期刊文献+

基于数值模拟的铸钢基体堆焊锻模焊层厚度优化 被引量:2

Numerical Simulation-Based Optimization of Welding Thickness of Forging Die Manufactured by Steel Casting Surfacing
在线阅读 下载PDF
导出
摘要 为解决目前模具制造业中遇到的高成本、低寿命等问题,文中提出了一种基于铸钢基体的表面堆焊制备锻模的方法.针对其中焊接厚度的控制难题,将试验验证与计算机有限元数值分析相结合,建立了基于ZG310-570基体表面堆焊模具的有限元简化模型,采用热循环曲线法模拟铸钢基体模具表面堆焊及回火去应力过程,并分析温度场和不同焊接层厚度的残余应力场分布.结果表明:有限元数值分析能较好地模拟实际铸钢基体表面堆焊锻模的制备过程;基体近焊缝位置等效应力随焊接厚度的增加而降低,到焊层厚度为15 mm后趋于平稳;远离焊缝位置的残余应力随焊接厚度增加而逐渐升高,焊道对基体部位的影响也随之增大,使得铸钢基体材料在使用过程中出现缺陷的可能性显著增加.综合考虑焊接厚度对铸钢基体的影响及模具制造成本等因素,认定该工艺条件下铸钢基体表面堆焊层的最优厚度为15mm. In order to solve the problems of high cost and short life span in current die manufacturing,a method to manufacture forging die via steel casting surfacing is proposed. In view of the control of welding thickness,with thermal cycle curve method,the welding and tempering process is simulated on a simplified finite element model of the ZG310-570 surfacing die by means of finite element analysis and experimental verification,and the temperature field and the residual stress field varying with welding thickness are analyzed. The results show that (1)finite element analysis is effective in simulating the manufacturing process of forging die;(2 )the equivalent stress near the welding joint decreases as the welding thickness increases until the latter reaches 15 mm;(3 )the residual stress far away from the welding joint increases with the welding thickness,and the impact of weld bead on the substrate subsequently strengthens,and thus the possibility of defect of steel casting material in use increases significantly. When we take into account such factors as the influence of welding thickness on cast-steel substrate and the manufacturing cost,15 mm should be regarded as the optimal welding thickness of the surface layer of steel casting.
出处 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第3期84-89,124,共7页 Journal of South China University of Technology(Natural Science Edition)
基金 国家自然科学基金面上项目(51275543) 科技部重大专项(2012ZX04010-081)
关键词 铸钢 焊接厚度 焊接应力 数值模拟 steel casting welding thickness welding stress numerical simulation
  • 相关文献

参考文献12

二级参考文献23

  • 1陈家权,肖顺湖,吴刚,杨新彦.焊接过程数值模拟热源模式的比较[J].焊接技术,2006,35(1):9-11. 被引量:34
  • 2罗金华,梁晓燕,王春明,胡伦骥.中厚板多道焊温度场和应力场三维数值模拟[J].电焊机,2006,36(8):32-35. 被引量:13
  • 3武传松.焊接过程的计算机模拟[J].第十次全国焊接学术会议焊接与IT专题论文集,2001,.
  • 4Merklein M,Lechler J.Investigation of the thermo-mechanical properties of hot stamping steels[J].Materials Processing Technology,2006,177(1/3):452-455.
  • 5于鸣 于思彬.超高强度钢激光焊接的微观组织与断口分析.吉林大学学报:工学版,2010,.
  • 6Kolleck R,Veit R.Investigation on induction heating for hot stamping of boron alloyed steels[J].CIRP Annals-Manufacturing Technology,2009,58(1):275-278.
  • 7Mei Li-fang,Chen Gen-yu,Jin Xiang-zhong.Research on laser welding of high-strength galvanized automobile steel sheets[J].Optics and Lasers in Engineering,2009,47(11):1117-1124.
  • 8张文钺.焊接冶金学(基本原理)[M].北京:机械工业出版社,1999..
  • 9周振丰.焊接冶金学[M].北京:机械工业出版社,1995..
  • 10Tso - Liang Teng , Chih - Cheng Lin. Effect of welding conditions on residual stress due to butt welds[J]. International Journal of Pressure Vessels and Piping , 1998(75) :857-864.

共引文献91

同被引文献8

引证文献2

二级引证文献1

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