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Titlebook: Engineering Elasticity; Elasticity with less Humphrey Hardy Textbook 2022 The Editor(s) (if applicable) and The Author(s), under exclusive

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elastic theories.Describes how experimenters can make betterThis textbook aimed at upper-level undergraduate and graduate engineering students who need to describe the large deformation of elastic materials like soft plastics, rubber, and biological materials.  The classical approaches to finite def
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https://doi.org/10.1007/978-1-4757-0040-4ion results; a cylindrical compression test to verify that the multi-grid simulations give the same results as the single tetrahedron study; a "real compression and extension of a cylinder; a general deformation example matching a clay deformation; bending of paper; extrusion; and a water drop example.
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Textbook 2022e soft plastics, rubber, and biological materials.  The classical approaches to finite deformations of elastic materials describe a dozen or more measures of stress and strain.  These classical approaches require an in-depth knowledge of tensor analysis and provide little instruction as to how to re
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Quasi-static Simulation Examples,ion results; a cylindrical compression test to verify that the multi-grid simulations give the same results as the single tetrahedron study; a "real compression and extension of a cylinder; a general deformation example matching a clay deformation; bending of paper; extrusion; and a water drop example.
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Anisotropic Materials,ants. These invariants are defined in terms of the deformation gradient matrix. The response of the material depends upon both the invariants of the anisotropic material and the initial orientation of the anisotropy in the body. Several numerical examples show how to simulate large deformations of anisotropic materials using this approach.
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