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作 者:宋宝玉[1] 曲建俊[1] 姜立标[1] 王熙宁[1] 齐毓霖[1]
机构地区:[1]哈尔滨工业大学机电工程学院,哈尔滨150001
出 处:《机械工程学报》2004年第9期154-157,共4页Journal of Mechanical Engineering
基 金:黑龙江省自然科学基金(E01-06);中科院兰州化物所固体润滑开放实验室基金(0303)资助项目
摘 要:对含纳米金刚石微粒的二相流体润滑剂,进行了钢-钢配副的抗接触疲劳性能研究。结果表明,含纳米金刚石微粒的二相流体润滑剂与基础油(N15全损耗系统用油)相比可以提高接触疲劳寿命,并且随着纳米金刚石质量分数的增加提高的幅度增大,当纳米金刚石质量分数在0.3%时,接触疲劳寿命L10仅提高3.62倍,而当纳米金刚石质量分数增加到3.0%时,接触疲劳寿命L10提高了13.85倍。同时通过对添加剂的物理性质分析、摩擦学性能分析及对润滑剂的理化性能分析等,研究了纳米金刚石微粒的抗疲劳作用机理,即纳米金刚石微粒在表面的滚动和润滑剂粘度增加的作用。The RCF performances of the steel-to-steel pairs lubricated by two-phase liquid lubricants with additives of nano-grade powders of diamond are studied. The experimental results show that compared with the base oil of N15, the two-phase lubricant with nano-diamond does increase the RCF life, and the more nano-diamond is used, the higher RCF life is increased. When the content of nano-diamond is 0.3% percentage by weight, L10 life is increased only 3.62 times, but when it is 3.0%, the times is 13.85. The anti-fatigue behaviour of nano-diamond particles in the lubricants is investigated by analyses of physical and tribological properties of and physical chemistry properties of lubricant, namely, rolling of nano-diamond particles on the surface and increasing viscosity of the lubricant.
分 类 号:TH117[机械工程—机械设计及理论]
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