Gopal Pudhupalayam Muthukutti, Kavimani Vijayananth, Gupta Kapil, Marinkovic Dragan
Mechanical Engineering, Karpagam Academy of Higher Education, Coimbatore 641021, India.
Mechanical and Industrial Engineering Technology, University of Johannesburg, Johannesburg 2028, South Africa.
Micromachines (Basel). 2023 Aug 6;14(8):1564. doi: 10.3390/mi14081564.
Ceramics are widely used in microelectronics, semiconductor manufacturing, medical devices, aerospace, and aviation, cutting tools, precision optics, MEMS and NEMS devices, insulating components, and ceramic molds. But the fabrication and machining of the ceramic-based materials by conventional processes are always difficult due to their higher hardness and mechanical properties. Therefore, advanced manufacturing techniques are being preferred for these advanced materials, and out of that, laser-based processes are widely used. The benefits of laser fabrication and machining of ceramics include high precision, reduced thermal damage, non-contact processing, and the ability to work with complex geometries. Laser technology continues to advance, enabling even more intricate and diverse applications for ceramics in a wide range of industries. This paper explains various laser based ceramic processing techniques, such as selective laser sintering and melting, and laser machining techniques, such as laser drilling, etc. Identifying and optimizing the process parameters that influence the output quality of laser processed parts is the key technique to improving the quality, which is also focused on in this paper. It aims to facilitate the researchers by providing knowledge on laser-based manufacturing of ceramics and their composites to establish the field further.
陶瓷广泛应用于微电子、半导体制造、医疗设备、航空航天、切削工具、精密光学、微机电系统(MEMS)和纳机电系统(NEMS)设备、绝缘部件以及陶瓷模具等领域。但是,由于陶瓷基材料具有较高的硬度和机械性能,采用传统工艺对其进行制造和加工一直很困难。因此,先进制造技术更适合用于这些先进材料,其中基于激光的工艺被广泛使用。激光制造和加工陶瓷的优点包括高精度、减少热损伤、非接触加工以及能够加工复杂几何形状。激光技术不断进步,使得陶瓷在广泛的行业中能够实现更加复杂多样的应用。本文阐述了各种基于激光的陶瓷加工技术,如选择性激光烧结和熔化,以及激光加工技术,如激光钻孔等。识别和优化影响激光加工零件输出质量的工艺参数是提高质量的关键技术,本文也着重关注了这一点。其目的是通过提供有关基于激光的陶瓷及其复合材料制造的知识来帮助研究人员进一步建立该领域。