torque at point B (in N-m).