陶瓷
材料科学
储能
燃烧
工艺工程
制造工程
纳米技术
机械工程
工程类
功率(物理)
复合材料
量子力学
物理
有机化学
化学
作者
Corson L. Cramer,Emanuel Ionescu,Magdalena Graczyk-Zajac,Andrew T. Nelson,Yutai Katoh,Jeffery J. Haslam,Lothar Wondraczek,Trevor G. Aguirre,Saniya LeBlanc,Hsin Wang,Mansour Masoudi,E. Tegeler,Ralf Riedel,Paolo Colombo,Majid Minary-Jolandan
标识
DOI:10.1016/j.jeurceramsoc.2022.01.058
摘要
Among engineering materials, ceramics are indispensable in energy applications such as batteries, capacitors, solar cells, smart glass, fuel cells and electrolyzers, nuclear power plants, thermoelectrics, thermoionics, carbon capture and storage, control of harmful emission from combustion engines, piezoelectrics, turbines and heat exchangers, among others. Advances in additive manufacturing (AM) offer new opportunities to fabricate these devices in geometries unachievable previously and may provide higher efficiencies and performance, all at lower costs. This article reviews the state of the art in ceramic materials for various energy applications. The focus of the review is on material selections, processing, and opportunities for AM technologies in energy related ceramic materials manufacturing. The aim of the article is to provide a roadmap for stakeholders such as industry, academia and funding agencies on research and development in additive manufacturing of ceramic materials toward more efficient, cost-effective, and reliable energy systems.
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