Applied Strength of Materials
This book provides comprehensive coverage of the key topics in strength of materials–with an emphasis on applications, problem solving, and design of structural members, mechanical devices and systems. It includes coverage of the latest tools, trends and analysis techniques, and makes great use of example problems. Chapter topics include basic concepts; design properties of materials; design of members under direct stress; axial deformation and thermal stresses; torsional shear stress and torsional deformation; shearing forces and bending moments in beams; centroids and moments of inertia of areas; stress due to bending; shearing stresses in beams; special cases of combined stresses; the general case of combined stress and Mohr's circle; beam deflections; statically indeterminate beams; columns; and pressure vessels. For practicing mechanical designers and engineers.
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The Big Picture
Design Properties of Materials
Direct Stress Deformation and Design
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AISI alloys aluminum Appendix ASTM ASTM International beam bending moment diagrams buckling cantilever centroid centroidal axis Chapter circular column component composite compressive stress Compute the maximum Compute the stress concrete cross section curve deflection deformation design factor design stress determine diameter dimensions distributed load ductile elongation Equation Example Problem fibers force and bending formula free-body diagram inertia kN-m lb-in length machine material maximum shear stress maximum stress metals modulus of elasticity Mohr's circle normal stress pipe plastics plate principal stress produce properties radius rectangular Results segment shaft shape shearing force shown in Figure Solution Objective Compute Specify a suitable standard Step stiffness strain strength of materials stress concentration stress element structural steel temperature tensile strength tensile stress torque torsional shear stress tube typically U.S. Customary unit UJ UJ UJ vertical welded yield strength