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STRESS AND DEFORMATION ANALYSIS - Pearson

87 The Big PictureYou Are the Designer3 1 Objectives of This Chapter3 2 Philosophy of a Safe Design3 3 Representing Stresses on a STRESS Element3 4 Normal Stresses Due to Direct Axial Load3 5 DEFORMATION under Direct Axial Load3 6 Shear STRESS Due to Direct Shear Load3 7 Torsional Load Torque, Rotational Speed, and Power3 8 Shear STRESS Due to Torsional Load3 9 Torsional DEFORMATION 3 10 torsion in Members Having Non-Circular Cross Sections 3 11 torsion in Closed Thin-Walled Tubes 3 12 torsion in Open Thin-Walled Tubes 3 13 Shear STRESS Due to Bending 3 14 Shear STRESS Due to Bending Special Shear STRESS Formulas 3 15 Normal STRESS Due to Bending 3 16 Beams with Concentrated Bending Moments 3 17 Flexural Center for Beam Bending 3 18 Beam Deflections 3 19 Equations for Deflected Beam Shape 3 20 Curved Beams 3 21 Superposition Principle 3 22 STRESS Concentrations 3 23 Notch Sensitivity and Strength Reduction FactorSTRESS AND DEFORMATION ANALYSISCHAPTERTHREETHE BIG PICTURED iscussion Map As a designer, you are responsible for ensuring thesafety of the components and systems you design.

3–5 Deformation under Direct Axial Load 3–6 Shear Stress Due to Direct Shear Load 3–7 Torsional Load—Torque, Rotational Speed, and Power 3–8 Shear Stress Due to Torsional Load 3–9 Torsional Deformation 3–10 Torsion in Members Having Non-Circular Cross Sections 3–11 Torsion in Closed Thin-Walled Tubes

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