弹性(物理)
弹性体
橡胶弹性
硫化
聚合物
材料科学
无定形固体
熵(时间箭头)
构象熵
统计物理学
变形(气象学)
内能
工作(物理)
机械
分子动力学
粘弹性
动力学(音乐)
组态熵
微观结构
弹性能
应变率
天然橡胶
经典力学
生物系统
动能
有限应变理论
实验数据
熵力
能量密度
计算机科学
介观物理学
热力学
势能
能量泛函
作者
Ziyu Xing,Yifan Liu,Xiaodong Wang,Rongguo Zhao
出处
期刊:Physica Scripta
[IOP Publishing]
日期:2026-01-30
卷期号:101 (6): 065906-065906
被引量:1
标识
DOI:10.1088/1402-4896/ae3ff3
摘要
Abstract The unique elasticity and deformability inherent in elastomers are fundamentally attributed to the conformational entropy of their polymer network, which is a key factor in revealing the complexity of the microstructure of amorphous materials. This study introduces a novel deformable segment model to investigate the conformational behavior of polymer chains and the dynamics of segments in elastomers. The model posits that the deformation of elastomers is governed by both the conformational entropy of polymer networks and the internal energy associated with deformable segments. By integrating the worm-like chain (WLC) model with a new free energy density function, the study provides a comprehensive framework for understanding the constitutive behavior of elastomers. Key contributions include the development of dynamic equations for segment vibrations, the derivation of free energy density and Cauchy stress expressions, and the analysis of strain rate effects on polymer conformations. Experimental validation using data from vulcanized natural rubber, balloon inflation tests, and rate dependent experiments demonstrates the model’s predictive accuracy. This work advances the understanding of rubber elasticity and offers a robust tool for predicting their responses under diverse deformation conditions.
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