波音游戏-波音娱乐城赌球打不开

Seminar by Dr. Zhaoxuan Wu on Mechanistic Origin and Prediction of Enhanced Ductility in Magnesium Alloys

Date: 17 May 2018 (Thursday)

Time: 10:00 am

Venue: B5-309, Yeung Kin Man Academic Building

 

Magnesium is the lightest structural metal. Pure magnesium exhibits low ductility and low fracture toughness, both detrimental to its room temperature formability, flaw tolerance and energy absorption in structural applications. Grain refinement and alloying, however, almost certainly increase ductility. The mechanical properties in pure magnesium and its alloys are connected to the hcp crystal structure, which is distinctly different from the well-established fcc/bcc family and not well-understood. By using a multiscale modeling approach from density functional theory and empirical interatomic potential, to molecular dynamics modelingsand continuum theory, we establish the basic dislocation, plasticity and fracture properties in magnesium and its alloys. This firm advance in fundamental science leads to the discovery of the mechanistic origin of low ductility in pure magnesium, and more importantly, the discovery of the mechanistic origin and prediction of enhanced ductility in its alloys. A mechanism-based, quantitative theory is then developed to establish the conditions for ductility as a function of alloy compositions. Predictions with first-principles inputs are shown to be in broad agreement with ductility trends in binary, ternary and higher order alloys. The mechanistic theory can now quickly screen for alloy compositions conditions for high ductility and may help in the development of high-formability magnesium alloys, while the search continues for magnesium alloys with improved fracture toughness.

 

About the Speaker:

 

Dr. Zhaoxuan Wu

Department of Engineering Mechanics, Institute of High Performance Computing, 1 Fusionopolis Way, #16-16Connexis, Singapore 138632

 

 

Dr. Zhaoxuan Wu is a scientist in the Institute of High Performance Computing, A*STAR, Singapore. He received his PhD in integrative science and engineering from National University of Singapore in 2010. Between 2014 and 2016, he did his postdoc and worked as a scientist in the Institute of Mechanical Engineering at EPFL, Switzerland. He works on problems in solid mechanics and materials from atomistic to continuum scales, focusing on dislocation, plasticity and fracture in engineering metals and alloys. He is currently studying plasticity, fracture behaviors and alloying effects in hcp metals. He received the Outstanding Reviewer Award 2016 for ActaMaterialia from Elsevier.

Enquiry:

Department of Materials Science and Engineering

Email: [email protected]

Tel: 3442 2985

 
百家乐游戏试玩免费| 玩百家乐游戏经验| 不夜城百家乐官网的玩法技巧和规则| 注册百家乐官网送彩金| 可信百家乐的玩法技巧和规则 | 大发888官方df888gwyxpt| 兰桂坊百家乐官网的玩法技巧和规则| 云博备用网址| 百家乐官网咋个玩的| 诸子百家乐官网的玩法技巧和规则| 老虎百家乐的玩法技巧和规则 | 大发888 游戏下载| 游戏机百家乐作弊| 单张百家乐官网论坛| 百家乐大小桌布| 博彩评测网| 百家乐官网桌套装| 金城百家乐官网玩法| 博彩百家乐字谜总汇二丹东| 博雅德州扑克| 威尼斯人娱乐赌博| 玩百家乐官网有几种公式| 88百家乐官网现金网| 缅甸百家乐视频| 最好的百家乐论坛| 澳门百家乐官网骗人| 娱乐城注册送彩金100| 百家乐揽法大全| 玩百家乐官网有何技巧| 新河县| 大连娱网棋牌步步为赢| 百家乐视频赌博| 百家乐体育nba| 百家乐模拟分析程序| 查找百家乐官网群| 成人百家乐官网的玩法技巧和规则 | 试玩百家乐帐| 星期8百家乐娱乐城| 百家乐官网智能软件| 皇冠百家乐官网在线游戏| 银河百家乐官网的玩法技巧和规则|