首页> 外文期刊>Journal of Polymers and the Environment >Mechanical and Thermal Properties of Green Thermoplastic Elastomer Vulcanizate Nanocomposites Based on Poly (vinyl chloride) and Nitrile Butadiene Rubber Containing Organoclay and Rice Straw Natural Fibers
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Mechanical and Thermal Properties of Green Thermoplastic Elastomer Vulcanizate Nanocomposites Based on Poly (vinyl chloride) and Nitrile Butadiene Rubber Containing Organoclay and Rice Straw Natural Fibers

机译:基于聚氯乙烯和含有机粘土和稻草天然纤维的丁腈橡胶的绿色热塑性弹性体硫化橡胶纳米复合材料的机械和热性能

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摘要

Green thermoplastic elastomer vulcanizates (GTPV) nanocomposites using poly (vinyl chloride) (PVC) and nitrile butadiene rubber (NBR) containing 5 wt% Cloisite 30B as an organoclay and various concentrations of rice straw natural fibers were made by melt mixing process and compression molding. The effect of used organoclay and various loadings of rice straw was monitored through using scanning electron microscopy (SEM), thermogravimetric analysis (TGA), tensile tests and rheological measurements. The morphological investigations revealed that the GTPV nanocomposites reinforced by rice straw natural fiber show a more rough fracture surfaces indicated the existence of some interactions between the natural fiber and polymer matrix. Thermal decomposition measurements revealed a higher thermal stability for GTPV nanocomposites containing higher rice straw natural fibers. The tensile test analysis suggested that there is an optimum value for the weight fraction of rice straw to enhance the Young's modulus and tensile strength of the prepared GTPV nanocomposites up to 9MPa and 35MPa, respectively. The effect of rice straw loading on the Young's modulus of the PVC/NBR/organoclay GTPV nanocomposites was predicted through using the parallel and series equations of modified Ji's model. The results show that the theoretical model can precisely predict the variation of Young's modulus with respect to the rice straw loading.
机译:通过熔融混合法和压塑法,使用含有5 wt%Cloisite 30B的聚氯乙烯(PVC)和丁腈橡胶(NBR)作为有机粘土和各种浓度的稻草天然纤维,制备了绿色热塑性弹性体硫化橡胶(GTPV)纳米复合材料。 。通过使用扫描电子显微镜(SEM),热重分析(TGA),拉伸试验和流变学测量来监测用过的有机粘土和稻草的各种负载的影响。形态学研究表明,稻草天然纤维增强的GTPV纳米复合材料显示出更粗糙的断裂表面,表明天然纤维与聚合物基质之间存在某些相互作用。热分解测量表明,含有更高稻草天然纤维的GTPV纳米复合材料具有更高的热稳定性。拉伸试验分析表明,稻草的重量分数存在一个最佳值,可以使制得的GTPV纳米复合材料的杨氏模量和拉伸强度分别提高到9MPa和35MPa。通过使用改进的Ji模型的平行和串联方程,预测了稻草装载量对PVC / NBR /有机粘土GTPV纳米复合材料的杨氏模量的影响。结果表明,该理论模型可以准确地预测稻草秸秆的杨氏模量变化。

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