作者
Huilong Hou, Emrah Simsek, Tao Ma, Nathan S Johnson, Suxin Qian, Cheikh Cissé, Drew Stasak, Naila Al Hasan, Lin Zhou, Yunho Hwang, Reinhard Radermacher, Valery I Levitas, Matthew J Kramer, Mohsen Asle Zaeem, Aaron P Stebner, Ryan T Ott, Jun Cui, Ichiro Takeuchi
发表日期
2019/11/29
期刊
Science
卷号
366
期号
6469
页码范围
1116-1121
出版商
American Association for the Advancement of Science
简介
Elastocaloric cooling, a solid-state cooling technology, exploits the latent heat released and absorbed by stress-induced phase transformations. Hysteresis associated with transformation, however, is detrimental to efficient energy conversion and functional durability. We have created thermodynamically efficient, low-hysteresis elastocaloric cooling materials by means of additive manufacturing of nickel-titanium. The use of a localized molten environment and near-eutectic mixing of elemental powders has led to the formation of nanocomposite microstructures composed of a nickel-rich intermetallic compound interspersed among a binary alloy matrix. The microstructure allowed extremely small hysteresis in quasi-linear stress-strain behaviors—enhancing the materials efficiency by a factor of four to seven—and repeatable elastocaloric performance over 1 million cycles. Implementing additive manufacturing to …
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