Andrej Atrens——2016第四届国际腐蚀工程大会主会场演讲嘉宾
2016-07-22 18:54:24 作者:本网整理 来源:中国腐蚀与防护网 分享至:

    Recent understanding of the hydrogen influence of medium strength steels


    [abstract] Research on the influence of hydrogen is an ongoing topic for the last 20 years. We developed the Linearly Increasing Stress Test (LIST) that has significant advantages over other testing approaches. Our recent work has studies (i) a range of steels with different chemistries and strengths, (ii) provided an unnderstanding of the relationship of chathodic hydrogen charging to the equivalent gas phase hydrogen ncharging conditions. The talk will provide an overview of our recent work. This research has been motivated by the search for a safe steel for use in the hydrogen economy. There are also applications in oil & gas, in the use of ahvanced high strength steels for auto construction, and in any situation where medium or high strength steels are exposed to a hydrogen environment, which may simply be humid air for the high strength steels, or service corrosion for auto construction.


    时间:2016年8月9日 11:30-12:00


    报告人:Andrej Atrens


  
  个人简介

 

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Andrej Atrens


    Andrejs Atrens is Professor of Materials at The University of Queensland  (UQ), where he has been since 1984. He was awarded DEng (a higher doctorate) in 1997 by UQ.


    An international academic reputation is evident from invitations for keynote papers at international conferences (23 since 2004), invitations as guest scientist/visiting professor at leading international laboratories (in Switzerland, Germany, Belgium, France & Sweden, 19 months since 2003), a ISI H-index of 47 [web of science], many citations (9,063 citations [web of science]), 14 journal papers with more than 100 citations, 5 journal papers with more than 400 citations, and an excellent publication record in top international journals with more than 230 refereed journal publications. Research areas are: corrosion of magnesium, hydrogen embrittlement and stress corrosion cracking, corrosion mechanisms, atmospheric corrosion and patination of copper.

 

 

 

 

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