刀具几何形状对软脆材料超精密加工的影响

IF 16.1 1区 工程技术 Q1 ENGINEERING, MANUFACTURING International Journal of Extreme Manufacturing Pub Date : 2022-12-13 DOI:10.1088/2631-7990/acab3f
Weihai Huang, Jiwang Yan
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引用次数: 7

摘要

脆性材料广泛用于光学、光电、半导体等行业的重要元器件生产。脆性材料的超精密加工,具有高表面质量和表面完整性,有助于提高部件的功能性能和寿命。脆性材料按其硬度大致可分为硬脆型和软脆型。虽然已有一些文献对硬脆材料的超精密加工进行了综述,但迄今为止,针对软脆材料的超精密加工的综述文献很少。由于“软”和“脆”的特性,这组材料具有独特的加工特性。本文综述了软脆材料超精密加工的最新进展。加工机制的关键方面,如切屑形成、表面形貌和亚表面损伤不同的加工方法,包括金刚石车削、微端铣、超精密磨削和微/纳米抛光,在工具-工件相互作用方面进行了比较。系统分析了刀具几何形状对软脆材料加工特性的影响,梳理了影响软脆材料加工特性的主要因素。确定了工程应用中的问题和挑战,并为未来的研发提供了解决方案/指导方针。
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Effect of tool geometry on ultraprecision machining of soft-brittle materials: a comprehensive review
Brittle materials are widely used for producing important components in the industry of optics, optoelectronics, and semiconductors. Ultraprecision machining of brittle materials with high surface quality and surface integrity helps improve the functional performance and lifespan of the components. According to their hardness, brittle materials can be roughly divided into hard-brittle and soft-brittle. Although there have been some literature reviews for ultraprecision machining of hard-brittle materials, up to date, very few review papers are available that focus on the processing of soft-brittle materials. Due to the ‘soft’ and ‘brittle’ properties, this group of materials has unique machining characteristics. This paper presents a comprehensive overview of recent advances in ultraprecision machining of soft-brittle materials. Critical aspects of machining mechanisms, such as chip formation, surface topography, and subsurface damage for different machining methods, including diamond turning, micro end milling, ultraprecision grinding, and micro/nano burnishing, are compared in terms of tool-workpiece interaction. The effects of tool geometries on the machining characteristics of soft-brittle materials are systematically analyzed, and dominating factors are sorted out. Problems and challenges in the engineering applications are identified, and solutions/guidelines for future R&D are provided.
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来源期刊
International Journal of Extreme Manufacturing
International Journal of Extreme Manufacturing Engineering-Industrial and Manufacturing Engineering
CiteScore
17.70
自引率
6.10%
发文量
83
审稿时长
12 weeks
期刊介绍: The International Journal of Extreme Manufacturing (IJEM) focuses on publishing original articles and reviews related to the science and technology of manufacturing functional devices and systems with extreme dimensions and/or extreme functionalities. The journal covers a wide range of topics, from fundamental science to cutting-edge technologies that push the boundaries of currently known theories, methods, scales, environments, and performance. Extreme manufacturing encompasses various aspects such as manufacturing with extremely high energy density, ultrahigh precision, extremely small spatial and temporal scales, extremely intensive fields, and giant systems with extreme complexity and several factors. It encompasses multiple disciplines, including machinery, materials, optics, physics, chemistry, mechanics, and mathematics. The journal is interested in theories, processes, metrology, characterization, equipment, conditions, and system integration in extreme manufacturing. Additionally, it covers materials, structures, and devices with extreme functionalities.
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