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- W3011702210 abstract "This chapter discusses the strain tensor, which is an important concept for understanding deformation. The strain tensor is a tensor describing the general deformation of a continuum. A 3D vector is generally insufficient to describe the deformation in 3D, unless the vector is appropriate. The free energy stored in a unit volume is called the strain energy density function. Because all deformations are defined by the invariants, the function should be a function of the invariant. The chapter introduces some representative strain energy density functions based on molecular pictures; and discusses neo-Hookean model and the inverse Langevin Model. It also introduces the scaling approach to the large deformations and shows how to apply the scaling for the stretching of a single polymer chain. Although polymer gels can be substantially deformed, they conventionally show brittle fracture. The chapter also discusses brittle polymer gels showing maximum elongation ratio values that vary substantially." @default.
- W3011702210 created "2020-03-23" @default.
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- W3011702210 date "2020-03-06" @default.
- W3011702210 modified "2023-10-03" @default.
- W3011702210 title "Deformation and Fracture" @default.
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- W3011702210 doi "https://doi.org/10.1002/9783527346547.ch5" @default.
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