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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Some forms and properties of models of strain-gradient plasticity
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Some forms and properties of models of strain-gradient plasticity

机译:应变梯度可塑性模型的某些形式和性质

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A fairly general formulation for rate-independent strain-gradient plasticity is studied. It includes the possibility of both "energetic" and "dissipative" higher-order stresses and a general effective plastic strain-rate E, which is convex and homogeneous of degree 1 in the plastic strain-rate and its gradient. The corresponding work-conjugate generalized stress is a convex function of the dissipative stress and higher-order stress and is homogeneous of degree 1 in these variables. The free energy depends on plastic strain and its gradient, as well as on elastic strain. The generalized yield stress depends on the history up to the present of the plastic strain and its gradient. This contrasts with most studies to date in which generalized yield stress is taken to depend only on E, the time-integral of E. The simple shear of a strip is studied within this framework. It is loaded so as to produce uniform Cauchy stress, which increases monotonically in time. Initially the boundaries are free of micro-traction but at a time T the boundaries are passivated. As in previous studies, an "elastic gap" is observed, before plastic flow resumes. In contrast to previous studies, this is now demonstrated to be governed entirely by the function E that defines the associated flow law. The hardening, either energetic or dissipative, regulates the plastic strain-rate, once this resumes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了与速率无关的应变梯度可塑性的相当通用的公式。它包括“高能”和“耗散”高阶应力以及一般有效塑性应变率E的可能性,塑性应变率E在塑性应变率及其梯度为1度时是凸且均匀的。相应的功共轭广义应力是耗散应力和高阶应力的凸函数,并且在这些变量中的度数为1。自由能取决于塑性应变及其梯度以及弹性应变。广义屈服应力取决于直到塑性应变及其梯度的历史。这与迄今为止的大多数研究形成对比,在常规研究中,广义屈服应力仅取决于E,即E的时间积分。在此框架内研究了带钢的简单剪切。它被加载以便产生均匀的柯西应力,该应力随时间单调增加。最初,边界没有微牵引力,但是在时间T,边界被钝化。如以前的研究一样,在恢复塑性流动之前,观察到“弹性间隙”。与以前的研究相反,现在证明这完全由定义相关流量定律的函数E控制。一旦恢复,无论是有功还是有耗散的硬化都会调节塑性应变率。 (C)2018 Elsevier Ltd.保留所有权利。

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