Kaesche H.Metallic Corrosion-Principles of Physical Chemistry and Current Problems[M].Houston:National Association of Corrosion Engineers,1985.1.
[3]
Song R G,Dietzel W,Zhang B J,et al.Stress corrosion cracking and hydrogen embrittlement of an Al-Zn-MgCu alloy[J].Acta Materialia,2004,52(16):4727.
[4]
Li D,L iu J H,Liu P Y,et al.Effect of ageing treatment on mechanical and corrosion properties of 7075 aluminum alloy[J].Materials Science Forum,2002,396-402:1497.
[5]
褚武扬.氢损伤与滞后断裂[M].北京:冶金工业出版社,1988.1.
[6]
褚武扬,乔利杰,陈奇志,等.断裂与环境断裂[M].北京:科学出版社,2000.1.
[7]
Tasi T C,Chuang T H.Stress corrosion cracking of superplastically formed 7475 aluminum alloy[J]. Metallurgica Materials Transactions,1996,28A(10):2113.
[8]
Speidel M O.Stress corrosion cracking of aluminum alloy[J].Metallurgica Transactions,1975(6A):631.
Oliveira A F,Barros M C,Cardoso K R,et al.The effect of RRA on the strength and SCC resistance on AA7075 and AA7150 aluminum alloys[J].Materials Science and Engineering,321.
Tsai T C,Chuang T H.Technical note:relationship between electrical conductivity and stress corrosion cracking susceptibility of Al7050 and Al7475 alloys[J].Corrosion,1996,52(6):414.
[22]
Holroyd N J H,Hardie D.Factors controlling crack velocity in 7000 series aluminum alloys during fatigue in an aggressive environment [J].Corrosion.Science,1983,23(6):527.
[23]
刘永辉,张佩芬.金属腐蚀学原理[M].北京:航空工业出版社,1993.98.
[24]
Speidel M O.Current Understanding of Stress Corrosion Cracking Growth in Aluminum Alloys[A].The Theory of Stress Corrosion Cracking in Alloys[C].NATO,Brussels:NATO Scientific Affairs Division,1971.289.
Yue T M,Lan L J,Dong C F,et al.Stress corrosion cracking behaviour of laser treated aluminium alloy 7075 using a slow strain rate test[J].Materials Science and Technology,2005,21:961.
Scanmans G M,Banburg O.Aluminum[M].New York: Plenu Press,1982.151.
[31]
Puiggali M,Zielinski A.Effect of microstructure on stress corrosion cracking of an AlZnMgCu alloy[J].Corrosion.Science,1998,40(45):805.
[32]
Joshi A J.The relationship between solutionizing temperature and SCC susceptibility of 7075 aluminum alloys[J].Acta Metallurgica,1981,12(8):81.
[33]
Viswanadham R K,Sun T S,Green J A S.Grain Boundary Segregation in Al-Zn-Mg-Cu Implications to Stress Corrosion Cracking[J].Metallurgica Transactions,1980,11A:151.
[34]
Loffler H,Kovace I,Lendvai J.Decomposition Processes in Al-Zn-Mg Alloys[J].Journal of Materials Science,1992,27(7):4772.
[35]
Knano M,Araki I,Cui Q.Precipitation behavior of 7000 alloys during retrogression and reaging treatment[J].Materials Science and Technology,1994,10(7):599.
[36]
RRobinson J S,Tanner D A.The influence of aluminum alloy quench sensitivity on the magnitude of heat treatment induced residual stress[J]Materials Science Forum,2006.524-525:305.
FFang H C,Chen K H,Zhang Z,et al.Effect of Yb additions on microstructures and properties of 7A60 aluminum alloy[J].Transactions Nonferrous Metals Society of China,2008(1):28.
JJoachim Wloka,Theo Hack,Sannakaisa Virtanen.Influence of temper and surface condition on the exfoliation behaviour of high strength Al-Zn-Mg-Cu alloys[J].Corrosion Science,2007,49(3):1437.[
[42]
SoSong R G,Zhang Q Z.Heat treatment optimization for 7175 aluminum alloy by genetic algorithm[J].Materials Science and Engineering C,2001,C17:133.
[43]
TTanner D A,Robinson J S.Residual stress magnitudes and related properties in quenched aluminum alloys[J].Materials Science and Technology,2006,22(1):77.
[44]
IImamura T.Current status and trend of applicable material technology for aerospace structure[J].Journal of Japan Institute of Light Metals,1999,49(7):302.