中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2013年
12期
3401-3409
,共9页
张丽娟%周惦武%刘金水%徐少华%乔小杰%李升
張麗娟%週惦武%劉金水%徐少華%喬小傑%李升
장려연%주점무%류금수%서소화%교소걸%리승
激光焊接%异种金属%金属间化合物%微观组织%力学性能
激光銲接%異種金屬%金屬間化閤物%微觀組織%力學性能
격광한접%이충금속%금속간화합물%미관조직%역학성능
laser welding%dissimilar metal%intermetallic compound%microstructure%mechanical properties
采用光纤激光器对1.4 mm厚DC51D+ZF镀锌钢和1.2 mm厚6016铝合金平板试件进行添加Mn、Zr粉末的激光搭接焊试验,利用金相显微镜、显微硬度仪、扫描电镜、X射线衍射仪、微机控制电子万能试验机等研究焊接接头各区域的金相组织、显微硬度、断口形貌、主要物相与接头的力学性能。结果表明:在钢/铝激光焊中添加Mn、Zr粉末,焊接接头平均抗剪强度与没有添加粉末相比,有所提高,其中添加Zr粉末的提高效果明显;Mn、Zr粉末的添加改变了钢/铝界面的元素分布、物相组成及微观组织形态,添加Mn能提高熔池金属的流动性,利于钢/铝界面结合,而添加Zr,焊缝区晶粒细小,形成新的ZrFe3.3Al1.3韧性相,抑制Fe-Al脆性金属间化合物生成。因此,添加Mn、Zr均改善了钢/铝焊接接头的力学性能。
採用光纖激光器對1.4 mm厚DC51D+ZF鍍鋅鋼和1.2 mm厚6016鋁閤金平闆試件進行添加Mn、Zr粉末的激光搭接銲試驗,利用金相顯微鏡、顯微硬度儀、掃描電鏡、X射線衍射儀、微機控製電子萬能試驗機等研究銲接接頭各區域的金相組織、顯微硬度、斷口形貌、主要物相與接頭的力學性能。結果錶明:在鋼/鋁激光銲中添加Mn、Zr粉末,銲接接頭平均抗剪彊度與沒有添加粉末相比,有所提高,其中添加Zr粉末的提高效果明顯;Mn、Zr粉末的添加改變瞭鋼/鋁界麵的元素分佈、物相組成及微觀組織形態,添加Mn能提高鎔池金屬的流動性,利于鋼/鋁界麵結閤,而添加Zr,銲縫區晶粒細小,形成新的ZrFe3.3Al1.3韌性相,抑製Fe-Al脆性金屬間化閤物生成。因此,添加Mn、Zr均改善瞭鋼/鋁銲接接頭的力學性能。
채용광섬격광기대1.4 mm후DC51D+ZF도자강화1.2 mm후6016려합금평판시건진행첨가Mn、Zr분말적격광탑접한시험,이용금상현미경、현미경도의、소묘전경、X사선연사의、미궤공제전자만능시험궤등연구한접접두각구역적금상조직、현미경도、단구형모、주요물상여접두적역학성능。결과표명:재강/려격광한중첨가Mn、Zr분말,한접접두평균항전강도여몰유첨가분말상비,유소제고,기중첨가Zr분말적제고효과명현;Mn、Zr분말적첨가개변료강/려계면적원소분포、물상조성급미관조직형태,첨가Mn능제고용지금속적류동성,리우강/려계면결합,이첨가Zr,한봉구정립세소,형성신적ZrFe3.3Al1.3인성상,억제Fe-Al취성금속간화합물생성。인차,첨가Mn、Zr균개선료강/려한접접두적역학성능。
The fiber laser welding test with Mn and Zr powder addition was carried out on the DC51D+ZF galvanized steel with thickness of 1.4 mm and the 6016 aluminum alloy with thickness of 1.2 mm. By using optical microscopy, electron microscopic hardness, scanning electron microscopy, X-ray diffraction and the tensile test, the microstructure, hardness, mechanical properties of joints, fracture morphology and the main phase of the welded joint region were studied. The results indicate that when Mn, Zr powders are added in steel/aluminum, the average shear strength of the welding sample is improved compared with that without power addition, and Zr is considered as the best power based on improved mechanical properties of joints. The element distribution, phase composition and microstructure of the steel/aluminum interface are changed due to Mn and Zr powders addition. When Mn powder is added in steel/aluminum, the fluidity of the molten pool metal is improved, which promotes the combination of the steel/aluminum interface, when Zr powder is added in steel/aluminum, fine grain is seen, and a new ductile intermetallic compound ZrFe 3.3 Al 1.3 inhibits the generation of intermetallic compounds of Fe-Al, which can improve the mechanical properties of weld metal with Mn and Zr powder addition.