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
1167-1174
,共8页
宋友宝%杨新岐%崔雷%申志康%侯晓鹏
宋友寶%楊新岐%崔雷%申誌康%侯曉鵬
송우보%양신기%최뢰%신지강%후효붕
2024/7075铝合金%搅拌摩擦焊%搭接接头%缺陷%拉伸性能
2024/7075鋁閤金%攪拌摩抆銲%搭接接頭%缺陷%拉伸性能
2024/7075려합금%교반마찰한%탑접접두%결함%랍신성능
2024/7075 aluminum alloy%friction stir welding%lap joint%defect%tensile property
采用搅拌摩擦焊对5 mm厚2024/7075异种高强铝合金进行上下板交换位置的搭接焊试验,分析接头的缺陷特征和拉伸性能。结果表明:材料位置和焊接速度对缺陷和拉伸性能有较大影响。当2024铝合金为上板时,接头中存在大面积孔洞缺陷,焊缝表面粗糙,尤其在300 mm/min焊速下存在较严重的起皮缺陷;钩状缺陷为搭接接头的典型缺陷,低焊速(50和150 mm/min)下钩状缺陷向上扩展距离较大,7075铝合金为上板时高焊速(225和300 mm/min)下后退侧钩状缺陷水平向焊核区扩展距离较大;在低焊速下,7075铝合金为上板的接头强度较高;在高焊速下,2024铝合金为上板的接头强度较高;钩状缺陷严重减小接头的有效板厚和有效搭接宽度,是接头强度降低的主要因素,优化搅拌摩擦焊搭接工艺必须同时增大有效板厚和有效搭接宽度。
採用攪拌摩抆銲對5 mm厚2024/7075異種高彊鋁閤金進行上下闆交換位置的搭接銲試驗,分析接頭的缺陷特徵和拉伸性能。結果錶明:材料位置和銲接速度對缺陷和拉伸性能有較大影響。噹2024鋁閤金為上闆時,接頭中存在大麵積孔洞缺陷,銲縫錶麵粗糙,尤其在300 mm/min銲速下存在較嚴重的起皮缺陷;鉤狀缺陷為搭接接頭的典型缺陷,低銲速(50和150 mm/min)下鉤狀缺陷嚮上擴展距離較大,7075鋁閤金為上闆時高銲速(225和300 mm/min)下後退側鉤狀缺陷水平嚮銲覈區擴展距離較大;在低銲速下,7075鋁閤金為上闆的接頭彊度較高;在高銲速下,2024鋁閤金為上闆的接頭彊度較高;鉤狀缺陷嚴重減小接頭的有效闆厚和有效搭接寬度,是接頭彊度降低的主要因素,優化攪拌摩抆銲搭接工藝必鬚同時增大有效闆厚和有效搭接寬度。
채용교반마찰한대5 mm후2024/7075이충고강려합금진행상하판교환위치적탑접한시험,분석접두적결함특정화랍신성능。결과표명:재료위치화한접속도대결함화랍신성능유교대영향。당2024려합금위상판시,접두중존재대면적공동결함,한봉표면조조,우기재300 mm/min한속하존재교엄중적기피결함;구상결함위탑접접두적전형결함,저한속(50화150 mm/min)하구상결함향상확전거리교대,7075려합금위상판시고한속(225화300 mm/min)하후퇴측구상결함수평향한핵구확전거리교대;재저한속하,7075려합금위상판적접두강도교고;재고한속하,2024려합금위상판적접두강도교고;구상결함엄중감소접두적유효판후화유효탑접관도,시접두강도강저적주요인소,우화교반마찰한탑접공예필수동시증대유효판후화유효탑접관도。
Lap joints of 5 mm-thick dissimilar 2024/7075 aluminum alloys were fabricated by friction stir welding (FSW) with changing the top and bottom sheet material position. The defect features and tensile properties of the joints were compared and analyzed. The results show that the defects and tensile properties are significantly affected by material position and welding speed. When 2024 alloy is placed as the top sheet, extensive void defects are found in the joints, the weld surface is coarse and severe peeling defect appears at 300 mm/min especially. As a typical defect in the lap joints, hook extends a large distance upwards at low welding speeds (50,150 mm/min). At high welding speeds (225, 300 mm/min), the retreating side hook propagates largely into the stir zone horizontally when 7075 alloy acts as the top sheet. At low welding speeds, the joint strength is higher when 7075 alloy acts as the top sheet. While the joint shows higher strength at high welding speeds when 2024 alloy is placed as the top sheet. The hook defect reduces the effective sheet thickness (EST) and effective lap width (ELW) of joints severely, which is the main factor reducing the joint strength. So, the EST as well as the ELW should be increased simultaneously to optimize the friction stir lap welding process.