• 11111
  • 首页
  • 期刊介绍
  • 编委会
  • 征稿启事
  • 期刊订阅
  • 相关下载
  • Email alert
  • 联系我们
引用本文:郭宏超,蔡欣悦,李国强,王彦博,刘云贺.湿热周浸环境下高强钢对接焊缝的疲劳性能[J].建筑材料学报,2022,25(8):823-829
【打印本页】   【下载PDF全文】   查看/发表评论  【EndNote】   【RefMan】   【BibTex】
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 87次   下载 400 本文二维码信息
码上扫一扫!
分享到: 微信 更多
湿热周浸环境下高强钢对接焊缝的疲劳性能
郭宏超1,2,蔡欣悦1,李国强2,王彦博2,刘云贺1
1.西安理工大学 土木建筑工程学院,陕西 西安 710048;2.同济大学 土木工程学院,上海 200092
摘要:
通过湿热周浸模拟海洋浪溅区腐蚀环境,对Q690高强钢对接焊缝开展了疲劳性能试验,分析了腐蚀损伤与焊缝缺陷对其疲劳性能的影响.结果表明:Q690高强钢对接焊缝具有良好的抗疲劳能力,当腐蚀时间为100 d时,试件质量损失率为8.46%,焊缝区和热影响区的平均腐蚀速率分别为1.14、1.22 mm/a,疲劳极限减小了32.7%;锈蚀试件断口裂纹分布呈平行条带状,且随着腐蚀损伤程度的增大,在高应力水平下的疲劳条纹数量减少,损伤累积明显提高.
关键词:  Q690高强钢  对接焊缝  海洋浪溅区  腐蚀疲劳  损伤指数
DOI:10.3969/j.issn.1007-9629.2022.08.008
分类号:TU391
基金项目:国家自然科学基金资助项目(51978571);陕西省杰出青年科学基金资助项目(2021JC-41);陕西省重点研发计划项目(2022SF-199)
Fatigue Performance of Butt Welds of High Strength Steel under the Humid and Hot Immersion Environment
GUO Hongchao1,2, CAI Xinyue1, LI Guoqiang2, WANG Yanbo2, LIU Yunhe1
1.School of Civil Engineering and Architecture, Xi'an University of Technology, Xi'an 710048, China;2.College of Civil Engineering, Tongji University, Shanghai 200092, China
Abstract:
Fatigue test of butt welds of Q690 high strength steel was carried out by simulating the corrosion environment in the splash zone through humid and hot immersion environment. The effects of corrosion damage and weld defects on its fatigue properties of high strength steel were analyzed. The results show that the butt welds of Q690 high strength steel has good fatigue resistance. When the corrosion period is 100 days, the mass loss rate of the specimen is 8.46%, the average corrosion rate of the weld zone and the heat affected zone was 1.14 and 1.22 mm/a, and the fatigue limit is reduced by 32.7%. The fracture crack distribution of the rusted specimen crack is in parallel banded. With the increase of corrosion damage degree, the number of fatigue stripes under high stress level decreases and the damage accumulation increases significantly.
Key words:  Q690 high strength steel  butt weld  splash zone  corrosion fatigue  damage index