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Prediction of the Effect of Craze Damage on Apparent Elastic Properties of Polystyrene by FEM

机译:用FEA的粘附损伤对聚苯乙烯表观弹性性能的预测

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Craze damage, caused by excessive tensile loading, can reduce the apparent elastic strength of polymeric materials. Due to the complexity of the problem, very few attempts have been made to model the effect of crazes on the elastic properties of polymer. In this paper, the effect of craze damage on the elastic properties of polystyrene (PS) has been investigated from a meso-mechanics approach using finite element method (FEM). FEM is applied to an idealized craze model in order to estimate the apparent elastic properties of a craze damaged PS. Under three loading schemes, the elastic properties E_1, E_2, G_(12), and V_(12) of the craze damaged PS are predicted. The finite element software, #mu#FIELD version 2.20 from Rockfield, is used for predicting the effect of craze damage. The predicted results indicate that the apparent elastic properties of the craze damaged polymer are governed by the craze density and length. A series of tests is done to determine the apparent properties of PS under different degree of craze damage. The FEM prediction is found to be in good agreement with the experimental result.
机译:由过度拉伸负荷引起的烧结损伤,可以降低聚合物材料的表观弹性强度。由于问题的复杂性,已经难以模仿裂纹对聚合物弹性性质的影响。本文采用有限元法(FEM)研究了从Meso-Mechanics方法研究了雷泽损伤对聚苯乙烯(PS)弹性性质的影响。 FEM被应用于理想化的冰袋模型,以估计损坏PS的损坏的表观弹性特性。在三个装载方案下,预测了损坏PS的损坏PS的弹性特性E_1,E_2,G_(12)和V_(12)。来自RockField的有限元软件,#Mu#Field 2.20版用于预测蠕虫损坏的效果。预测结果表明,热潮受损聚合物的表观弹性性能受到克泽密度和长度的控制。完成了一系列测试以确定在不同程度的雷泽损伤下PS的表观特性。发现有限元预测与实验结果很好。

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