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Assessment of the Adequacy of the Definition of Cutting Forces for the Purpose of Minimizing Energy Consumption in Machining Processes

机译:评估切削力定义的适当性,以最大程度地减少加工过程中的能耗

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摘要

Minimizing energy consumption in the processing of parts on metal-cutting equipment is most effective at the stage of designing the content of operations. Important in this process is the precise determination of the initial parameters - cutting forces. This parameter allows you to plan both energy consumption and perform additional calculations for the deformation of the tooling and workpiece in order to predict the geometric accuracy of the machined part. The article presents the results of experiments on measuring the circumferential cutting force during milling operations of an aluminum alloy workpiece with an end mill. The measurements were carried out by an indirect method - by recording the electrical power on the spindle and then calculating the circumferential cutting force. Theoretical analysis of the methods of calculation of cutting forces showed significant differences between the results obtained by domestic methods and recommendations of world manufacturers of cutting tools. Statistical analysis of the results of calculations based on reference data and measurements made it possible to assess the adequacy of the known methods for calculating cutting forces in order to minimize energy consumption in operations of processing parts on metal-cutting equipment.
机译:在设计操作内容阶段,将金属切削设备上的零件加工中的能耗降至最低是最有效的。在此过程中,重要的是精确确定初始参数-切削力。该参数允许您计划能耗,并对工具和工件的变形进行额外的计算,以预测加工零件的几何精度。本文介绍了在用立铣刀铣削铝合金工件的过程中测量圆周切削力的实验结果。通过间接方法进行测量-通过记录主轴上的电功率,然后计算周向切削力。对切​​削力计算方法的理论分析表明,国内方法获得的结果与世界切削工具制造商的建议之间存在显着差异。基于参考数据和测量值对计算结果进行统计分析,可以评估已知的计算切削力方法的适当性,从而最大程度地减少在金属切削设备上加工零件的操作中的能耗。

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