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Prediction model of machine tool energy consumption in hard-to-process materials turning

机译:难以解决材料转向机床能量消耗预测模型

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摘要

Accurate energy consumption prediction before actual turning is helpful for operators to select optimal processing parameters to improve energy efficiency. Tool wear is very fast in hard-to-process materials turning, which leads to the increase of cutting force, cutting temperature, and cutting power of machine tool. However, most existing prediction models do not consider the impact of tool wear on machine tool energy consumption. A new prediction model of machine tool energy consumption based on tool wear, spindle speed, and material removal rate in hard-to-process materials turning is developed, and verified with 06Cr19Ni10 stainless steel turning experiments. The experimental results show that the proposed model has higher prediction accuracy, and the maximum relative error between predicted value and true value is 2.9%. Furthermore, the influence of processing parameters and tool wear on machine tool energy consumption is studied. The machine tool energy consumption is proportional to the material removal volume, and linearly related to tool wear and spindle speed. The machine tool energy consumption decreases with the increase of material removal rate. The research results are helpful to formulate energy-saving turning scheme in hard-to-process materials turning.
机译:在实际转弯之前的精确能耗预测有助于运营商选择最佳处理参数以提高能效。刀具磨损在难以处理的材料转动中非常快,这导致切割力,切削温度和机床的切割功率的增加。然而,大多数现有的预测模型不考虑工具磨损对机床能耗的影响。开发了一种新的机床能耗的新预测模型,基于工具磨损,主轴速度和难以处理材料转动的材料去除速率,并用06Cr19Ni10不锈钢转动实验验证。实验结果表明,所提出的模型具有更高的预测精度,预测值与真值之间的最大相对误差为2.9%。此外,研究了处理参数和工具磨损对机床能量消耗的影响。机床能量消耗与材料去除量成正比,与工具磨损和主轴速度线性相关。通过材料去除率的增加,机床能量消耗降低。研究结果有助于在难以处理的材料转动中制定节能转向方案。

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