首页|陶瓷光固化3D打印关键工艺参数及其在固体氧化物燃料电池中的应用研究

陶瓷光固化3D打印关键工艺参数及其在固体氧化物燃料电池中的应用研究

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3D打印技术因其可自由设计和灵活生产等优点为复杂结构陶瓷体的制备提供了便捷,可实现图案化表面陶瓷体一步式制备以及复杂器件的一体化成型,在固体氧化物燃料电池(Solid Oxide Fuel Cell,SOFC)领域有广阔应用前景.综述了不同3D打印技术在SOFC领域的应用现状,重点阐述了陶瓷光固化3D打印技术中陶瓷浆料、打印成型工艺以及后处理工艺的关键参数对陶瓷体成型的影响和在SOFC领域的具体实施应用,提出目前该技术应用于SOFC领域中面临的挑战及发展前景.陶瓷光固化3D打印技术为SOFC的便捷制备和高性能输出提供了新的思路及方法,通过继续探索其他类型的陶瓷材料和工艺改进,有望推动SOFC技术的进一步发展.
Review on Key Process Parameters of Ceramic Vat-Photopolymerization 3D Printing and Its Application in Solid Oxide Fuel Cells
3D printing technology provides a convenient method for the preparation of complex ceramic structures due to its advantages of free design and flexible production.It enables one-step creation of patterned surfaces and integrated molding of intricate devices,making it highly promising in the field of Solid Oxide Fuel Cell(SOFC).This paper reviewed the current status of different 3D printing technologies in the field of SOFC,with a focus on ceramic vat-photopolymerization.It specifically addressed key parameters such as ceramic slurries,printing parameters,and post-processing techniques that influence green body formation and their implementation in SOFC fabrication.The paper also identified current challenges and future development prospects for this technology in SOFC preparation.Ceramic vat-photopolymerization introduces innovative approaches for the efficient preparation and performance optimization of SOFC.By exploring diverse ceramic materials and refining processing techniques,this method holds promise for advancing SOFC technology.

ceramic vat-photopolymerizationsolid oxide fuel cellceramic slurryprinting parameterpost-processing

庞雪宁、王志强、郭新宇、于方永、孟秀霞、张津津、杨乃涛

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山东理工大学化学化工学院,山东淄博 255000

陶瓷光固化3D打印 固体氧化物燃料电池 陶瓷浆料 打印成型参数 后处理

2024

有色金属工程
北京矿冶研究总院

有色金属工程

CSTPCD北大核心
影响因子:0.432
ISSN:2095-1744
年,卷(期):2024.14(12)