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Nonaffine chain and primitive path deformation in crosslinked polymers

机译:交联聚合物的非仿射链和原始路径变形

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Chains in a polymer network deform nonaffinely at small length scales due to the ability for extensive microscopic rearrangement. Classically, the conformations of an individual chain can be described solely by an end-to-end length. This picture neglects interchain interactions and therefore does not represent the behavior of a real polymer network. The primitive path concept provides the additional detail to represent interchain entanglements, and techniques have recently been developed to identify the network of primitive paths in a polymer simulation. We use coarse-grained molecular dynamics (MD) to track both chain end-to-end and primitive path deformation in crosslinked polymer networks. The range of simulated materials includes short chain unentangled networks to long, entangled chain networks. Both chain end-to-end and primitive path length are found to be linear functions of the applied deformation, and a simple relationship describes the behavior of a network in response to large stretch uniaxial, pure shear, and equibiaxial deformations. As expected, end-to-end chain length deformation is nonaffine for short chain networks, and becomes closer to affine for networks of long, entangled chains. However, primitive path deformation is found to always be nonaffine, even for long, entangled chains. We demonstrate how the microscopic constraints of crosslinks and entanglements affect nonaffine chain deformation as well as the simulated elastic behavior of the different networks.
机译:聚合物网络中的链由于具有广泛的微观重排能力,因此在小长度尺度上会发生非仿射变形。经典地,单个链的构象可以仅通过端到端长度来描述。该图片忽略了链间相互作用,因此不代表真实聚合物网络的行为。基本路径概念提供了表示链间缠结的附加细节,最近开发了在聚合物模拟中识别基本路径网络的技术。我们使用粗粒分子动力学(MD)来跟踪交联聚合物网络中链的端到端和原始路径变形。模拟材料的范围包括短链无缠结网络到长链缠结网络。发现链的端到端和原始路径长度都是所应用变形的线性函数,并且一种简单的关系描述了网络响应大拉伸单轴,纯剪切和等双轴变形的行为。不出所料,对于短链网络,端到端链长变形是非仿射的,而对于长的,纠缠的链网络,则变近于仿射。但是,即使对于长而纠结的链,原始路径变形也总是非仿射的。我们证明了交联和缠结的微观约束如何影响非仿射链变形以及不同网络的模拟弹性行为。

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