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伍伦贡大学余涛教授学术报告通知
作者:学院办公室          发布时间:2018-07-17        阅读量:

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讲座嘉宾:余涛教授 (澳大利亚伍伦贡大学)

讲座时间:2018726 上午9:30-11:00 (暂定)

讲座地点:实验二号楼502

讲座主题:Hybrid FRP-Concrete-Steel Tubular Structural Members

报告人简介:

余涛,澳大利亚伍伦贡大学土木、采矿与环境工程学院教授,研究生事务主任,国际复材结构中心联合主任。主要研究领域为土木工程复合材料结构,主要包括新型组合结构、复材加固结构以及复杂结构的有限元模拟。已发表学术论文120余篇,包括SCI期刊论文60余篇,其中多篇论文列所发表杂志被引用次数最多或被下载次数最多的论文之中。所发表论文在Web of Science中被他引1000余次,h-index20

主要学术兼职包括:国际土木工程复合材料学会(IIFC)理事及执委会成员;SCI期刊Advances in Structural Engineering副主编(Associate Editor)SCI期刊Structure and Infrastructure Engineering副主编(Associate Editor); 美国土木工程学会期刊Journal of Composites for Construction编委;中文期刊《建筑结构学报》编委。曾获国际土木工程复合材料学会杰出青年学者奖(IIFC Distinguished Young Researcher Award)、澳大利亚基金委优秀青年基金(ARC Discovery Early Career Researcher Award)等奖项。

报告摘要:

Fibre-reinforced polymer (FRP) composites have been widely used in the strengthening/retrofit of structures. The success of FRP composites in the strengthening/retrofit of structures has also led to many studies exploring their potential in the construction of new structures. A promising direction for the use of FRP composites in new construction is to create new structural forms based on the combined use of FRP, steel and concrete in an optimal manner. A number of novel forms of hybrid tubular members incorporating FRP have been recently developed at the University of Wollongong. In these hybrid structural members, FRP are optimally combined with steel and concrete so that the consequences of its disadvantages are minimised while its advantages are appropriately exploited. As a result, these hybrid members possess excellent corrosion resistance as well as excellent ductility and seismic resistance. This talk will explain the rationale and advantages of the novel forms of structural members and present a summary of the recent and current studies on their structural behaviour.

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