A concise yet comprehensive treatment of the fundamentals of solid mechanics, including a wealth of solved examples, assigned exercises, and homework problems. It is ideal for undergraduate and graduate students taking courses on the topic across aerospace, civil and mechanical engineering, and materials science.
A concise yet comprehensive treatment of the fundamentals of solid mechanics, including a wealth of solved examples, assigned exercises, and homework problems. It is ideal for undergraduate and graduate students taking courses on the topic across aerospace, civil and mechanical engineering, and materials science.
Marko V. Lubarda is an Assistant Professor of Polytechnics at the University of Donja Gorica, Montenegro, and a visiting lecturer in the Mechanical and Aerospace Engineering and Structural Engineering Departments at the University of California, San Diego.
Inhaltsangabe
Preface Part I. Fundamentals of Solid Mechanics: 1. Analysis of stress 2. Analysis of strain 3. Stress-strain relations 4. Boundary value problems of elasticity 5. Boundary-value problems: cylindrical coordinates Part II. Applications: 6. Two-dimensional problems of elasticity 7. Two-dimensional problems in polar coordinates 8. Antiplane shear 9. Torsion of prismatic rods 10. Bending of prismatic beams 11. Contact problems 12. Energy methods 13. Failure criteria References Index.
Preface Part I. Fundamentals of Solid Mechanics: 1. Analysis of stress 2. Analysis of strain 3. Stress-strain relations 4. Boundary value problems of elasticity 5. Boundary-value problems: cylindrical coordinates Part II. Applications: 6. Two-dimensional problems of elasticity 7. Two-dimensional problems in polar coordinates 8. Antiplane shear 9. Torsion of prismatic rods 10. Bending of prismatic beams 11. Contact problems 12. Energy methods 13. Failure criteria References Index.
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