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The influence of void morphology and loading conditions on deformation and failure of porous polymers: A combined finite-element and analysis of variance study

机译:孔隙形态和加载条件对多孔聚合物变形和破坏的影响:有限元和方差分析的组合

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This paper presents a combined finite-element and analysis of variance study of polymeric materials containing spherical and ellipsoidal voids. The approach adopted simulates an infinite medium of the material containing an array of voids, using three dimensional finite element analysis. A D-optimal design procedure is used to combine five normalized variables: the stress triaxiality, the ellipsoid ratio, the initial void volume fraction, the void arrangement (number of voids), and the loading angle. A ductile epoxy resin is chosen as reference material and the failure criterion considered is the plasticization of the ligament between two adjacent cells. Results are provided for the normalized equivalent stress and strain at failure, and for the void growth rate. The influence of the variables on the outputs is estimated showing that the response is influenced mainly by stress triaxiality, void volume fraction and void arrangement, in that order.
机译:本文介绍了包含球形和椭圆形空隙的聚合材料的有限元分析和方差分析的组合。采用的方法通过三维有限元分析,模拟了包含空隙阵列的材料的无限介质。 D最佳设计过程用于组合五个归一化变量:应力三轴性,椭圆率,初始空隙体积分数,空隙排列(空隙数)和加载角度。选择可延展的环氧树脂作为参考材料,考虑的破坏准则是两个相邻单元格之间韧带的塑化。提供了归一化的等效应力和破坏时的应变以及空洞增长率的结果。估计变量对输出的影响,表明响应主要受应力三轴性,空隙体积分数和空隙排列的影响。

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