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无序向列相网络中的软结构转变和非软结构转变

Soft and nonsoft structural transitions in disordered nematic networks.

作者信息

Uchida N

机构信息

Department of Physics, Kyoto University, Kyoto 606, Japan.

出版信息

Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Oct;62(4 Pt A):5119-36. doi: 10.1103/physreve.62.5119.

DOI:10.1103/physreve.62.5119
PMID:11089060
Abstract

Properties of disordered nematic elastomers and gels are theoretically investigated with emphasis on the roles of nonlocal elastic interactions and crosslinking conditions. Networks originally crosslinked in the isotropic phase lose their long-range orientational order by the action of quenched random stresses, which we incorporate into the affine-deformation model of nematic rubber elasticity. We present a detailed picture of mechanical quasi-Goldstone modes, which accounts for an almost completely soft polydomain-monodomain (PM) transition under strain as well as a "four-leaf clover" pattern in depolarized light scattering intensity. Dynamical relaxation of the domain structure is numerically studied using a simple model. The peak wave number of the structure factor obeys a power-law-type slow kinetics and goes to zero in true mechanical equilibrium. The effect of quenched disorder on director fluctuation in the monodomain state is analyzed. The random frozen contribution to the fluctuation amplitude dominates the thermal one, at long wavelengths and near the PM transition threshold. We also study networks obtained by crosslinking polydomain nematic polymer melts. The memory of the initial director configuration acts as correlated and strong quenched disorder, which renders the PM transition nonsoft. The spatial distribution of the elastic free energy is strongly dehomogenized by external strain, in contrast to the case of isotropically crosslinked networks.

摘要

本文从理论上研究了无序向列弹性体和凝胶的性质,重点关注非局部弹性相互作用和交联条件的作用。最初在各向同性相交联的网络,由于淬火随机应力的作用,失去了其长程取向有序性,我们将其纳入向列橡胶弹性的仿射变形模型中。我们给出了机械准戈德斯通模式的详细描述,该模式解释了应变下几乎完全软的多畴-单畴(PM)转变以及去偏振光散射强度中的“四叶苜蓿”图案。使用一个简单模型对畴结构的动态弛豫进行了数值研究。结构因子的峰值波数服从幂律型慢动力学,在真正的力学平衡中趋于零。分析了淬火无序对单畴态中指向矢涨落的影响。在长波长和接近PM转变阈值时,随机冻结对涨落幅度的贡献主导了热贡献。我们还研究了通过交联多畴向列聚合物熔体获得的网络。初始指向矢构型的记忆起到了相关且强的淬火无序作用,这使得PM转变不那么软。与各向同性交联网络的情况相反,弹性自由能的空间分布因外部应变而强烈不均匀。

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