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Linear and nonlinear rheological behaviors of silica filled nitrile butadiene rubber

机译:二氧化硅填充丁二烯橡胶的线性和非线性流变行为

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摘要

Nanoparticles significantly reinforce rubber and enhance nonlinear mechanical behavior while the underlining mechanisms are not clear. Herein the effects of crosslinking, filler content and filler surface chemistry on the linear and nonlinear rheological responses of silica filled nitrile butadiene rubber are investigated. A time-concentration superposition principle is employed for constructing rheological master curves. While the strain amplification and dynamics retardation contribute to the high-frequency linear rheology of the compounds, the former is crucial for the vulcanizates with matrix of similar crosslinking degree. In both the compounds and vulcanizates, the Payne effect is initiated at a similar microscopic strain of the rubber phase. A weak overshoot of loss modulus appears in compounds containing hydrophilic silica and vulcanizates containing hydrophobic silica. It is suggested that the viscoelastic matrix is highly important for the rheological responses of the filled compounds and vulcanizates.
机译:纳米颗粒显着增强橡胶,增强非线性机械行为,而下划线机制尚不清楚。本文研究了交联,填料含量和填料化学对二氧化硅填充丁二烯橡胶的线性和非线性流变响应的影响。采用时间浓缩的叠加原理来构建流变主义曲线。虽然应变扩增和动力学延迟有助于化合物的高频线性流变学,但是前者对具有相似交联度的基质的硫化胶至关重要。在化合物和硫化橡胶中,Payne效果在橡胶相的类似微观菌株中引发。损失模量的弱过冲,出现在含有含有疏水二氧化硅的亲水性二氧化硅和硫化胶的化合物中。建议粘弹性基质对填充化合物和硫化胶的流变反应非常重要。

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