一种高梯度静磁场感应式全流量磨粒监测传感器*
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中图分类号TP2121TH73 文献标识码A国家标准学科分类代码: 4604020

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*基金项目:基金项目国家自然科学基金(51605064,51705057)、国家留学基金委资助项目(201907845005)


An inductive sensor based on the highgradient static magnetic field for full flow debris monitoring
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    摘要:

    摘要:摘要针对传统单激励油液磨粒传感器难以实现全流量润滑油监测的问题,提出了一种基于多激励结构的感应式磨粒监测传感器。在传感器流道周向均匀布置多个激励结构,扩大检测范围,从而实现全流量磨粒监测。建立三维有限元模型,分析了感应线圈的静磁场和瞬态特性,揭示了激励结构数量与yz平面周向磁场均匀性的关系。同时,优化了传感器的磁极形状。单颗粒模拟实验表明激励电流、电流方向和激励结构数量直接影响磨粒感应信号波形,验证了激励结构数量是影响传感器有效检测范围的重要因素。润滑油系统循环条件下的磨粒注入实验结果显示,传感器能够在直径为40 mm的流道中检测到13μm的铁磁性磨粒。

    Abstract:

    Abstract:It is difficult to achieve fullflow lubricant monitoring by using the traditional single excitation wear debris sensor. Hence, this paper designs an inductive wear debris monitoring sensor based on the multiexcitation structure. Multiple excitation structures are placed in the circumferentialdirection ofthe flow channel, which expand thedetection range.In thisway,the debris detection within the whole diameters canbe realized.By formulatinga threedimensionalfinite elementmodel,thestaticmagnetic fieldandtransientcharacteristics of the induction coil are analyzed. The relationship between the number of excitation structures and the uniformity of the yz plane circumferential magnetic field has been revealed. Meanwhile, the magnetic pole shape of the sensor is optimized. By using the generated signal, experimental results show that intensity and direction of excitation current, and the number of excitation structures have directly influence on the inductive signal. Results verify that the number of excitation structures is an important influencing factor on the effective detection range of the sensor. And the results of inputting wear debris experiment show that the 13 μm ferromagnetic debris in a 40 mm diameter flow channel under the condition of lubricating oil circulation can be detected.

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萧红,周威,罗久飞,谭峰,冯松.一种高梯度静磁场感应式全流量磨粒监测传感器*[J].仪器仪表学报,2020,41(6):10-18

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  • 在线发布日期: 2022-03-01
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