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Modeling Flank Wear Progression Based on Cutting Force and Energy Prediction in Turning Process

机译:基于切割力的切割力和能量预测建模侧翼​​磨损进展

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Flank wear of cutting tools is often used as the tool life criterion because it has high impact on the diametric accuracy of turning. Accurate prediction of tool wear is important for optimizing tool change and other cutting parameters. In this work, a tool wear model is proposed based on the prediction of the cutting force and the energy consumption in turning process. Based on the cutting force prediction using a validated mechanistic force model, the energy consumption in turning can be estimated. A tool flank wear model is developed using the prediction of the cutting energy consumption and considering the impact of the cutting speed. By using the distribution of the cutting force on tool edge and the energy consumption for each revolution of the workpiece, the wear volume distribution on the tool edge for each revolution is predicted. The flank wear (VB) is further calculated using the tool geometry information. The model prediction of flank wear is validated by using tool wear data published in literature. The comparison shows that the model prediction agrees well with the experimental results.
机译:切削工具的侧翼磨损通常用作刀具寿命标准,因为它对转动的直径精度具有很高的影响。精确的刀具磨损预测对于优化刀具变化和其他切割参数非常重要。在这项工作中,提出了一种基于预测切割力的预测和转弯过程中的能量消耗的工具磨损模型。基于使用验证的机械力模型的切割力预测,可以估计转弯的能量消耗。使用切割能耗的预测,并考虑切割速度的影响,开发了一种刀具侧面磨损模型。通过使用刀具边缘的切割力的分布和工件的每次旋转的能量消耗,预测每个旋转的刀具边缘上的磨损体积分布。使用刀具几何信息进一步计算侧翼磨损(VB)。通过使用文献中发布的工具磨损数据验证了侧面磨损的模型预测。比较表明,模型预测与实验结果一致。

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