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中国科学院大学研究生导师简介-彭群家

中国科学院大学 免费考研网/2016-05-09

1、招生信息2、教育背景3、工作经历4、教授课程5、专利与奖励6、出版信息7、科研活动8、合作情况9、指导学生
基本信息
彭群家 男 硕导 中国科学院金属研究所
电子邮件: qunjiapeng@imr.ac.cn
通信地址: 沈阳市文萃路62号中国科学院金属研究所环境腐蚀研究中心
邮政编码: 110016
研究领域
招生信息

招生专业080502


招生方向核电材料的环境损伤与寿命预测

教育背景1995-03--1999-07 清华大学 工学博士
1992-09--1995-03 天津大学 工学硕士
1986-09--1990-07 四川大学(原成都科技大学) 工学学士


学历

学位
工作经历

工作简历2011-04~现在, 中国科学院金属研究所, 研究员
2007-01~2011-03,日本东北大学能源安全科学国际研究中心, 客座副教授、副教授
2004-07~2006-07,美国密西根大学核工程与放射科学系, Research Fellow
1999-07~2004-06,日本东北大学断裂研究所, 博士后研究员、日本学术振兴会特别研究员
1995-03~1999-07,清华大学, 工学博士
1992-09~1995-03,天津大学, 工学硕士
1986-09~1990-07,四川大学(原成都科技大学), 工学学士


社会兼职
教授课程
专利与奖励

奖励信息

专利成果
出版信息

发表论文(1) Effect of Dissolved Hydrogen on Corrosion of Inconel Alloy 600 in High Temperature Hydrogenated Water, Electrochimica Acta, 2011, 第 1 作者
(2) Effects of cold working path on strain concentration, grain boundary microstructure and stress corrosion cracking in Alloy 600, Corrosion Science, 2011, 第 2 作者
(3) Effects of deformation degrees on grain boundary characters and strain concentration on grain boundaries in Nickel-base Alloy 600, Corrosion Science, 2011, 第 2 作者
(4) Microstructure and stress corrosion cracking of the fusion boundary region in an Alloy 182-A533B low alloy steel dissimilar weld joint, Corrosion Science, 2010, 第 5 作者
(5) Microstructure and mechanical property of the fusion boundary region in an Alloy 182-low alloy steel dissimilar weld joint, Journal of Materials Science, 2010, 第 5 作者
(6) Residual strain measurement and grain boundary characterization in the heat affected zone of a weld joint between Alloy 690TT and Alloy 52, journal of nuclear materials, 2010, 第 5 作者
(7) Effect of Hydrogen in Inconel Alloy 600 on Corrosion in High Temperature Oxygenated Water, Corrosion Science, 2010, 第 5 作者
(8) Environmentally-assisted cracking behavior in the transition region of an Alloy182/SA 508 Cl.2 dissimilar metal weld joint in simulated boiling water reactor normal water chemistry environment, Journal of Neclear Materials, 2008, 第 4 作者
(9) Intergranular Environmentally Assisted Cracking of Alloy 182 Weld Metal in Simulated Normal Water Chemistry of Boiling Water Reactor, Corrosion Science, 2007, 第 1 作者
(10) Stress Corrosion Crack Growth in 316 Stainless Steel in Supercritical Water, Corrosion, 2007, 第 1 作者
(11) Facility for Stress Corrosion Cracking of Irradiated Specimens in Supercritical Water, Journal of Nuclear Materials, 2007, 第 2 作者
(12) Corrosion Behavior of Model Zirconium Alloys in Deaerated Supercritical Water at 500C, Corrosion, 2007, 第 1 作者
(13) An ATEM Study of Oxidation Behavior of SCC Crack Tips in 304L Stainless Steel in High Temperature Oxygenated Water, Journal of Nuclear Materials, 2005, 第 2 作者
(14) Development of a Fundamental Crack Tip Strain Rate Equation and its Application to Quantitative Prediction of Stress Corrosion Cracking of Stainless Steels in High Temperature Oxygenated Water, Journal of Nuclear Materials, 2004, 第 1 作者
(15) Effects of Dissolved Hydrogen on the Primary Water Stress Corrosion Cracking Behavior of Alloy 600 at 325C, Key Engineering Materials, 2004, 第 1 作者
(16) Investigation of Dendrite Boundary Chemistry in Alloy 182 using Auger Electron Spectroscopy Analysis, Metallurgical and Materials Transactions A, 2003, 第 1 作者
(17) The Crack Tip Solution Chemistry in Sensitized Stainless Steel in Simulated Boiling Water Reactor Water Studied Using a Microsampling Technique, Journal of Nuclear Science and Technology, 2003, 第 1 作者


发表著作
科研活动

科研项目

参与会议(1)Microstructure and Stress Corrosion Cracking of the Fusion Boundary Region in an Alloy 182-Low Alloy Steel Dissimilar Weld Joint Q.J. Peng, J. Hou, Y. Takeda, J. Kuniya, T. Shoji 2010-04-13
(2) Effects of Dissolved Hydrogen on the Electronic Properties of the Oxide Film on Alloy 600 in High Temperature Water, Q.J. Peng, Y. Takeda, J. Kuniya, T. Shoji 2009-08-23
(3)Characteristic Distance of the Crack Tip Strain Rate Formulation for Quantification of the Stress Corrosion Crack Growth Rate QJ.. Peng, Y. Takeda, Z. Lu, J. Kuniya, T. Shoji 2008-04-20
(4)SCC Behavior in the Transition Region of an Alloy 182-SA 508 Cl.2 Dissimilar Weld Joint under Simulated BWR-NWC Conditions Q. J. Peng, T. Shoji, S. Ritter, H-P Seifert 2005-08-14

合作情况

项目协作单位
指导学生

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