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热沉影响钛合金薄板焊接残余应力的试验分析
引用本文:李菊,关桥,郭德伦,杜欲晓,孙永春,史耀武.热沉影响钛合金薄板焊接残余应力的试验分析[J].焊接学报,2003,24(6):29-32.
作者姓名:李菊  关桥  郭德伦  杜欲晓  孙永春  史耀武
作者单位:1. 北京工业大学,材料学院,北京,100022
2. 北京航空制造工程研究所,北京,100024
基金项目:航空基金资助项目(98H25002)
摘    要:采用切条应力释放法测量了钛合金TC4薄板常规钨极氩弧焊(GTAW)和动态控制低应力无变形GTAW对接试件中的纵向残余应力和纵向残余塑性应变的分布。测量结果表明,钛合金常规GTAW缝中残余拉应力峰值小于其母材屈服强度,焊缝附近存在残余压缩塑性应变;动态控制低应力无变形GTAW焊技术中热沉的冷却作用使得热源与热沉之间的高温金属承受强烈的拉伸作用,产生拉伸塑性变形,部分抵消了焊接过程中已产生的缩短的塑性变形,使得试件中纵向残余塑性应变减小,焊接残余拉应力峰值降低,残余压应力水平降低。切条应力释放法是一种简便有效的薄板焊后残余应力测量方法,能够满足工程应用的精度要求。

关 键 词:钛合金  薄板  焊接  残余应力  热沉  应力释放法  残余塑性应变
文章编号:0253-360X(2003)06-29-04
收稿时间:2003/2/24 0:00:00

Experimental study on effect of heat sink on welding residual stress of titanium alloy thin plate
LI Ju,GUAN Qiao,GUO De-lun,DU Yu-xiao,SUN Yong-chun and SHI Yao-wu.Experimental study on effect of heat sink on welding residual stress of titanium alloy thin plate[J].Transactions of The China Welding Institution,2003,24(6):29-32.
Authors:LI Ju  GUAN Qiao  GUO De-lun  DU Yu-xiao  SUN Yong-chun and SHI Yao-wu
Affiliation:LI Ju~1,GUAN Qiao~2,GUO De-lun~2,DU Yu-xiao~2,SUN Yong-chun~2,SHI Yao-wu~1
Abstract:The distributions of longitudinal residual stress and longitudinal residual plastic strain of titanium alloy Ti-6Al-4V thin plate welded by conventional GTAW and GTAW with a trailing heat sink(DC-LSND) were studied experimentally using "Slot-sectioning stress relaxation" method. The experimental results showed that the maximum residual tensile stress in the weld with conventional GTAW is 45% of the yield strength of the titanium alloy. Because of the extremely-high gradient cooling of the heat sink in DC-LSND GTAW, high tensile effect acts on the zone between the arc and the trailing heat sink, the tensile plastic strain is produced, which compensates some portion of the longitudinal incompatible strain cause by arc heat source. Therefore longitudinal residual plastic strain, the maximum residual tensile stress and residual compressive stress are reduced properly.
Keywords:titanium alloy  DC-LSND welding  stress relaxation method  residual stress  residual plastic strain
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