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首页> 外文期刊>Macromolecules >Mechanical properties and cross-link density of styrene-butadiene model composites containing fillers with bimodal particle size distribution
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Mechanical properties and cross-link density of styrene-butadiene model composites containing fillers with bimodal particle size distribution

机译:含双峰粒度分布填料的苯乙烯-丁二烯模型复合材料的力学性能和交联密度

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Mechanical properties and cross-link density of model composites being solution styrene-butadiene rubbers filled with different amounts of nanosized silica particles or mixtures of nanosized silica particles and micrometer-sized borosilicate glass particles are studied. The cross-link density of the rubber matrix is measured based on a double-quantum NMR spectroscopy method. Shear data show that reinforcement and dissipation G″ in the rubber plateau range depend systematically on the total surface area of the filler per unit composite. Different contributions to reinforcement due to hydrodynamic effects, "filler network", glassy polymer layer, and "occluded rubber" are quantified based on a comparison of linear response measurements with strain sweeps performed at different temperatures. The results show a percolation threshold at silica volume fractions of about 0.15. The load-carrying capacity of the "filler network" decreases significantly with temperature. This may indicate the existence of a glassy polymer layer on the surface of the filler particles which softens several ten degrees above the bulk T _g of the rubber matrix. Two regimes are found in the dissipation above T _g which both depend systematically on the surface area of the filler system: A strongly frequency-dependent dissipation regime with power-law behavior is observed in G″(ω) at temperatures up to 70 K above the bulk T _g, and a nearly frequency-independent G″ regime dominates at higher temperatures. The molecular nature and importance of this finding for tire applications are discussed.
机译:研究了填充有不同数量的纳米级二氧化硅颗粒或纳米级二氧化硅颗粒与微米级硼硅酸盐玻璃颗粒混合物的固溶丁苯橡胶模型复合材料的力学性能和交联密度。橡胶基质的交联密度基于双量子NMR光谱法测量。剪切数据表明,橡胶高原范围内的补强和耗散G''系统地取决于每单位复合材料的填料总表面积。基于线性响应测量值与在不同温度下进行的应变扫描的比较,定量分析了由于流体动力效应,“填料网络”,玻璃状聚合物层和“封闭橡胶”对增强的不同贡献。结果显示在二氧化硅体积分数为约0.15时的渗滤阈值。 “填充网络”的承载能力随温度而显着降低。这可以表明在填料颗粒的表面上存在玻璃状聚合物层,该玻璃状聚合物层在橡胶基体的体积T _g之上软化了几十度。在T _g之上的耗散中发现了两种状态,它们都系统地取决于填充剂系统的表面积:在温度高达70 K以上时,在G''(ω)中观察到具有幂律行为的强频率相关的耗散状态体T _g和几乎与频率无关的G''态在较高温度下起主导作用。讨论了该发现的分子性质和对轮胎应用的重要性。

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