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NATURAL RUBBER HYBRID NANOCOMPOSITES REINFORCED WITH SWELLED ORGANOCLAY AND NANO-CALCIUM CARBONATE

机译:溶胀的有机粘土和碳酸钙纳米钙增强的天然橡胶混合纳米复合材料

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Two natural rubber (NR) nanocomposites have been prepared with organoclay(MMT) and swelled organoclay (SMMT) using melt intercalation method. The effect of these two MMTss on the morphology, rheometery, and mechanical behaviors of NR has been evaluated. Scorch times for the MMT-filled compounds were very short compared to unfilled compounds. A more pronounced effect was achieved by using SMMT as reinforcing agent. The obtained results reveal that nanocomposites reinforced by SMMT have more adequate morphology, rheometery, and mechanical behaviors as well as swelling resistance. The microstructure of the NR/MMT systems was studied by x-ray diffraction and field emission scanning electron microscopy. Following, the effect of different content of nano-calcium carbonate on dispersion of MMT layers in NR/SMMT nanocomposites was investigated. The results show that the optimized value of filler in dual fillers-based nanocomposite systems was equal to 10 phr nano-calcium carbonate. NR based hybrid nanocomposites containing SMMT and nano-calcium carbonate was showed 445% increase in tensile strength, 144% stress improvement at 100% strain, and only 3% increase in elongation at break compared to pure NR.
机译:两种天然橡胶(NR)纳米复合材料均采用熔融插层法制备了有机粘土和溶胀的有机粘土。已经评估了这两种MMT对NR的形态,流变学和力学行为的影响。与未填充的化合物相比,MMT填充的化合物的焦烧时间非常短。通过使用SMMT作为增强剂,可获得更显着的效果。所得结果表明,SMMT增强的纳米复合材料具有更充分的形貌,流变学和力学性能以及抗溶胀性。通过X射线衍射和场发射扫描电子显微镜研究了NR / MMT系统的微观结构。随后,研究了不同含量的纳米碳酸钙对NR / SMMT纳米复合材料中MMT层分散的影响。结果表明,在基于双填料的纳米复合材料体系中,填料的优化值等于10 phr纳米碳酸钙。与纯NR相比,含有SMMT和纳米碳酸钙的NR基杂化纳米复合材料的拉伸强度提高了445%,在100%应变下改善了144%的应力,断裂伸长率仅增加了3%。

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