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Characterization and Modeling of Creep Behavior of a Thermoset Nanocomposite

机译:热固性纳米复合材料蠕变行为的表征和建模

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In this article, we report creep and recovery behavior of nanocomposites based on a high-temperature-resistant thermosetting matrix. Nanocomposites with up to 2 wt% of organically modified clay were prepared. The creep and recovery behavior was investigated under various stress levels and at various temperatures. Creep behavior was modeled by a modified Burgers model by introducing a stretched exponential function. This stretched Burgers model satisfactorily describes the creep behavior of the matrix and nanocomposites. The role of filler on the system dynamics has been also discussed and an interesting finding discovered from the stretched Burgers model results. The model results suggest that the dynamics of the filled system is independent of the filler, which is scientifically quite interesting in the field of nanocomposites. The multiple cycle creep and recovery behavior of the matrix were also investigated and the Boltzmann superposition principle was applied to describe the multistep loading creep response. POLYM. COMPOS., 36:322-329, 2015. (c) 2014 Society of Plastics Engineers
机译:在本文中,我们报告了基于耐高温热固性基质的纳米复合材料的蠕变和恢复行为。制备了具有最高2 wt%的有机改性粘土的纳米复合材料。研究了在不同应力水平和不同温度下的蠕变和恢复行为。通过引入拉伸指数函数,通过修改的Burgers模型对蠕变行为进行建模。这个拉伸的Burgers模型令人满意地描述了基质和纳米复合材料的蠕变行为。还讨论了填充剂在系统动力学上的作用,并从拉伸的Burgers模型结果中发现了一个有趣的发现。模型结果表明,填充系统的动力学与填充剂无关,这在纳米复合材料领域在科学上非常有趣。还研究了基体的多周期蠕变和恢复行为,并采用玻尔兹曼叠加原理描述了多步加载蠕变响应。 POLYM。 COMPOS。,36:322-329,2015.(c)2014年塑料工程师学会

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