Theories and Analyses of Beams and Axisymmetric Circular Plates
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Theories and Analyses of Beams and Axisymmetric Circular Plates
Reddy, J N
Taylor & Francis Ltd
08/2024
554
Mole
9781032147413
15 a 20 dias
Descrição não disponível.
1. Mechanics Preliminaries. 2. Energy Principles and Variational Methods. 3. The Classical Beam Theory. 4. The First-Order Shear Deformation Beam Theory. 5. Third-Order Beam Theories. 6. Classical Theory of Circular Plates. 7. First-Order Theory of Circular Plates. 8. Third-Order Theory of Circular Plates. 9. Finite Element Analysis of Beams. 10. Finite Element Analysis of Circular Plates.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
beam theory;beam and plate theories;finite element method;shear deformation;Displacement Vector;Modified Couple Stress Theory;Piola Kirchhoff Stress Tensor;Complementary Strain Energy;Minimum Total Potential Energy;Green Lagrange Strain Tensor;FGM Structure;Virtual Displacements;Strain Energy Density;Euler Lagrange Equations;Geometric Boundary Conditions;Functionally Graded Materials;Mori Tanaka Scheme;Strain Energy;Total Potential Energy;Shape Memory Alloy Thin Films;Fundamental Lemma;Undeformed Body;Virtual Work
1. Mechanics Preliminaries. 2. Energy Principles and Variational Methods. 3. The Classical Beam Theory. 4. The First-Order Shear Deformation Beam Theory. 5. Third-Order Beam Theories. 6. Classical Theory of Circular Plates. 7. First-Order Theory of Circular Plates. 8. Third-Order Theory of Circular Plates. 9. Finite Element Analysis of Beams. 10. Finite Element Analysis of Circular Plates.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
beam theory;beam and plate theories;finite element method;shear deformation;Displacement Vector;Modified Couple Stress Theory;Piola Kirchhoff Stress Tensor;Complementary Strain Energy;Minimum Total Potential Energy;Green Lagrange Strain Tensor;FGM Structure;Virtual Displacements;Strain Energy Density;Euler Lagrange Equations;Geometric Boundary Conditions;Functionally Graded Materials;Mori Tanaka Scheme;Strain Energy;Total Potential Energy;Shape Memory Alloy Thin Films;Fundamental Lemma;Undeformed Body;Virtual Work