Modeling deformation induced textures in titanium using analytical solutions for constrained single crystal response (Q1358852)

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scientific article; zbMATH DE number 1025652
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Modeling deformation induced textures in titanium using analytical solutions for constrained single crystal response
scientific article; zbMATH DE number 1025652

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    Modeling deformation induced textures in titanium using analytical solutions for constrained single crystal response (English)
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    23 June 1997
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    We present a method for computing the large deformation behaviour of hexagonal close-packed polycrystalline metals. Under slip-dominated deformation conditions, these crystals are often nearly inextensible along a direction perpendicular to the base of the lattice until cell. We adopt a kinematic procedure for partitioning the macroscopic deformation among these inextensible crystals and show that a decomposition of the crystal deformation is possible which decouples the basal and prismatic shearing. We use this decoupling to reduce the problem of determining the crystal stress components to a pair of simplified two-dimensional equations for the basal and prismatic components.
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    decomposition of crystal deformation
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    basal shearing
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    large deformation
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    hexagonal close-packed polycrystalline metals
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    slip-dominated deformation
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    kinematic procedure
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    prismatic shearing
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