[1] Jiao F,Bettge D,Osterle W,Ziebs J.Tension-compression asymmetry of the(0 0 1)single crystal nickel-base superalloy SC16 under cyclic loading at elevated temperature[J]. Acta Mater,1996,44(10):3933~3942. [2] Lall C,Chin S,Pope D P.The orientation and temperature dependence of yield stress of Ni3(Al,Nb)single crystals[J]. Metall Trans A,1979,10A(6):1323~1332. [3] Takeuchi S,Kuramoto E.Temperature and orientation dependence of yield stress in Ni3Ga singlecrystals[J]. Acta Metall,1973,21(3):415~425. [4] Li S X,Smith D J.Temperature and orientation dependence of elastic and yield properties of single crystal nickel-base superalloys[J]. Mat Sci Tech,1995,11(7):1253~1260. [5] Yue Z F,Zheng C Q.The study of the tension/compression yield behavior of single crystal blade superalloys[J]. Acta Aeronautica et Astronautica Sinica,1993,14(12):A556~A559. [6] Milligan W W,Antolovich S D.Yielding and deformation behavior of the single crystal superalloy PWA1480[J]. Metall Trans A,1987,18A(1):85~95. [7] Li S X,Smith D J.High temperature fatigue-creep behaviour of single crystal SRR99 nickel-base superalloy Part I-cyclic mechanical response[J]. Fatigue and Fracture of Engineerin g Materials and Structure,1995,18(5):617~629. [8] Li S X,Smith D J.High temperature fatigue-creep behaviour of single crystal SRR99 nickel-base superalloy Part+-fatigue-creep lif e behavior[J]. Fatigu e and Fracture of Engineerin g Materials and Structure,1995,18(5):630~643. [9] Henderson M B,Martin J W.The influence of crystal orientation on the high temperature fatigue crack growth of a nickel-based signal crystal superalloy[J]. Acta Mater,1996,44(1):111~128. [10] Yue Z F,Lu Z Z,Zheng C Q.Fracture behavior of a nickel-base single crystal superalloy as predicted by the strain energy density criterion[J]. Theoretical and Applied Mechanics,1997,26(1):89~104.424 Yue Zhufeng,Tao Xiande,Ying Zeyong et al |