A 6 in. nominal STD pipe filled with water runs along a W8 x 67 beam...
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A 6 in. nominal STD pipe filled with water runs along a W8 x 67 beam to which it is tack welded. The pipe fits tightly in the W-beam without interference and no clearance. It is oriented and loaded as shown in the figure. Using the method of superposition, find the deflection of point A. Include the weight of the beam, the pipe, and the water. The material is A36 steel. Assume the water contributes to the load but not to the stiffness of the structure. All dimensions inches. L = 240 in. NOT TO SCALE F= 700 lbs. F= 700 lbs. 1/3 A L/2 L/2 a) Give the equation for deflection in symbolic form using the notation of this problem with the contribution of each linear component identified. yı + y2 +ys + .. Where: yı =.. y2 = ys = b) Give the equation for deflection as a numerical fraction times F, w, L, E, A, I, etc. c) Give numerical values for the constants in (b). d) Find the magnitude of the deflection. y = 0.123 in. A 6 in. nominal STD pipe filled with water runs along a W8 x 67 beam to which it is tack welded. The pipe fits tightly in the W-beam without interference and no clearance. It is oriented and loaded as shown in the figure. Using the method of superposition, find the deflection of point A. Include the weight of the beam, the pipe, and the water. The material is A36 steel. Assume the water contributes to the load but not to the stiffness of the structure. All dimensions inches. L = 240 in. NOT TO SCALE F= 700 lbs. F= 700 lbs. 1/3 A L/2 L/2 a) Give the equation for deflection in symbolic form using the notation of this problem with the contribution of each linear component identified. yı + y2 +ys + .. Where: yı =.. y2 = ys = b) Give the equation for deflection as a numerical fraction times F, w, L, E, A, I, etc. c) Give numerical values for the constants in (b). d) Find the magnitude of the deflection. y = 0.123 in.
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Related Book For
Vector Mechanics for Engineers Statics and Dynamics
ISBN: 978-0073212227
8th Edition
Authors: Ferdinand Beer, E. Russell Johnston, Jr., Elliot Eisenberg, William Clausen, David Mazurek, Phillip Cornwell
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