简介
This book provides a broad and comprehensive coverage of the theoretical, experimental, and numerical techniques employed in the field of stress analysis. Designed to provide a clear transition from the topics of elementary to advanced mechanics of materials. Its broad range of coverage allows instructors to easily select many different topics for use in one or more courses. The highly readable writing style and mathematical clarity of the first edition are continued in this edition. Major revisions in this edition include: an expanded coverage of three-dimensional stress/strain transformations; additional topics from the theory of elasticity; examples and problems which test the mastery of the prerequisite elementary topics; clarified and additional topics from advanced mechanics of materials; new sections on fracture mechanics and structural stability; a completely rewritten chapter on the finite element method; a new chapter on finite element modeling techniques employed in practice when using commercial FEM software; and a significant increase in the number of end of chapter exercise problems some of which are oriented towards computer applications.
目录
Basic Concepts of Force, Stress, Strain, and Displacement
Stress and Strain. Transformations, Equilibrium, and Compatibility
Fundamental Formulations of Stress, Strain, and Deflection
Concepts from the Theory of Elasticity
Topics from Advanced Mechanics of Materials
Energy Techniques in Stress Analysis
Strength Theories and Design Methods
Experimental Stress Analysis
Introduction to the Finite Element Method
Finite Element Modeling Techniques
Appendixes
Si and USCU Conversions
Properties of Cross Sections
Beams in Bending
Singularity Functions
Principal Second-Area Moments
Stress Concentration Factors
Strain Gage Rosette Equations
Corrections for Transverse Sensitivity of Strain Gages
Matrix Algebra and Cartesian Tensors
Stress and Strain. Transformations, Equilibrium, and Compatibility
Fundamental Formulations of Stress, Strain, and Deflection
Concepts from the Theory of Elasticity
Topics from Advanced Mechanics of Materials
Energy Techniques in Stress Analysis
Strength Theories and Design Methods
Experimental Stress Analysis
Introduction to the Finite Element Method
Finite Element Modeling Techniques
Appendixes
Si and USCU Conversions
Properties of Cross Sections
Beams in Bending
Singularity Functions
Principal Second-Area Moments
Stress Concentration Factors
Strain Gage Rosette Equations
Corrections for Transverse Sensitivity of Strain Gages
Matrix Algebra and Cartesian Tensors
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