极限抗拉强度
扩展(谓词逻辑)
材料科学
从头算
链条(单位)
高斯分布
节点(物理)
天然橡胶
放松(心理学)
复合材料
机械
统计物理学
结构工程
物理
计算机科学
工程类
心理学
社会心理学
天文
程序设计语言
量子力学
摘要
We report the results of numerical simulations of random, three-dimensional, periodic, tetrafunctional networks in response to a volume-preserving tensile strain. For the intranode force, we use a polynomial fit to a purely enthalpic ab initio force extension curve for extended polyisoprene. The simulation includes a relaxation procedure to minimize the node forces and enforces chain rupture when the extension of a network chain reaches the ab initio rupture strain. For the reasonable assumption that the distribution of network chain lengths is Gaussian, we find that the calculated snap-back velocity, temperature increase due to chain ruptures and predicted tensile stress versus strain curve are consistent with experimental data in the moderate to high extension regime. Our results show that a perfect tetrafunctional polyisoprene network is extremely robust, capable of supporting tensile stresses at least a factor of 10 greater than what is observed experimentally.
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