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首页> 外文期刊>Journal of Tribology >Tribological Behavior of Polymer Seal Materials in Water-Based Hydraulic Fluids
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Tribological Behavior of Polymer Seal Materials in Water-Based Hydraulic Fluids

机译:水基液压液中聚合物密封材料的摩擦学行为

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In this work, two polymer materials have been tested in a lubricated reciprocating pinon-plate contact geometry using water-based hydraulic fluids to simulate sliding conditions of seal materials used in offshore equipment. The effect of load, speed, water content of the lubricant, and soaking of the ultra-high molecular weight polyethylene (UHMWPE) and a polyketone (PK) sliding against a super-duplex stainless steel (SDSS) was studied. The results showed that for UHMWPE, an increase in normal force leads to a decrease in coefficient of friction for all velocities. While under the same sliding conditions, no relevant influence of load on friction coefficient was found for PK. On the other hand, an increase in sliding speed decreased the coefficient of friction for both materials. The effect of the water content of the hydraulic fluid on the tribological performance was also studied. In UHMWPE-SDSS system, increasing water content in the hydraulic fluid resulted in steady growth of the transfer film. One reason for this might be the decreasing lubricant viscosity, which moves the system toward the boundary lubrication regime. In addition, it was found that the incubation of both UHMWPE and PK in water-based lubricants showed a beneficial effect on friction and wear, which was explained by the change in polymer visco-elastic behavior.
机译:在这项工作中,已经使用水基液压流体在润滑的往复环形板接触几何形状中测试了两种聚合物材料,以模拟海上设备中使用的密封材料的滑动条件。研究了润滑剂的载荷,速度,水含量,以及超高分子量聚乙烯(UHMWPE)的浸泡和滑动抵靠超级双链体不锈钢(SDSS)的聚酮(PK)的效果。结果表明,对于UHMWPE,正常力的增加导致所有速度的摩擦系数降低。在相同的滑动条件下,发现PK没有对摩擦系数的负荷对摩擦系数的相关影响。另一方面,滑动速度的增加降低了两种材料的摩擦系数。还研究了液压液对摩擦学性能的影响。在UHMWPE-SDSS系统中,增加液压流体中的水含量导致转移膜的稳定生长。这可能是减少润滑剂粘度的原因,其使系统朝向边界润滑制度移动。此外,发现UHMWPE和PK在水性润滑剂中孵育对摩擦和磨损的有益效果,这是通过聚合物粘弹性的变化来解释的。

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