中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2014年
5期
1151-1156
,共6页
张勇%刘宗芳%滕辉%谢红霞%张涛%张乾宁
張勇%劉宗芳%滕輝%謝紅霞%張濤%張乾寧
장용%류종방%등휘%사홍하%장도%장건저
高强铝合金%电阻点焊%电极半径%裂纹%熔核
高彊鋁閤金%電阻點銲%電極半徑%裂紋%鎔覈
고강려합금%전조점한%전겁반경%렬문%용핵
high-strength aluminum alloy%resistance spot welding%electrode radius%crack%nugget
选取半径分别为100、75、50和25 mm的球面电极,采用三相次级整流点焊机进行1 mm厚2A12铝合金点焊试验。利用光学显微镜和扫描电镜观察焊后熔核的形貌、裂纹特征及显微组织,利用低倍测量显微镜和拉伸试验机测试熔核的尺寸和拉剪力,研究球面电极半径对2A12铝合金点焊熔核裂纹的分布特征、形成机理以及熔核尺寸和拉剪力的影响。结果表明:球面电极半径越大,熔核内越容易产生裂纹,且熔核直径总体上呈下降趋势。当电极半径分别为75和100 mm时,在熔核中间区域产生贯穿整个熔核的沿晶纵向结晶裂纹,在熔核的热影响区出现液化裂纹,熔核内没有横向裂纹产生。
選取半徑分彆為100、75、50和25 mm的毬麵電極,採用三相次級整流點銲機進行1 mm厚2A12鋁閤金點銲試驗。利用光學顯微鏡和掃描電鏡觀察銲後鎔覈的形貌、裂紋特徵及顯微組織,利用低倍測量顯微鏡和拉伸試驗機測試鎔覈的呎吋和拉剪力,研究毬麵電極半徑對2A12鋁閤金點銲鎔覈裂紋的分佈特徵、形成機理以及鎔覈呎吋和拉剪力的影響。結果錶明:毬麵電極半徑越大,鎔覈內越容易產生裂紋,且鎔覈直徑總體上呈下降趨勢。噹電極半徑分彆為75和100 mm時,在鎔覈中間區域產生貫穿整箇鎔覈的沿晶縱嚮結晶裂紋,在鎔覈的熱影響區齣現液化裂紋,鎔覈內沒有橫嚮裂紋產生。
선취반경분별위100、75、50화25 mm적구면전겁,채용삼상차급정류점한궤진행1 mm후2A12려합금점한시험。이용광학현미경화소묘전경관찰한후용핵적형모、렬문특정급현미조직,이용저배측량현미경화랍신시험궤측시용핵적척촌화랍전력,연구구면전겁반경대2A12려합금점한용핵렬문적분포특정、형성궤리이급용핵척촌화랍전력적영향。결과표명:구면전겁반경월대,용핵내월용역산생렬문,차용핵직경총체상정하강추세。당전겁반경분별위75화100 mm시,재용핵중간구역산생관천정개용핵적연정종향결정렬문,재용핵적열영향구출현액화렬문,용핵내몰유횡향렬문산생。
Selecting 100, 75, 50 and 25 mm as the radius of spherical electrode, spot welding experiment of the aluminum alloy 2A12 sheet with thickness of 1 mm was performed on the three-phase secondary rectification welding machine. Using optical microscopy and scanning electron microscopy, the microstructure and crack characteristics of the nugget were observed. The low-magnification measuring microscope and the tensile test machine were used to test the nugget diameter and the tensile-shear strength of the weld, and then the effect of spherical electrode radius on the crack distribution, formation mechanism, nugget diameter, and the tensile-shear strength of spot welding joint of the aluminum alloy 2A12 were investigated. The results show that as the spherical electrode radius increases, more likely the cracks occur in the nuggets, and nugget diameters present decreasing tendency. When the spherical electrode radii are 75 and 100 mm, respectively, the intergranular longitudinal solidification crack locates in the middle of the nugget, which almost transverse across the whole weld nugget, and liquation crack is visible in the heat-affected zone (HAZ), but there is no transverse crack in the nugget.