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Study of the Mechanisms of Filler Reinforcement in Elastomer Nanocomposites

机译:弹性体纳米复合材料中填料增强机理的研究

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摘要

We performed a large-scale dissipative dynamics simulation to study the structural changes in unfilled and filled elastomers during uniaxial deformation, which helped to shed some light on the underlying reasons of filler reinforcement in rubber nanocomposites. Equilibrium stress-stain curves for different cross-linker concentrations and filler content were obtained, and their features were compared to the experimental data. Dependences of segmental orientation on deformation and true stress were studied; these dependences are discussed in the light of theoretical predictions and available experimental data. The structural changes in the deformed state were studied as well, namely, the dependences of mean end-to-end distance on the subchain length. For the filled elastomers it was found that in the matrix there are several sets of subchains with distinct properties. Part of the subchains which are not connected to the filler particles are deformed slightly more than in the unfilled matrix; the subchains connected to the filler particles are deformed significantly more. This "separation" is the main reason for reinforcement; its influence on the properties of the filled systems is discussed. In addition, the effect of the network topology (randomly cross-linked, end-linked, ideal diamond-like) on the mechanical properties of unfilled elastomers was studied.
机译:我们进行了大规模耗散动力学模拟,研究了单轴变形过程中未填充和填充的弹性体的结构变化,这有助于弄清橡胶纳米复合材料中填料增强的潜在原因。获得了不同交联剂浓度和填料含量的平衡应力-染色曲线,并将其特征与实验数据进行了比较。研究了节段取向对变形和真实应力的依赖性。这些依赖关系将根据理论预测和可用的实验数据进行讨论。还研究了变形状态下的结构变化,即平均端对端距离对子链长度的依赖性。对于填充的弹性体,发现在基质中有几组具有不同性质的亚链。未连接到填料颗粒的部分子链的变形比未填充的基质略大。连接到填料颗粒的子链变形更大。这种“分离”是加强的主要原因。讨论了其对填充系统性能的影响。此外,研究了网络拓扑结构(随机交联,端接,理想的类金刚石)对未填充弹性体力学性能的影响。

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