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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >The effect of random surface topography height on fretting in dry gross slip conditions
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The effect of random surface topography height on fretting in dry gross slip conditions

机译:干燥毛滑条件下随机表面形貌高度对微动的影响

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This paper describes the tribological effect of surface topography on friction and wear under dry fretting regime of a point contact. Experiments were made using SRV4 ball-on-disc tribotester. 100Cr6 sphere of 64 HRC (Rockwell method, scale C) hardness co-acted with a disc made of 42CrMo4 steel with hardness of 40 HRC. Fretting tests were carried out under dry gross slip conditions. The diameter of ball was 10 mm. During tests, normal load was kept constant at P = 50 N within the contact. Duration of each test was 15 min. Tests were performed in 26℃ temperature in the chamber at 39-43% of relative humidity. Displacement amplitude was 0.1 mm (stroke was 0.2 mm) with frequency of 20 Hz. The disc samples had different textures obtained after one process (grinding, vapor blasting, or polishing) and two process (grinding or vapor blasting followed by lapping). During tests, the friction force was monitored as a function of time. Wear of disks and balls was measured after the test using white light interferometer. Surface roughness height of discs, determined by the Sq parameter was in the range: 0.01-4.5 μm. It was found that initial surface roughness height had a significant influence on friction and wear in dry gross slip conditions. For rougher disc surfaces, the friction force in initial test stage and wear of co-acting parts were higher.
机译:本文描述了表面形貌在干微动点接触条件下对摩擦和磨损的摩擦学影响。实验是使用SRV4圆盘三botester进行的。硬度为100 HRC的100Cr6球体(洛氏法,C级)与由硬度为40 HRC的42CrMo4钢制成的圆盘共同作用。微动试验在干燥的总滑移条件下进行。球的直径是10mm。在测试期间,触头内的正常负载保持恒定,P = 50N。每次测试的持续时间为15分钟。在相对湿度为39-43%的室内温度26℃下进行测试。位移幅度为0.1 mm(行程为0.2 mm),频率为20 Hz。圆盘样品在一个过程(研磨,蒸气喷砂或抛光)和两个过程(研磨或蒸气喷砂然后研磨)后获得的质地不同。在测试过程中,将摩擦力作为时间的函数进行监控。测试后,使用白光干涉仪测量磁盘和球的磨损。通过Sq参数确定的圆盘表面粗糙度高度在0.01-4.5μm的范围内。已经发现,初始表面粗糙度高度对干燥毛滑条件下的摩擦和磨损有显着影响。对于较粗糙的圆盘表面,初始测试阶段的摩擦力和共同作用部件的磨损较高。

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