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首页> 外文期刊>Journal of Materials Processing Technology >Prediction for debonding damage process of glass beads-reinforced modified polyphenylene oxide under simple shear
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Prediction for debonding damage process of glass beads-reinforced modified polyphenylene oxide under simple shear

机译:简单剪切作用下玻璃珠增强改性聚苯醚的脱胶破坏过程预测

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摘要

A three-dimensional finite element cell modeling technique has been applied to predict the particle-matrix debonding process of particulate polymer composite (PPC) subject to simple shear loading. The particle-matrix debonding in PPC has been simulated by using two different debonding criteria: stress-based and strain-based. The stress-based debonding criterion uses the hydrostatic tensile stress as a critical stress while the strain-based one uses the equivalent plastic strain at failure as a critical factor for element failure. In this analysis, glass beads-reinforced polyphenylene oxide (GB/PPO) has been used for verification of the predicted results. As compared with the results from scanning electron microscopy (SEM) based in situ simple shear test of GB/PPO composite, the model with the stress-based criterion is much more appropriate for simulation of the shear damage process. The importance of selecting an appropriate debonding criterion for achieving correct simulation results could be revealed. The essential information like the threshold strain for initiation of shear damage could then be acquired from the model with the verified stress-based debonding criterion.
机译:三维有限元单元建模技术已被用于预测颗粒聚合物复合材料(PPC)在简单剪切载荷作用下的颗粒-基体脱胶过程。通过使用两种不同的剥离标准:基于应力和基于应变,对PPC中的粒子矩阵剥离进行了模拟。基于应力的脱粘准则使用静液压拉伸应力作为临界应力,而基于应变的准则使用破坏时的等效塑性应变作为元件失效的关键因素。在此分析中,玻璃珠增强的聚苯醚(GB / PPO)已用于验证预测结果。与基于扫描电镜(SEM)的GB / PPO复合材料原位简单剪切试验的结果相比,基于应力准则的模型更适合于模拟剪切损伤过程。可以揭示选择适当的脱胶标准以获得正确的仿真结果的重要性。然后,可以使用经过验证的基于应力的剥离标准从模型中获取基本信息,如引发剪切损伤的阈值应变。

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