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首页> 外文期刊>International Journal of Mechanical Sciences >Run-out based crossed roller bearing life prediction by utilization of accelerated testing approach and FE numerical models
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Run-out based crossed roller bearing life prediction by utilization of accelerated testing approach and FE numerical models

机译:基于径流的交叉滚子轴承寿命预测利用加速测试方法和FE数模型

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摘要

Surface wear and spalling phenomena are the most important factors affecting roller bearing performance and operational lifetime, in terms of number of cycles the bearing can operate. Although bearing life has been traditionally defined by the onset of spalling, as specified by international standard ISO 281, this definition does not always reflect the real operational conditions, since bearing wear can also represent a failure criterion when excessive run-out occurs. In such cases, bearing life needs to be predicted according to the amount of bearing run-out resulting from wear due to load and number of cycles. In the current study, the wear phenomenon has been modeled using the Archard wear and Lemaitre damage models, both included in a numerical simulation of a roller bearing assembly. Wear and damage models, along with the results of accelerated life experiments, have been used to develop a reliable method enabling bearing life prediction with a minimal number of material characterization tests. Accelerated life testing experiments on real bearings have been performed to confirm the reliability of the methodology, showing good correlation with numerical simulation results and proving that the developed model can be utilized for prediction of the lifetime of bearings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:表面磨损和剥落现象是影响滚子轴承性能和操作寿命的最重要因素,就轴承可以运行的循环数而言。虽然轴承寿命传统上由剥落的发作定义,但由国际标准ISO 281规定的,这种定义并不总是反映实际操作条件,因为轴承磨损也可以在发生过度的漏出时代表失效标准。在这种情况下,需要根据由于负载和循环次数引起的轴承导致的轴承输出量来预测轴承寿命。在目前的研究中,磨损现象已经使用Archard磨损和Lemaitre损坏模型进行了建模,包括在滚子轴承组件的数值模拟中。磨损和损坏模型以及加速寿命实验的结果,已被用于开发一种可靠的方法,使轴承寿命预测具有最小数量的材料表征测试。已经进行了对实际轴承的加速寿命测试实验以确认方法的可靠性,显示出与数值模拟结果的良好相关性,并证明开发模型可用于预测轴承的寿命。 (c)2017 Elsevier Ltd.保留所有权利。

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