CALCULATE AND DRAW THE SHEAR AND MOMENT DIAGRAM 120 KN с | 18m 48 m 120 KN 18 m
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- A circular pole is subjected to linearly varying distributed force with maximum intensity t0. Calculate the diameter daof the pole if the maximum allowable shear stress for the pole is 75 M Pa.A thin-walled rectangular tube has uniform thickness t and dimensions a x b to the median line of the cross section (see figure). How does the shear stress in the tube vary with the ratio = a/b if the total length Lmof the median line of the cross section and the torque T remain constant? From your results, show that the shear stress is smallest when the tube is square (ß = 1).Solve the preceding problem for a column with e = 0.20 in,, L = 12 ft, I = 2L7in4, and E = 30 × 106psi.
- The internal loadings at a critical section along the steel drive shaft of a ship are calculated to be a torque of 2300 lb # ft, a bending moment of 1500 lb # ft, and an axial thrust of 2500 lb. If the yield points for tension and shear are sY = 100 ksi and tY = 50 ksi, respectively, determine the required diameter ofthe shaft using the maximum shear stress theory.A gantry crane of weight W=100 Kg moves across a bridge with the length I=5 m. The front axle of the crane (which is nearer end A) carries 3/4W whereas the rear axle (nearer end B) carries 1/4 W. The distance of the axles is b = 1/20. Determine the maximum value of the bending moment and enter your answer in N-m units.. Remember to also show all your work (FBDs, calculation steps, etc on the handworked file) HINT: Determine the shear and bending moment equations along the beam. Assume only concentrated loads at the front and rear axles.Missing value MT = M0 (kN.m) 170 Kindly write legibly. Thank you Solve for: a) Determine the shear stress in semi-circle portion of the profile b) Compute the maximum torque that can be applied if the allowable shear stress is 200 MPa
- Calculate the maximum normal bending stress and the maximum shear stressThese garden shears were manufactured using inferior material. Using a loading of 50 lb applied normal to the blades, and appropriate dimensions for the shears, determine the absolute maximum bending stress in thematerial and show why the failure occurred at the critical location on the handle.A full circular cross-section shaft will be designed to provide power transmission at 220 (revolution/minute) revolution of a 12300 kW engine. Since the shaft length is 3 m, the material shear modulus is 80 GPa, and the shear yield stress is 190 MPaa) How many kN.m torque should the shaft carry?b) Write down the minimum safe shaft radius in metersc) How many rad is the shaft at the specified minimum radius. found?
- A loaded beam, 60 mm wide by 100 mm high and 6 m long, has the shear and moment diagrams as shown below. Determine (a) the magnitude, type and location of the maximum flexural stress (in MPa) (b) the stress (specify the type) in a fiber 30 mm from the top of the beam at a section 3.5 m from the left end. I = bh3/12A shaft is used to transmit 24 kw at a speed of 1,779 rev/min. Using a maximum allowable shear stress of 48 MPa, find the shaft diameter in mmCan you provide me the step by step process of this? Thank you! Use the graphical method to construct the bending-moment diagram and identify the magnitude of the largest moment (consider both positive and negative). The ground reactions and shear-force diagram are provided.MA = 22 kN-mMB = 10 kN-mAy = 17.00 kNBy = 13.00 kN