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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Prediction of PCBN tool life in hard turning process based on the three-dimensional tool wear parameter
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Prediction of PCBN tool life in hard turning process based on the three-dimensional tool wear parameter

机译:基于三维工具磨损参数的硬路过程中PCBN工具寿命的预测

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摘要

The ideal scenario for the implementation of a machining process is to be able to predict tool performance without the need to conduct practical experiments. However, in an industrial environment, each set of machining conditions is unique, since the machine-tool conditions, machined material, cutting tool, and fixture system can vary. This can lead to differences between the predicted values and practical results. In this context, the aim of this research was to show and discuss a tool performance test methodology and a tool-life prediction model using the three-dimensional (volumetric) wear parameter W-RM (volume of material removed from the tool) applied to hard turning with PCBN tools. The wear parameter W-RM is measured at the beginning of the tool life (up to 25%) by focus variation microscopy (FVM). The tool wear rate (WRRM) is then calculated based on the ordinary least squares (OLS) method, and the tool life is estimated (TWRM) adopting the volume of material removed from the tool (WRMmax) as the criteria for the end of tool life. The tool-life model developed was capable of predicting the tool life with errors below 4% at the higher values of cutting speed adopted (v(c) = 150-187.5 m/min), that is, the cutting speeds applied industrially. The methodology adopted and the model developed represent a significant time reduction in the experimental machining tests, streamlining the research and development of the cutting tool grades, as well as the machining process optimization.
机译:实现加工过程的理想场景是能够预测工具性能,而无需进行实际实验。然而,在工业环境中,每组加工条件都是独一无二的,因为机床条件,加工材料,切削工具和夹具系统可以变化。这可能导致预测值与实际结果之间的差异。在这种情况下,本研究的目的是使用三维(体积)磨损参数W-RM(从工具中取出的材料体积)来显示和讨论工具性能测试方法和工具寿命预测模型。用PCBN工具硬盘。佩戴参数W-RM通过聚焦变异显微镜(FVM)在刀具寿命(最多25%)开始时测量。然后基于普通的最小二乘(OLS)方法计算工具磨损率(WRRM),估计工具寿命(TWRM)采用从工具(WRMMAX)中取出的材料的体积作为工具结束的标准生活。开发的工具 - 寿命模型能够在采用的切割速度的较高值下预测损耗低于4%的误差(V(c)= 150-187.5米/分钟),即工业上应用的切割速度。采用的方法和模型开发的方法代表了实验加工试验的显着减少,简化了切削刀具等级的研究和开发,以及加工过程优化。

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