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A cylindrical bronze sleeve (2) is held in compression against a rigid machine wall by a high-strength steel bolt (1), as shown in the figure. The steel [E = 202 GPa; ? = 11.7 x 10-6/°C] bolt has a diameter of 22 mm. The bronze [E = 103 GPa; ? = 22.0 x 10-6/°C] sleeve has an outside diameter of 74 mm, a wall thickness of 6 mm, and a length of L = 480 mm. The end of the sleeve is capped by a rigid washer with a thickness of t = 4 mm. At an initial temperature of T1 = 13°C, the nut is hand-tightened on the bolt until the bolt, washers, and sleeve are just snug, meaning that all slack has been removed from the assembly, but no stress has yet been induced. If the assembly is heated to T2 = 85°C, calculate (a) the normal stress (positive if tensile and negative if compressive) in the bronze sleeve. (b) the normal strain (positive if stretched and negative if compressed) in the bronze sleeve.
Package Design Brief: Assume you are the packaging engineer for a large consumer products company. In this company, the Packaging Design Briefs are initiated by the marketing group and forwarded to the Package Engineering group.
Define dynamic viscosity, Determine the centroid, Pressure due to the height of liquid, Advantage of changing the liquid, Calculate the total moment about the hinge of the seal gate.
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Wind turbines are becoming more and more common as a method of energy production, wind turbines by their very nature are dynamic and are subject to and create their own internal and external kinematics and kinetics.
8 x product engineering and design review (week 2 – 12), ~3 pages per item which must contain a brief description of the product then delve into concepts such as materials selection, manufacturing methods, life cycle analysis, recyclability and overa..
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Determine maximum total bending moment (static plus dynamic) of the beam under steady-state conditions.
Determine the magnitude of the horizontal and vertical components of the force of the water on the gate.
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