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A Wireless Sensor Telemeter for in situ Cage Vibration Measurement and Corroboration with Analytical Results

机译:一种无线传感器遥测表,用于原位笼式振动测量和与分析结果的粗化

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This article presents both experimental and analytical investigations on the dynamic behavior of the cage in a ball bearing. For the experimental investigation, a wireless sensor telemeter system was designed and developed to monitor the cage motions. The sensor, which was integrated on the bearing cage, is composed of a commercially available capacitor-inductor (LC) circuit. The LC circuit on the rotating cage was coupled to a transceiver that was stationary and positioned in close proximity to the cage. In order to achieve the objective of the analytical investigation, the explicit finite element method (EFEM) was used to simulate the bearing cage. The EFEM cage model was then combined with the dynamic bearing model to simulate the cage motion during operation. The results from the experimental measurement using the telemeter were then compared with the analytical modeling. The developed telemeter demonstrated the capability of the cage telemeter in detecting various bearing frequencies. These include the cage frequency, shaft frequency, and ball pass frequency on the outer race (BPFO), which was introduced by creating a spall on the bearing outer race. Compared to standard accelerometers that are commonly used to measure vibrations on the bearing housing, the cage telemeter has shown advantages in sensing cage motions and detecting bearing defects regardless of the location of the damage. Analytical simulation using the EFEM cage model correlated well with the experimental results and provided more insight into the bearing cage dynamics.
机译:本文介绍了滚珠轴承中笼动态行为的实验和分析研究。对于实验研究,设计并开发了无线传感器遥测仪系统以监控笼式运动。集成在轴承轿厢上的传感器由市售电容电感器(LC)电路组成。旋转笼上的LC电路耦合到静止的收发器,并定位在笼上的靠近。为了实现分析调查的目的,使用明确的有限元方法(EFEM)来模拟轴承笼。然后将EFEM笼式模型与动态轴承模型组合以模拟操作期间的笼子运动。然后将使用遥测计量测量的结果与分析模拟进行比较。开发的遥测表展示了笼子遥测检测各种轴承频率的能力。这些包括在外部竞争(BPFO)上的笼频,轴频率和球通频率,通过在轴承外部竞争上产生壁来引入。与常用于轴承壳体上的振动的标准加速度计相比,笼遥遥计表明在感测笼式运动和检测轴承缺陷时,无论损坏的位置如何。使用EFEM笼式模型的分析模拟与实验结果良好,并在轴承笼式动态方面提供了更多的洞察力。

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