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Theoretical models for void coalescence in porous ductile solids. I. Coalescence 'in layers'

机译:多孔韧性固体中空隙聚结的理论模型。 I.“分层”合并

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This paper and its companion address the problem of theoretically predicting coalescence of cavities in periodically voided ductile solids. One considers, as in several previous finite element (FE) studies, a cylindrical representative volume element (RVE) containing an initially spheroidal void and subjected to some axisymmetric loading. We consider here the case where the major stress applied is the axial one so that the strain is mainly vertical. As a consequence, voids gradually concentrate in horizontal bands. Coalescence corresponds to a sudden concentration of the deformation in these regions. In the model, one considers the RVE as made up of three layers, a highly porous one containing the void surrounded by two sound ones; the strain rate and stress fields are considered as homogeneous in each region. A recent model proposed by the authors, analogous to that of Gurson but accounting for void shape, is used to describe the behavior of the central layer while the outer ones obey von Mises' criterion. Two regimes are possible according to whether the sound zones are plastic or rigid; the first one corresponds to the pre-coalescence period while the second one corresponds to coalescence. The simple model thus obtained is entirely analytic. Comparisons with various FE simulations are presented for several initial porosities, Void shapes and triaxialities, and the predictions of the model are found to agree quite well with the numerical results. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 21]
机译:本文及其同伴解决了从理论上预测周期性排空的延性固体中空穴合并的问题。正如先前的几项有限元(FE)研究中所考虑的那样,圆柱体代表性体积单元(RVE)包含一个初始的球体空隙,并受到一定的轴对称载荷。我们在这里考虑的情况是,施加的主要应力是轴向应力,因此应变主要是垂直的。结果,空隙逐渐集中在水平带中。合并对应于这些区域中变形的突然集中。在模型中,有人认为RVE由三层组成,一层是高度多孔的,其中包含被两个有声层包围的空隙。在每个区域,应变率和应力场被认为是均匀的。作者提出的最新模型类似于Gurson,但考虑了空隙形状,用于描述中心层的行为,而外部层遵循von Mises的标准。根据声音区域是塑料的还是刚性的,可以采用两种方式;第一个对应于聚结前,而第二个对应于聚结。这样获得的简单模型是完全解析的。与几种有限元模拟的比较给出了几种初始孔隙率,空隙形状和三轴性,并且模型的预测与数值结果非常吻合。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:21]

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