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Displacement field of doubly periodic array of dislocation dipoles in elastically anisotropic media

机译:弹性各向异性介质中位错偶极子的双周期阵列的位移场

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The displacement field for dislocation dipoles periodically arranged along both x- and y-directions is found to be conditionally convergent. That is, different displacement fields are obtained depending on the order of the summation to be adopted. From the two summations, one can be performed analytically; however, the other one has to be performed numerically. We first derive analytic expressions for the displacement field of periodic array of dipoles along one (either x or y) direction considering anisotropic elasticity; they are then applied for the numerical summation (practically truncated) along the other direction. The resulting displacement field needs to be corrected by subtracting the spurious displacement field, whose expressions are analytically derived. As a first application, we employ the displacement and corresponding stress fields in a 2D discrete dislocation plasticity (DDP) model of a fine-grained polycrystal under shear loading. To this end, anisotropic plane-strain DDP method is utilised to solve the underlying boundary value problem. Subsequently, predictions of size-dependent plastic behaviour in anisotropic polycrystals with grain sizes in the range
机译:发现沿着x和y方向周期性排列的位错偶极子的位移场是有条件收敛的。即,根据要采用的求和顺序来获得不同的位移场。从这两个总和中,一个可以通过分析来执行;另一个可以通过分析来执行。但是,另一个必须以数字方式执行。我们首先考虑各向异性弹性,导出偶极周期阵列沿一个(x或y)方向的位移场的解析表达式。然后将它们沿另一个方向应用于数值求和(实际上是截断的)。需要通过减去虚假位移场来校正所得的位移场,该虚假位移场的表达式是通过解析得出的。作为第一个应用程序,我们在剪切载荷下,在细晶粒多晶的二维离散位错可塑性(DDP)模型中采用位移和相应的应力场。为此,各向异性平面应变DDP方法被用来解决潜在的边值问题。随后,预测了晶粒尺寸在以下范围内的各向异性多晶中尺寸相关的塑性行为

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