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A phenomenological model for simulating the chemo-responsive shape memory effect in polymers undergoing a permeation transition

机译:用于模拟经历渗透转变的聚合物中化学响应形状记忆效应的现象学模型

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摘要

We present a phenomenological model for studying the constitutive relations and working mechanism of the chemo-responsive shape memory effect (SME) in shape memory polymers (SMPs). On the basis of the solubility parameter equation, diffusion model and permeation transition model, a phenomenological model is derived for quantitatively identifying the influential factors in the chemically induced SME in SMPs. After this, a permeability parallel model and series model are implemented in order to couple the constitutive relations of the permeability coefficient, stress and relaxation time as a function of stretch, separately. The inductive effect of the permeability transition on the transition temperature is confirmed as the driving force for the chemo-responsive SME. Furthermore, the analytical result from the phenomenological model is compared with the available experimental results and the simulation of a semi-empirical model reported in the literature for verification.
机译:我们提出了一种现象学模型,用于研究形状记忆聚合物(SMP)中的化学响应形状记忆效应(SME)的本构关系和工作机制。基于溶解度参数方程,扩散模型和渗透转变模型,导出了一种现象学模型,用于定量识别化学合成的中小型企业中的中小企业的影响因素。此后,实施渗透率并行模型和串联模型,以分别耦合渗透率,应力和松弛时间与拉伸函数的本构关系。渗透性转变对转变温度的诱导作用被确认为化学反应型中小企业的驱动力。此外,将现象学模型的分析结果与可用的实验结果进行比较,并对文献中报道的半经验模型进行仿真以进行验证。

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