Some studies on cutting tools and coatings for machining of superalloys under dry and sustainable lubrication environment

IF 2 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials and Processing Technologies Pub Date : 2023-10-09 DOI:10.1080/2374068x.2023.2264571
Vishal Yashwant Bhise, Bhagwan F. Jogi
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Abstract

ABSTRACTIn recent years, the superalloys such as Inconel, Incoloy and Waspaloy are widely employed in aerospace, nuclear, automobile and marine applications due to their excellent properties. Besides, significant improvements in cutting tools and coatings have been done in recent years, which can be employed in machine superalloys for improving the machining performance. Their high temperature strength and toughness, quick work hardening, low thermal conductivity, tendency to weld onto cutting tools and ability to form built-up edges (BuE) make a challenge to machine nickel-based aerospace superalloys. The phenomena of BuE results in poor surface integrity and rapid tool wear. The selection of appropriate tool & coating material is based on type or grade of nickel alloy, its metallurgical condition and the machining operation to be performed. In this paper, a detailed review is presented to understand the current practices on advanced cutting tools and coating materials, coatings designs and effect of various tool coatings on machining performance. Further, the tool wear mechanism and machining performance under dry and other advanced sustainable environments such as MQL based vegetable oils, supercritical carbon-dioxide and hybrid nanofluids is presented in detail.KEYWORDS: Superalloystool materials and coatingsmachining environmenttool wear mechanism Abbreviations Al2O3=Aluminum OxideCrN=Chromium nitrideCrAlN=Chromium Aluminum NitrideTiN=Titanium NitrideTiC=Titanium CarbideTiAlN=Titanium Aluminum NitrideTiCN=Titanium Carbo-NitrideTiSiN=Titanium Silicon NitrideTiAlSiN=Titanium Aluminum Silicon NitrideTiAlCrN=Titanium Aluminum Chromium NitrideZrN=Zirconium nitrideDisclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThe authors are thankful to University Grants Commission (UGC), Government of India for award of fellowship (F1-17.1/2017-18/RGNF-2017-18-SC-MAH-34406/(SA-III/Website)) to carry out this work.
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干燥可持续润滑环境下高温合金切削刀具及涂层的研究
摘要近年来,铬镍铁合金、铬镍铁合金和沃斯帕洛合金因其优异的性能在航空航天、核能、汽车和船舶等领域得到了广泛的应用。此外,近年来在刀具和涂层方面取得了重大进展,可用于机械高温合金,以提高其加工性能。它们的高温强度和韧性、快速加工硬化、低导热性、易于焊接到切削工具上以及能够形成堆积边缘(BuE),这对加工镍基航空航天高温合金构成了挑战。BuE现象导致表面完整性差,刀具磨损快。选择合适的刀具和涂层材料是根据镍合金的类型或等级,其冶金条件和要进行的加工操作。本文详细介绍了先进刀具和涂层材料的现状、涂层设计以及各种刀具涂层对加工性能的影响。此外,还详细介绍了干燥和其他先进可持续环境(如MQL植物油、超临界二氧化碳和混合纳米流体)下刀具的磨损机理和加工性能。关键词:Superalloystool材料和coatingsmachining environmenttool磨损机制缩写氧化铝=铝OxideCrN =铬nitrideCrAlN =铬铝NitrideTiN =钛NitrideTiC =钛CarbideTiAlN =钛铝NitrideTiCN =钛Carbo-NitrideTiSiN =钛硅NitrideTiAlSiN =钛铝硅NitrideTiAlCrN =钛铝铬NitrideZrN =锆nitrideDisclosure statementNo潜在的利益冲突是报告的作者(年代)。作者感谢印度政府授予大学教育资助委员会(UGC)奖学金(F1-17.1/2017-18/RGNF-2017-18-SC-MAH-34406/(SA-III/Website))来开展这项工作。
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来源期刊
Advances in Materials and Processing Technologies
Advances in Materials and Processing Technologies MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.90
自引率
27.30%
发文量
222
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