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Three-Body Abrasion Study of a Dynamic Seal by a Micro-Scale Abrasion Test under Lubricated Conditions

机译:润滑条件下微型磨损试验的动态密封三体磨损研究

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Debris are progressively generated just after wear occurred by the interaction of various mechanical elements inside the engines, steering gear boxes, transmissions, differentials, etc. Besides, debris could interfere with the normal operation of such components generating even more damage in other parts due to three-body abrasion. Hence, dynamic seals are susceptible to interact with very fine debris accumulated in the working lubes. Recently, owing to many test advantages, the micro-scale abrasion test has been extensively used to reproduce three-body abrasion in hard materials, coatings, polymers, etc., however, it has not been before employed for the wear assessment of elastomeric materials. This paper presents an adaptation of the micro-scale test method to study three-body abrasive behavior of an elastomeric dynamic seal (samples extracted from an automotive commercial Acrylonitrile-butadiene NBR rotary seal) under lubricated conditions. This work looks generate three-body abrasion on the NBR material, proposing a range of test conditions (Load, sliding speed, sliding distance and abrasive concentration) and quantify the volume loss. Engine lubricant contaminated with SiC micro-particles was used toward replicating the actual seal lip-rotary shaft interface condition. According to SEM images from the wear scars, the wear mechanisms were polishing (two-body abrasion), three-body abrasion, and a mixture of them. Nevertheless, three-body abrasion was just obtained under specific conditions. Finally, the particular wear pattern of three-body abrasion of elastomers was achieved. Even more, the method should be potentially used to test any elastomeric material in order to characterize the three-body abrasion resistance.
机译:在发动机内的各种机械元件的相互作用,转向齿轮箱,传动装置,差速器等中的相互作用发生之后逐步产生碎片。此外,碎片可能干扰这种部件的正常操作,这些部件在其他部件中产生更多损坏三体磨损。因此,动态密封易于与在工作杆中积聚的非常细的碎片相互作用。最近,由于许多测试优势,微级磨损试验已被广泛地用于在硬质材料,涂料,聚合物等中再现三体磨损,然而,在使用之前没有用于弹性材料的磨损评估。本文介绍了在润滑条件下研究弹性体动封的三体磨料行为的微尺度试验方法研究弹性体动孔的三体磨料行为(从汽车商业丙烯腈 - 丁二烯NBR旋转密封件中提取的样品)。这项工作看起来在NBR材料上产生三体磨损,提出一系列测试条件(负载,滑动速度,滑动距离和磨料浓度)并量化体积损失。用SiC微粒污染的发动机润滑剂用于复制实际的密封唇旋转轴接口状态。根据磨损疤痕的SEM图像,磨损机构是抛光(双体磨损),三体磨损和它们的混合物。然而,在特定条件下刚刚获得三体磨损。最后,实现了弹性体的三体磨损的特定磨损图案。甚至更多,该方法应潜在地用于测试任何弹性体材料,以表征三体耐磨性。

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