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Rigid nanoparticles promote the softening of rubber phase in filled vulcanizates

机译:刚性纳米粒子促进填充硫化胶中的橡胶相软化

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Enhanced mechanical softening accompanying nanoparticles reinforcement of rubber is an important source of energy dissipation and heat buildup of industrially engineered elastomers. Its mechanism previously assigned to damages in the filler network, rubber-filler interface and rubber phase remains controversial in more than 70 years. Through investigating the typical Payne effect of styrene-butadiene rubber gum and its vulcanizates as well as silica filled compounds and vulcanizates and the Mullins effect of unfilled and filled vulcanizates, we herein evidence that the filler-promoted softening of the rubber phase softens the filled elastomer nanocomposites. Especially we show that the Mullins effect is relevantly involved in the disentanglement/re-entanglement of dangling chains superposed on the entropically elastic network of the rubber phase. This paper clarifies that the mechanism of nonlinear mechanical softening for filled rubber compounds and vulcanizates should be rooted in macromolecular chains in the entanglement network (gum and filled compounds) or long dangling chain in non-ideally crosslinked network (vulcanized gum and filled vulcanizates), rather than damages involved in the "filler network" or filler-rubber interface. This suggests that adjusting the nonideally crosslinked network structure of viscoelastic rubber matrix should be able to optimize the use performance of the rubber nanocomposite products.
机译:增强的机械软化伴随的纳米颗粒加固橡胶是一种重要的能量耗散和产业化的弹性体的热堆积来源。它以前分配给填料网络中的损坏,橡胶填料界面和橡胶阶段的机制在70多年内保持争议。通过调查苯乙烯 - 丁二烯橡胶胶及其硫化物的典型效果以及硅填充的化合物和硫化酸酯的巨晶化合物和巨晶素,我们在本文中,我们在本文中,橡胶阶段的填充促进软化使得填充的弹性体软化纳米复合材料。特别是我们表明,穆林斯效应与叠加在橡胶阶段熵弹性网络上的悬空链的解剖学/重新缠绕涉及。本文阐明了填充橡胶化合物和硫化橡胶的非线性机械软化机理应植根于缠结网络(胶和填充化合物)的大分子链中,或在非理想交联的网络中的长悬空链(硫化胶和填充硫化),而不是涉及“填充网”或填充橡胶界面的损失。这表明调整粘弹性橡胶基质的非剥锌交联网络结构应该能够优化橡胶纳米复合材料的使用性能。

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