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Physical and Mechanical Properties of ENR Compatibilized NR/NBR Blends Reinforced Nanoclay and Nanosilica

机译:ENR Compatibilized NR / NBR共混增强纳米粘土和纳米硅的物理和力学性能

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Properties of the unfilled rubber blends (Natural rubber, NR and Nitrile Butadiene Rubber, NBR) were poor due to the absence of reinforcing agent. However, the strength of compound had been improved with the addition of nanofiller. There were two (2) types of nanofillers that had been introduced which are nanoclay (NC) and nanosilica (NS). NR/NBR composites were prepared by open milling process where different amount of nanofiller was added ranging from 1 until 7 phr. There are a few possibilities might occur when using small particles size of fillers especially in termof interaction between rubber-filler and filler-filler interaction. Apart fromthat, different polarity and composition of both rubbers were influenced the interaction between filler and rubber phases. The interaction between non-polar and polar rubber was enhanced using epoxidized natural rubber (ENR). The rubber compound was cured via a conventional sulphur vulcanization system. The cure characteristic result shows that the incorporation of nanofiller does not affect much on the t90. The physical and mechanical properties of epoxidized natural rubber (ENR) compatibilized NSi-NR/NBR blends were determined by conducting the density measurements, hardness and tensile tests. The NC filler gave the highest tensile strength compared to NS. On top of that, reduction trend on the tensile strength observed at 3 phr of NS loading due to the formation of NS aggregates. The values of moduli, hardness and densities of vulcanizates increased as the nanofiller loading increased. It occurs due to better filler dispersion in the rubber matrix and strong interaction between filler-rubber phases. The result shows that NC has more pronounce effect on the physical and mechanical proportion of the rubber vulcanizates.
机译:由于不存在增强剂,未填充橡胶混合物(天然橡胶,NR和丁二烯橡胶,NBR)的性质差。然而,通过加入纳米填充物改善了化合物的强度。已经引入了两种(2)种类型的纳米填充物,其是纳米粘土(NC)和纳米硅(NC)。通过开放式研磨方法制备NR / NBR复合材料,其中加入不同量的纳米填充物的范围为1至7phr。当使用小颗粒的填料尺寸时,可能会出现一些可能性,特别是在橡胶填料与填充填料相互作用之间的相互作用中。除此之外,两种橡胶的不同极性和组成受到填充剂和橡胶相之间的相互作用。使用环氧化天然橡胶(ENR)增强非极性和极性橡胶之间的相互作用。橡胶化合物通过常规的硫硫化系统固化。固化特征结果表明,纳米填充物的掺入不影响T90。通过进行密度测量,硬度和拉伸试验来确定环氧化天然橡胶(ENR)的物理和力学性能(ENR)的NSI-NR / NBR共混物。与NS相比,NC填料得到了最高的拉伸强度。首先,由于形成Ns聚集体,在3phr的Ns载荷下观察到的抗拉强度的减少趋势。随着纳米填充量的增加,硫化酸盐酸的模量,硬度和密度的值增加。它由于橡胶基质中更好的填充分散体以及填料 - 橡胶相之间的强相互作用而发生。结果表明,NC对橡胶硫化橡胶的物理和机械比例有更多的发音。

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