共 13 条
- [1] Li S.X., Smith D.J., High temperature fatigue-creep behavior of single crystal SRR99 nickel base superalloys: Part 2 -fatigue-creep life behavior. Fatigue Fract, Engng Mater, 18, 5, pp. 631-643, (1995)
- [2] Zhufeng Y., Zhenzhou L., A model of multiaxial low cycle fatigue life time of a nickel-based single crystal, Rare Metal Material and Engineering, 29, 1, pp. 28-31, (2000)
- [3] Zhufeng Y., Xiande T., Zeyong Y., Et al., A crystallographic model for the orientation dependence of low cycle fatigue property of a nickel-based single crystal superalloy, Applied Mathematics and Mechanics, 21, 4, pp. 373-381, (2000)
- [4] Mitsuru K., Sakane M., Masateru O., High temperature multiaxial low cycle fatigue of cmsx-2 Ni-base single crystal superalloy, ASME Journal of Engineering Materials and Technology, 119, pp. 153-160, (1997)
- [5] Zhufeng Y., Zhiguo Y., Zeyong Y., Et al., Constitutive relationship of nickel7 base single crystal superalloys and applications, Experiment and Study of Gas Turbine, 16, 1, pp. 50-56, (2003)
- [6] Lachlan D.W.M., Knowles D.M., Fatigue behavior and living of two single crystal superalloys, Fatigue Fract Enging Mater Struct, 124, pp. 503-521, (2001)
- [7] Li S.X., Smith D.J., High temperature fatigue-creep behavior of single crystal srr99 nickel base superalloys: Part 2 - fatigue-creep life behavior. Fatigue Fract, Engng Mater, 18, 5, pp. 631-643, (1995)
- [8] Zhiping D., Yilun L., Zeyong Y., Et al., Study on the yield surface of cubic crystalloid single crystal material, Mechanics in Engineering, 26, 4, pp. 14-18, (2004)
- [9] Zhiping D., Yilun L., Zeyong Y., Et al., Constitutive model for an FCC single-crystal material, Frontiers of Mechanical Engineering in China, 1, 1, pp. 40-47, (2006)
- [10] Suresh S., Fatigue of Materials, (1991)