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A solid circular cantilevered beam is subjected to, at the free end, a downward transverse force...

A solid circular cantilevered beam is subjected to, at the free end, a downward transverse force P, a torque T and a centric (axial) load F. Given that its diameter is 60 mm, T = 0.1P Nm and F = 10P N.

(a) Determine the largest value of the load P that can be applied if the allowable stresses are 100 MPa in tension and 60 MPa in shear on a section at 120 mm from the free end. Take into account all stresses involved, do not ignore any.

(b) Conclude on the distribution of stresses along the beam.

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Answer #1

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Nm Given Information. P-Transverse force, T = 0.1P = Torque. F = Axial force = lop N. y d=60mm 1200 lop TOP (1) Bending T= stLet us find where tt = combined shear (q + Ts] is maximum. 4P [p²-g] 7 2Tly) 3124 ro-24] + 2[o.DP ) tpЧ IT OF 4 P 31124 L TR4(1) Tat 6.015) = 4P, CR² - y2] Эty py 4.712 710 Up. 16 Ty = 5.894109, = To at 0.075 = TRY (which is negligable ! T + Ts - TА+ 2 - - - Cmax 55 ° 59 х 3р з 9 як хло 3) + (1, 12х1о чр) q175 х 10р + 2. 039 x16 2P - olox to 3р. = 2.оззX10 р. А4 о - 3, 5

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