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Continuity in the plastic strain rate and its influence on texture evolution

机译:塑性应变率的连续性及其对织构演变的影响

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Classical plasticity models evolve state variables in a spatially independent manner through (local) ordinary differential equations, such as in the update of the rotation field in crystal plasticity. A continuity condition is derived for the lattice rotation field from a conservation law for Burgers vector content-a consequence of an averaged field theory of dislocation mechanics. This results in a nonlocal evolution equation for the lattice rotation field. The continuity condition provides a theoretical basis for assumptions of co-rotation models of crystal plasticity. The simulation of lattice rotations and texture evolution provides evidence for the importance of continuity in modeling of classical plasticity. The possibility of predicting continuous fields of lattice rotations with sharp gradients representing non-singular dislocation distributions within rigid viscoplasti-city is discussed and computationally demonstrated.
机译:经典可塑性模型通过(局部)常微分方程以空间独立的方式演化状态变量,例如更新晶体可塑性中的旋转场。从位错力学的平均场理论出发,从Burgers向量内容的守恒定律推导出晶格旋转场的连续性条件。这导致晶格旋转场的非局部演化方程。连续性条件为晶体可塑性的同旋转模型的假设提供了理论基础。晶格旋转和纹理演化的仿真为经典可塑性建模中连续性的重要性提供了证据。讨论并通过计算证明了预测具有代表硬质塑性城市内非奇异位错分布的急剧梯度的晶格旋转连续场的可能性。

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