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Reduction of filler networking in silica based elastomeric nanocomposites with exfoliated organo-montmorillonite

机译:用脱落的有机蒙脱土减少二氧化硅基弹性体纳米复合材料中的填料网络

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Montmorillonite with dimethyl di(hydrogenatedtalloyl) ammonium as the compensating cation was added to a silica based elastomeric composite and the hybrid filler system led to reduction of filler networking phenomenon, better stability of elastic modulus with temperature, enhancement of stresses at all elongations, improvement of ultimate properties. This composite was based on a blend of natural rubber, poly(1,4-cis-isoprene) and poly(styrene-co-butadiene) from anionic polymerization and contained 70 parts per hundred rubber (phr) of silica. The organically modified clay (OC) was below the threshold required to establish an hybrid OC-silica filler network. Such threshold (about 7 phr) was estimated by preparing silica based nanocomposites containing various amounts of OC and determining shear storage and loss moduli as a function of strain amplitude. This work demonstrates that exfoliated OC favour lower dissipation of energy of silica based elastomeric composites under dynamic mechanical stresses and paves the way for further large scale applications. (C) 2016 Published by Elsevier B.V.
机译:将以二甲基二(氢化talloyl)铵为补偿阳离子的蒙脱土添加到二氧化硅基弹性体复合材料中,杂化填料体系导致填料网络现象的减少,弹性模量随温度的稳定性更好,所有伸长率应力的增加,最终性能。该复合材料基于天然橡胶,来自阴离子聚合的聚(1,4-顺式异戊二烯)和聚(苯乙烯-共丁二烯)的共混物,每百份橡胶(phr)二氧化硅中含有70份。有机改性粘土(OC)低于建立混合OC-二氧化硅填料网络所需的阈值。该阈值(约7 phr)是通过制备包含各种OC量的二氧化硅基纳米复合材料,并确定剪切存储和模量与应变幅度的函数关系来估算的。这项工作表明,剥落的OC有助于在动态机械应力下降低二氧化硅基弹性体复合材料的能量耗散,并为进一步的大规模应用铺平了道路。 (C)2016由Elsevier B.V.发布

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