研究滚动体轴承中的电阻抗信号行为作为检测损坏的新方法

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-19 DOI:10.3390/machines12070487
F. Becker-Dombrowsky, Johanna Schink, Julian Frischmuth, E. Kirchner
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引用次数: 0

摘要

作者早前已经展示了基于阻抗的滚动轴承状态监测的机会:通过阻抗信号的变化和衍生特征可以检测点蚀损坏。可以定位和测量滚道方向上的点蚀长度。此外,特征行为的变化在物理上是可以解释的。这些研究主要针对单一类型的轴承和一种载荷条件。尚未考虑不同的轴承类型和载荷角度。因此,我们对不同类型轴承在不同载荷角度下的阻抗信号及其特征进行了研究和比较。这些信号是在滚动轴承试验台上进行疲劳试验时产生的,采用的是基于结构声的传统综合振动分析方法。滚动轴承阻抗通过交流电测量桥测量。振动信号的显著变化标志着疲劳试验的结束。因此,可以将阻抗的响应时间与振动信号的响应时间进行比较。由此可见,滚动轴承阻抗是一种独立于轴承类型的状态监测工具。在纯径向载荷的情况下,阻抗信号可检测到明显的变化,这表明存在点蚀损坏。在组合载荷下,也能检测到信号变化,但不如径向载荷下明显。与纯径向载荷相比,指示损坏的信号变化发生得较晚,但仍能进行早期检测。因此,滚动轴承阻抗是一种点蚀损坏检测工具,不受轴承类型和载荷角度的影响。
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Investigation of the Electrical Impedance Signal Behavior in Rolling Element Bearings as a New Approach for Damage Detection
The opportunities of impedance-based condition monitoring for rolling bearings have been shown earlier by the authors: Changes in the impedance signal and the derived features enable the detection of pitting damages. Localizing and measuring the pitting length in the raceway direction is possible. Furthermore, the changes in features behavior are physically explainable. These investigations were focused on a single bearing type and only one load condition. Different bearing types and load angles were not considered yet. Thus, the impedance signals and their features of different bearing types under different load angles are investigated and compared. The signals are generated in fatigue tests on a rolling bearing test rig with conventional integrated vibration analysis based on structural borne sound. The rolling bearing impedance is gauged using an alternating current measurement bridge. Significant changes in the vibration signals mark the end of the fatigue tests. Therefore, comparing the response time of the impedance can be compared to the vibration signal response time. It can be shown that the rolling bearing impedance is an instrument for condition monitoring, independently from the bearing type. In case of pure radial loads, explicit changes in the impedance signal are detectable, which indicate a pitting damage. Under combined loads, the signal changes are detectable as well, but not as significant as under radial load. Damage-indicating signal changes occur later compared to pure radial loads, but nevertheless enable an early detection. Therefore, the rolling bearing impedance is an instrument for pitting damage detection, independently from bearing type and load angle.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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