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In-Process Quality Inspection of Rolling Element Bearings Based on the Measurement of Microelastic Deformation of Outer Ring

机译:基于外环微弹性变形的滚动元件轴承的过程内部质量检测

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Quality inspection is the necessary procedure before bearings leaving manufacturing factories. A testing machine with low shaft speed and light radial load condition is generally used to test the dynamic quality of bearings, which avoids creating any potential damages to testing bearings. However, the signal of defective bearings is easily polluted by very weak noise using the traditional vibration-based measurement method due to the low shaft speed and light radial load condition specified for nondestructive inspection, which needs complicated and time-consuming calculation and is not suitable for online inspection. Thus, there are problems about special operating conditions and weak fault severity in quality inspection of bearings, which is quite different from the fault diagnosis of bearings. In this paper, a novel dynamic quality evaluation technique is proposed based on the measurement of Hertz deformations. The measurement system is mainly composed of an eddy current sensor, sensor fixture, and data acquisition platform with less transfer path than the vibration-based measurement system. The sensor fixture is optimized through numerical simulations to obtain signals with a high signal-to-noise ratio. Accurate evaluation of dynamic quality can be implemented reliably with simple signal processing. The proposed method can be used with a rotating speed of 100?rev/min and test load of 100?N, which is remarkably lower than the traditional quality inspection machineries with a rotating speed of around 1000?rev/min and the test load of 400?N. Both simulation and experiment studies have verified the proposed method.
机译:质量检验是轴承离开制造工厂之前的必要程序。具有低轴速度和光径向载荷条件的试验机通常用于测试轴承的动态质量,避免为测试轴承产生任何潜在的损坏。然而,由于非破坏性检查指定的低轴速度和光径向负载条件,缺陷轴承的信号很容易被非常弱的噪声污染,这是针对非破坏性检查的低速度和光径向载荷条件,这需要复杂且耗时的计算,并且不适合用于在线检查。因此,轴承质量检测质量检测中存在特殊操作条件和弱故障严重性存在问题,这与轴承的故障诊断完全不同。本文基于赫兹变形的测量,提出了一种新型动态质量评估技术。测量系统主要由涡流传感器,传感器夹具和数据采集平台组成,具有比基于振动的测量系统更少的传输路径。通过数值模拟优化传感器夹具,以获得具有高信噪比的信号。通过简单的信号处理可以可靠地实现对动态质量的准确评估。所提出的方法可以使用100?Rev / min的旋转速度和100ΩN的测试负载,这比传统的质量检测机器相当低于旋转速度约为1000°的旋转速度?Rev / min和测试负载400?n。两种模拟和实验研究都验证了所提出的方法。

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