Wei Yanhong
Professor Supervisor of Doctorate Candidates
Gender:Female
Alma Mater:哈尔滨工业大学
Education Level:哈尔滨工业大学
Degree:Doctoral Degree in Engineering
School/Department:College of Material Science and Technology
Discipline:Material Process Engineering. Material Science
Business Address:南航将军路小区东区材料学院A409
Contact Information:18951874731
E-Mail:
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Affiliation of Author(s):材料科学与技术学院
Journal:JOURNAL OF MATERIALS PROCESSING TECHNOLOGY
Key Words:Dimensional deviation Resistance spot welding Reverse engineering Direct finite element analysis
Abstract:Direct finite element analysis that takes stamping dimensional deviations into account was achieved based on coupled electro-thermo-mechanical method and reverse engineering in the current research. The two continuous resistance spot welding processes of the reverse established back side panel were simulated. Its residual stresses and deformation were compared with those of the ideal back side panel. Large distortion presents in the reverse back side panel while only slight deformation exists in the ideal one. The former is validated to be closer to the deformation of the actual welded back side panel. The peak residual stresses after processes 1 and 2 remain almost unchanged in the reverse back side panel while those in the ideal one show an increasing trend. The final residual stresses of the reverse and the ideal back side panel are both high but the former is lower than the later. The stamping dimensional deviations are responsible for these differences. They lead to obvious attenuation of geometric features and large assembly clearances in the reverse back side panel. These assembly clearances allow large deformations of the stamping parts during the welding process. Meanwhile, these clearances make it relatively freer for the heated sheet metal to expand thermally in the thickness direction, resulting in less or even no residual stress in this direction. These clearances also promote the release of the thickness-direction component of the tensile residual stress in the extension direction of sheet by allowing deformation in the thickness direction.
ISSN No.:0924-0136
Translation or Not:no
Date of Publication:2019-10-01
Co-author:Liu, Xiangbo,Wu, Haijiang,Zhang, Tao,lsl
Correspondence Author:Wei Yanhong
魏艳红,南京航空航天大学教授、博导,英国剑桥大学访问学者,国际焊接学会(IIW)C-XI委中国代表,中国机械工程学会江苏省焊接学会副理事长。哈尔滨工业大学焊接专业博士毕业后留校工作,2006年2月引进南京航空航天大学。
长期从事焊接工艺智能设计及仿真优化研究工作,形成了自主知识产权的系列焊接工程应用软件,可以完成焊接性分析、焊接工艺智能设计、焊接工艺智能评定、焊接在线监测、焊接应力变形分析、焊接组织与力学性能预测。所设计的软件成功应用于各种航天结构件、军机部件、发动机机匣、雷达天线、轿车车体、工程机械、动车车体焊接中。
致力于焊接模拟仿真人才培养,为哈尔滨工业大学、华中科技大学、南京航空航天大学、南京理工大学、重庆大学、合肥工业大学等培养和输送了优秀教师。
焊接过程模拟,焊接组织性能分析与预测,焊接数字化软件设计,电弧增材制造基础研究
发表论文200余篇,SCI收录80余篇。
获得专利和软件著作权近二十余项。
承担和完成了4项国家自然基金项目,参加了两项国家自然基金项目,承担了企业横向课题50余项。
指导博士生20余人,毕业10余人。