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Model Development for Investigation of Localized Defects in Taper Roller Bearings Using Matrix Method of Dimensional Analysis

机译:尺寸分析矩阵法研究锥形滚子轴承局部缺陷的模型开发

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Catastrophic failures of the rotating machineries can be avoided by tracing the faults generated in the rolling contact bearings used for supporting these machines and are important sources of noise, vibration as well as sudden stoppage of the entire production or interruption of processes. A generalized model is developed using Matrix Method of Dimensional Analysis (MMDA) to establish dimensionless correlation between the response and consequence parameters for the assessment of localized surface defects in the different components of taper roller bearings tested on a developed test rig. Response surface methodology (RSM) is employed for the experimentation and to explore the dependence of various factors on the vibrations of these bearings. A numerical analysis performed in the study showed the effectiveness of MMDA model along with frequency domain scrutiny of the vibration data for detection of localized bearing defects.
机译:通过追踪用于支撑这些机器的滚动接触轴承中产生的故障,可以避免旋转机器的灾难性故障,并且是噪音,振动的重要源,振动以及整个生产的突然停止或过程中断。使用尺寸分析(MMDA)的矩阵方法开发了广义模型,以在开发的试验台上测试的锥形滚子轴承的不同部件中评估局部化表面缺陷之间的响应和后果参数之间的无量纲相关性。对响应表面方法(RSM)用于实验,并探讨各种因素对这些轴承的振动的依赖性。在该研究中进行的数值分析表明MMDA模型的有效性以及振动数据的频域仔细检查用于检测局部轴承缺陷。

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