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Field-assisted machining of difficult-to-machine materials

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Difficult-to-machine materials(DMMs)are extensively applied in critical fields such as aviation,semiconductor,biomedicine,and other key fields due to their excellent material properties.However,traditional machining technologies often struggle to achieve ultra-precision with DMMs resulting from poor surface quality and low processing efficiency.In recent years,field-assisted machining(FAM)technology has emerged as a new generation of machining technology based on innovative principles such as laser heating,tool vibration,magnetic magnetization,and plasma modification,providing a new solution for improving the machinability of DMMs.This technology not only addresses these limitations of traditional machining methods,but also has become a hot topic of research in the domain of ultra-precision machining of DMMs.Many new methods and principles have been introduced and investigated one after another,yet few studies have presented a comprehensive analysis and summarization.To fill this gap and understand the development trend of FAM,this study provides an important overview of FAM,covering different assisted machining methods,application effects,mechanism analysis,and equipment design.The current deficiencies and future challenges of FAM are summarized to lay the foundation for the further development of multi-field hybrid assisted and intelligent FAM technologies.

field-assisted machiningdifficult-to-machine materialsmaterials removal mechanismsurface integrity

Jianguo Zhang、Zhengding Zheng、Kai Huang、Chuangting Lin、Weiqi Huang、Xiao Chen、Junfeng Xiao、Jianfeng Xu

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State Key Laboratory of Intelligent Manufacturing Equipment and Technology,School of Mechanical Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074,People's Republic of China

School of Mechanical Engineering,Hubei University of Technology,Wuhan 430068,People's Republic of China

National Key Research and Development Project of ChinaNational Natural Science Foundation of ChinaNational Natural Science Foundation of ChinaNational Natural Science Foundation of ChinaProgram for HUST Academic Frontier Youth Team

2023YFB34072005222550652375430521881022019QYTD12

2024

极端制造(英文)

极端制造(英文)

CSTPCDEI
ISSN:
年,卷(期):2024.6(3)
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