Please wait a minute...
金属学报  2009, Vol. 45 Issue (9): 1057-1062    
  论文 本期目录 | 过刊浏览 |
超音频脉冲方波电流参数对2219铝合金焊缝组织和力学性能的影响
从保强; 齐铂金; 周兴国; 罗军
北京航空航天大学机械工程及自动化学院; 北京 100191
INFLUENCES OF ULTRASONIC PULSE SQUARE-WAVE CURRENT PARAMETERS ON MICROSTRUCTURES AND MECHANICAL PROPERTIES OF 2219 ALUMINUM ALLOY WELD JOINTS
CONG Baoqiang; QI Bojin; ZHOU Xingguo; LUO Jun
School of Mechanical Engineering and Automation; Beihang University; Beijing 100191
引用本文:

从保强 齐铂金 周兴国 罗军. 超音频脉冲方波电流参数对2219铝合金焊缝组织和力学性能的影响[J]. 金属学报, 2009, 45(9): 1057-1062.
, . INFLUENCES OF ULTRASONIC PULSE SQUARE-WAVE CURRENT PARAMETERS ON MICROSTRUCTURES AND MECHANICAL PROPERTIES OF 2219 ALUMINUM ALLOY WELD JOINTS[J]. Acta Metall Sin, 2009, 45(9): 1057-1062.

全文: PDF(1508 KB)  
摘要: 

采用新型超快速变换HPVP-TIG电弧焊接工艺进行2219-T87高强铝合金焊接, 研究脉冲电流特征参数对焊接接头组织和力学性能的影响. 结果表明, 加入超音频脉冲方波电流(UPSWC)作用后, 铝合金焊缝区显微组织由粗大柱状晶转变为细小等轴晶, 在焊缝区内除了等轴树枝晶外, 还存在一种呈带状分布的极细小等轴非枝晶组织, 同时焊缝熔合区宽度明显减小, 焊接接头抗拉强度和断后伸长率显著提高. 在一定范围内增加脉冲电流幅值, 提高脉冲频率, 减小占空比, 可增强组织细化作用, 提高接头力学性能. 与未加入UPSWC作用相比, 脉冲电流幅值100 A, 脉冲频率40 kHz, 占空比20%时, 接头抗拉强度和断后伸长率分别提高约22%和111%.

关键词 高强铝合金超音频脉冲电流变极性等轴非枝晶力学性能    
Abstract

In order to overcome some problems in variable polarity gas tungsten arc welding (VP-GTAW) employed for welding aluminum alloy components, poor strength and ductility of weld metal, solidification cracking and weld porosity, a novel ultrafast-convert high frequency pulsed current VP-GTAW technique is developed. The current converting speed in the novel technique is enhanced from less than 10 A/μs to more than 50-100 A/μs and high frequency pulsed current which has a frequency of more than 20 kHz is exactly integrated in the positive polarity current duration. It is expected that the novel pulsed VP-GTAW technique can improve the weld quality of aluminum alloy significantly. Thus, it is imperative to understand the effect of pulsed current parameters on the weld characteristics in the pulsed VP-GTAW process. The measured results of 2219-T87 high strength aluminum alloy weld joints show that the application of ultrasonic pulse current makes the coarse grains in weld zone change to the fine equiaxed grains, and a band-like zone with finer equiaxed non-dentrites appears. The width of weld fusion zone is obviously decreased and the mechanical properties of weld joints are predominantly improved. The improvements of the structure and weld properties can be significantly enhanced with the increases of the ultrasonic pulse current amplitude and pulse frequency, and decrease of the pulse duty cycle in certain ranges. Compared with the conventional VP-GTAW, tensile strength and elongation of weld joints are increased by about 22% and 111%, respectively, under the conditions of pulse current amplitude of 100 A, pulse frequency of 40 kHz and pulse duty cycle of 20%.

Key wordshigh strength aluminum alloy    ultrasonic pulse current    variable polarity    equiaxed
non-dentrite
   mechanical property
收稿日期: 2009-02-26     
ZTFLH: 

TG457.14

 
作者简介: 从保强, 男, 1979年生, 博士

[1] Albertini G, Bruno G, Dunn B D, Fiori F, Reimers W, Wright J S. Mater Sci Eng, 1997; A224: 157
[2] Liu C F. Aeronaut Manufact Technol, 2003; (2): 22
(刘春飞. 航空制造技术, 2003; (2): 22)
[3] Yang C G, Guo X M, Hong Z F, Qian B N. Acta Metall Sin, 2005; 41: 1077
(杨成刚, 国旭明, 洪张飞, 钱百年. 金属学报, 2005; 41: 1077)
[4] Qi B J, Cong B Q. Trans Chin Weld Inst, 2008; 29: 57
(齐铂金, 从保强. 焊接学报, 2008; 29: 57)
[5] Cong B Q, Qi B J, Zhou X G, Luo J. Trans Chin Weld Inst, 2009; 30: 25
(从保强, 齐铂金, 周兴国, 罗 军. 焊接学报, 2009; 30: 25)
[6] Cong B Q, Qi B J, Zhou X G, Luo J. Aerospace Mater Technol, 2009; 39: 71
(从保强, 齐铂金, 周兴国, 罗 军. 宇航材料工艺, 2009; 39: 71)

[7] Cook G E, Eassa E H. IEEE Trans Indust Applic, 1985; 1A–21: 1294
[8] Cong B Q. PhD Thesis, Beihang University, Beijing, 2009
(从保强. 北京航空航天大学博士学位论文, 北京, 2009)
[9] Guo X M, Yang C G, Qian B N, Xu Q, Zhang H Y. Acta Metall Sin, 2005; 41: 397
(国旭明, 杨成刚, 钱百年, 徐强, 张洪延. 金属学报, 2005; 41: 397)
[10] Hunt J D. Mater Sci Eng, 1984; A65: 75
[11] Sun J S, Wu C S. Acta Phys Sin, 2001; 50: 209
(孙俊生, 武传松. 物理学报, 2001; 50: 209)
[12] Kou S, Le Y. Weld J, 1986; 65: 305
[13] Yunjia H, Frost R H, Olson D L, Edwards G R. Weld J, 1989; 68: 280
[14] Kou S, Le Y. Metall Trans, 1988; 19A: 1075
[15] Dvornak M J, Frost R H, Olson D L. Weld J, 1991; 70: 271
[16] Hao C Y, Yu E J, Ying H J, Shi C G. Acta Metall Sin, 1996; 32: 647
(郝传勇, 于尔靖, 应慧筠, 施成根. 金属学报, 1996; 32: 647)
[17] Wang Q, He J C, Kawai S, Iwai K, Asai S. Acta Metall Sin, 2002; 38: 961
(王强, 赫冀成, 川合悟, 岩井一彦, 浅井滋生. 金属学报, 2002; 38: 961)
[18] Yu E J, Hao C Y, Ying H J, Shi C G, Li G H. Trans Chin Weld Inst, 1996; 17: 1
(于尔靖, 郝传勇, 应慧筠, 施成根, 李敢红. 焊接学报, 1996; 17: 1)
[19] Gutierrez A, Lippold J C. Weld J, 1998; 77: 123
[20] Reddy G M, Gokhale A A. J Mater Sci, 1997; 32: 4117
[21] Huang C, Kou S. Weld J, 2000; 79: 113
[22] Huang C, Kou S. Weld J, 2001; 80: 9

[1] 郑亮, 张强, 李周, 张国庆. /降氧过程对高温合金粉末表面特性和合金性能的影响:粉末存储到脱气处理[J]. 金属学报, 2023, 59(9): 1265-1278.
[2] 张健, 王莉, 谢光, 王栋, 申健, 卢玉章, 黄亚奇, 李亚微. 镍基单晶高温合金的研发进展[J]. 金属学报, 2023, 59(9): 1109-1124.
[3] 宫声凯, 刘原, 耿粒伦, 茹毅, 赵文月, 裴延玲, 李树索. 涂层/高温合金界面行为及调控研究进展[J]. 金属学报, 2023, 59(9): 1097-1108.
[4] 张雷雷, 陈晶阳, 汤鑫, 肖程波, 张明军, 杨卿. K439B铸造高温合金800℃长期时效组织与性能演变[J]. 金属学报, 2023, 59(9): 1253-1264.
[5] 丁桦, 张宇, 蔡明晖, 唐正友. 奥氏体基Fe-Mn-Al-C轻质钢的研究进展[J]. 金属学报, 2023, 59(8): 1027-1041.
[6] 陈礼清, 李兴, 赵阳, 王帅, 冯阳. 结构功能一体化高锰减振钢研究发展概况[J]. 金属学报, 2023, 59(8): 1015-1026.
[7] 李景仁, 谢东升, 张栋栋, 谢红波, 潘虎成, 任玉平, 秦高梧. 新型低合金化高强Mg-0.2Ce-0.2Ca合金挤压过程中的组织演变机理[J]. 金属学报, 2023, 59(8): 1087-1096.
[8] 王宗谱, 王卫国, Rohrer Gregory S, 陈松, 洪丽华, 林燕, 冯小铮, 任帅, 周邦新. 不同温度轧制Al-Zn-Mg-Cu合金再结晶后的{111}/{111}近奇异晶界[J]. 金属学报, 2023, 59(7): 947-960.
[9] 袁江淮, 王振玉, 马冠水, 周广学, 程晓英, 汪爱英. Cr2AlC涂层相结构演变对力学性能的影响[J]. 金属学报, 2023, 59(7): 961-968.
[10] 吴东江, 刘德华, 张子傲, 张逸伦, 牛方勇, 马广义. 电弧增材制造2024铝合金的微观组织与力学性能[J]. 金属学报, 2023, 59(6): 767-776.
[11] 侯娟, 代斌斌, 闵师领, 刘慧, 蒋梦蕾, 杨帆. 尺寸设计对选区激光熔化304L不锈钢显微组织与性能的影响[J]. 金属学报, 2023, 59(5): 623-635.
[12] 刘满平, 薛周磊, 彭振, 陈昱林, 丁立鹏, 贾志宏. 后时效对超细晶6061铝合金微观结构与力学性能的影响[J]. 金属学报, 2023, 59(5): 657-667.
[13] 张东阳, 张钧, 李述军, 任德春, 马英杰, 杨锐. 热处理对选区激光熔化Ti55531合金多孔材料力学性能的影响[J]. 金属学报, 2023, 59(5): 647-656.
[14] 吴欣强, 戎利建, 谭季波, 陈胜虎, 胡小锋, 张洋鹏, 张兹瑜. Pb-Bi腐蚀Si增强型铁素体/马氏体钢和奥氏体不锈钢的研究进展[J]. 金属学报, 2023, 59(4): 502-512.
[15] 李述军, 侯文韬, 郝玉琳, 杨锐. 3D打印医用钛合金多孔材料力学性能研究进展[J]. 金属学报, 2023, 59(4): 478-488.