我国自2007年正式加入国际热核聚变工程实验堆(ITER)合作计划以来,聚变堆重大基础研究、聚变堆关键技术研发和聚变堆人才培养得到了全面持续的发展,聚变堆材料的研发、应用技术也实现了跨越性的创新发展。为进一步深入分析聚变堆材料领域的研究现状和发展趋势,完善我国聚变堆材料的战略规划与发展路线,围绕聚变堆材料、设计、验证、安全等重大科学和工艺技术问题,加强聚变堆材料研究领域的学术与技术交流,共同推进国家先进聚变堆材料的发展,经科技部核聚变中心同意和指导,第8届“中国聚变堆材料大会”活动将由yd5556云顶误乐城承办。会议定于2023年9月22-25日在上海市召开。
Jia Min Chin originally hails from the sunny island of Singapore. For her PhD studies, she trained under the supervision of 2005 Nobel Laureate Professor Richard R. Schrock at the Massachusetts Institute of Technology (MIT), where she studied N2 activation by Mo and W complexes.
Metal additive manufacturing and high-entropy alloys present exciting opportunities for the production of next-generation engineering materials with unprecedented flexibility and performance. In this talk, I will present our recent work on the additive manufacturing of metal alloys (Nature Materials, 2018) and the development of new high-entropy alloys with unique alloy structures and superior mechanical properties (Nature, 2019).