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Tool flank wear recognition based on the variation of milling force vector in end milling

机译:基于铣削力载体在终端铣削中的变化的刀具佩戴识别

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In the manufacturing process, the cutting tool wear is an important affecting factor of the product quality. Tool wear condition monitoring is an effective means to ensure the workpiece quality, and to improve the tool life. Tool flank wear will directly lead to the variation of milling force. Therefore, a flank wear recognition approach of flat end milling tool based on the influence of the tool wear on the milling force vector is proposed in this paper. In this approach, the friction effect force and the cutting force of milling tool are treated separately, the milling force model of flat end milling tool is established, and it is believed that the milling forces of the tool without flank wear are not influenced by the friction effect. The influence of the milling tool flank wear on the milling force vector variation is investigated, and this influence relationship is adopted to recognize the flank wear of flat end milling tool. Finally, the superalloy material is used to perform the wear milling experiment on the CNC machine tool. The experiment results show that, this approach can recognize the milling tool flank wear efficiently and accurately.
机译:在制造过程中,切削刀具磨损是产品质量的重要影响因素。工具磨损状态监测是确保工件质量的有效手段,并提高刀具寿命。工具侧面磨损将直接导致研磨力的变化。因此,本文提出了基于铣削力载体上的工具磨损的影响的平端铣刀的侧面磨损识别方法。在这种方法中,建立了铣削工具的摩擦效应力和切割力,建立了扁平端铣刀的铣削力模型,据信,没有侧面磨损的工具的铣削力不受影响摩擦效应。研究了研磨工具侧面磨损对铣削力载体变异的影响,采用这种影响关系识别平端铣床的侧面磨损。最后,高温合金材料用于在CNC机床上进行耐磨研磨实验。实验结果表明,这种方法可以识别铣削工具侧面佩戴有效且准确。

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