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Tacholess skidding evaluation and fault feature enhancement base on a two-step speed estimation method for rolling bearings

机译:Tacholess Spidding评估和故障特征增强基础滚动轴承两步速度估计方法

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摘要

Rolling bearing is an indispensable part in rotary machinery, and its fault diagnosis and life prediction have been a hot issue in the field of research and engineering. With the development of fault diagnosis technology, researchers pay a growing attention to skidding which is easy to cause incipient bearing failure. Due to the complex structure and motion process, it is difficult to evaluate skidding degree of in-service rolling bearing. In addition, skidding will further modulate the fault impulse signal and make fault feature extraction more difficult. Especially when the key phase information is not available, the coupling modulation of speed and skidding bring difficulty to precisely evaluate skidding rate through the vibration information. To solve the above problems, a skidding evaluation and fault feature enhancement method for rolling bearings with no key-phasor is proposed in this work. Based on the short-time Fourier transform, this paper proposes a two-step speed estimation approach by introducing iterative Gaussian process regression and phase recalculation process of the impact envelope signal. This method cannot only estimate the reference shaft speed more accurately but also calculate the cage speed delay relative to the theoretical value caused by skidding. The experimental results show that the method is effective in skidding evaluation and fault feature enhancement, which lays a foundation for further study on the performance degradation assessment in the whole life of rolling bearings.
机译:滚动轴承是旋转机械中不可或缺的一部分,其故障诊断和生命预测是研究和工程领域的一个热门问题。随着故障诊断技术的发展,研究人员越来越关注滑行,易于引起初始轴承失效。由于结构复杂和运动过程,难以评估载入式滚动轴承的滑动度。此外,SPIDDINGS将进一步调制故障脉冲信号并使故障特征提取更加困难。特别是当不可用关键相位信息时,速度和滑动的耦合调制会使难以精确地通过振动信息评估滑动率。为了解决上述问题,在这项工作中提出了一种用于滚动轴承的滑动评估和故障特征增强方法。基于短时傅里叶变换,本文通过引入冲击包络信号的迭代高斯过程回归和相位重新计算过程来提出两步速度估计方法。该方法不能更准确地估计参考轴速度,而且还可以根据滑动引起的理论值计算笼速延迟。实验结果表明,该方法在滑动评估和故障特征增强方面是有效的,这为进一步研究了滚动轴承的整个寿命的性能降级评估的进一步研究。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2022年第1期|108017.1-108017.16|共16页
  • 作者单位

    Scale Key Laboratory for Manufacturing Systems Engineering School of Mechanical Engineering Xi 'an Jiaotong University Xi'an 710049 Shaanxi Province China;

    Science & Technology on Reliability and Environmental Engineering Laboratory School of Reliability and Systems Engineering Beihang University Road No. 37 Haldian District Beijing China;

    Scale Key Laboratory for Manufacturing Systems Engineering School of Mechanical Engineering Xi 'an Jiaotong University Xi'an 710049 Shaanxi Province China;

    Scale Key Laboratory for Manufacturing Systems Engineering School of Mechanical Engineering Xi 'an Jiaotong University Xi'an 710049 Shaanxi Province China;

    CRRC Qingdao Sifang Co. Ltd. No.88 Jinhongdong Road Chengyang District 266111 Qingdao Shandong Province China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Skidding evaluation; Fault feature enhancement; Iterative Gaussian process regression; Phase recalculation process;

    机译:打滑评估;故障特征增强;迭代高斯过程回归;相重新计算过程;

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