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Titlebook: Structural Analysis; With Applications to O. A. Bauchau,J. I. Craig Textbook 2009 Springer Science+Business Media B.V. 2009 aerospace engin

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https://doi.org/10.1007/978-90-481-2516-6aerospace engineering; composite material; design; elasticity; mechanical engineering; space engineering;
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Structural Analysis978-90-481-2516-6Series ISSN 0925-0042 Series E-ISSN 2214-7764
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O. A. Bauchau,J. I. CraigA unified treatment of the various topics.Exhaustive coverage with unified approach.Extensive selection of problems with computer applications
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Constitutive behavior of materialsrain-displacement relationships of section 1.4.1. Finally, the stress and strain fields must be related through a set of .. These constitutive laws characterize the mechanical behavior of the material and consist of a set of mathematical idealizations of their observed behavior.
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Basic equations of linear elasticitytime is not explicitly considered as an independent variable, the analysis is said to be static; otherwise it is referred to as structural dynamic analysis, or simply structural dynamics. Under the assumption of small deformations and linearly elastic material behavior, threedimensional formulations
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Constitutive behavior of materialsrain-displacement relationships of section 1.4.1. Finally, the stress and strain fields must be related through a set of .. These constitutive laws characterize the mechanical behavior of the material and consist of a set of mathematical idealizations of their observed behavior.
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Linear elasticity solutionsquations, are often quite difficult to solve for realistic problems. Considerable simplification can be achieved when the general, three-dimensional formulation is reduced to a two-dimensional formulation by assuming the problem to be either plane stress or plane strain, as discussed in sections 1.3
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