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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Development of Sequential Optimization Method for CNC Turning Based on In-Process Tool Wear Monitoring
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Development of Sequential Optimization Method for CNC Turning Based on In-Process Tool Wear Monitoring

机译:基于过程中刀具磨损监测的数控车削顺序优化方法开发

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摘要

A system and procedures are developed to optimize the cutting speed for CNC turning. The current amount of tool wear is estimated based on the in-process cutting force measurement by applying the method developed and reported previously. Once the tool wear is estimated for the different cutting speeds, the coefficients of the Taylor's tool life equation are determined or successively modified based on the estimated tool wear data. The optimum cutting speed is obtained by referring to the criteria of either the minimum production cost or the maximum production rate. The system developed is applied to actual turning of carbon steel with coated carbide tools, and it has been proved that the system runs satisfactory. The method developed here can be readily applied to unknown combinations of the work material and the tool, as it searches the optimum cutting conditions automatically while the process is going on.
机译:开发了一种系统和程序来优化CNC车削的切削速度。通过应用先前开发和报告的方法,基于过程中的切削力测量值来估计当前的工具磨损量。一旦针对不同的切削速度估计了刀具磨损,就可以基于估计的刀具磨损数据确定或相继修改泰勒刀具寿命方程的系数。通过参考最小生产成本或最大生产率的标准可获得最佳切割速度。所开发的系统应用于带有涂层硬质合金刀具的碳钢的实际车削,并且已经证明该系统运行令人满意。这里开发的方法可以很容易地应用于工作材料和工具的未知组合,因为它可以在进行过程中自动搜索最佳切削条件。

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