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Effects of cutting parameters on temperature and temperature prediction in micro-milling of Inconel 718

机译:切削参数对Inconel 718微铣削温度和温度预测的影响

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摘要

Inconel 718 is a kind of typical difficult-to-machine material. Micro-milling technology is an effective method for fabricating micro parts of Inconel 718. The change rules of micro-milling temperature differ from those of the traditional processing, which will affect the surface integrity of the workpiece and the tool life of the micro-milling cutter in different ways. To ascertain the effects of cutting parameters on cutting temperature during micro-milling Inconel 718 and achieve the prediction of cutting temperature, some micro-milling experiments are conducted based on the response surface method. The independent and interaction effects of the spindle speed, feed per tooth and axial cutting depth on cutting temperature are investigated. A micro-milling temperature prediction model is established based on the experiment results. The maximum prediction error is 5.3% and the average prediction error is 2.6%. Finally, the accuracy of the proposed model is validated through experiments of micro-milling Inconel 718.
机译:Inconel 718是一种典型的难以加工的材料。微铣技术是制造Inconel 718的微部分的有效方法。微铣削温度的变化规则与传统加工的变化规则不同,这将影响工件的表面完整性和微铣削的工具寿命切割机以不同的方式。为了确定切割参数对微铣削的光学温度718期间切削温度的影响并实现切割温度的预测,基于响应面法进行一些微铣削实验。研究了主轴速度,每个牙齿的速度和轴向切削深度的独立和相互作用效果。基于实验结果建立了微铣削温度预测模型。最大预测误差为5.3%,平均预测误差为2.6%。最后,通过微铣削Inconel 718的实验验证了所提出的模型的准确性。

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