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首页> 外文期刊>Coatings >Rolling Contact Performance of a Ti-Containing MoS2 Coating Operating Under Ambient, Vacuum, and Oil-Lubricated Conditions
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Rolling Contact Performance of a Ti-Containing MoS2 Coating Operating Under Ambient, Vacuum, and Oil-Lubricated Conditions

机译:在环境,真空和油润滑条件下运行的含Ti的MOS2涂层的滚动接触性能

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摘要

Solid lubricant molybdenum disulfide (MoS2) coatings have been frequently used to lubricate mechanisms operating in environments where oil and grease lubrication are ineffective. This work evaluated the rolling contact performance of a Titanium-containing MoS2 coating under humid ambient, vacuum, and oil-lubricated conditions. Weibull analyses of L50 lifetimes of AISI 52100 steel balls coated with a Ti-MoS2 coating paired with uncoated M50 steel rods were determined to be 3.7, 14.5, and 158.6 million cycles in ambient, vacuum, and oil-lubricated environments, respectively. In the ambient and vacuum tests, failures were determined to be associated with the onset of abrasive wear rather than fatigue or spalling. The L50 lifetimes of tests performed in those environments were found to depend upon the wear rate of the coatings on the balls. That is, the Ti-MoS2 functioned as a barrier to the onset of abrasive wear between the steel alloys until the coating was sufficiently worn away. Under oil-lubricated (boundary lubrication) conditions, L50 was found to depend on the durability and composition of tribofilms formed in-situ on the surfaces of the uncoated M50 rods. The tribofilms were comprised of mixtures of MoS2 crystallites and amorphous hydrocarbon (a-C:H). The crystalline MoS2 in the tribofilm originated from the amorphous Ti-MoS2 coating and likely underwent a thermodynamic phase transition as a result of the applied Hertz stress and frictional heating in the contact. The a-C:H in the tribofilm probably originated from a catalytic scission of the polyalphaolefin (PAO) molecules caused by the d-band character of the Mo or Ti in the coating. Overall, the Ti-MoS2-coated balls were effective at extending the operational lifetimes of M50 rods under ambient, vacuum, and oil-lubricated conditions by an order of magnitude.
机译:固体润滑剂钼二硫化钼(MOS2)涂层经常用于润滑在油和油脂润滑无效的环境中操作的机制。这项工作评估了在潮湿的环境,真空和油润滑条件下含钛的MOS2涂层的滚动接触性能。涂有与未涂层的M50钢棒配对的Ti-MOS2涂层的AISI 52100钢球的Weibull分析分别测定为3.7,14.5和158.6百万周期,分别在环境,真空和油润滑的环境中。在环境和真空测试中,确定故障与磨料磨损的发作相关,而不是疲劳或剥落。发现在这些环境中进行的L50寿命依赖于球上涂层的磨损率。也就是说,Ti-MOS2用作钢合金之间的磨料磨损的屏障的屏障,直到涂层充分磨损。在油润滑(边界润滑)条件下,发现L50取决于原位在未涂覆的M50棒的表面上形成的呋喃酚的耐久性和组成。呋喃二甲酯由MOS2微晶和无定形烃(A-C:H)组成。在呋喃酚中的结晶MOS2源自无定形Ti-MOS2涂层,并且可能经历了由于施用的赫兹应力和接触中的摩擦加热而经历热力相位转变。在呋喃甲中的A-C:H可能来自由涂层中Mo或Ti的D频段特征引起的聚α-烯烃(PAO)分子的催化裂变。总的来说,Ti-MOS2涂覆的球在环境,真空和油润滑条件下延伸了M50棒的操作寿命,其数量级。

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