Additive manufacturing of ceramic materials for energy applications: Road map and opportunities

Additive manufacturing of ceramic materials for energy applications: Road map and opportunities
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DOI:
10.1016/j.jeurceramsoc.2022.01.058
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发表时间:
2022-03-06
影响因子:
5.7
通讯作者:
Minary-Jolandan, Majid
Minary-Jolandan, Majid
中科院分区:
材料科学1区
文献类型:
--
作者:
Cramer, Corson L.;Ionescu, Emanuel;Minary-Jolandan, Majid

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在工程材料中,陶瓷在电池、电容器、太阳能电池、智能玻璃、燃料电池和电解槽、核电站、热电、热离子、碳捕获和储存、内燃机有害排放控制、压电、涡轮机和热交换器等能源应用中是不可或缺的。增材制造(AM)的进步为以以前无法实现的几何形状制造这些设备提供了新的机会,并且可以以更低的成本提供更高的效率和性能。本文综述了用于各种能源应用的陶瓷材料的最新进展。审查的重点是材料的选择,加工,以及在能源相关陶瓷材料制造增材制造技术的机会。本文的目的是为工业、学术界和资助机构等利益相关者提供一个路线图,以研究和开发陶瓷材料的增材制造,以实现更高效、更经济、更可靠的能源系统。
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.