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The Effect of Silane Coupling Agent on the Properties of Natural Rubber Filled with Waste Silicon Carbide

机译:硅烷偶联剂对填充废碳化硅的天然橡胶性能的影响

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The effect of a silane coupling on curing characteristics, mechanical properties, abrasion behavior and swelling behavior of waste silicon carbide filled natural rubber compounds was investigated in the concentration 3%, 6%, 9%, 12% and 15% by weight of the particles. The waste silicon carbide content in this study was fixed at 30 phr in order to reveal the influence of silane-69 used to modify silicon carbide. The rubber compounds were prepared using a laboratory two roll mill with temperature maintained at 50°C. The curing characteristics of the composites were determined and the composites were vulcanized at 160°C using a hot press. The properties of the natural rubber compounds such as modulus at 200% elongation, stress at peak, hardness, abrasion resistance and swelling behavior were studied. Results indicate that the maximum torque of the natural rubber compounds increased with increasing silane-69 content whereas the silane-69 can be used without much effect on the scorch time and cure time. Increasing silane-69 content also gives natural rubber compounds better resistance towards swelling and increases the modulus at 200% elongation, tensile strength, hardness and abrasion resistance. The dispersion morphology of silicon carbide in the natural rubber composites was observed by scanning electron microscopy. The modified particles with improved interfacial adhesion between waste silicon carbide and natural rubber. Improvement in mechanical properties of the composites was obtained.
机译:研究了废碳化硅填充天然橡胶化合物的浓度3%,6%,9%,12%和15%重量的颗粒的含量碳化硅填充天然橡胶化合物的固化特性,机械性能,磨损行为和溶胀行为的影响。本研究中的废碳化硅含量在30phr下固定,以揭示用于改变碳化硅的硅烷-69的影响。使用具有温度保持在50℃的实验室两个辊磨机制备橡胶化合物。测定复合材料的固化特性,并使用热压机在160℃下硫化复合材料。研究了天然橡胶化合物如模量在200%伸长,峰值,硬度,耐磨性和溶胀行为的伸长度。结果表明,天然橡胶化合物的最大扭矩随着硅烷-69含量的增加而增加,而硅烷-69可以在没有太大效果的情况下对烧焦时间和固化时间进行效果。增加硅烷-69含量也使天然橡胶化合物更好地抗膨胀,并在200%的伸长率,拉伸强度,硬度和耐磨性增加模量。通过扫描电子显微镜观察天然橡胶复合材料中的碳化硅的分散形态。改性颗粒具有改善废碳化硅和天然橡胶之间的界面粘附。获得了复合材料的力学性能的改善。

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