航空航天用HRSA材料加工用纳米刀片的发展综述

Q4 Energy
S. M. Kotian, K. Narayanaswamy, D. S. M
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引用次数: 0

摘要

在目前的情况下,刀具行业使用粒度为60-80微米的粉末材料碳化钨来生产切削刀片。有很多范围可以改善切削工具材料的性能,以提高其加工具有挑战性的材料(如耐热超级合金(HRSA))的能力。将切削工具材料粉末的粒度减小到纳米级可能有助于提高切削镶片的强度、基体硬度、断裂韧性和热导率。这篇综述研究了用于开发刀具应用的纳米粉末的不同策略。我们观察到,大多数研究都集中在刀具行业使用的最新粉末上,如碳化钨、碳化硼粉末,这些粉末被还原为纳米粉末,通过热等静压(HIP)、火花等离子体烧结等不同技术压制和烧结。最后,批判性地讨论了当前的研究空白和未来在理解用于刀具应用的纳米粉末开发方面的挑战,为该领域的科学发展提供了可能的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review Paper on Development of Nano Inserts for Machining HRSA Materials for Aerospace Applications
In the current scenario, cutting tool industries use the powder material tungsten carbide of 60-80 microns grain size to produce cutting inserts. There are a lot of scopes to improve the properties of cutting tool materials to enhance their ability to machine challenging materials like heat resistant super alloys (HRSA). Reducing the grain size of cutting tool material powder to nano level may help to increase the strength, substrate hardness, Fracture toughness, and thermal conductivity of the cutting insert. This review studies different strategies used to develop nano powders for the cutting tool application. We observed that most of the studies focused on the latest powders used in cutting tool industries like tungsten carbide, boron carbide powders which are reduced as nano powders, pressed, and sintered with different techniques like hot isostatic pressing (HIP), Spark plasma sintering. Finally, the current research gaps and the future challenges in understanding the development of nano powders for cutting tool applications are critically discussed, providing an interpretation of the possible directions for scientific development in this field.
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来源期刊
Journal of Mines, Metals and Fuels
Journal of Mines, Metals and Fuels Energy-Fuel Technology
CiteScore
0.20
自引率
0.00%
发文量
101
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