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基本信息
国家材料服役安全科学中心 副主任
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教育经历
1989年 江苏大学,动力机械与工程系流体机械专业,学士毕业
1995年 北京工业大学,基础科学部固体力学专业,硕士毕业
1999年, 北京航空航天大学,材料科学与工程系材料学专业,博士毕业 -
工作经历
1999-2001 北京科技大学,材料物理与化学系,博士后
2001-2002 日本东北大学, 断裂与可靠性研究所,访问学者
2002-2005 香港城市大学,应用物理与材料系/机械与管理工程系,访问学者
2005-2007 北京科技大学,材料物理与化学系,副研究员
2007-2008 北京科技大学“重大工程材料服役安全研究评价设施”项目建设指挥部,副研究员
2009-2016 国家材料服役安全科学中心 项目建设指挥部, 研究员,副总工程师,工程技术部主任
2016-2022 国家材料服役安全科学中心 项目建设指挥部, 研究员,副指挥,副总工程师,副总工艺师
2022-今 国家材料服役安全科学中心 副主任 -
主要研究方向
1. 工程结构材料的腐蚀、应力腐蚀、腐蚀疲劳
2. 工程结构材料的高温蠕变行为
3. 核电站关键材料、焊接连接件及服役安全评价
3. 工程关键材料微动磨损和微动腐蚀
4. 高温水中的流动促进腐蚀
5. 新一代超(超)临界火电站材料及服役评价
6. 核电、火电站装备寿命预测及延寿技术
7. 工程材料失效微观机理及数值模拟 -
代表性论文
1. Xinyu Wang, Zhenhua Li, Yakui Bai, Chen Sun, Ke Wang, Tingguang Liu, Yonghao Lu*, Tetsuo Shoji, Oxide properties of deformed Alloy 690TT in caustic solution at high temperature, Corrosion Science, 174 (2020) 108806. Impact Factor: 6.479
2. Ligong Ling, Peiliang Guo, ChenguangShang, Yonghao Lu*. Effects of oxides produced during welding on oxidation behavior of the 304L welded joint in simulated primary circuit solution of PWR. Corrosion Science, Volume 167, 1, 108515. Impact Factor: 6.479
3. Ligong Ling, Tingguang Liu, Yonghao Lu*, Peiliang Guo. Investigation of the oxides film on 304L base metal produced during welding process without inert gas shielding. Applied Surface Science, 2019, 465, pp. 780-786. Impact Factor: 6.182
4. Long Xin, Qian Huang, Yongming Han, Hongchao Ji, Yonghao Lu*, Tetsuo Shoji. Insights into the fatigue cracking of Alloy 690TT subjected to fretting wear under partial slip conditions. Materials Characterization, 2020, 159, 110040. Impact Factor: 3.562
5. Zhenhua Li, Yonghao Lu*, Xinyu Wang. Modeling of stress corrosion cracking growth rates for key structural materials of nuclear power plant. Journal of Materials Science, 2020, 55(2), 439-463. Impact Factor: 3.553
6. Long Xin, Xue Liang, Yongming Han, Yonghao Lu*, Tetsuo Shoji. Investigation into the fretting corrosion of alloy 690 TT against type 304 stainless steel in high temperature pure water under partial slip conditions. Tribology International, 2019, 134, pp. 93-101. Impact Factor: 4.271
7. Long Xin, Miao Ma, Yonghao Lu*, Tetsuo Shoji. Comparative study on fretting wear behaviors of Alloy 600MA in dry air and deionized water conditions. Wear, 2019, 418-419, pp. 167-179. Impact Factor: 4.108
8. Wei Wang, Tingguang Liu, Xinyuan Cao, Yonghao Lu*, Tetsuo Shoji. In-situ SEM study of crack initiation and propagation behavior in a dissimilar metal welded joint. Materials Science and Engineering A. 2018, 729, pp. 331-339. Impact Factor: 4.081
9. Xinyuan Cao, Ping Zhu, Tingguang Liu, Yonghao Lu*, Tetsuo Shoji. Thermal aging effects on mechanical and electrochemical properties of stainless steel weld overlay cladding. 2018. Surface and Coatings Technology. 344, pp. 111-120. Impact Factor: 3.192
10. Xinyuan Cao, Ping Zhu, Qing Yong, Yonghao Lu*, Tetsuo Shoji. An investigation on high temperature fatigue properties of tempered nuclear-grade deposited weld metals. Journal of Nuclear Materials, 2018, 499, pp. 317-325. Impact Factor: 2.547
11. Long Xin, Beibei Yang, Jie Li, Yonghao Lu*, Tetsuo Shoji. Microstructural characteristics of Alloy 690TT subjected to fretting corrosion in high temperature water. Corrosion Science, 2017, 123, pp. 116-128. Impact Factor: 5.352
12. Jie Li, Beibei Yang, Yonghao Lu*, Zihao Wang, Tetsuo Shoji. The effects of electrochemical polarization condition and applied potential on tribocorrosion behaviors of Inconel 690 alloys in water environment. Materials and Design, 2017, 119, pp. 93-103. Impact Factor: 4.525
13. Jie Li, Beibei Yang, Yonghao Lu*, Tetsuo Shoji. T. The degradation mechanism of Inconel 690TT induced by fretting wear in air. Tribology International, 2017, 116, pp. 147-154. Impact Factor: 3.547
14. Long Xin, Beibei Yang, Zihao Wang, Yonghao Lu*, Tetsuo Shoji. Microstructural evolution of subsurface on Inconel 690TT alloy subjected to fretting wear at elevated temperature, Materials & Design, 2016, 104, pp. 152-161. Impact Factor: 4.364
15. Zirui Chen, Yonghao Lu*. Xianfei Ding, Tetsuo Shoji. Microstructural and hardness investigations on a dissimilar metal weld between low alloy steel and Alloy 82 weld metal, Materials Characterization, 2016, 121, pp 166-174. Impact Factor: 3.220
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主要科研项目
1. 北京市科技计划,核电蒸汽发生器热交换管和二回路管道的服役行为评价技术研发,2018/1-2020/6,98万元,在研;
2. 国家重点研发计划,科研实验室大尺寸工程样品试验数据失效模型和控制技术研究,2016/7-2019/9,285万元,在研;
3. 国务院其他部委,核级焊接材料国产化开发及应用研究,2012/3-2016/12, 30万元,结题;
4. 广东省教育部产学研结合项目,核电站核岛主设备用关键焊接材料国产化研究,2012/4-2013/12,50万元,结题;
5. 国家重大科技专项,焊接对管材腐蚀及应力腐蚀的影响,2011/1-2014/12,43.16万元,结题;
6. 国家重大科技专项,加工工艺、尺寸和形状对核电接管安全端的环境性能影响研究,2011/1-2014/12,99.77万元,结题;
7. “973”计划,高温高压水中的材料微动损伤的规律和机制研究,2011/1-2015/8,316万元,结题;
8. 国家自然科学基金,钛硼碳氮(TiBCN)超硬薄膜强化和高热稳定性的规律和机制,2009/1-2011/12,31万元,结题;
9. “863”计划,不锈钢的应用性能研究,2008/12-2010/12,77万元,结题;
10. 新型环境力学试验装置合作开发,2019/12-2020/12,200万元,在研;
11. 技术服务,锆合金高温蠕变试验,2019/12-2020/06, 45.8万,在研;
12. 技术服务,4种铝合金静力性能的热暴露影响试验,2019/11-2020/12, 45万,在研;
13. 技术服务,ODS钢蠕变性能测试,2019/12-2021/01, 66.37万,在研;
14. 技术服务,RPV法兰联结结构螺纹疲劳特性关键因素研究,2019/10-2020/06, 66.37万,在研;
15. 技术服务,SG传热管磨蚀试验,2018/12/8-2019/4/15, 52.8万,结题;
16. 技术开发(2017-384),金属3D打印试件腐蚀、磨损机理与微观结构特征研究,2017/7-2017/10,47.4402万元,结题;
17. 技术服务(2016-255),油田含水管道长生命周期管材及防腐技术研究,2016/6-2017/6,45万元,结题;
18. 技术服务(2016-255),油气集输场站腐蚀机理及防治措施研究,2012/1-2013/1,100万元,结题;
19. 技术开发,靖边气田地面集输系统腐蚀监测技术研究,2010/10-2011/12,200万元,结题。 -
指导学生情况
1. 指导博士研究生18人,其中留学生1人,已毕业6人;
2. 指导硕士研究生28人,其中留学生1人,已毕业17人。