学历及主要工作经历
教育经历
1989年9月~1993年6月,吉林大学(吉林工大),学士
1993年9月~1999年6月,中国科学院金属研究所,硕士、博士
2000年5月~2001年11月,韩国仁荷大学,博士后
工作经历
2001年12月~2005年3月,日本大阪大学,客员研究员
2005年4月~2010年9月,中国科学院金属研究所,材料加工模拟研究部,副研究员,“引进优秀学者”
2010年10月~至今,中国科学院金属研究所,材料加工模拟研究部,研究员
主要研究方向
熔池电弧交互作用下的焊接冶金学和高端焊材研制
主要研究成果(代表性专利和论文等)
论文
(1)C. Liu, S.T. Wei,S.P. Lu. Corrosion behavior of 9Cr-Si heat resistant steel deposited metal in liquid lead-bismuth eutectic at 550 °C. Corrosion Science, 215(2023)111042
(2)Y.K. Chen, S.T. Wei, D. Wu,S.P. Lu. Mechanism of δ-ferrite decomposition in high Si-bearing austenitic stainless steel weld metal during aging at 550°C. Materials Science and Engineering: A, 876(2023)145163
(3)X.P. Xiao, D.Z. Li, Y.Y. Li,S.P. Lu. Microstructural evolution and stress relaxation cracking mechanism for Super304H austenitic stainless steel weld metal. Journal of Materials Science & Technology, 100(2022)82
(4)W.B. Tian, S.T. Wei, D. Wu, J. Sun, W.C. Dong,S.P. Lu. Role of Si content on microstructural and mechanical responses of 16Cr–25Ni superaustenitic stainless steel weld metals. Materials Science and Engineering: A, 852(2022)143727
(5)J.Sun,S.P. Lu. Effect of inhomogeneity on the microstructural evolution and mechanical behaviour of a vanadium-containing Fe-Cr-Ni-Mo weld metal. Materials Science and Engineering: A, 806(2021)140758
(6)K.Y. Zhang, W.C. Dong,S.P. Lu. Transformation plasticity of AF1410 steel and its influences on the welding residual stress and distortion: Experimental and numerical study. Materials Science and Engineering: A, 821(2021)141628
(7)J.Sun,S.P. Lu. Influence of inter-dendritic segregation on the precipitation behaviour and mechanical properties in a vanadium-containing Fe-Cr-Ni-Mo weld metal. Scripta Materialia, 186(2020)174
(8)L.L. Zhao, S.T. Wei, D. Wu, D.B. Gao,S.P. Lu.δ-ferrite transformation mechanism and its effect on mechanical properties of 316H weld metal. Journal of Materials Science & Technology, 57(2020)33
(9)X. Zhang, D.Z. Li, Y.Y. Li,S.P. Lu. Oxidation behaviors of Fe-25Cr-20Ni-χNb austenitic weld metals at 1100 °C in ambient air: Role of elemental niobium. Corrosion Science, 159(2019)108137
(10)X. Zhang, D.Z. Li, Y.Y. Li,S.P. Lu. Effect of aging treatment on the microstructures and mechanical properties evolution of 25Cr-20Ni austenitic stainless steel weldments with different Nb contents. Journal of Materials Science & Technology, 35(2019)520
(11) D. Wu, D.Z. Li, S.P. Lu. Microstructural evolution and mechanical property of a Ni-Fe-based weld metal during long-term exposure at 650°C and 700°C. Materials Science and Engineering: A, 716(2018)240-251
(12)D. Wu, T.T. Yao, D.Z. Li,S.P. Lu. Effect of boron on the tensile and creep properties of a newly developed Ni-Fe-based weld metal. Materials Science and Engineering: A, 731(2018)21-28
(13)J. Wang, L.J. Rong, D.Z. Li, S.P. Lu. Effect of carbon and manganese on the microstructure and mechanical properties of 9Cr2WVTa deposited metals. Journal of Nuclear Materials, 485(2016)169-180
(14)D. Wu, D.Z. Li,S.P. Lu. Microstructures and intermediate temperature brittleness of newly developed Ni-Fe based weld metal for ultra-supercritical power plants. Materials Science and Engineering: A, 684(2018)146-157
(15)J. Wang,S.P. Lu, L.J. Rong, D.Z. Li, Y.Y. Li. Effect of silicon on the oxidation resistance of 9 wt.% Cr heat resistance steels in 550 °C lead-bismuth eutectic. Corrosion Science, 111(2016)13-25
(16)G.S. Bai,S.P. Lu, L.J. Rong, D.Z. Li. Influences of niobium and solution treatment temperature on pitting corrosion behaviour of stabilized austenitic stainless steels. Corrosion Science, 108 (2016) 111-124
专利
(1)陆善平;徐海涛;吴栋;燕春光;陈亚魁;韩丽青;戎利建;庄毅;杨红义;李依依.一种调控含Nb不锈钢焊缝金属δ铁素体和碳化物的方法. ZL202211238605.5
(2)陆善平;魏世同.一种钠冷快堆用奥氏体不锈钢光焊丝拉拔工艺. ZL202011391025.0
(3)陆善平;张旭;李殿中;李依依.高放废物玻璃固化体容器用奥氏体不锈钢焊丝及其制备方法和应用. ZL201710853453.2
(4)陆善平;魏世同;李依依.一种钠冷快堆用奥氏体不锈钢光焊丝及其应用. ZL 201710895974.4
(5)陆善平;王健;戎利建;李殿中.一种具有高冲击性能的四代核电用马氏体耐热钢焊丝及其焊接工艺. ZL201610450912.8
(6)陆善平;柏关顺;李殿中;李依依.一种耦合式金相腐蚀方法. ZL201310573883.0
陆善平;吴栋;李殿中.一种700℃超超临界火电高温部件用Fe-Ni基高温合金焊丝及其应用. ZL201410366125.6
(7)陆善平;莫文林;董文超;李殿中;李依依.一种镍基焊缝点状缺陷控制方法. ZL201210057288.7
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