蠕动
捆绑
纤维束
材料科学
幂律
惯性
聚合物
压力(语言学)
分子动力学
复合材料
纤维
机械
统计物理学
经典力学
物理
数学
计算化学
化学
语言学
统计
哲学
作者
Gaute Linga,P. Ballone,Alex Hansen
出处
期刊:Physical Review E
[American Physical Society]
日期:2015-08-10
卷期号:92 (2): 022405-022405
被引量:10
标识
DOI:10.1103/physreve.92.022405
摘要
The creep deformation and eventual breaking of polymeric samples under a constant tensile load F is investigated by molecular dynamics based on a particle representation of the fiber bundle model. The results of the virtual testing of fibrous samples consisting of 40000 particles arranged on Nc=400 chains reproduce characteristic stages seen in the experimental investigations of creep in polymeric materials. A logarithmic plot of the bundle lifetime τ versus load F displays a marked curvature, ruling out a simple power-law dependence of τ on F. A power law τ∼F-4, however, is recovered at high load. We discuss the role of reversible bond breaking and formation on the eventual fate of the sample and simulate a different type of creep testing, imposing a constant stress rate on the sample up to its breaking point. Our simulations, relying on a coarse-grained representation of the polymer structure, introduce new features into the standard fiber bundle model, such as real-time dynamics, inertia, and entropy, and open the way to more detailed models, aiming at material science aspects of polymeric fibers, investigated within a sound statistical mechanics framework.
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