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A study on mode of collapse of varying wall thickness metallic frusta subjected to axial compression

机译:壁厚变化的金属壳的轴向压缩破坏模式研究

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摘要

The present paper deals with experimental and computational analysis of deformation behavior of the aluminum thin-walled frusta subjected to axial compression between two parallel platens. The frustas were having different wall thickness through out their height. The frustas were having semi-apical angles between 7 and 9 with D/t values ranging between 26 and 49. Experiments were performed on a universal testing machine INSTRON. The frusta were tested to identify their modes of collapse and to study the associated energy absorption capacity. In experiments, all the frusta were found to collapse with the formation of an axisymmetric mode of collapse due to development of the associated plastic hinges. A Finite Element computational model of development of the axisymmetric mode of collapse is presented and analyzed, using a nonlinear Finite Element code FORGE2. The material of the frustas was idealized as rigid visco-plastic. Experimental and computed results of the deformed shapes and their corresponding load- and energy-compression curves were presented and compared to validate the computational model. Typical contours of equivalent strain, equivalent strain rate, nodal velocity distribution, hoop stress and principal stress are presented to help in predicting the mode of collapse. On the basis of the obtained results development of the axisymmetric mode of collapse has been presented, analyzed and discussed.
机译:本文研究了铝制薄壁锥壳在两个平行压板之间受到轴向压缩的变形行为的实验和计算分析。视锥果在整个高度上具有不同的壁厚。视锥细胞的半顶角在7到9之间,D / t值在26到49之间。在通用测试机INSTRON上进行了实验。测试了视锥细胞,以确定其塌陷模式并研究了相关的能量吸收能力。在实验中,由于相关联的塑料铰链的发展,发现所有的视锥细胞都塌陷并形成轴对称的塌陷模式。使用非线性有限元代码FORGE2,提出并分析了倒塌轴对称模式发展的有限元计算模型。视锥甲的材料被理想化为刚性粘塑性。给出了变形形状及其相应的载荷和能量压缩曲线的实验和计算结果,并进行了比较,以验证计算模型的正确性。给出了等效应变,等效应变率,节点速度分布,环向应力和主应力的典型轮廓,以帮助预测坍塌模式。在获得的结果的基础上,提出,分析和讨论了轴对称倒塌模式的发展。

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