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A Comparative Experimental Study on Identification of Defect Severity in Rolling Element Bearings using Acoustic Emission and Vibration Analysis

机译:利用声发射和振动分析识别滚动轴承缺陷严重程度的对比实验研究

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This paper describes the comparison between Vibration Analysis (VA) and Acoustic Emission (AE) method to predict the defect severity in rolling element bearings with respect to the gradual increase of defect size. In bearing fault diagnosis vibration based methods are very popular, but the signals acquired by its transducers from the bearings are distorted by other faults and mechanical noise from the equipment. Vibration based methods are effective when the defect in the bearings has already become severe. AE is a non destructive testing (NDT) technique used in structural health monitoring and its application for bearing defect diagnosis is gaining momentum as an alternate diagnostic tool because of its inherent high signal-to-noise-ratio (SNR). A bearing test rig was designed and set up to study the various defects in rolling element bearings in real environment. In earlier cases, though the researchers studied on different types of seeded defects with random sizes, they could not ascertain the correlation between their defect sizes and the vibration amplitude. The experimental investigation reported in this paper is centered on seeded defect of same type with gradual increase of its size on outer race of radially loaded cylindrical roller bearings and running the defective bearing at different speeds and loads. Data acquired through AE & vibration probes simultaneously for better diagnosis. Comparisons between AE and VA over a range of speed and load conditions at gradual increase of defect size are presented and from them it is concluded that AE method is superior to identify the severity of defect.
机译:本文介绍了振动分析(VA)和声发射(AE)方法之间的比较,以预测滚动轴承在缺陷尺寸逐渐增加时的缺陷严重性。在轴承故障诊断中,基于振动的方法非常流行,但是其换能器从轴承获取的信号会由于其他故障和设备的机械噪声而失真。当轴承中的缺陷已经严重时,基于振动的方法是有效的。 AE是一种用于结构健康状况监视的非破坏性测试(NDT)技术,由于其固有的高信噪比(SNR),其在轴承缺陷诊断中的应用正逐渐成为一种替代诊断工具。设计并建立了一个轴承测试台,以研究实际环境中滚动轴承的各种缺陷。在较早的情况下,尽管研究人员研究了具有随机尺寸的不同类型的种子缺陷,但他们无法确定缺陷尺寸与振动幅度之间的相关性。本文报道的实验研究集中在同类型的缺陷轴承上,随着径向载荷圆柱滚子轴承外圈尺寸的增加,缺陷轴承在不同的速度和负载下运行。通过AE和振动探头同时获取的数据可以更好地进行诊断。提出了在缺陷尺寸逐渐增加的情况下,在一定的速度和负载条件下,AE和VA的比较,并得出结论,AE方法可更好地识别缺陷的严重性。

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