Development of a Magnetostrictive Torque Sensor for Milling Process Monitoring

Hiro Ohzeki, A. Mashine, H. Aoyama, I. Inasaki
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引用次数: 22

Abstract

This paper deals with a sensor system based on the magnetostrictive effect, which is installed in a tool holder, for sensing cutting torque in order to monitor the milling process. Changes in the magnetic permeability of ferromagnetic alloy layers formed onto a rotating shaft due to torque are detected by coils as changes in impedance without contacting the rotating shaft. By mounting the magnetostrictive sensor on a tool holder, it became possible to detect cutting torque as close to the cutting point as possible. The accuracy of the proposed sensor system was confirmed through static and dynamic evaluation tests. In order to investigate the relationship between tool failure and cutting torque, side milling tests were performed, which bore out the possibility of estimating flank wear and tool fracture from the cutting torque detected by the proposed sensor system.
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用于铣削过程监测的磁致伸缩扭矩传感器的研制
本文研究了一种基于磁致伸缩效应的传感器系统,该系统安装在刀柄上,用于检测切削扭矩,以监控铣削过程。由于转矩作用,在转轴上形成的铁磁合金层的磁导率变化通过线圈检测为阻抗变化,而不与转轴接触。通过将磁致伸缩传感器安装在刀架上,可以在尽可能靠近切削点的地方检测切削扭矩。通过静态和动态评价试验,验证了该传感器系统的精度。为了研究刀具失效与切削扭矩之间的关系,进行了侧铣试验,验证了通过该传感器系统检测到的切削扭矩来估计刀具刃口磨损和刀具断裂的可能性。
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