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316不锈钢激光焊接中离焦量对热裂纹的影响 被引量:13

Effect of Defocusing Amount on Hot Cracking in Laser Welding of 316 Stainless Steel
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摘要 采用最大平均功率为500 W的脉冲激光焊机开展了316不锈钢焊接试验,通过测试表面形貌、微观组织、显微硬度及能谱(EDS)等,分析了离焦量对焊缝组织和热裂纹的影响。研究结果表明,在其他焊接参数不变的条件下,离焦量增大时焊缝组织逐渐细化和致密,热裂纹倾向性逐渐减小。焊缝熔深和熔宽均随离焦量的增大而减小,但宽深比增大,当宽深比大于7.5时焊接热裂纹彻底消失。增大离焦量改变了激光能量的分布状态,导致焊缝凝固过程中S、P等元素向熔池表面偏析,消除了焊缝凝固后期液膜及低熔点组织的不利影响,有效控制了脉冲激光焊接316不锈钢热裂纹的产生。 316 stainless steel welding experiments were carried out with a low powerpulsed laser welding machine. Based on the surface morphology, microstructure, micro-hardness and energy dispersive spectrum (EDS),the effect of defocusing amount on the weld structure and hot cracking was analyzed. The results show that with the increaseof defocusing amount, the weld microstructure is gradually refined and compact, and the tendency of hot cracking decreases gradually. With the increase of defocusing amount, the weld penetration and weld width reduce, but the width to depth ratioincreases. When the width to depth ratio is greater than 7. 5 ,the welding hot crackingcompletely disappears. Adjusting the defocusing amount changes the distribution of laser energy,which leads to the segregation of S ,P and other elements to the surface during solidification. So the defocusing amount can effectively control the welding hot cracking of 316 stainless steel.
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2018年第2期210-214,共5页 Atomic Energy Science and Technology
关键词 热裂纹 离焦量 激光焊接 不锈钢 hot cracking defocusing amount laser welding stainless steel
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  • 1周昌荣,潘青林,朱朝明,何运斌,尹志民.新型铝锂合金的研究和发展[J].材料导报,2004,18(5):30-32. 被引量:35
  • 2国旭明,杨成刚,钱百年,常云龙,张洪延.高强Al-Cu合金脉冲MIG焊工艺[J].焊接学报,2004,25(4):5-9. 被引量:28
  • 3于尔靖,郝传勇,应慧筠,施成根,李敢红.铝锂合金焊缝凝固组织特征[J].焊接学报,1996,17(1):1-6. 被引量:15
  • 4狄欧.铝锂合金的焊接技术研究进展[J].航空制造技术,2006,49(9):90-93. 被引量:13
  • 5Kostrivas A, Lippold J C. Weldability of Li-bearing aluminium alloys[ J ]. International Materials Reviews, 1999, 44 (6) , 217-237.
  • 6Hou K H, Baeslack III W A. Effect of solute segregation on the weld fusion zone microstructure in CO2 laser beam and gas tungsten arc welds in Al-Al-Cu alloy 2195 [ J]. Journal of Materials Science Letters, 1996, 15(3) : 208 -213.
  • 7Immarigeon J P, Holt R T, Koul A K, et al. Light weight materials for air craft applications [ J ]. Materials Characterization, 1995, 35(1) : 41 -67.
  • 8巴瑞章,巩水利.5A90铝锂合金激光焊接力学性能[C]∥中国机械工程学会焊接学会.2005年中国机械工程学会年会论文集.重庆:中国机械工业出版社,2005.
  • 9Reddy G M, Gokhale A A, Prasad K S, et al. Chill zone formation in Al-Li alloy welds[ J ]. Science and Technology of Welding and Joining, 1998, 3(4) : 208 -212.
  • 10Lin D C, Wang G X, Srivatsan T S. A mechanism for the formation of equiaxed grains in welds of aluminum-lithium alloy 2090 [J]. Materials Science and Engineering A, 2003, 351 ( 1 -2) : 304 - 309.

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