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Mechanics of Bonded and Adhesively Bonded Joints
Front Cover -- Mechanics of Bonded and Adhesively Bonded Joints -- Copyright Page -- Contents -- 1 Introduction to joining technology and classification of joints -- 1.1 Historical development of joining technology -- 1.2 Stress and strength analysis of joined structures -- 1.3 Adhesives -- 1.4 Design and failure criteria -- References -- 2 Fundamentals to elasticity -- 2.1 Introduction -- 2.2 Stress -- 2.3 Plane-stress transformation -- 2.3.1 Uniaxial stress state -- 2.3.2 Pure shear stress state -- 2.3.3 Biaxial-stress state -- 2.4 Principal stresses, principal directions, and maximum shear stress in plane-stress state -- 2.5 Spatial stress transformation -- 2.6 Principal stresses, principal directions, and maximum shear stress in spatial stress -- 2.7 Strain -- 2.8 Constitutive laws of linearly elastic material models -- 2.9 Stress equilibrium equations -- 2.10 Solutions to plane elasticity problems -- 2.10.1 Basic plane elasticity equations and solutions in Cartesian coordinate system -- 2.10.1.1 In the case of plane-strain loading -- 2.10.1.2 In the case of plane-stress loading -- 2.10.2 Basic plane elasticity equations and solutions in polar coordinate system -- 2.10.2.1 Axisymmetric problems -- 2.11 Variational principles of elasticity -- 2.11.1 Strain energy density of elastic bodies -- 2.11.2 Fundamental variational principles of elasticity -- 2.11.2.1 Theorem of virtual displacements -- 2.11.2.2 Theorem of minimum potential energy -- 2.11.2.3 Theorem of virtual work -- 2.11.2.4 Theorem of minimum complimentary energy -- 2.11.2.5 Castigliano's (second) theorem -- References -- 3 Introduction to fracture mechanics -- 3.1 Basic concepts of fracture mechanics -- 3.2 Linear and nonlinear elastic fracture mechanics -- 3.2.1 Crack modes, stress intensity factor, strain energy release rate, and J-integral -- 3.2.1.1 Crack modes.
Mechanics of Bonded and Adhesively Bonded Joints
Front Cover -- Mechanics of Bonded and Adhesively Bonded Joints -- Copyright Page -- Contents -- 1 Introduction to joining technology and classification of joints -- 1.1 Historical development of joining technology -- 1.2 Stress and strength analysis of joined structures -- 1.3 Adhesives -- 1.4 Design and failure criteria -- References -- 2 Fundamentals to elasticity -- 2.1 Introduction -- 2.2 Stress -- 2.3 Plane-stress transformation -- 2.3.1 Uniaxial stress state -- 2.3.2 Pure shear stress state -- 2.3.3 Biaxial-stress state -- 2.4 Principal stresses, principal directions, and maximum shear stress in plane-stress state -- 2.5 Spatial stress transformation -- 2.6 Principal stresses, principal directions, and maximum shear stress in spatial stress -- 2.7 Strain -- 2.8 Constitutive laws of linearly elastic material models -- 2.9 Stress equilibrium equations -- 2.10 Solutions to plane elasticity problems -- 2.10.1 Basic plane elasticity equations and solutions in Cartesian coordinate system -- 2.10.1.1 In the case of plane-strain loading -- 2.10.1.2 In the case of plane-stress loading -- 2.10.2 Basic plane elasticity equations and solutions in polar coordinate system -- 2.10.2.1 Axisymmetric problems -- 2.11 Variational principles of elasticity -- 2.11.1 Strain energy density of elastic bodies -- 2.11.2 Fundamental variational principles of elasticity -- 2.11.2.1 Theorem of virtual displacements -- 2.11.2.2 Theorem of minimum potential energy -- 2.11.2.3 Theorem of virtual work -- 2.11.2.4 Theorem of minimum complimentary energy -- 2.11.2.5 Castigliano's (second) theorem -- References -- 3 Introduction to fracture mechanics -- 3.1 Basic concepts of fracture mechanics -- 3.2 Linear and nonlinear elastic fracture mechanics -- 3.2.1 Crack modes, stress intensity factor, strain energy release rate, and J-integral -- 3.2.1.1 Crack modes.
Mechanics of Bonded and Adhesively Bonded Joints
Wu, Xiang-fa (Autor:in)
2024
372 Seiten
Buch
Englisch
DDC:
624.1899
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