Low-cycle fatigue of a multi-layered aluminum sheet alloy

被引:4
|
作者
Unigovski, Ya. B. [1 ]
Grinberg, A. [1 ]
Gerafi, E. [1 ]
Gutman, E. M. [1 ]
机构
[1] Ben Gurion Univ Negev, Dept Mat Engn, IL-84105 Beer Sheva, Israel
来源
关键词
Plated 6061-T6 Al alloy; Low-cycle fatigue; Deposit thickness; BEHAVIOR; LIFE;
D O I
10.1016/j.surfcoat.2013.06.080
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Low-cycle fatigue (LCF) in engineering structures is caused by a relatively low-frequency strain cycling or thermal cycling. Regardless of the fact that it is much more dangerous than high-cycle fatigue, it has not been studied enough. Coated aluminum alloys are widely used in aerospace and transportation industries, mostly because of their high toughness and strength-weight ratio and improved surface properties. The effect of one-, two- and three-layer coatings, including an inner electroless nickel layer and, additionally, electrodeposited nickel, gold and silver, on the LCF behavior of 1.6-mm-thick 6061-T6 Al alloy was studied in a strain-controlled purely bending mode at maximum plastic strain varied from 0.003 to 0.010. The lifetime of the coated alloy drastically decreases as compared to the substrate. Incipient cracks were revealed, first of all, in the electroless nickel layer and in the substrate close to its surface. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:695 / 702
页数:8
相关论文
共 50 条
  • [1] Low-cycle fatigue of an aluminum alloy plated with multi-layered deposits
    Unigovski, Ya. B.
    Grinberg, A.
    Gerafi, E.
    Gutman, E. M.
    Moisa, S.
    [J]. JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2013, 15 (7-8): : 863 - 868
  • [2] Low-Cycle Fatigue Behavior of Thin-Sheet Extruded Aluminum Alloy
    Avery, D. Z.
    King, W. T.
    Allison, P. G.
    Jordon, J. B.
    [J]. JOURNAL OF FAILURE ANALYSIS AND PREVENTION, 2020, 20 (01) : 95 - 105
  • [3] Low-Cycle Fatigue Behavior of Thin-Sheet Extruded Aluminum Alloy
    D. Z. Avery
    W. T. King
    P. G. Allison
    J. B. Jordon
    [J]. Journal of Failure Analysis and Prevention, 2020, 20 : 95 - 105
  • [4] Study on Low-Cycle Fatigue Performance of Aluminum Alloy Temcor Joints
    Yapeng Wu
    Hongbo Liu
    Zhihua Chen
    Yu Liu
    [J]. KSCE Journal of Civil Engineering, 2020, 24 : 195 - 207
  • [5] SLIP DEFORMATION AND LOW-CYCLE FATIGUE DAMAGE OF AN ALUMINUM-ALLOY
    MURAKAMI, Y
    NISITANI, H
    [J]. BULLETIN OF THE JSME-JAPAN SOCIETY OF MECHANICAL ENGINEERS, 1977, 20 (141): : 271 - 277
  • [6] Study on Low-Cycle Fatigue Performance of Aluminum Alloy Temcor Joints
    Wu, Yapeng
    Liu, Hongbo
    Chen, Zhihua
    Liu, Yu
    [J]. KSCE JOURNAL OF CIVIL ENGINEERING, 2020, 24 (01) : 195 - 207
  • [7] LOW-CYCLE FATIGUE OF ALUMINUM-ALLOYS
    BRODRICK, RF
    SPIERING, GA
    [J]. JOURNAL OF MATERIALS, 1972, 7 (04): : 515 - 526
  • [8] Effects of aging state on the low-cycle fatigue properties of 2024 aluminum alloy
    Gong, B. S.
    Zhang, Z. J.
    Hou, J. P.
    Liu, R.
    Duan, Q. Q.
    Wang, H. W.
    Wang, X. G.
    Liu, H. Z.
    Wang, H.
    Purcek, G.
    Demirtas, M.
    Yanar, H.
    Zhang, Z. F.
    [J]. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2024, 29 : 2448 - 2457
  • [9] Effect of heat treatment on the low-cycle fatigue strength of aluminum alloy 1420
    Sverdlin, AV
    [J]. HEAT TREATING, VOLS 1 AND 2, PROCEEDINGS, 2000, : 373 - 381
  • [10] Low-cycle fatigue behavior of ULTIMET® alloy
    L. Jiang
    C. R. Brooks
    P. K. Liaw
    J. Dunlap
    C. J. Rawn
    R. A. Peascoe
    D. L. Klarstrom
    [J]. Metallurgical and Materials Transactions A, 2004, 35 : 785 - 796