基于赫兹接触理论、有限元建模和现场观察的轨道车辆轴箱滚子轴承寿命和故障分析

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY
D. Javanmardi, Mohammad Ali Rezvani
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引用次数: 0

摘要

用途 轴承是用于支撑负载和促进机械旋转和滑动部件运动的关键部件。轴承故障可导致灾难性故障。因此,故障分析和努力提高轴承性能是全球重要机械的设计者、制造商和最终用户必须讨论的问题。本研究旨在调查铁路行业一种过早失效的滚子轴承。这项任务的提出是因为机车的维护和使用寿命质量对铁路运营和为国家提供运输服务至关重要。为协助维护指定机车,本研究对机车转向架轴箱重型滚子轴承的故障原因进行了仔细研究。 设计/方法/途径 旨在检查该轴承的使用寿命,并对其设计参数进行统计,以揭示故障的缺陷和根源。重要措施包括通过与 16 个同类滚子轴承的实际使用历史进行比较,检查其故障的主要和关键因素。这些轴承来自轴负荷为 20 吨的机车转向架的轴箱。轴承载荷根据 EN13104 标准文件进行估算,并通过 ABAQUS 工程软件的有限元法进行确认。为验证有限元建模结果,使用赫兹接触理论对轴承进行了应力分析,结果显示完全一致。上述方法还用于寻找轴承中容易出现故障的区域。结合并利用过去七年机车轴承维护条件和日志记录,调查并讨论了此类轴承故障的关键原因。 研究结果 通过纳入和利用过去七年机车轴承维护条件和日志记录,调查并讨论了此类轴承故障的关键原因。结果发现,缺乏维护和润滑不足是造成所选轴承故障的根本原因。 独创性/价值 对于指定机车,通过研究和比较许多同类型轴承的实际使用历史,揭示了重载滚子轴承故障的根源及其设计缺陷。该研究的新颖之处在于综合使用了上述方法并取得了令人满意的成果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rail vehicle axlebox roller bearing life and failure analysis based on the Hertz contact theory, finite element modeling, and field observations
Purpose Bearings are critical components used to support loads and facilitate motion for rotating and sliding parts of the machinery. Bearing malfunctions can cause catastrophic failures. Hence, failure analysis and endeavors to improve bearing performance are essential discussions for worldwide designers, manufacturers and end users of vital machinery. This study aims to investigate a type of roller bearing from the railway industry with premature failures. The task arises because locomotives’ maintenance and service life quality are vital to railway operations while providing transportation services for the nation. To assist in maintaining the designated locomotives, the present study scrutinizes the causes of failure of heavy-duty roller bearings from locomotive bogie axleboxes. Design/methodology/approach It is intended to inspect this bearing service life and statistically scrutinize its design parameters to reveal the failures’ shortcomings and origins. The significant measures include examinations of their failures’ primary and vital factors by comparing them with a real-life service history of 16 roller bearings of the same type. The bearings come from the axleboxes of a locomotive bogie with an axle load of 20 tons. The bearing loads are estimated using the EN13104 standard document and confirmed by the finite element method using ABAQUS engineering software. To validate the finite element modeling results, the bearings’ stress analysis is performed using the Hertzian contact theory that demonstrated perfect conformity. The said methods are also used to search for the areas susceptible to failures in these bearings. With the inclusion and exploitation of the bearing maintenance conditions and the logbook recordings of the locomotives for the past seven years, the critical cause for this type of bearing’s failures is surveyed and discussed. Findings With the inclusion and exploitation of the bearing maintenance conditions and the logbook recordings of the locomotives for the past seven years, the critical cause for this type of bearing’s failures is surveyed and discussed. As a crucial result, it is found that deprived maintenance and inadequate lubrication are the root causes of the loss of the selected bearings. Originality/value For the designated locomotives, the origins of the heavy-duty roller bearing failures and its design shortcomings are revealed by examining and comparing them with a real-life service history of many of the same types of bearings. The novelty of the research is in using the combination of the methods mentioned above and its decent outcome.
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来源期刊
World Journal of Engineering
World Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
10.50%
发文量
78
期刊介绍: The main focus of the World Journal of Engineering (WJE) is on, but not limited to; Civil Engineering, Material and Mechanical Engineering, Electrical and Electronic Engineering, Geotechnical and Mining Engineering, Nanoengineering and Nanoscience The journal bridges the gap between materials science and materials engineering, and between nano-engineering and nano-science. A distinguished editorial board assists the Editor-in-Chief, Professor Sun. All papers undergo a double-blind peer review process. For a full list of the journal''s esteemed review board, please see below.
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