期刊文献+

逆相变退火中锰钢裂纹启裂行为

Crack initiation of ART-annealed medium manganese steel
原文传递
导出
摘要 采用单轴拉伸及原位拉伸对逆相变退火中锰钢(0.13C-5Mn)进行拉伸实验,用XRD、EBSD、SEM及纳米硬度等方法表征了实验钢拉伸前后组织演变规律,研究了拉伸过程中裂纹启裂行为。结果表明,中锰钢在单轴拉伸过程中微孔萌生以铁素体/马氏体界面为主,夹杂物、铁素体和新鲜马氏体内部也成为裂纹萌生的重要位置,裂纹扩展不同路径造成单轴拉伸断口呈既有韧窝区域,又有解理和准解理区域的混合特征。 The crack initiation in ART-annealed medium manganese steel(0.13 C-5 Mn)was studied by uniaxial tensile and in-situ tensile test,and the microstructure evolutions of the test steel before and after tension were characterized by XRD,EBSD,SEM and nano hardness.The crack initiation behavior during the tensile process was studied.The results show that the crack nucleation is occurred mainly on the interface between ferrite/martensite during uniaxial tensile process,and other positions such as inclusions,the interior of ferrite and the fresh Martensite also are important positions of crack initiation.The different crack propagation paths result in the mixed characteristics of dimple area,cleavage and quasi-cleavage area.
作者 周峰峦 王存宇 雷志国 曹文全 董瀚 ZHOU Feng-luan;WANG Cun-yu;LEI Zhi-guo;CAO Wen-quan;DONG Han(Institute for Special Steel,Central Iron and Steel Research Institute,Beijing 100081,China;Testing Center,NCS Testing Technology Co.,Ltd.,Beijing 100081,China;Institute of Engineering,Jiangxi University of Science and Technology,Ganzhou 341000,Jiangxi,China;School of Material Science and Engineering,Shanghai University,Shanghai 200072,China)
出处 《钢铁研究学报》 CAS CSCD 北大核心 2019年第12期1073-1079,共7页 Journal of Iron and Steel Research
基金 国家重点研发计划资助项目(2017YFB0304401,2016YFB0101605) 国家自然科学基金资助项目(51571048)
关键词 中锰钢 裂纹形核 原位拉伸 纳米硬度 medium manganese steel crack nucleation in-situ tension nano-hardness
  • 相关文献

参考文献4

二级参考文献74

  • 1余海燕,陈关龙,林忠钦,李淑慧.TRIP高强度钢板组织与成形性能的实验研究[J].塑性工程学报,2005,12(1):10-14. 被引量:1
  • 2江海涛,唐荻,刘强,刘仁东,严玲.TRIP钢中残余奥氏体及其稳定性的研究[J].钢铁,2007,42(8):60-63. 被引量:48
  • 3董翰.先进汽车钢扁平材和长形材的研发进展[C]//2009年汽车用钢生产及应用技术国际研讨会.大连:2009.
  • 4Sato M, Utsumi Y, Watanabe K. Ultra-High-Strength, Quench Type, Hot Rolled Steel Sheets of 1620MPa Grade for Automobile Door Impact Beams[J]. Kobelco Technology Re view, 2008, 28: 13.
  • 5Zrnik J, Mamuzic I, Dobatkin S V. Recent Progress in High Strength Low Carbon Steels[J]. Metabk, 2006, 45(4) : 323.
  • 6Hayashi H, Nakagawa T. Recent Trends in Sheet Metals and Their Formability in Manufacturing Automotive Panels[J]. Journal of Materials Processing Technology, 1994, 46 (3-4) 455.
  • 7KwonOJ , LeeK Y , KimGS , et al. New Trends in Advanced High Strength Steel Developments for Automotive Application[J]. Materials Science Forum, 2010, 638-642: 136.
  • 8Sugimoto K, Iida T, Sakaguchi J, et al. Retained Austenite Characteristics and Tensile Properties in a TRIP Type Bainitic Sheet Steel[J]. ISIJ Inter. , 2000,40(9):902.
  • 9Heimbuch R. Overview: Auto/Steel partnership[EB/OL]. httpt//www, a-sp. org.
  • 10Dave Anderson. Application and Repairability of Advanced High-Strength Steels, American Iron and Steel Institute[EB/ OL]. 2008, http..//www, autosteel, org.

共引文献189

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部