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Constitutive Modeling of the Tensile Behavior of Recycled Polypropylene-Based Composites

机译:再生聚丙烯基复合材料拉伸行为的本构模型

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摘要

The effect of reprocessing on the quasi-static uniaxial tensile behavior of two commercial polypropylene (PP)-based composites is experimentally investigated and modeled. In particular, the studied materials consist of an unfilled high-impact PP and a talc-filled high-impact PP. These PP composites are subjected to repeated processing cycles, including a grinding step and an extrusion step to simulate recycling at the laboratory level, the selected reprocessing numbers for this study being 0, 3, 6, 9, and 12. Because the repeated reprocessing leads to thermo-mechanical degradation by chain scission mechanisms, the tensile behavior of the two materials exhibits a continuous decrease of elastic modulus and failure strain with the increasing amount of reprocessing. A physically consistent three-dimensional constitutive model is used to predict the tensile response of non-recycled materials with strain rate dependence. For the recycled materials, the reprocessing effect is accounted by incorporating the reprocessing sensitive coefficient into the constitutive model for Young’s modulus, failure strain, softening, and hardening equations. Our predictions of true stress—true strain curves for non-recycled and recycled 108MF97 and 7510—are in good agreement with experimental data and can be useful for industries and companies which are looking for a model able to predict the recycling effect on mechanical behavior of polymer-based materials.
机译:实验研究和建模后处理对两种商用聚丙烯(PP)基复合材料的准静态单轴拉伸行为的影响。特别地,所研究的材料由未填充的高抗冲聚丙烯和滑石填充的高抗冲聚丙烯组成。这些PP复合材料要经受重复的加工循环,包括研磨步骤和挤出步骤,以在实验室水平模拟回收利用,为此研究选择的后处理次数为0、3、6、9和12。在通过断链机理进行热机械降解时,两种材料的拉伸行为随着后处理量的增加而呈现出弹性模量和破坏应变的连续降低。物理一致的三维本构模型用于预测应变率相关的非回收材料的拉伸响应。对于再生材料,通过将后处理敏感系数纳入本构模型中以考虑杨氏模量,破坏应变,软化和硬化方程,可以实现后处理效果。我们对真实应力的预测(非循环和循环使用的108MF97和7510的真实应变曲线)与实验数据吻合良好,对于正在寻找能够预测对机械性能的循环效应产生影响的模型的行业和公司而言,这很有用。聚合物基材料。

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