提高旋转机械振动双极分析的灵敏度和扩展功能

A. Sundukov, Ye. V. Shakhmatov
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摘要

振动声诊断是对旋转机械缺陷进行无损检测的最有效方法。实践表明,它的成功应用在很大程度上取决于一套可用的分析振动过程的方法。齿轮是最常见的重型部件,在很大程度上决定了机器的整体振动状况。基于振动的齿轮缺陷诊断方法多种多样。它们包括一种有趣的双极分析方法,该方法包括对振动信号的正、负部分进行单独分析,随后以差异、比率等形式形成诊断指标。该方法旨在通过齿接触模式的位置来评估齿轮箱总成的质量。该方法的缺点是使用面积有限,灵敏度低。研究表明,利用宽带振动极大值对双极分析进行旋转机械缺陷振动诊断,可显著提高诊断效率。以太阳齿轮卫星齿轮副齿侧磨损为例,以某涡轮螺旋桨发动机差动齿轮箱齿侧隙值为例,通过提高方法的灵敏度和扩展方法的功能,可以保证计算结果的准确性。在我们的分析中,我们使用了不同齿面磨损程度的齿轮箱和不同齿隙的修理齿轮箱的统计数据。在这种情况下,可以使用一系列众所周知的诊断指标:信息序列的n维向量的强度、单个谐波的参数、调幅深度、选定频段的概率特征、无量纲判别器、倒频谱等。本文给出了这些方法的一些实例。
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Increasing the sensitivity and expanding the functionality of bipolar analysis of rotary machine vibrations
Vibration-acoustic diagnostics of rotary machine defects is the most effective method for non-destructive testing of their technical condition. Practice shows that its successful use largely depends on a set of available methods for analyzing vibration processes. Gears are the most common and heavy-duty components that largely determine the overall vibratory condition of a machine. There is quite a variety of methods for vibration-based diagnostics of gear defects. They include an interesting method of bipolar analysis which consists in separate analysis of the positive and negative parts of a vibration signal with subsequent formation of the diagnostic indicator in the form of differences, ratios, etc. The method is aimed at assessing the quality of gearbox assembly by the position of the tooth contact pattern. Limited area of use and low sensitivity is a disadvantage of this method. The paper shows that the use of broadband vibration maxima in the application of bipolar analysis in vibration-based diagnostics of rotary machine defects significantly increases its efficiency. Using the example of wear of tooth flanks in the sun gear satellite gears pair and the value of the backlash in the differential gearbox of a turboprop engine, it was found to be ensured by increasing the sensitivity of the method and expanding its functionality. In our analysis, we used statistics of gearboxes with different degrees of wear of the tooth flanks and repaired gearboxes with different backlashes. In this case, a wide set of well-known diagnostic indicators can be used: intensity of n-dimensional vectors of informative series, parameters of individual harmonics, amplitude modulation depth, probabilistic characteristics in selected frequency bands, dimensionless discriminants, cepstra, etc. The paper presents some examples of these methods.
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