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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Real-Time Evaluation of Tool Flank Wear by In-Process Contact Resistance Measurement in Face Milling
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Real-Time Evaluation of Tool Flank Wear by In-Process Contact Resistance Measurement in Face Milling

机译:通过面铣削过程中的接触电阻测量实时评估刀具侧面磨损

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This paper reports in-process detection of tool wear by using tool-work thermo-electromotive force (E.M.F.) as a sensor signal in face milling. In the case of using a single cutting edge, E.M.F. at the beginning of cut increased slowly corresponding to the width of tool flank wear. We assume this phenomenon is due to variations in electric resistance by increase of the contact area between the workpiece and the tool, so electric current between tool and workpiece was also detected. The variations of contact electric resistance calculated from both the E.M.F. and the electric current reveal that the electric resistance decreases as the tool flank wear progresses because contact areas between tool and workpiece increase. We developed a measurement system of variations of the contact resistance during face milling process. By monitoring the contact resistance using this system, the real-time detection of the width of tool flank wear can be achieved stably during intermittent cutting operations.
机译:本文报告了通过使用工具工作热电动势(E.M.F.)作为端面铣削中的传感器信号对工具磨损进行过程检测的方法。如果使用单个切削刃,则E.M.F.在切削开始时,对应于刀具侧面磨损的宽度逐渐增加。我们认为这种现象是由于工件和工具之间的接触面积增加而引起的电阻变化,因此也检测到了工具和工件之间的电流。由两个E.M.F.电流显示出,随着刀具侧面磨损的进行,电阻减小,这是因为刀具与工件之间的接触面积增加了。我们开发了一种在端面铣削过程中接触电阻变化的测量系统。通过使用该系统监视接触电阻,可以在间歇切削操作期间稳定地实时检测到刀具侧面磨损的宽度。

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