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首页> 外文期刊>Journal of Thermal Spray Technology >Improved wear performance by the incorporation of solid lubricants during thermal spraying
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Improved wear performance by the incorporation of solid lubricants during thermal spraying

机译:通过在热喷涂过程中加入固体润滑剂来改善磨损性能

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摘要

For components that are required to function in sliding or rubbing contact with other parts, degradation often occurs through wear due to friction between the two contacting surfaces. Depending on the nature of the materials being used, the addition of water as a lubricant may introduce corrosion and accelerate the degradation process. To improve the performance and increase the life of these components, coatings may be applied to the regions subject to the greatest wear. These coatings may be engineered to provide internal pockets of solid lubricant in order to improve the tribological performance. In the present study, coatings containing a solid lubricant were produced by thermal spraying feedstock powders consisting of a blend of tungsten carbide-metal and a fluorinated ethylene-propylene (FEP) copolymer-based material. The volume content of this teflon-based material in the feedstock ranged from 3.5 to 36%. These feedstocks were deposited using a high velocity oxy-fuel (HVOF) system to produce coatings having a level of porosity below 2%. Sliding wear tests in which coated rotors were tested in contact with stationary carbon-graphite disks identified an optimum level of teflon-based material in the feedstock formulation required to produce coatings exhibiting minimum wear. This optimum level was in the range of 7 to 17% by volume and depended on the composition of the cermet constituent. Reductions in mass loss for the couples on the order of 50% (an improvement in performance by a factor of approximately 2) were obtained for the best performing compositions, as compared to couples in which the coating contained no solid lubricant.
机译:对于需要与其他零件滑动或摩擦接触起作用的组件,由于两个接触面之间的摩擦,经常会由于磨损而导致性能下降。根据所用材料的性质,添加水作为润滑剂可能会导致腐蚀并加速降解过程。为了提高这些组件的性能并延长它们的寿命,可以将涂层施加到磨损最大的区域。可以对这些涂层进行工程设计,以提供固体润滑剂的内部口袋,从而改善摩擦性能。在本研究中,通过热喷涂由碳化钨金属和氟化乙烯-丙烯(FEP)共聚物基材料的混合物组成的原料粉末,可以生产出包含固体润滑剂的涂料。原料中这种基于聚四氟乙烯的材料的体积含量为3.5%至36%。使用高速氧-燃料(HVOF)系统沉积这些原料,以生产孔隙率低于2%的涂层。滑动磨损测试(其中涂层的转子与固定的碳-石墨盘接触进行了测试)确定了在原料配方中生产表现出最小磨损的涂层所需的聚四氟乙烯基材料的最佳含量。该最佳水平在7至17体积%的范围内,并且取决于金属陶瓷成分的组成。与其中不含固体润滑剂的涂层相比,对于性能最佳的组合物,该涂层的质量损失降低了约50%(性能提高了约2倍)。

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