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Profiling a Ball Bearing Oil Film with Ultrasonic Reflection

机译:超声反射分析球轴承油膜

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The balls and raceways in a rolling bearing are separated by a very thin oil layer that is critical to performance. There are several models for predicting the layer thickness and some lab-based methods for studying individual contacts in model apparatuses. However, techniques for in situ measurement of oil films in real bearings are scarce, especially at the level of detail of the film profile. The purpose of this study was to experimentally measure the film thickness profile between the outer ring and balls in a rolling element bearing using an ultrasonic reflection method. A 25-MHz ultrasonic immersion transducer was installed in a water bath above the bearing and the incident pulses were focused onto the moving contacts. The oil film thickness profiles across the ball passage are presented for a 6410 deep-groove ball bearing under loads up to 49 kN and speeds up to 600 rpm. The spatial resolution of an ultrasonic pulse is relatively low, so it is not possible to pick out the detail of the horseshoe constriction at the contact exit. However, there are some indications of its presence and the central film thickness measurement agrees well with theoretical solutions. For a range of loads and speeds, oil films of between 0.1 and 0.7 μm were measured. Data storage limitations mean that the measurements are limited to low-resolution profiles across several balls or a detailed profile over a single ball. The oil films were also measured for successive balls and found to be identical within the accuracy of the method.
机译:滚动轴承中的滚珠和滚道被非常关键的非常薄的油层隔开。有几种用于预测层厚度的模型,以及一些用于研究模型设备中各个触点的基于实验室的方法。但是,在实际轴承中原位测量油膜的技术很少,尤其是在油膜轮廓的细节水平上。这项研究的目的是使用超声波反射方法,通过实验测量滚动轴承中外圈与滚珠之间的膜厚分布。一个25 MHz的超声波浸没式换能器安装在轴承上方的水浴中,入射脉冲聚焦在活动触点上。给出了6410深沟球轴承在最高49 kN的载荷和最高600 rpm的转速下整个球通道的油膜厚度分布。超声波脉冲的空间分辨率相对较低,因此无法在接触出口处挑选出马蹄形收缩物的细节。然而,有迹象表明它的存在,并且中心膜厚度的测量与理论解非常吻合。对于一定范围的负载和速度,测得的油膜介于0.1和0.7μm之间。数据存储限制意味着测量仅限于多个球的低分辨率轮廓或单个球的详细轮廓。还测量了连续球的油膜,发现在该方法的精度内相同。

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