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Effect of C_2H_2/N_2 Ratio on Tribological and Mechanical Behavior of Carbon Nanotube Containing Brake Lining Materials Prepared through CVD Process

机译:C_2H_2 / N_2比对通过CVD工艺制备的含碳纳米管制动衬材料的摩擦学和力学行为的影响

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Focus of this study has been placed on the influences of carbon nanotube (CNT) on the mechanical and tribological behavior of CNT containing brake lining materials. The commercial friction powder mixed with the same concentration of catalyst sol was fed into the CVD furnace and different ratio of C_2H_2/N_2 was adopted to fabricate the CNT containing friction powder. The CNT containing brake lining specimens were fabricated by hot pressing these homemade CNT containing friction powders. Experimental results indicate that the CNT containing brake lining specimens prepared through 30 percent C_2H_2 show the lowest open porosity and the highest bulk density. Significant enhancement in mechanical properties of specimens was obtained when the CNT containing friction powders are adopted. The green specimen which was fabricated by hot pressing commercial friction powders shows less stable, higher friction coefficient and larger mass loss during the wear test. On the contrary, the CNT containing brake lining specimens exhibit better performance, lower friction coefficients and lower mass loss. Morphological observations show that smooth, adherent lubricating films are formed on the sliding surface of CNT containing brake lining specimens. Based on the experimental results on friction and wear behavior, although the CNT proves to be beneficial in improving the friction and wear performance of the brake lining materials, too many CNT would result in the higher friction coefficient.
机译:这项研究的重点已放在碳纳米管(CNT)对含CNT的制动衬片材料的机械和摩擦学行为的影响上。将混合有相同浓度的催化剂溶胶的市售摩擦粉加入到CVD炉中,采用不同比例的C_2H_2 / N_2制成含CNT的摩擦粉。通过热压这些自制的含CNT的摩擦粉来制造含CNT的制动衬片样品。实验结果表明,通过30%C_2H_2制备的含CNT的制动衬片样品具有最低的开孔率和最高的堆积密度。当采用含CNT的摩擦粉时,样品的机械性能得到了显着提高。通过热压市售摩擦粉制备的生坯在磨损试验中显示出较不稳定,较高的摩擦系数和较大的质量损失。相反,含CNT的制动衬片样品表现出更好的性能,更低的摩擦系数和更低的质量损失。形态学观察表明,在含CNT的制动衬片样品的滑动表面上形成光滑,附着的润滑膜。根据摩擦和磨损行为的实验结果,尽管事实证明碳纳米管有利于改善制动衬片材料的摩擦和磨损性能,但过多的碳纳米管会导致更高的摩擦系数。

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