A Review High-Speed Milling of Meshing Cylindrical Surface

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Abstract:

Meshing cylindrical surface always bears the alternating stress in the practical application. It will bring fatigue failure and fracture phenomena if the alternating stress is uncontroled, seriously affect the service life of the mechanical devices. The fatigue strength of the workpiece will be improved to boost the surface quality and surface strength and use the way of controling the workpiece surface residual stress brought by metal cutting to compressive stress. High-speed milling technology can greatly enhance the surface strength and surface quality of the workpiece surface, it can also change the cutting parameters to control the residual stress of the workpiece surface, so that it can greatly improve the fatigue strength of the workpiece.

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82-86

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June 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[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