Content Inside:
This handbook separated into 11 chapters and will discuss this following sections: Chapter 1: Stress, Stress on a Surface, Normal Stress, Shear Stress, Pins, Problem Set 1.1, Internally Distributed Force Systems, Construction of a Stress Element for Axial Stress, Construction of a Stress Element for Plane Stress, Symmetric Shear Stresses, Construction of a Stress Element in 3-dimension, Concept Connector, History: The Concept of Stress, Chapter Connector, Points and Formulas to Remember. Chapter 2 StrainDisplacement and Deformation, Lagrangian and Eulerian Strain, Small-Strain Approximation, Vector Approach to Small-Strain Approximation, Plane strain, Strain at a Point on a Line, Points and Formulas to Remember. Chapter 3 Mechanical Propertis of Materials, Materials Characterization, Tension Test, Material Constants, The Logic of The Mechanics of Materials, Failure and Factor of Safety, Generalized Hooke’s Law for Isotropic Materials, Plane Stress and Plane Strain, Nonlinear Material Models, Linear Strain-Hardening Material Model. Chapter 4 Axial Members,General Procedure for Indeterminate Structure Problem Set 4.3. Chapter 5 Torsion of Shafts. Chapter 6 Symmetric Bending Beams, Theory of Symmetric Beam Bending, Kinematics, Strain Distribution, Construction of Shear and Moment Diagrams, Maximum Tensile and Compressive Bending Normal Stresses, Bending Stresses and Strains. Chapter 7 Deflection of Symmetric Beams, Second-Order Boundary-Value Problem, Use of Template in Boundary Conditions or Jump Conditions Problem Set 7.2. Chapter 8 Stress Transformations. Chapter 9 Strain Transformation. Chapter 10 Design and Failure, Combined Axial and Torsional Loading, Summary of Important Points in Combined Loading, Analysis and Design of Structures, Load and Resistance Factor Design (LRFD). Chapter 11 Stability of Column. Appendix.
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Tags:boundary value problem, material constants, concept of stress, vector approach, plane stress
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