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Machining Parameter Optimization in High-Speed Milling for Inconel 718 Curved Surface

机译:Inconel 718曲面高速铣削中的加工参数优化

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摘要

Machining technology for nickel-based alloy Inconel 718 is a hotspot and difficult problem in industrial fields and the high-speed milling (HSM) shows obvious superiority in difficult-to-process material machining. As the machining parameters are crucial in processing of Inconel 718 and the study of chip is important in metal cutting, there is an urgent need for deep research into the machining parameter optimization based on chip variation in HSM for Inconel 718 curved surface, so as to further increase the productivity of Inconel 718 in aerospace field. Regarding Inconel 718 curved surface, an experimental study about the machining parameter optimization based on chip variation in HSM is conducted. The relationship between chip shape and machining parameters is studied, and the roughness is measured and discussed for the machined curved surface. Results indicate that the chip area relates to geometric feature of curved surface, the optimal range for spindle speed is from 9000 to 11000rpm based on chip variation, the feed per tooth should be large in case that condition permitted, and the cutting depth can be selected according to other constraint conditions. This study is significant for improving the machining quality and efficiency of Inconel 718 curved surface.
机译:镍基合金Inconel 718的加工技术是工业领域的热点和难题,而高速铣削(HSM)在难以加工的材料加工中显示出明显的优势。由于加工参数对于Inconel 718的加工至关重要,而切屑的研究在金属切削中也很重要,因此迫切需要对基于Inconel 718曲面的HSM中基于切屑变化的加工参数优化进行深入研究,以便进一步提高了Inconel 718在航空航天领域的生产率。对于Inconel 718曲面,进行了基于HSM中基于切屑变化的加工参数优化的实验研究。研究了切屑形状与加工参数之间的关系,并测量并讨论了加工曲面的粗糙度。结果表明,切屑的面积与曲面的几何特征有关,根据切屑的变化,主轴转速的最佳范围为9000至11000rpm,在允许的情况下,每齿的进给量应较大,并且可以选择切削深度根据其他约束条件。这项研究对于提高Inconel 718曲面的加工质量和效率具有重要意义。

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