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首页> 外文期刊>Journal of Elastomers & Plastics >The heat-resistant and tribological mechanism of nano-Fe3O4-rein-forced nitrile butadiene rubber
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The heat-resistant and tribological mechanism of nano-Fe3O4-rein-forced nitrile butadiene rubber

机译:纳米Fe3O4增强丁腈橡胶的耐热摩擦学机理

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摘要

To improve the tribological properties of nitrile butadiene rubber (NBR), nano-Fe3O4 particles with good lubricity were added into the NBR to prepare NBRano-Fe3O4 composites. In our experiment, surface microstructure of the composites was observed by JSM-5600LV low-vacuum scanning electron microscope; disposition of nano-Fe3O4 was measured by an energy dispersive x-ray spectrometer; friction and wear condition of the composites were tested by UMT-2MT friction testing machine, and friction condition of the composites were tested for different temperatures by SRV high temperature friction testing machine. The results showed that after adding nano-Fe3O4 particles in NBR, surface of the composites was smoother than NBR due to less defects and the tribological properties were significantly improved. Friction and wear rate of the composites were 300% lower than NBR, and we owe this to the nano-Fe3O4 particles that played a role as solid lubricant on the surface of the composites. Meanwhile, friction coefficient was greatly affected by friction time; when the friction time was more than 10 min, the friction coefficient would become larger and there would be more abrasion; the friction coefficient of the composites was less affected by the temperature with the additional increase in nano-Fe3O4 particles.
机译:为了改善丁腈橡胶(NBR)的摩擦学性能,将具有良好润滑性的纳米Fe3O4颗粒添加到NBR中以制备NBR /纳米Fe3O4复合材料。在我们的实验中,用JSM-5600LV低真空扫描电子显微镜观察了复合材料的表面微观结构。用能量色散X射线光谱仪测量纳米Fe 3 O 4的沉积。用UMT-2MT摩擦试验机测试了复合材料的摩擦磨损状况,并通过SRV高温摩擦试验机测试了不同温度下复合材料的摩擦状况。结果表明,在NBR中添加纳米Fe3O4颗粒后,由于缺陷少,复合材料的表面比NBR光滑,摩擦学性能得到明显改善。复合材料的摩擦磨损率比NBR低300%,这归因于纳米Fe3O4颗粒在复合材料表面上起固体润滑剂的作用。同时,摩擦系数受摩擦时间的影响很大。当摩擦时间超过10分钟时,摩擦系数会变大,磨损会增加。随着纳米Fe3O4颗粒的增加,复合材料的摩擦系数受温度的影响较小。

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