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首页> 外文期刊>Macromolecules >Rubber-filler interactions and network structure in relation to stress-strain behavior of vulcanized, carbon black filled EPDM
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Rubber-filler interactions and network structure in relation to stress-strain behavior of vulcanized, carbon black filled EPDM

机译:与硫化碳黑填充三元乙丙橡胶的应力-应变行为有关的橡胶-填料相互作用和网络结构

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Immobilization of EPDM chains on the surface of carbon black and network structure in the rubber matrix of filled EPDM rubbers were studied by low-field proton NMR experiments. Advanced NMR experiments unambiguously show strong immobilization of EPDM chain fragments on the surface of carbon black. The thickness of the immobilized EPDM-carbon black interfacial layer is estimated to be ≥0.6 nm. The average number of monomer units per adsorption site is approximately nine, which suggests preferential chain adsorption at the crystal boundaries of carbon-black particles. The adsorbed chain fragments form physical (adsorption) junctions restricting chain mobility in the rubbery matrix outside of the interface. The cross-link density in filled EPDM is determined as a function of the filler type and its amount. The contribution of adsorption junctions to the total cross-link density is moderate as compared to the density of chemical cross-links and entanglement density. The mechanically effective network density in carbon-black-filled vulcanizates is determined by analysis of the stress-strain curves on the basis of the dynamic flocculation model. Comparison of the network density as measured by NMR and mechanical experiments shows significant differences which helps in better understanding of the reinforcement mechanism of filled rubbers. The study demonstrates that a relatively small amount of strongly adsorbed chains impacts the stress-strain properties of filled elastomers significantly.
机译:通过低场质子NMR实验研究了EPDM链在炭黑表面上的固定以及网状结构在填充EPDM橡胶的橡胶基质中的作用。先进的NMR实验清楚地表明,EPDM链片段牢固地固定在炭黑表面上。固定的EPDM-炭黑界面层的厚度估计为≥0.6nm。每个吸附位点的单体单元平均数约为9,这表明在炭黑颗粒的晶界优先进行链吸附。吸附的链片段形成物理(吸附)连接,从而限制了界面外部橡胶基质中的链迁移。填充的EPDM中的交联密度取决于填充剂类型及其用量。与化学交联的密度和缠结密度相比,吸附结对总交联密度的贡献是中等的。在动态絮凝模型的基础上,通过分析应力-应变曲线来确定炭黑填充的硫化橡胶的机械有效网络密度。通过NMR和机械实验测量的网络密度的比较显示出明显的差异,这有助于更好地了解填充橡胶的增强机理。研究表明,相对少量的强吸附链会显着影响填充弹性体的应力应变性能。

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