[1]
W.X. Yao: Fatique Life Prediction of Structures (National Defence Industry Press, Beijing 2003) (in Chinese)
Google Scholar
[2]
D. Arola, C.L. Williams: Int. J. Fatigue Vol. 24 (2002), pp.923-930
Google Scholar
[3]
B. Rao, C.Y. Shin: Int. J. Mach. Tool. Manuf. Vol. 41 (2006), pp.1763-1781
Google Scholar
[4]
G. Zurek: Cut. Tool Eng. Vol. 56 (2004), pp.38-41
Google Scholar
[5]
A.S. Sadat: J. Mater. Sci. Technol. Vol. 49 (1990), pp.371-375
Google Scholar
[6]
Z.Q. Liu, X. Ai: Prog. Nat. Sci. Vol. 15 (2005), pp.777-783
Google Scholar
[7]
M. Alberti, J. Ciurana and M. Casadesus: J. Mater. Process. Technol. Vol. 168 (2005), pp.25-35
Google Scholar
[8]
R.Y. Chen:G. Zurek: Principles of machining (China Machine Press, Beijing 1993) (in Chinese)
Google Scholar
[9]
S. Ashley: Mech. Eng. Vol. 5 (1995), pp.56-60
Google Scholar
[10]
H. Schalz: Mach. Build. Autom. No.1 (2002), pp.4-8
Google Scholar
[11]
L.B. Zhang, Y.M. Xie: Chin. Mech. Eng. Vol. 6 (1995), pp.14-17 (in Chinese)
Google Scholar
[12]
H.Z. Li, Y. Wang, C. Zhang and et al: J. Tongji Univ. (Natural Science) Vol. 35 (2007), pp.39-42(in Chinese)
Google Scholar
[13]
H.S. Li, Z. Zeng and W. Cao: Mach. Des. Manuf. No. 5(2005), pp.162-164 (in Chinese)
Google Scholar
[14]
H.Y. Lu: Machinery Vol. 37 (1999), pp.6-8(in Chinese)
Google Scholar
[15]
X. Ai: Technology of High Speed Machining (National Defence Industrial Press, Beijing 2003) (in Chinese)
Google Scholar
[16]
C.K. Toh: Precis. Eng. Vol. 28 (2004), pp.386-398
Google Scholar
[17]
M.M. EI-Khaberry, M. Fattouh: Int. J. Mach. Tool. Manuf. Vol. 29 (1989), pp.391-401
Google Scholar
[18]
E. Brinksmeier, J.T. Cammett: Ann. CIRP, Vol. 31 (1982), pp.491-510
Google Scholar
[19]
Y.B. Guo, M.E. Barkey: Int. J. Mech. Sci. Vol. 46 (2004), pp.371-388
Google Scholar
[20]
W.B. Sai, N.B. Salah and J.L. Lebrun: Int. J. Mach. Tool. Manuf. Vol. 41 (2001), pp.443-450
Google Scholar
[21]
Z.Q. Liu, Y. Wan and X. Ai: Chin. Mech. Eng. Vol. 14 (2003), pp.734-737 (in Chinese)
Google Scholar
[22]
G.Y. Yang: J. Beijing Inst. Technol. Vol. 16 (1996), pp.263-266 (in Chinese)
Google Scholar
[23]
G. Parrish: Heat Treat. Met. No. 4 (1977), pp.107-116(in Chinese)
Google Scholar
[24]
X.K Shi, Q.F Yang, W. Cai and et al: Aeronaut. Manuf. Technol. No.1 (2001), pp.30-3 (in Chinese)
Google Scholar
[25]
M. Xin, L.J. Xie, X.B. Wang and et al: Trans. Beijing Inst. Technol. Vol. 30 (2010), pp.19-23 (in Chinese)
Google Scholar
[26]
T.Y. Tsui, W.C. Oliver and G.M. Pharr: J. Mater. Res. Vol. 11 (1996), pp.752-759
Google Scholar
[27]
J.L. Chen, J.F. Li, J. Sun, and et al: J. Mech. Strength Vol. 32 (2010), pp.53-57(in Chinese)
Google Scholar
[28]
L. Cveticanin: Mech. Mach. Theory Vol. 42 (2007), pp.1238-1250
Google Scholar
[29]
S.M. Li: Mechanical Fatigue and reliability design (Science Press, Beijing 2006) (in Chinese)
Google Scholar
[30]
X.C. Liang, X.G. Zheng, G.B. Xu: Chin. J. Mech. Eng. Vol. 37 (2001), pp.109-112(in Chinese)
Google Scholar
[31]
M. Chen, F.h. Sun, H.L. Wang and et al: J. Mater. Process. Technol. No. 138 (2003), pp.468-471
Google Scholar
[32]
H. Paris, G. Peigne, R. Mach. Tool. Manuf. Vol. 44 (2004), pp.1567-1576
Google Scholar