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Pareto Analysis of Machining Factors Significance When Turning of Nickel-Based Superalloy Inconel 718

期刊

METALS
卷 13, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/met13081354

关键词

statistical analysis; turning; Inconel 718; superalloy; machining process; finite element modeling; FEM

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Nickel superalloys, with Inconel 718 being a well-known example, have a wide range of applications in industries such as aerospace, energy, and automotive. This article discusses the research and improvement of machining conditions for Inconel 718, analyzing tool materials, methods, and coating types used in turning operations. The study also considers finite element method modeling of processing processes and identifies areas for future research.
Nickel superalloys occupy a reasonably broad niche in the industry. One of this group's most common and well-known alloys is Inconel 718. Parts from Inconel 718 are used in aerospace, energy, automotive, and some other vital industries, which creates a demand for research and improvement of the machining conditions of this alloy. This article is devoted to the systematization and generalization of the accumulated experience of machining of Inconel 718 at turning operation. The research methodology is based on the Pareto distribution. In the study, more than 50 articles devoted to turning Inconel 718 were analyzed. The tool materials, methods, and types of coating used in turning Inconel 718 were analyzed. Finite element method modeling of processing processes has been considered. The trends in the selection of cutting parameters and the geometry of the cutting tool and finite element method modeling of processing processes have been considered. Lacunae for promising future research were formulated.

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