首页> 外文期刊>Journal of engineering materials and technology >Incorporating Density and Temperature in the Stretched Exponential Model for Predicting Stress Relaxation Behavior of Polymer Foams
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Incorporating Density and Temperature in the Stretched Exponential Model for Predicting Stress Relaxation Behavior of Polymer Foams

机译:在拉伸指数模型中纳入密度和温度,以预测聚合物泡沫的应力松弛行为

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摘要

This paper discusses an approach to incorporate density and temperature terms in the well-known stretched exponential (SE) model for predicting the stress relaxation behavior of polymer foams. We have developed this approach for closed-cell polyurethane foams (PUFs) and verified using experimental data for accuracy. The SE model was first examined using short-term experimental data to predict long-term stress relaxation behavior of PU solid (PUS). The corresponding model parameters were then extracted for PUS and two PUFs with different densities (PU404 and PU415) at three different test temperatures. Finally, an expression was developed in conjunction with the modified Gibson-Ashby relationship and the Arrhenius equation and validated for other foam density (PU420) and test temperatures. The predictions were found to be reasonably good with more than 90% accuracy.
机译:本文讨论了一种将密度和温度项合并到众所周知的拉伸指数(SE)模型中的方法,以预测聚合物泡沫的应力松弛行为。我们已经针对闭孔聚氨酯泡沫(PUF)开发了这种方法,并使用实验数据进行了验证,以确保准确性。首先使用短期实验数据检查SE模型,以预测PU固体(PUS)的长期应力松弛行为。然后在三个不同的测试温度下为PUS和两个具有不同密度的PUF(PU404和PU415)提取相应的模型参数。最后,结合修改后的吉布森-阿什比关系和阿伦尼乌斯方程开发了一个表达式,并针对其他泡沫密度(PU420)和测试温度进行了验证。发现该预测相当合理,准确率超过90%。

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