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On the origin of Gaussian network theory in the thermo/chemo-responsive shape memory effect of amorphous polymers undergoing photo-elastic transition

机译:高斯网络理论起源于经历光弹性转变的无定形聚合物的热/化学响应形状记忆效应

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Amorphous polymers are normally isotropic in their physical properties, however, upon stress their structural randomness is disturbed and they become anisotropic. There is a close connection between the optical anisotropy and the elastic (or mechanical) anisotropy, since both are related to the type of symmetry exhibited by the molecular structure. On the origin of Gaussian network theory, a phenomenological constitutive framework was proposed to study the photo-elastic transition and working mechanism of the thermo-/chemo-responsive shape-memory effect (SME) in amorphous shape memory polymers (SMPs). Optically refractive index was initially employed to couple the stress, strain and the anisotropy of the random link in macromolecule chain. Based on the Arrhenius law, a constitutive framework was then applied for the temperature dependence of optical (or elastic or mechanical) anisotropy according to the fictive temperature parameter. Finally, the phenomenological photo-elastic model was proposed to quantitatively identify the influential factors behind the thermo-/chemo-responsive SME in SMPs, of which the shape recovery behavior is predicted and verified by the available experimental data reported in the literature.
机译:非晶态聚合物的物理特性通常是各向同性的,但是,在应力作用下,它们的结构无规性会受到干扰,并且会变为各向异性。光学各向异性和弹性(或机械)各向异性之间存在紧密的联系,因为两者都与分子结构表现出的对称类型有关。在高斯网络理论的起源上,提出了一种现象学本构框架,研究了非晶形状记忆聚合物(SMPs)中的热/化学响应形状记忆效应(SME)的光弹性转变和作用机理。最初使用光学折射率来耦合大分子链中随机链的应力,应变和各向异性。根据阿雷尼乌斯定律,然后根据虚拟温度参数,将本构框架应用于光学(或弹性或机械)各向异性的温度依赖性。最后,提出了现象学光弹性模型,以定量识别SMP中对热/化学反应性SME产生的影响因素,其形状恢复行为可通过文献报道的实验数据进行预测和验证。

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