郑文健,博士,副研究员,硕士生导师,博士生导师,2014年毕业于哈尔滨工业大学焊接与连接国家重点实验室,2015年至2016年在中国船舶重工集团公司第七二五研究所任职,2017年进入浙江工业大学机械工程学院工作。现为浙江工业大学化工机械设计研究所压力容器设计人员,过程装备及其再制造教育部工程研究中心办公室主任。中国焊接学会计算机辅助工程专委会委员,中国焊接学会青委会委员,中国失效分析学会失效分析专家,浙江省焊接学会常务理事兼青委会主任。主持国家自然科学基金、国防课题、浙江省公益基金,国家重点实验室重点基金,以及其他省部级课题多项。主持大型舰船、航天飞行器关键部件、飞机关键部件、核电关键部件、汽车关键焊接部件、深潜器等关键焊接结构、化工压力容器等的焊接过程数值模拟及优化多项横向课题。目前从事先进材料连接技术、材料加工工程多尺度虚拟制造仿真等领域的研究工作。在船体结构、化工设备高强钢焊接接头可靠性、焊接过程氢扩散行为及其损伤、超大型焊接结构制造过程焊接变形预测及控制等领域取得了丰硕成果和创新性技术积累。目前发表SCI/EI论文五十余篇,专利二十余项。
发表论文:
1. Feng D C, Wang W J, Liu Y F., Zheng W J*, Yan D J, Li C A, Huang M, He Y M, Yang J G. Hydrogen-induced evolution associated with nano-scale precipitated phases in AlCoCrFeNi2.1 high-entropy alloy. Journal of Alloys and Compounds, 2023, 944: 169116.
2. Yang J G, Feng D C, Liu Y F, Zheng W J*, Lai S B, Yan D J, Xie, J L. Excellent corrosion resistance of electron beam welded joint and remelted layer of eutectic high-entropy alloy AlCoCrFeNi2.1. Intermetallics, 2023, 154: 107822.
3. Feng D C, Wang W J, Zheng W J*, Zhou H, He Y M, Yang J G. Hydrogen-induced phase boundary Cr-segregation in high-entropy alloy AlCoCrFeNi2.1. Materialia, 2022, 26: 101556.
4. Feng D C., Wang W J, Zheng W J*, Chen W J, He Y M, Yang J G. 1D growth of Cr-rich nanophase induced by hydrogen in high-entropy alloy AlCoCrFeNi2.1. Materials Letters, 2022, 329: 133163.
5. Feng D C, Li Z Y, Zheng W J*, Zhou Z, Gao G B, Yang J G, Gao Z L. Failure Analysis of Welded Joint Leakage of TP321 Pressure Pipeline. Engineering Failure Analysis, 2022, 139: 106413. (SCI,Q2,IF = 3.634)
6.冯道臣,郑文健,高国奔,周州,贺艳明,杨建国*. AlCoCrFeNi2.1 高熵合金电子束焊接接头耐蚀性. 焊接学报, 2022, 43:43-48.
7. Yu Li*, Jia-yi Hou, Wen-jian Zheng, Zheng-quan Wan and Wen-yong Tang, A Numerical Simulation Method Considering Solid Phase Transformation and the Experimental Verification of Ti6Al4V Titanium Alloy Sheet Welding Processes, Materials, 2022, 15: 2882
8. Zhou Zhou, Wenjian Zheng*, Daochen Feng, Tingting Xu, and Jianguo Yang, Mechanical Properties and Corrosion Resistance of Cold Metal Transfer Small-Bore Thin-Walled Tube Butt Welded Joints of UNS S32205 Duplex Stainless Steel, Journal of Materials Engineering and Performance, 2022, 31(6)4531-4544.
9. Jiajie Wang, Wenjian Zheng*, Juyao Yu, Jianping Xu. Quantitative investigation on sidebranching during the solidification of weld pool, Welding in the World, 2021, 65,2059-2069.
10. Jianguo Yang, Guohao Liu, Wenjian Zheng*, Study on Hydrogen Diffusion Behavior during Welding of Heavy Plate, Materials, 2020, 13, 3887.
11. Xiong Ziliang, Zheng Wenjian*, Tang Liping and Yang Jianguo. Self-gathering effect of the hydrogen diffusion in welding induced by the solid-state phase transformation[J]. Materials. 2019, 12(18):2897
12. Xiong Ziliang, Zheng Wenjian*, Liu Yanzhang, Kuang Yanjun and Yang Jianguo. Hydrogen diffusion mechanism around a crack tip in type 304L austenite stainless steel considering the influence of the volume expansion of strain-induced martensite transformation [J]. Metals. 2019, 9(9):977
13. Zheng Wenjian, He Yangming*, Yang Jianguo and Gao Zengliang, Influence of crystallographic orientation of epitaxial solidification on the initial instability during the solidification of welding pool[J]. Journal of Manufacturing Processes, 2019, 38:298-307
14. Zheng Wenjian, He Yanming, Yang Jianguo* and Gao Zengliang, Hydrogen diffusion mechanism of the single-pass welded joint in welding considering the phase transformation effects[J], Journal of Manufacturing Processes, 2018, 36:126-137.
15. 郑文健, 贺艳明, 杨建国*, et al., 焊接熔池凝固过程联生结晶晶体学取向对线性不稳定动力学的影响[J], 机械工程学报, 2018, 54: 62-69.
16. He Y.M., Lu C.Y., Zheng W.J.*, et al., Microstructural modification and mechanical characterization for a laser-induced composite coating during thermal exposure[J], Surface and Coatings Technology, 358 (2019) 11-21.
17. Zheng W.J., Liu Y.*, Gao Z.L., et al., Just-in-time semi-supervised soft sensor for quality prediction in industrial rubber mixers[J], Chemometrics and Intelligent Laboratory Systems, 180 (2018) 36-41.
18. Zheng W.J., Gao X.Y., Liu Y.*, et al., Industrial Mooney viscosity prediction using fast semi-supervised empirical model[J], Chemometrics and Intelligent Laboratory Systems, 171 (2017) 86-92.
19. He Y.M., Zheng W.J.*, Yang J.G., et al., An analysis of high-temperature microstructural stability and mechanical performance of the Hastelloy N-Hastelloy N Superalloy joint bonded with pure Ti[J], Materials and Design, 144 (2018) 72-85.
20. He Y.M., Zheng W.J.*, Yang J.G., et al., TEM study of microstructural characteristic and evaluation of mechanical performance for the hastelloy N/Ti/Hastelloy N superalloy joint brazed for diverse soaking time[J], Journal of Manufacturing Processes, 35 (2018) 271-281.
21. Zheng W J, Dong Z B*, Wei Y H, Song K J, Guo J L, Wang Y. Phase field investigation of dendrite growth in the welding pool of aluminum alloy 2A14 under transient conditions, Computational Materials Science, 2014, 82:525-530.
22. Zheng Wenjian, Dong Zhibo*, Wei Yanhong, Song Kuijing. Onset of the initial instability during the solidification of welding pool of aluminum alloy under transient conditions, Journal of Crystal Growth, 2014, 402:203-209.
23. Zheng Wenjian, Dong Zhibo*, Wei Yanhong, Wang Yong. Phase field investigation on sidebranching dynamics in transient growth,Crystal Research and Technology, 2014, 49(10):777-784.
24. Dong Zhibo, Zheng Wenjian*, Wei Yanhong, Song Kuijing, Dynamic evolution of initial instability during non-steady-state growth, Physical Review E, 2014, 89(6):062403