Magnesium stress corrosion cracking

被引:3
|
作者
N.Winzer [1 ]
A.Atrens [1 ,2 ]
W.Dietzel [3 ]
K.U.Kainer [3 ]
机构
[1] Materials Engineering,The University of Queensland,Brisbane,Australia
[2] Swiss Federal Laboratories for Materials Science and Technology,EMPA,Dept 136, überlandstrasse 129,CH-8600 Dubendorf,Switzerland
[3] GKSS-Forschungszentrum Geesthacht GmbH,Germany
关键词
stress corrosion cracking; linearly increasing stress test; LIST; CERT; hydrogen;
D O I
暂无
中图分类号
TG172.9 [其他腐蚀];
学科分类号
080503 ;
摘要
The significant positive green environment influence of magnesium alloy usage in transport could be compromised by catastrophic fast fracture caused by stress corrosion cracking(SCC). Transgranular stress corrosion cracking(TGSCC) of AZ91 was evaluated using the linearly increasing stress test(LIST) and the constant extension rate test(CERT). The TGSCC threshold stress was 55-75 MPa in distilled water and in 5 g/L NaCl. The TGSCC velocity was 7×10-10-5×10-9 m/s. A delayed hydride-cracking(DHC) model for TGSCC was implemented using a finite element script in MATLAB and the model predictions were compared with experiment. A key outcome is that,during steady state TGSCC propagation,a high dynamic hydrogen concentration is expected to build up behind the crack tip. A number of recommendations are given for preventing SCC of Mg alloys in service. One of the most important recommendations might be that the total stress in service(i.e. the stress from the service loading + the fabrication stress + the residual stress) should be below a threshold level,which,in the absence of other data,could be(conservatively) estimated to be about 50% of the tensile yield strength.
引用
收藏
页码:150 / 155
页数:6
相关论文
共 50 条
  • [31] Stress Corrosion Cracking
    不详
    MATERIALS PERFORMANCE, 2011, 50 (01) : 80 - 80
  • [32] Stress Corrosion Cracking
    Moriber, Norm
    Roberge, Pierre R.
    MATERIALS PERFORMANCE, 2017, 56 (01) : 72 - 72
  • [33] Stress Corrosion Cracking
    Moriber, Norm
    MATERIALS PERFORMANCE, 2014, 53 (08) : 116 - 116
  • [34] STRESS CORROSION CRACKING
    VANROOYEN, D
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1960, 107 (08) : 715 - 716
  • [35] Stress Corrosion Cracking of Magnesium Alloys:Mechanism, Influencing Factors, and Prevention Technology
    Song Y.
    Fu H.
    Wang Z.
    Yang P.
    Cailiao Daobao/Materials Review, 2019, 33 (03): : 834 - 840
  • [36] STRESS-CORROSION CRACKING AND LIQUID-METAL EMBRITTLEMENT IN PURE MAGNESIUM
    LYNCH, SP
    TREVENA, P
    CORROSION, 1988, 44 (02) : 113 - 124
  • [37] STRESS-CORROSION CRACKING OF RAPIDLY SOLIDIFIED MAGNESIUM ALUMINUM-ALLOYS
    MAKAR, GL
    KRUGER, J
    SIERADZKI, K
    CORROSION SCIENCE, 1993, 34 (08) : 1311 - &
  • [38] ROLE OF MAGNESIUM SEGREGATION IN THE INTERGRANULAR STRESS CORROSION CRACKING OF ALUMINIUM ALLOYS.
    Scamans, G.M.
    Holroyd, N.J.H.
    Tuck, C.D.S.
    1600, (27):
  • [39] Effects of stress and temperature on stress corrosion cracking of austenitic stainless steels in concentrated magnesium chloride solutions
    Jiang, XC
    Staehle, RW
    CORROSION, 1997, 53 (06) : 448 - 466
  • [40] Effect of residual stress on the stress corrosion cracking in boiling magnesium chloride solution of austenite stainless steel
    Wu, Huanchun
    Li, Chengtao
    Fang, Kewei
    Zhang, Wenqian
    Xue, Fei
    Zhang, Guodong
    Wang, Xuelin
    MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2018, 69 (11): : 1572 - 1583