Friction Stir welding effects on the corrosion resistance of the 2098-T351 alloy

被引:0
|
作者
Araujo, Joao Victor de S. [1 ]
Milagre, Mariana X. [1 ]
Calderon-Hernandez, Jose Wilmar [2 ]
Morais, Nathanael W. [1 ]
Costa, Isolda [1 ]
机构
[1] IPEN CNEN, Inst Pesquisas Energet & Nucl, Ave Prof Lineu Prestes 2242, Sao Paulo, Brazil
[2] Corp Univ Remington, Fac Ciencias Basicas & Ingn, Grp Invest Ingeniar, Calle 51 51-27, Medellin, Colombia
来源
MATERIALIA | 2025年 / 39卷
基金
巴西圣保罗研究基金会;
关键词
Al-Cu-Li alloy; Friction stir welding; Microstructure; Localized corrosion; ALUMINUM-LITHIUM ALLOY; LOCALIZED CORROSION; WELDED-JOINTS; LI ALLOYS; MICROSTRUCTURE; BEHAVIOR; EVOLUTION; SUSCEPTIBILITY; PRECIPITATION; AA5083;
D O I
10.1016/j.mtla.2025.102363
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The effects of friction stir welding (FSW) on the corrosion resistance of the AA2098-T351 aluminum alloy were investigated through immersion and electrochemical tests in a 0.005 mol L-1 NaCl solution. The findings revealed that the welding joint (WJ), which includes the thermomechanically affected zone (TMAZ) and stir zone (SZ), demonstrated superior localized corrosion resistance compared to the HAZ and BM. The SZ and TMAZ demonstrated cathodic behavior relative to the HAZ and BM. Furthermore, the differences in corrosion resistance among the isolated welding zones and their behavior under galvanic coupling were analyzed and discussed, highlighting the complex electrochemical interactions within the welded structure.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Friction Stir Spot Welding and Resistance Spot Welding of Noncombustible Magnesium Alloy
    Yamamoto, Naotsugu
    Liao, Jinsun
    Nakata, Kazuhiro
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 2010, 74 (05) : 307 - 313
  • [22] Effect of ultrasonic power on microstructure and properties of 2219-T351 aluminum alloy friction stir welding joint
    He D.
    Hu L.
    Zhao Z.
    Lai R.
    Hanjie Xuebao/Transactions of the China Welding Institution, 2020, 41 (03): : 23 - 28
  • [23] Fatigue of friction stir welded 2024-T351 aluminium alloy
    Booth, D
    Sinclair, I
    ALUMINUM ALLOYS 2002: THEIR PHYSICAL AND MECHANICAL PROPERTIES PTS 1-3, 2002, 396-4 : 1671 - 1676
  • [24] Improved Resistance to Intergranular Corrosion in the AZ31B Magnesium Alloy by Friction Stir Welding
    Aperador, W.
    Delgado, A.
    Franco, F.
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2013, 8 (07): : 9568 - 9577
  • [25] Microstructure and corrosion properties of diode laser melted friction stir weld of aluminum alloy 2024 T351
    Kalita, Samar Jyoti
    APPLIED SURFACE SCIENCE, 2011, 257 (09) : 3985 - 3997
  • [26] FATIGUE DAMAGE OF 2024-T351 ALUMINIUM ALLOY FRICTION STIR WELDING JOINTS. PART 1: CHARACTERISATION
    Ali, Aidy
    Brown, Mike W.
    Zaroog, Omar Suliman
    SURANAREE JOURNAL OF SCIENCE AND TECHNOLOGY, 2008, 15 (02): : 107 - 116
  • [27] FRICTION STIR WELDING OF ALLOY 22
    Jasthi, Bharat K.
    Arbegast, William J.
    Howard, Stanley M.
    FRICTION STIR WELDING AND PROCESSING VI, 2011, : 11 - 18
  • [28] Analysis of corrosion resistance of friction stir welded 7136-T76511 aluminum alloy
    Kalemba, Izabela
    Kopyscianski, Mateusz
    Dymek, Stanislaw
    OCHRONA PRZED KOROZJA, 2013, 56 (11): : 540 - 542
  • [29] Electrochemical corrosion behavior of friction stir welding weld of 6082 aluminum alloy
    Liaoning Key Materials Laboratory for Railway, Dalian Jiaotong University, Dalian 116028, China
    不详
    Hanjie Xuebao, 2008, 10 (105-107):
  • [30] Mitigating the susceptibility to intergranular corrosion of alloy 625 by friction-stir welding
    Braga Lemos, Guilherme Vieira
    Farina, Alexandre Bellegard
    Piaggio, Henrique
    Bergmann, Luciano
    Ferreira, Jane Zoppas
    dos Santos, Jorge Fernandez
    Vander Voort, George
    Reguly, Afonso
    SCIENTIFIC REPORTS, 2022, 12 (01)