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Characteristics of Thermo-Electromotive Force, Electric Current and Electric Resistance in Intermittent Cutting Process by Face Milling

机译:磨削铣削间歇切削过程中热电电动力,电流和电阻的特性

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Tool-work thermo-electromotive force (E.M.F.) is very important signal because it is regarded as the evidence of direct cutting phenomenon at the cutting position. Our aim is to carry out in-process monitoring of tool wear under intermittent cutting conditions. We examined the relation between E.M.F. and tool flank wear to explore the possibility of in-process tool wear detection using E.M.F. Waveform variations in E.M.F. signals corresponding to tool flank wear were observed at the starting position of cut. To determine the cause of these waveform variations, the electric current was also measured and the electric resistance between the tool and work piece were calculated using Ohm's law. It is found that the change in the tool-work electric resistance corresponds to the progression of the tool flank wear. By monitoring this tool-work electric resistance, it is possible to conduct in-process detection of tool flank wear.
机译:工具工作热电动势(即)是非常重要的信号,因为它被认为是在切割位置直接切割现象的证据。我们的宗旨是在间歇性切削条件下进行工具磨损的过程监控。我们审查了e.m.f之间的关系。和工具侧面磨损,探讨使用e.m.f的过程工具磨损检测的可能性。 e.m.f的波形变化。在切割的起始位置观察到对应于刀片侧面磨损的信号。为了确定这些波形变化的原因,还测量了电流,使用欧姆的法律计算了工具和工件之间的电阻。结果发现,工具工作电阻的变化对应于刀具侧面磨损的进展。通过监测该工具工作电阻,可以进行工艺侧面磨损的过程检测。

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