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EXPERIMENTAL INVESTIGATION OF CHARGED PARTICLES EMISSION IN MACHINING: TOWARDS PROCESS MONITORING

机译:机械加工中带电粒子排放的实验研究:走向过程监控

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Charged particles are emitted when a material undergoes plastic deformation and failure. In machining, plastic deformation and shearing of work piece material takes place continuously; hence, emission of charged particles can be expected. In this work, an in-situ sensor has been developed to capture the emitted positively (positive ion) and negatively (electron and negative ion) charged particles in real time in an orthogonal machining process at atmospheric conditions without the use of coolant. The sensor consists of a Faraday plate, mounted on the flank face of the cutting tool, to collect the emitted ions and the intensity of emissions is measured with an electrometer. Positively and negatively charged particles are measured separately by providing suitable bias voltage supply to the Faraday plate. Ion emissions are measured during machining of three different work piece materials (mild steel, copper and stainless steel) using a carbide cutting tool. The experimental results show a strong correlation between the emission intensity and variation in machining parameters and material properties. Increasing material removal rate in machining increases the intensity of charged particle emissions because of increase in volume of material undergoing shear, fracture, and deformation. It is found that emission intensity is directly proportional to the resistivity and strength of workpiece material. Charged particles emission intensity is found to be very sensitive to the machining conditions which enables the use of this sensor as an alternate method of tool condition monitoring.
机译:当材料经历塑性变形和破坏时,会发射出带电粒子。在加工中,工件材料的塑性变形和剪切是连续发生的。因此,可以预期带电粒子的发射。在这项工作中,已经开发出一种原位传感器,以在大气条件下正交加工过程中实时捕获发射的带正电(正离子)和带负电(电子和负离子)的带电粒子,而无需使用冷却剂。传感器由法拉第板组成,该法拉第板安装在切削工具的侧面,以收集发射的离子,并使用静电计测量发射强度。通过为法拉第平板提供适当的偏置电压,分别测量带正电和带负电的颗粒。在使用硬质合金切削刀具加工三种不同的工件材料(低碳钢,铜和不锈钢)的过程中,对离子排放进行了测量。实验结果表明,发射强度与加工参数和材料性能的变化之间具有很强的相关性。机械加工中材料去除率的提高会增加带电粒子发射的强度,这是因为经历剪切,断裂和变形的材料体积增加了。发现发射强度与工件材料的电阻率和强度成正比。发现带电粒子的发射强度对加工条件非常敏感,这使得可以使用此传感器作为工具状态监测的替代方法。

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