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Tribological Properties of ZrO2 Coating on the Ball Joint of an Axial Piston Pump in High Water-Based Emulsion Medium

机译:高水基乳液介质中轴向活塞泵球接头涂覆ZrO2涂层的摩擦学性质

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This paper studies the tribological properties of the ZrO 2 -coated spherical joint pair of the axial piston pump in a high water-based emulsion medium. Firstly, atmospheric plasma spraying was used to prepare the ZrO 2 coating on the surface of the spherical joint pair. Secondly, the tribological characteristics of the steel-steel pair and ceramic-ceramic pair were analyzed by the friction and wear testing machine under the conditions of a high water-based emulsion concentration, load size, and load frequency. White light interference three-dimensional surface profiler and scanning electron microscope were used to analyze the original and worn surfaces of the samples, and then the friction and wear of the different material pairs were discussed. The results show that the friction reduction and wear resistance of the ceramic ball joint are superior to those of the steel ball joint. When the load is 100?N, the frequency is 1?Hz, and the emulsion concentration is 5%, and the friction coefficient and wear loss of the ceramic-ceramic ball joint pair are the lowest. The emulsion concentration and load have great influence on the friction coefficient and wear amount, while the frequency has little influence on them. With increasing concentration of the emulsion, the friction coefficient decreases and tends to be stable, but with increasing of load, the friction coefficient and wear increase. The friction coefficient and wear loss of the ceramic-ceramic ball joint in pure water are 0.25 times higher than those of the steel ball joint under the same working conditions. Therefore, when the concentration of the high water-based emulsion is 5%, 100?N load, 1?Hz frequency, the ceramic-ceramic ball joints display the best friction and wear resistance of the two. The research results provide a theoretical basis for the design, manufacture, and application of the ceramic coating hydraulic components in a high water-based emulsion medium.
机译:本文研究了ZrO 2涂层球形接头对在高水基乳液介质中的轴向活塞泵的摩擦学特性。首先,使用大气等离子体喷涂来制备球形关节对的表面上的ZrO 2涂层。其次,在高水基乳液浓度,负荷尺寸和负载频率的条件下,通过摩擦和磨损试验机分析钢 - 钢对和陶瓷陶瓷对的摩擦学特性。白光干涉三维表面分析器和扫描电子显微镜用于分析样品的原始和磨损表面,然后讨论了不同材料对的摩擦和磨损。结果表明,陶瓷球接头的摩擦减小和耐磨性优于钢球接头的耐磨性。当负载为100ΩN时,频率为1·Hz,乳液浓度为5%,陶瓷陶瓷球关节对的摩擦系数和磨损损失是最低的。乳液浓度和载荷对摩擦系数和磨损量有很大影响,而频率对它们影响不大。随着乳液浓度的增加,摩擦系数减少并趋于稳定,但随着负荷的增加,摩擦系数和磨损增加。在纯水中陶瓷陶瓷球接头的摩擦系数和磨损损失比在相同的工作条件下的钢球关节高0.25倍。因此,当高水基乳液的浓度为5%,100μl负荷,1·赫兹频率,陶瓷陶瓷球接头显示器的最佳摩擦和耐磨性。研究结果为陶瓷涂层液压组分在高水基乳液介质中提供了理论依据。

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