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Numerical investigation of necking in perforated sheets using the periodic homogenization approach

机译:用周期均质化方法对穿孔板颈颈部的数值研究

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摘要

Due to their attractive properties, perforated sheets are increasingly used in a number of industrial applications, such as automotive, architecture, pollution control, etc. Consequently, the accurate modeling of the mechanical behavior of this kind of sheets still remains a valuable goal to reach. This paper aims to contribute to this effort by developing reliable numerical tools capable of predicting the occurrence of necking in perforated sheets. These tools are based on the coupling between the periodic homogenization technique and three plastic instability criteria. The periodic homogenization technique is used to derive equivalent macroscopic mechanical behavior for a representative volume element of these sheets. On the other hand, the prediction of plastic instability is based on three necking criteria: the maximum force criterion (diffuse necking), the general bifurcation criterion (diffuse necking), and the loss of ellipticity criterion (localized necking). The predictions obtained by applying the three instability criteria are thoroughly analyzed and compared. A sensitivity study is also conducted to numerically investigate the influence on the prediction of necking of the design parameters (dimension, aspectratio, orientation, and shape of the holes), the macroscopic boundary conditions and the metal matrix material parameters (plastic anisotropy, hardening).
机译:由于它们有吸引力的性质,穿孔板越来越多地用于许多工业应用,例如汽车,架构,污染控制等。因此,这种床单的机械行为的准确建模仍然是达到的有价值目标。本文旨在通过开发可靠的数控工具来促进这种努力,该工具能够预测穿孔板中的颈缩发生。这些工具基于周期性均化技术与三个塑料不稳定标准之间的耦合。周期性均化技术用于导出这些片材的代表性体积元件的等效宏观力学行为。另一方面,塑料不稳定性的预测基于三个缩颈标准:最大力标准(漫射剪切),一般分叉标准(漫射缩放),以及椭圆形标准(局部颈缩)的损失。通过应用三个不稳定标准获得的预测得到彻底分析并进行比较。还进行了灵敏度研究,以便在数值上研究对设计参数缩颈预测的影响(尺寸,ASPectratio,孔的方形),宏观边界条件和金属基质参数(塑料各向异性,硬化) 。

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