石永华
时间:2024-05-03 22:56 来源: 作者: 点击:次
更新日期:2024年3月16日 姓 名 石永华 性 别 男 出生年月 籍贯 江苏南通 民 族 汉族 政治面貌 中国共产党党员 最后学历 博士研究生 最后学位 工学博士 技术职称 教授 导师类别 博、硕导 行政职务 Email yhuashi@scut.edu.cn 工作单位 机械与汽车工程学院 邮政编码 510640 通讯地址 广州市五山路华南理工大学10号楼107房 单位电话 020-87114407 个人简介 石永华,教授、博士生导师,华南理工大学机械与汽车工程学院机械电子工程系主任、广东省特种焊接技术与装备工程技术研究中心主任,广东省机械工程学会焊接分会理事长。主要从事机器人智能焊接、特种焊接与新材料焊接、水下焊接、海洋智能装备、焊接过程视觉智能识别等方面的研究工作。主持国家自然科学基金项目3项、海军装备部科研项目3项、广东省重点领域研发计划项目2项、其它省部级项目三十余项。授权发明专利30多件,发表论文150多篇,其中SCI/EI论文100多篇。获得中国人民解放军军队科技进步二等奖(2013)、中国专利优秀奖(2021)、广东省科技进步一等奖(2022)、中国机械工业科学技术一等奖(2022)、中国有色金属科学技术二等奖(2023)等奖项。欢迎机电、机械、焊接、金属材料、自动化等专业学生报考! 工作经历 2001-2005 广东省电信科学技术研究院(中国电信广州研究院) 高级工程师2004-2005 韩国科学技术院(KAIST) 博士后2005--至今 华南理工大学机械与汽车工程学院 副教授、教授、博士生导师2016-2017 美国University of Kentucky 国家公派访问学者 教育经历 1990.9-1994.6 华南理工大学 学士1995.9-1998.4 华南理工大学 硕士1998.9-2001.6 华南理工大学 博士 获奖、荣誉称号 中国人民解放军军队科技进步二等奖(2013)、中国专利优秀奖(2021)、广东省科技进步一等奖(2022)、中国机械工业科学技术一等奖(2022)、中国有色金属科学技术二等奖(2023) 社会、学会及学术兼职 担任广东省特种焊接技术与装备工程技术研究中心主任、广东省机械工程学会焊接分会理事长、中国焊接学会机器人专委会副主任委员、计算机辅助焊接专委会委员,《焊接技术》编委。担任Metaials and Design、Journal of Materials Processing Technology、International Journal Advanced Manufacturing Technology、Industrial Robot、Journal of Manufacturing Process、Robotics and Computer-intergrated Manufacturing、Science and Technology of Welding and Joining等二十多种国际主流学术期刊审稿人。 研究领域 特种焊接装备与新材料焊接、机器人智能焊接装备、高效智能焊接技术与装备、水下焊接、激光焊接、焊接过程视觉智能监控、海洋智能装备等 发表论文 发表的主要论文(*为通讯作者,2018- current )1. Zhang B R, Shi Y H*. A novel weld-pool-length monitoring method based on pixel analysis in plasma arc additive manufacturing[J]. Advances in Manufacturing, 2024: 1-14. (SCI Q2, 中科院二区,IF: 5.2)2. Tao Xu, Yonghua Shi*, Zexin Jiang, Bo Liu, Jiatong Zhan, Zishun Wang, An extraordinary improvement in cryogenic toughness of K-TIG welded 9Ni steel joint assisted by alternating axial magnetic field, Journal of Materials Research and Technology, 2023, 25: 3071-3077 (SCI Q1, 中科院一区,IF: 6.4)3. Shi Yonghua*, Wang ZiShun, Chen Xiyin, Cui Yanxin, Xu Tao, Wang Jinyi. Real-time K-TIG welding penetration prediction on embedded system using a segmentation-LSTM model. Advances in Manufacturing, Mar 2023, online, (SCI Q2, 中科院二区,IF: 5.2).4. Zhuoyong Liang, Yonghua Shi*, Tao Xu, Zishun Wang, Jiatong Zhan. A complementary approach to experimental modeling and analysis of welding processes: dimensional analysis. The International Journal of Advanced Manufacturing Technology, June 2023, online5. Lin Ziluo, Shi Yonghua*, Wang Zishun, Li Bohan, Chen Yuehan. Intelligent Seam Tracking of an Ultranarrow Gap During K-TIG Welding: A Hybrid CNN and Adaptive ROI Operation Algorithm[J]. IEEE Transactions on Instrumentation and Measurement, 2022, 72: 1-14. (SCI Q1, 中科院二区,IF: 5.332)6. Tao Xu, Yonghua Shi*, Yanxin Cui, Zhuoyong Liang. Effects of Magnetic Fields in Arc Welding, Laser Welding and Resistance Spot Welding: A Review. Advanced Engineering Materials. 2023,25(5):2200682(SCI Q2, 中科院三区,IF: 4.122), 当期inside back cover论文 7. Wang Jinyi, Shi Yonghua*, Cui Yanxin, Wang Zishun. Investigation of the relationship between voltage and arc length of K-TIG welding under penetrated condition. The International Journal of Advanced Manufacturing Technology, 2022, 120(5-6): 3843-38578. Tao Xu, Yonghua Shi*, Zexin Jiang, Leilei Wu, Ying Ma, Zishun Wang. Improvement of cryogenic toughness for 9% Ni steel keyhole TIG butt-welded joints with a Ni interlayer, Materials Science and Engineering: A, 2022, 835, 142661, https://doi.org/10.1016/j.msea.2022.142661. (SCI Q1, 一区TOP,IF: 6.044)9. Zishun Wang, Yonghua Shi, Xiaobin Hong*, Baori Zhang, Xiyin Chen, AiwenZhan. Weld pool and keyhole geometric feature extraction in K-TIG welding with a gradual gap based on an improved HDR algorithm. Journal of Manufacturing Processes, 2022, 73: 409–42710. Zhang BR, Shi YH*, Cui YX, Wang ZS, Chen XY. A high-dynamic-range visual sensing method for feature extraction of welding pool based on adaptive image fusion. International Journal of Advanced Manufacturing Technology, 2021, 117 (5-6), pp.1675-1687.11. Yanxin Cui, Youping Kang, Yonghua Shi*, Jinrong Chen, Zishun Wang, Jinyi Wang. Investigation into the arc profiles and penetration ability of axial magnetic field-enhanced K-TIG welding by means of a specially designed sandwich, Journal of Manufacturing Processes, 2021, 68:32-41, (SCI JCR Q2,二区,IF: 5.684)12. Shu-wan CUI, Yong-hua SHI*, Cheng-shi ZHANG. Microstructure and mechanical properties of TC4 titanium alloy K-TIG welded joints, Transactions of Nonferrous Metals Society of China, 2021, 31(2): 416-425. (SCI JCR Q1, 二区,IF: 3.752)13. Yunke Chen, Yonghua Shi*, Yanxin Cui, Xiyin Chen. Narrow gap deviation detection in Keyhole TIG welding using image processing method based on Mask-RCNN model. The International Journal of Advanced Manufacturing Technology, 2021, 112(7-8): 2015–2025. https://doi.org/10.1007/s00170-020-06466-5(SCI JCR Q2, 三区, IF: 3.563)14. Yanxin Cui, Yonghua Shi*, Qiang Ning, Yunke Chen, Baori Zhang. Investigation into keyhole-weld pool dynamic behaviors based on HDR vision sensing of real-time K-TIG welding process through a steel/glass sandwich. Advances in Manufacturing, 2021, 9(1):136–144. DOI: 10.1007/s40436-020-00335-w. Available online. (SCI Q3, 二区, IF: 3.48)15. Baori Zhang, Yonghua Shi*, Yanxin Cui, Zishun Wang, Xiaobin Hong. Prediction of keyhole TIG weld penetration based on high-dynamic range imaging. Journal of Manufacturing Processes, 2021, 63(SI): 179-190(SCI JCR Q2,二区,IF: 4.086)https://doi.org/10.1016/j.jmapro.2020.03.05316. Kun Sun, Yu Hu, Yonghua Shi*, Baoyi Liao. Microstructure evolution and mechanical properties of underwater dry welded metal of high strength steel q690e under different water depths. Polish Maritime Research, 2020, 27(4):112-119. DOI: 10.2478/pomr-2020-0071 (SCI Q4, 四区, IF: 0.982) 标注:2020A151501105017. Yanxin Cui, YonghuaShi*, Tao Zhu, Shuwan Cui. Welding penetration recognition based on arc sound and electrical signals in K-TIG welding. Measurement, 2020, 163(107966). (SCI JCR Q1,二区,IF: 3.927)18. Yu Hu, Yonghua Shi*, Kun Sun, Xiaoqin Shen. Effect of Filler Si content on the Microstructure and Properties of Underwater Hyperbaric Welded Duplex stainless steel. Journal of Materials Processing Technology, 2020, 279: 116548 (SCI JCR Q2, 中科院二区TOP,IF: 5.551)19. Yanxin Cui, Yonghua Shi*, Xiaobin Hong*. Analysis of the frequency features of arc voltage and its application to the recognition of welding penetration in K-TIG welding. Journal of Manufacturing Processes, 2019, v 46, p 225-233(SCI JCR Q2,二区,IF: 4.419)20. Shuwan Cui, Yonghua Shi*, Yanxin Cui, Tao Zhu. The influence of microstructure and chromium nitride precipitations on the mechanical and intergranular corrosion properties of K-TIG weld metals. Construction and Building Materials, 2019, 210: 71–77(SCI JCR Q1, 一区TOP,IF: 6.141)21. 张抱日, 顾盛勇, 石永华*. 基于焊缝熔透检测的机器人深熔K-TIG焊接系统. 机械工程学报,2019, 55(17): 14-21 (EI:20195007822913)22. Shuwan Cui, Yonghua Shi*, Tao Zhu, Weicong Liu. Microstructure, texture, and mechanical properties of Ti-6Al-4V joints by K-TIG welding. Journal of Manufacturing Processes, 2019, v37: 418-424(SCI JCR Q2,中科院三区,IF: 3.462, WOS:000465052000042)23. Baori Zhang, Yonghua Shi*, Shengyong Gu. Narrow-seam identification and deviation detection in keyhole deep-penetration TIG welding. The International Journal of Advanced Manufacturing Technology, 2019, 101(5-8): 2051-2064(SCI JCR Q2,中科院三区,IF: 2.633)24. Yu Hu, Yonghua Shi*, Kun Sun, Xiaoqin Shen. Microstructure evolution and mechanical performance of underwater local dry welded DSS metals at various simulated water depths. Journal of Materials Processing Technology, 2019, 264: 366-376(SCI JCR Q1, 中科院二区,IF: 4.178)25. Shuwan Cui, Yonghua Shi*, Yanxin Cui, Tao Zhu. The impact toughness of novel keyhole TIG welded duplex stainless steel joints. Engineering Failure Analysis. 2018, 94: 226-231 (SCI JCR Q2,中科院三区,IF: 3.114,WOS: 000445901500019)26. Yu Hu, Yonghua Shi*, Kun Sun, Xiaoqin Shen, Zhongmin Wang. Microstructure and Mechanical Properties of Underwater Hyperbaric FCA-Welded Duplex Stainless Steel Joints. Journal of Materials Processing Technology, 2018, 261: 31-38(SCI JCR Q1, 中科院二区,IF: 4.178)27. Yu Hu, Yonghua Shi*, Xiaoqin Shen, Zhongmin Wang. Microstructure Evolution and Selective Corrosion Resistance in Underwater Multi-pass 2101 Duplex Stainless Steel Welding Joints. Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 2018, 49(8): 3306–3320. (SCI JCR Q1, 中科院三区,IF:2.556,WOS:000436905100018)28. Kun Sun, Min Zeng, Yonghua Shi*, Yu Hu, Xiaoqin Shen. Microstructure and corrosion behavior of S32101 stainless steel underwater dry and wet welded joints. Journal of Materials Processing Technology, 2018, 256:190-201(SCI JCR Q1, 中科院二区,IF: 4.178)29. Yonghua Shi*, Shuwan Cui, Tao Zhu, Shengyong Gu, Xiaoqin Shen. Microstructure and intergranular corrosion behavior of HAZ in DP-TIG welded DSS joints. Journal of Materials Processing Technology, 2018, 256: 254-261,(SCI JCR Q1, 中科院二区,IF: 4.669)30. Shuwan Cui, Yonghua Shi*, Kun Sun, Shengyong Gu. Microstructure evolution and mechanical properties of keyhole deep penetration TIG welds of S32101 duplex stainless steel. Materials Science and Engineering: A, 2018, 709: 214-222. (SCI Q1, 一区TOP,IF: 5.234) 出版专著和教材 Yonghua Shi, Yanxin Cui, Shuwan Cui, Baori Zhang. A Novel High-Efficiency Keyhole Tungsten Inert Gas (K-TIG) Welding: Principles and Practices. February 2021, Book chapter In book: Welding Technology, Springer. DOI: 10.1007/978-3-030-63986-0_10 科研创新 已授权发明专利32件,另申请发明专利20件。 指导学生情况 已毕业博士6名,硕士38名。在读博士生5人,硕士生10人。 |