期刊文献+

管对接全位置焊应力应变场三维有限元数值分析 被引量:9

3D finite element simulation on stress-strain distributions in all position root butt welding of pip
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摘要 基于有限元分析软件ANSYS,对SA335 P91钢管全位置对接打底焊温度场和应力应变场进行了三维数值模拟。建立了焊接瞬态温度场和应力应变场三维移动热源模型,得到了全位置焊时左右焊道交汇处(90°)的瞬态轴向应力和环向应力分布以及应力应变随时间变化的规律:在闭合小孔区内表面的轴向和环向应力均为拉伸应力,且环向应力比轴向应力大,并有明显的边缘应力效应;该处在高温凝固阶段的瞬态应力随小孔停留时间的延长和焊接电流的增大而减小,而其应变的变化则随之增大,这是造成打底焊时在小孔闭合区容易产生凝固裂纹的主要原因。 Based on thermal-elastic-plastic theory,a 3-D finite element model of root butt welding of SA335 P91 steel pipe was carried out with ANSYS software.Using moving heat source,the transient temperature field and welding stress-strain field in root butt welded joint of a pipe were analyzed.Moreover,the distributions of axial and hoop transient stresses to close the two-half seam joint were investigated.The calculation results show that the axial and hoop stresses at the keyhole center are tensile,specially,the edge stress effect is remarkable where the hoop stresses are stronger than the axial ones,and how the holding time of heat source in the keyhole and the welding current influences the distribution of stresses and strain during the high temperature solidification is also discussed.
出处 《焊接学报》 EI CAS CSCD 北大核心 2006年第4期73-76,84,共5页 Transactions of The China Welding Institution
关键词 SA335 P91钢管 数值模拟 ANSYS 应力应变场 焊接凝固裂纹 SA335 P91 steel pipe numerical simulation stress-strain field solification cracking
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参考文献11

  • 1徐德禄.T91/P91钢焊接材料的发展[A].中国机电工程学会.新型9-12Cr系列热强钢焊接技术资料选编[C].北京:机械工业出版社,2002.103-123.
  • 2章应霖,王学,张建强.P91钢焊接接头性能及其存在问题的讨论(续)[J].水利电力机械,2001,23(2):23-25. 被引量:27
  • 3黄嗣罗,张建勋,陈宗强.SA335 P91钢管焊接接头根部裂纹分析[J].压力容器,2004,21(5):36-40. 被引量:7
  • 4魏艳红,刘仁培,董祖珏.不锈钢焊接凝固裂纹应力应变场数值模拟结果分析[J].焊接学报,2000,21(2):36-38. 被引量:21
  • 5Teng Tsoliang,Chang Peng hsiang.A study of residual stresses in multi-pass girth-butt welded pipes[J].Oceanographic Literature Review,1998,45(7):12-58.
  • 6Teng Tsoliang,Chang Penghsiang.Three dimensional thermomechnical analysis of circumferentially welded thin-walled pipes[J].International of Pressure Veeels and Piping,1998,75(3):237-247.
  • 7Tsai C L,Feng Z L.Acomputational analysis of thermal and mechanical conditions for weld metal solidification cracking[J].Welding Research Abroad,1996,42(1):34-41.
  • 8Brickstad B,Josefson B L.A parametric study of residual stress in multi-pass butt-welded stainless steel pipes[J].Pressure Vessels and Piping,1998,75:11-25.
  • 9金晓军,霍立兴,张玉凤,白秉仁,李晓崴,曹军.双相不锈钢管道全位置焊接残余应力三维有限元数值模拟[J].焊接学报,2004,25(2):52-56. 被引量:16
  • 10Zeman M,Brozda.Welding ability of 9Cr-1 Mo-Nb-V steel intendered for service in the power industry[J].Welding Research Aboard,1997(8):58-67.

二级参考文献16

  • 1张京海.双相不锈钢焊接技术状况[J].材料开发与应用,1995,10(5):24-29. 被引量:12
  • 2拉达伊D.焊接热效应[M].北京:机械工业出版社,1997..
  • 3张海洲,学位论文,1998年
  • 4Feng Z L,Ph .D,1993年
  • 5陈祝年.焊接工程师手册[M].北京:机械工业出版社,2001..
  • 6Tso Liang Teng, Peng Hsiang Chang. Three dimensional thermomechanical analysis of circumferentially welded thinwalled pipes [ J ]. International Journal of Pressure Vessels and Piping, 1998,75(3):237-247.
  • 7Dong Y, Hong J K. Finite element modeling of residual stresses in anstenitic stainless steel pipe girth welds [J].Welding Research Supplement. 1997,76(10):442-449.
  • 8Rybicki E.F,Stonesifer R B. Computation of residual stresses due to multipass welds in piping systems [ J ]. Journal of Pressure Vessel Technology, 1979,101(2),149-154.
  • 9杨富 章应霖.我国火电站焊接技术的现状及进展[A]..新型9-12%Cr系列热强钢焊接技术资料选编[C].中国机电工程学会,2002.34-45.
  • 10机械工程学会焊接学会.焊接手册[M].北京:机械工业出版社,2001.124-129.

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