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The study on abrasive wear of grooved journal bearings

机译:沟槽轴颈轴承磨损研究

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摘要

By valleys in surfaces especially in groove shape the wear debris or contaminants may be removed from the contact zones of mating surfaces. The geometry and dimensions of grooves are the important factors that influence on bearings performance. Grooves on the journal bearing surfaces may cause the decrease in the load carrying capacity. To find the appropriate geometry of the groove two criterion were taken into account: the minimum wear intensity and acceptable level of the load carrying capacity. In the article the results of abrasive test in artificially dustiness conditions of journal bearings with varied geometry of spiral groove on the shaft surface are presented. Most of examined series exhibited better abrasive wear resistance in comparison to plain journal bearings. The numerical calculations of journal bearings operating in clean oil were done with ANSYS Fluent application. The load carrying capacity of all simulated grooved journal bearings was lower than that of plain bearings. The least decrease of 9.4% was found for bearing with the highest groove lead H=20 mm and the smallest groove cross-section area S-f=0.016 mm(2). Optimal grooved journal bearing with the minimum wear intensity had lower load carrying capacity comparing to plain variant of 17.9%. Wear mechanism of tested surfaces were analyzed. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过谷谷在表面中,孔形状可以从配合表面的接触区移除磨损碎片或污染物。凹槽的几何形状和尺寸是影响轴承性能的重要因素。轴颈轴承表面上的凹槽可能导致负载承载能力的降低。为了找到凹槽的适当几何形状,考虑了两个标准:负载承载能力的最小磨损强度和可接受的水平。在制品中,提出了轴表面上具有变化几何形状的轴颈轴承的人工灰尘条件的磨料试验结果。与普通的轴颈轴承相比,大多数检查系列都表现出更好的磨料耐磨性。用SNSYS流畅的申请完成在清洁油中运行的轴颈轴承的数值计算。所有模拟沟槽轴颈轴承的承载能力低于滑动轴承的承载能力。发现轴承最高槽11 = 20mm,最小的槽横截面区域S-F = 0.016mm(2)的轴承最小降低9.4%。最低磨损轴承最小磨损强度的最佳槽轴承较低的负载承载能力与普通变体为17.9%。分析了测试表面的磨损机理。 (c)2017 Elsevier B.v.保留所有权利。

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