论文标题

基于天然橡胶的二氧化硅纳米复合材料的结构和流变特性的恢复活力

Rejuvenating the structure and rheological properties of silica nanocomposites based on natural rubber

论文作者

Boonsomwong, Kanyarat, Genix, Anne-Caroline, Chauveau, Edouard, Fromental, Jean-Marc, Dieudonne-George, Philippe, Sirisinha, Chakrit, Oberdisse, Julian

论文摘要

加工和热退火对填充结构和聚合物基质的拮抗作用在基于天然橡胶的聚合物纳米复合材料中探索,而沉淀的二氧化硅由水性悬浮液中的凝结液掺入,然后进行滚动磨砂。已经研究了它们的结构以及线性和非线性流变学,特别着重于高温热处理的影响和铣削的数量。小角度的X射线散射强度表明,二氧化硅是在包含Ca的小的,坚不可摧的骨料中组织的。 50个主要的纳米颗粒,在最高二氧化硅含量的填充网络中进行大规模重组。正如预期的那样,发现填充网络结构对铣削敏感,铣削更多地引起破裂,这证明了payne效应的降低。热处理后,发现纳米复合材料结构已恢复活力,从而消除了先前铣削对低压模量的影响。同时,流变学或量热的玻璃传输温度所描述的样品的动力学保持不变,而天然乳胶聚合物网络结构是通过对更流动的流变来修饰的,无法恢复。

The antagonistic effect of processing and thermal annealing on both the filler structure and the polymer matrix is explored in polymer nanocomposites based on natural rubber with precipitated silica incorporated by coagulation from aqueous suspension followed by roll-milling. Their structure and linear and non-linear rheology have been studied, with a particular emphasis on the effect of high temperature thermal treatment and the number of milling passes. Small-angle X-ray scattering intensities show that the silica is organized in small, unbreakable aggregates containing ca. 50 primary nanoparticles, which are reorganized on a larger scale in filler networks percolating at the highest silica contents. As expected, the filler network structure is found to be sensitive to milling, more milling inducing rupture, as evidenced by the decreasing Payne effect. After thermal treatment, the nanocomposite structure is found to be rejuvenated, erasing the effect of the previous milling on the low-strain modulus. In parallel, the dynamics of the samples described by the rheology or the calorimetric glass-transition temperature remain unchanged, whereas the natural latex polymer network structure is modified by milling towards a more fluid-like rheology, and cannot be recovered.

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