If the wood joint shown in the figure has width of 200 mm, determine the average shear stress developed along shear planesa -a and 6 - 6.
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A: For solution refer below images.
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A: Given:σx=60 MPaσy=-18 MPaζxy=15 MPa
Q: Problem 6 For the structure shown in the figure, determine the normal and shear stresses at point A…
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A: Data given -
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A: Solution - Given data - V =150 KNy =0.080196 mINA =4.8646×10-6m4
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Q: Q1) A stat of stress is specified in Figure. By using Mohr's circle determine the normal and…
A: Given:σx=60 MPaσy=-18 MPaζxy=15 MPa
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Q: If the wood joint in Figure has a thickness of 150 mm, determine the average shear stress along…
A: 2F = 6 ⇒F=3×N=Vb Therefore, Average shear stress along a-a plane =3×103150×100…
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A: Given Data⇒ σx=20 MPaσy=30 MPaζxy=60 MPa
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- The shear stresses t in a rectangular beam arc given by Eq. (5-43): in which Fis the shear force, / is the moment of inertia of the cross-sectional area, /lis the height of the beam, and i] is the distance from the neutral axis to the point where the shear stress is being determined (Fig. 5-32). By integrating over the cross-sectional area, show that the resultant of the shear stresses is equal to the shear force V.A vertical pole consisting of a circular tube of outer diameter 5 in. and inner diameter 4.5 in. is loaded by a linearly varying distributed force with maximum intensity of q0, Find the maximum shear stress in the pole..4 The stresses on an clement arc known to be sx= 120 MPa, sy= 100 MPa, and txy= 75 MPa. Find the stresses on an inclined section through the element at an angle ? = 45°.
- A tie-down on the deck of a sailboat consists of a bent bar boiled at both ends, as shown in the figure. The diameter dBof the bar is 1/4 in., the diameter D Wof the washers is 7/8 in., and the thickness is of the fiberglass deck is 3/8 in. If the allowable shear stress in the fiberglass is 300 psi, and the allowable bearing pressure between the washer and the fiberglass is 550 psi, what is the allowable load P allowon the tie-down?A hollow steel box beam has the rectangular cross section shown in the figure. Determine the maximum allowable shear force K that may act on the beam if the allowable shear stress is 36 MPa. cA 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).
- 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.Consider a tube having a rectangular cross-section as shown below. The tube is subject to two twisting moments of 70 N - m . Determine the average shear stress developed at point A. The tube is fixed at the other end. a) 1.75 MPa b) -1.65 MPa c) 4.086 MPa d) 2.095 MPa If your doing it fast, I will rate you...Calculate the average shear stress in a thin-walled tube having a circular cross section of mean radius rm and thickness t, which is subjected to a torque T
- A5-mm thick plate of steel is formed into the cross section shown in Fig. P&.13. Locate the shear center for the cross section.per the attached figure: if the applied shear force V = 14 kip, determine the maximum shear stress in the member.Define the terms shear stress and shear strain, illustrating your answer by means of a simple sketch. Two circular bars, one of brass and the other of steel, are to be loaded by a shear load of 30 KN. Determine the necessary diameter of the bars (a) in single shear, (b) in double shear, if the shear stress in the two materials must not exceed 50 MN/m² and 100 MN/m² respectively. Ans: [27.6, 19.5, 19.5, 13.8mm.]