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A Parametric Study on Crushability of Open-Cell Structural Polymeric Foams

机译:开孔结构聚合物泡沫可破碎性的参数研究

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摘要

A five-parameter nonlinear phenomenological constitutive model, capable of capturing the entire stress-strain response of crushable polymeric foams, is presented. The functional form of each parameter in the model was determined using uniaxial-strain compression experiments on cylindrical foam specimens of different initial bulk densities (or porosities). Two-step and multistep loading procedures were employed during the uniaxial-strain compression experiments to investigate crushability and residual crushability of foams and to generate additional data at different porosity levels that were not originally available. Thus, specimens with certain initial low densities were repeatedly used to obtain stress-strain curves at increasingly high densities. Based on the experimental data, each parameter of the model was expressed in terms of initial bulk density (or porosity). Such relationships were shown to be useful in generating 'crushability-maps' that could be utilized to evaluate the residual crushability and/or for selection of a suitable density of foam for a given application.
机译:提出了一个五参数非线性现象学本构模型,该模型能够捕获可压碎聚合物泡沫的整个应力应变响应。使用单轴应变压缩实验在不同初始堆积密度(或孔隙度)的圆柱泡沫样品上确定模型中每个参数的功能形式。在单轴应变压缩实验过程中,采用了两步和多步加载程序来研究泡沫的可压碎性和残余可压碎性,并在最初没有的不同孔隙度水平下生成其他数据。因此,具有一定初始低密度的样品被反复用于获得越来越高密度的应力-应变曲线。根据实验数据,模型的每个参数均以初始堆积密度(或孔隙率)表示。这些关系显示出可用于生成“可破碎性图”,可用于评估残余可破碎性和/或用于给定应用的泡沫的合适密度的选择。

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