百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

40-year mystery solved by scientist group led by CityU

Emily Law

 

 

Professor Wang (2nd, right) and his research team solved a 40-year scientific mystery.

A hidden amorphous phase in the formation of metallic glass uncovered by an international research team led by City University of Hong Kong (CityU) will expedite the development of new and better alloys.

The discovery solved a 40-year scientific mystery, said Professor Wang Xunli, Chair Professor of Physics and Head of the Department of Physics and Materials Science of CityU, who headed the project. “We hope to find a way to develop novel materials by manipulating the nanoscale structure of metallic glass,” Professor Wang said.

Metallic glass is considered to be the material of the future. It is stronger and more compliant than crystalline alloys, a combination that leads to high resilience that can sustain larger elastic deformation.

Because of these properties, metallic glass has been used in a range of applications such as sports equipment, medical devices and electricity transformers. A long-standing issue in metallic glass research is to figure out the structure or atomic packing in the material. 

Fundamental understanding of the structure is important because the structure determines the properties. The discovery of the hidden amorphous phase, where atoms show a different kind of packing, has allowed researchers to make use of simple processing methods such as heat treatment to develop novel materials.

“The discovery is an important observation in glass physics. We can explore how to produce or induce this amorphous phase in metallic glass so that we can tune the properties of the material for larger size and better application,” Professor Wang said.

This research achievement, which has been published in the internationally acclaimed journal Nature Communications, embodies the true spirit of international collaborations, involving scientists from four continents. The research has been designed at CityU, but the team took advantage of state-of-the-art facilities, the synchrotron source at Argonne National Laboratory in US, the ultra-high voltage electron microscope at Hokkaido University in Japan, and the neutron scattering instrument at the Australian Center for Neutron Scattering in Australia. 

 

 

YOU MAY BE INTERESTED

Contact Information

Communications and Institutional Research Office

Back to top
百家乐官网在线洗码| 百家乐官网隔一数打投注法| 大发888娱乐城34| 百家乐官网群11889| 免费百家乐过滤| 游戏房百家乐官网赌博图片 | 云博投注| 百家乐官网开户过的路纸| bet365网址| 蓝盾百家乐打法| 百家乐官网追注法| 大发888在线娱乐城合作伙伴| 网上百家乐新利| 宝龙百家乐官网娱乐城| 老虎机干扰器| 太阳百家乐官网管理网| 威尼斯人娱乐代理注| 百家乐看牌技巧| 百家乐官网不倒翁注码| 大发888官方下载网站| 百家乐输了好多钱| 盈禾娱乐场| 王子百家乐的玩法技巧和规则 | 玩百家乐官网技巧看| 百家乐官网必胜绝技| 幸运水果机游戏下载| 百家乐开户博彩论坛| 新澳门百家乐官网软件下载| 百家乐77scs官网| 百家乐捡揽方法| 打百家乐官网庄闲的技巧| 大发888游戏下载平台| 中国百家乐技巧软件| 百家乐送1000| 真人百家乐官网赌注| 真钱百家乐赌博| 大发888娱乐城注册lm0| 百家乐在线娱乐场| 迪威百家乐官网娱乐网| 网上百家乐官网好玩吗| 祁连县|