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An Attachable Electromagnetic Energy Harvester Driven Wireless Sensing System Demonstrating Milling-Processes and Cutter-Wear/Breakage-Condition Monitoring

机译:可连接的电磁能量收集器驱动的无线传感系统可显示铣削过程和刀具磨损/断裂状况监控

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摘要

An attachable electromagnetic-energy-harvester driven wireless vibration-sensing system for monitoring milling-processes and cutter-wear/breakage-conditions is demonstrated. The system includes an electromagnetic energy harvester, three single-axis Micro Electro-Mechanical Systems (MEMS) accelerometers, a wireless chip module, and corresponding circuits. The harvester consisting of magnets with a coil uses electromagnetic induction to harness mechanical energy produced by the rotating spindle in milling processes and consequently convert the harnessed energy to electrical output. The electrical output is rectified by the rectification circuit to power the accelerometers and wireless chip module. The harvester, circuits, accelerometer, and wireless chip are integrated as an energy-harvester driven wireless vibration-sensing system. Therefore, this completes a self-powered wireless vibration sensing system. For system testing, a numerical-controlled machining tool with various milling processes is used. According to the test results, the system is fully self-powered and able to successfully sense vibration in the milling processes. Furthermore, by analyzing the vibration signals (i.e., through analyzing the electrical outputs of the accelerometers), criteria are successfully established for the system for real-time accurate simulations of the milling-processes and cutter-conditions (such as cutter-wear conditions and cutter-breaking occurrence). Due to these results, our approach can be applied to most milling and other machining machines in factories to realize more smart machining technologies.
机译:展示了一种用于监控铣削过程和刀具磨损/破损状况的可连接的电磁能量收集器驱动的无线振动传感系统。该系统包括电磁能量收集器,三个单轴微机电系统(MEMS)加速度计,无线芯片模块和相应的电路。由带有线圈的磁体组成的收割机利用电磁感应来控制旋转轴在铣削过程中产生的机械能,从而将利用的能转换为电能。电输出由整流电路整流,以为加速度计和无线芯片模块供电。收割机,电路,加速度计和无线芯片被集成为能量收集器驱动的无线振动传感系统。因此,这完成了自供电的无线振动感测系统。对于系统测试,使用具有各种铣削过程的数控加工工具。根据测试结果,该系统是完全自供电的,能够成功地感应铣削过程中的振动。此外,通过分析振动信号(即,通过分析加速度计的电输出),成功建立了系统的标准,用于实时精确地模拟铣削过程和铣刀状况(例如铣刀磨损状况和刀具破损)。由于这些结果,我们的方法可以应用于工厂中的大多数铣床和其他加工机,以实现更智能的加工技术。

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