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On the Takayanagi principle for the shape memory effect and thermomechanical behaviors in polymers with multi-phases

机译:关于高柳原理的多相聚合物的形状记忆效应和热力学行为

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摘要

We present an explicit model to study the mechanics and physics of the shape memory effect (SME) in polymers based on the Takayanagi principle. The molecular structural characteristics and elastic behavior of shape memory polymers (SMPs) with multi-phases are investigated in terms of the thermomechanical properties of the individual components, of which the contributions are combined by using Takayanagi's series-parallel model and parallel-series model, respectively. After that, Boltzmann superposition principle is employed to couple the multi-SME, elastic modulus parameter (E) and temperature parameter (T) in SMPs. Furthermore, the extended Takayanagi model is proposed to separate the plasticizing effect and physical swelling effect on the thermo-/chemo-responsive SME in polymers and then compared with the available experimental data reported in the literature. This study is expected to provide a powerful simulation tool for modeling and experimental substantiation of the mechanics and working mechanism of SME in polymers.
机译:我们提出了一个基于高柳原理的明确模型,用于研究聚合物中形状记忆效应(SME)的力学和物理学。根据单个组分的热机械性能,研究了具有多相的形状记忆聚合物(SMP)的分子结构特征和弹性行为,并通过使用高柳市的串并联模型和并联系列模型将其贡献结合在一起,分别。之后,采用玻尔兹曼叠加原理将SMP中的多SME,弹性模量参数(E)和温度参数(T)耦合起来。此外,提出了扩展的高柳模型,以分离对聚合物中的热/化学响应性中小企业的塑化作用和物理溶胀作用,然后与文献中报道的可用实验数据进行比较。预期该研究将为聚合物中SME的力学和工作机理的建模和实验证实提供强大的仿真工具。

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