专栏名称: 新材料参考
这是F叫兽整的一个关于新能源材料、含氟材料、其它新兴材料的资讯参考公众号
目录
相关文章推荐
51好读  ›  专栏  ›  新材料参考

重磅 | 美国宣称在磁制冷技术上取得突破

新材料参考  · 公众号  ·  · 2018-04-05 08:11

正文

请到「今天看啥」查看全文


觉得F叫兽的资讯有用就 关注

USA: Researchers in the US claim to have made a breakthrough in achieving refrigeration-level cooling by using very small quantities of magnetocaloric materials.

美帝研究人员声称在磁制冷方面取得突破,他们采用非常少的磁热材料即可达到制冷剂制冷的水平。

Staff at the US Department of Energy’s Ames Laboratory claim that the development marks an important step in creating new technologies to replace gas compression refrigeration with solid-state systems up to 30% more energy efficient.

美帝能源部的埃姆斯实验室的科研人员声称该成就在用固态系统取代气体压缩式制冷的新技术开发方面标志着重要的进展,可以达到30%以上的能效。

Called CaloriSmart – Small Modular Advanced Research-scale Test-station – the system was designed specifically for the rapid evaluation of materials in regenerators without a large investment in time or manufacturing.

这个项目称为“智慧卡路里”-小型模块化高端规模化研究,这个系统专门为快速评估再生器中的材料而设计,避免了时间和制造上的大量投入。

下面的不翻译了,供参考。

The initial test subjected a sample of gadolinium to sequential magnetic fields, causing the sample to alternate between heating up and cooling down. Using precisely timed pumps to circulate water during those heating and cooling cycles, the system demonstrated sustained cooling power of about 10W, with a 15ºC gradient between the hot and cold ends using only about 3cm3 of gadolinium.

“Despite predictions we would fail because of anticipated inefficiencies and losses, we always believed it would work,” said CaloriCool project director and Ames Laboratory scientist Vitalij Pecharsky, “but we were pleasantly surprised by just how well it worked. It’s a remarkable system and it performs exceptionally well. Magnetic refrigeration near room temperature has been broadly researched for 20 years, but this is one of the best systems that has been developed,” he claims.

The system, which took roughly five months to build, used 3D printing technology to custom-build the manifold that holds the sample and circulates the fluid that actually harnesses the system’s cooling power. The system also features customised neodymium-iron-boron magnets that deliver a concentrated 1.4Tesla magnetic field to the sample, and the precision in-line pumping system that circulates the fluid.

“We only need 2-5cm3 of sample material – in most cases about 15-25g,” explained project scientist Julie Slaughter. “We are setting the benchmark with gadolinium and we know there are other materials that will perform even better. And our system should be scalable (for commercial cooling) in the future.”

“But the main reason we conceived and built CaloriSmart is to accelerate design and development of caloric materials so they can be moved into the manufacturing space at least two to three times faster compared to the 20 or so years it typically takes today,” added Pecharsky.

The team maintain that magnetocaloric testing is just the beginning. The plan is to upgrade the system to work with elastocaloric materials – that reversibly heat up and cool down when subjected to cyclic tension or compression – and electrocaloric materials – that do the same when subjected to changing electric field. It is said that the system will even operate in a combined-field mode that allows a combination of techniques to be used simultaneously.

“There are a handful of places studying elastocaloric and electrocaloric materials, but nobody has all three in one place and our system now gives us that capability,” ”Pecharsky claims.

===F叫兽点评===

DOE一直在开发多种制冷技术以替代卡诺循环,包括磁制冷、热声制冷、天然气技术(不是用作工质)等,这些技术是他们下一代制冷技术的中、长期计划项目,DOE有个road map,目前有些技术在某些领域已经处于商业化前期。

F叫兽一直认为万恶的资本家们到底根据什么来制订HFC的淘汰时间表,这个时间表是怎么排出来的,其实就像一代一代的手机开发一样,他们这些新技术的开发与旧技术的退出,都是计算着差不多的。基本上到2030-2040年代,这些制冷新技术会不会基本上可以在商业化程度上取代卡诺循环原理了(当然不会全部替代),虽然在效率上还差很大。

请F叫兽喝咖啡

点下微信支付二维码---- 长按 识别----然后随意

觉得F叫兽的资讯特别有用就打个赏

往期 精彩 回顾

技术动态 | 陈庆云课题组在四氟乙烯-β-磺内酯衍生氟烷基化试剂方面取得进展

技术动态 | 上海有机所在含氟高频低介电材料的研究方面取得进展

新技术 | 通过Cu(0)在玻璃表面修饰含氟和非氟丙烯酸酯


F叫兽是有底线的







请到「今天看啥」查看全文