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镍基高温合金Inconel 718的铣削机理与颤振稳定性

Milling Mechanism and Chattering Stability of Nickel-Based Superalloy Inconel 718.

作者信息

Zheng Jin, Zhang Yaoman, Qiao Hanying

机构信息

School of Mechanical Engineering & Automation, Northeastern University, Shenyang 110819, China.

出版信息

Materials (Basel). 2023 Aug 22;16(17):5748. doi: 10.3390/ma16175748.

Abstract

Nickel-based superalloy Inconel 718 is widely used in the aerospace industry for its excellent high-temperature strength and thermal stability. However, milling Inconel 718 presents challenges because of the significantly increased cutting force and vibration, since Inconel 718 is a typical difficult-to-machine material. This paper takes the milling process of Inconel 718 as the research object, initially, and a milling force model of Inconel 718 is established. Subsequently, the finite element analysis method is used to analyze the stress field, temperature field, and milling force in the milling process of Inconel 718. Building upon this, a dynamic equation of the milling of Inconel 718 is established, and based on the modal experiment, stability lobe diagrams are drawn. Furthermore, milling experiments on Inconel 718 are designed, and the results calculated using the milling force model and finite element analysis are verified through comparison to the experimental results; then, the fmincon optimization algorithm is used to optimize the processing parameters of Inconel 718. Eventually, the results of the multi-objective optimization illustrate that the best processing parameters are a spindle speed of 3199.2 rpm and a feed speed of 80 mm/min with an axial depth of cut of 0.25 mm. Based on this, the best machining parameters are determined, which point towards an improvement of the machining efficiency and quality of Inconel 718.

摘要

镍基高温合金Inconel 718因其优异的高温强度和热稳定性而广泛应用于航空航天工业。然而,由于Inconel 718是一种典型的难加工材料,铣削Inconel 718时会因切削力和振动显著增加而带来挑战。本文首先以Inconel 718的铣削过程为研究对象,建立了Inconel 718的铣削力模型。随后,采用有限元分析方法对Inconel 718铣削过程中的应力场、温度场和铣削力进行分析。在此基础上,建立了Inconel 718铣削的动力学方程,并基于模态实验绘制了稳定性叶瓣图。此外,设计了Inconel 718的铣削实验,通过将铣削力模型和有限元分析计算结果与实验结果进行比较来验证;然后,使用fmincon优化算法对Inconel 718的加工参数进行优化。最终,多目标优化结果表明,最佳加工参数为:主轴转速3199.2 rpm,进给速度80 mm/min,轴向切削深度0.25 mm。据此确定了最佳加工参数,这有助于提高Inconel 718的加工效率和质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec83/10488871/d0f772ab134d/materials-16-05748-g001.jpg

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