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Response of adhesive polymer interfaces to repeated mechanical loading and the spatial variation of diffusion coefficient and stresses in a deforming polymer film

机译:粘合剂聚合物界面反复反复机械加载的响应及扩散系数的空间变化和变形聚合物膜中的应力

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摘要

Comprehensive molecular simulations are conducted to show that polymer crosslinks preserve the strength of solid-polymer (melt) interfaces when they are subjected to repeated mechanical loading. The spatial variation of the diffusion coefficient and local stresses is also investigated along the polymer thickness, during deformation. After each loading cycle, a reduction in entanglement strength is observed at the fracture site. The work of adhesion also decreases over consecutive loading cycles, when fracture is induced at the same site. Reduction in both, the work of adhesion and the entanglement strength, decreases as the crosslink density increases. Diffusion coefficient and stresses vary significantly and in a complex manner along the film thickness during the entire deformation process. These variations were due to peculiar configurations occurring at each instance of separation, which are analyzed and explained in this work. The variation of diffusion coefficient during deformation suggests that other dynamic properties, such as viscosity, also vary spatially during polymer deformation.
机译:进行综合分子模拟以表明聚合物交联当它们经受重复的机械负载时保持固体聚合物(熔体)界面的强度。在变形期间还沿着聚合物厚度研究了扩散系数和局部应力的空间变化。在每个装载循环之后,在裂缝部位观察到缠结强度的降低。当在同一部位诱导裂缝时,粘合性的工作也在连续的装载循环中降低。随着交联密度的增加,粘合性和缠结强度的减少,减少。扩散系数和应力在整个变形过程中沿膜厚度沿膜厚度变化显着变化。这些变化是由于在每个分离实例中发生的特殊配置,这在这项工作中分析和解释。变形过程中扩散系数的变化表明,在聚合物变形期间,其他动态性质(例如粘度)也在空间上变化。

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