精密成形工程
精密成形工程
정밀성형공정
Journal of Netshape Forming Engineering
2015年
5期
59-64
,共6页
肖博%张振林%麻思达%张志函%杨夏炜%李文亚
肖博%張振林%痳思達%張誌函%楊夏煒%李文亞
초박%장진림%마사체%장지함%양하위%리문아
搅拌摩擦焊%热循环%接头腐蚀%自然时效%力学性能
攪拌摩抆銲%熱循環%接頭腐蝕%自然時效%力學性能
교반마찰한%열순배%접두부식%자연시효%역학성능
friction stir welding%thermal cycle%corrosion%natural aging%mechanical properties
研究了焊接过程中热循环、焊后腐蚀和自然时效对2024铝合金搅拌摩擦焊( FSW)接头力学性能的影响。结果表明,同一焊缝不同位置的力学性能存在一定的差异,靠近插入点位置的屈服强度和抗拉强度明显低于其他位置,之后不断升高,趋于稳定,屈服强度和抗拉强度的最大值分别约为310 MPa和415 MPa;随着自然时效时间的增加,接头屈服强度和抗拉强度在前2个月增长较快,增长率最大分别为2%和1.5%,之后趋于稳定,而伸长率的增长率先较快,增长率最大为6%,之后变缓;在不同的自然时效时间下,腐蚀均明显降低2024铝合金FSW接头的屈服强度、抗拉强度和伸长率,减小率的最大值分别为6.5%,6.1%和19.8%;随着自然时效时间的增加,腐蚀后接头的力学性能下降更严重。
研究瞭銲接過程中熱循環、銲後腐蝕和自然時效對2024鋁閤金攪拌摩抆銲( FSW)接頭力學性能的影響。結果錶明,同一銲縫不同位置的力學性能存在一定的差異,靠近插入點位置的屈服彊度和抗拉彊度明顯低于其他位置,之後不斷升高,趨于穩定,屈服彊度和抗拉彊度的最大值分彆約為310 MPa和415 MPa;隨著自然時效時間的增加,接頭屈服彊度和抗拉彊度在前2箇月增長較快,增長率最大分彆為2%和1.5%,之後趨于穩定,而伸長率的增長率先較快,增長率最大為6%,之後變緩;在不同的自然時效時間下,腐蝕均明顯降低2024鋁閤金FSW接頭的屈服彊度、抗拉彊度和伸長率,減小率的最大值分彆為6.5%,6.1%和19.8%;隨著自然時效時間的增加,腐蝕後接頭的力學性能下降更嚴重。
연구료한접과정중열순배、한후부식화자연시효대2024려합금교반마찰한( FSW)접두역학성능적영향。결과표명,동일한봉불동위치적역학성능존재일정적차이,고근삽입점위치적굴복강도화항랍강도명현저우기타위치,지후불단승고,추우은정,굴복강도화항랍강도적최대치분별약위310 MPa화415 MPa;수착자연시효시간적증가,접두굴복강도화항랍강도재전2개월증장교쾌,증장솔최대분별위2%화1.5%,지후추우은정,이신장솔적증장솔선교쾌,증장솔최대위6%,지후변완;재불동적자연시효시간하,부식균명현강저2024려합금FSW접두적굴복강도、항랍강도화신장솔,감소솔적최대치분별위6.5%,6.1%화19.8%;수착자연시효시간적증가,부식후접두적역학성능하강경엄중。
ABSTRACT:The influence of welding thermal cycle and the interaction of post-weld corrosion and natural aging on me-chanical properties of Al2024 joints welded by friction stir welding ( FSW) were studied. The results show that the mechan-ical properties at different positions of the same weld are different. The yield stress and ultimate tensile strength ( UTS) are lower in the starting position of the welded joint compared with other parts of the joint, and then they increase in the advan-cing direction of the stir tool, finally they keep stable at the last welding stage. The maximum values of yield stress and UTS are approximately 310 MPa and 415 MPa, respectively. The yield stress and UTS of the joints significantly increase during the first two months of natural aging and tend to be stable after that, the maximum values of growth rate are approxi-mately 2% and 1. 5%, respectively. While the elongation increases at first, and then is stable, the maximum growth rate of elongation is approximately 6%. After corrosion, the yield stress and UTS of joints are decreased at different natural ag-ing times as well as the elongation. The maximum values of reducing rate are approximately 6. 5%, 6. 1%, and 19. 8%, respectively. The tensile properties of Al 2024 joints after corrosion decrease with increasing the natural aging time.