Chinese Journal of Lasers, Volume. 30, Issue 2, 185(2003)
Cavitation Erosion Performance of Laser Surface Cladding MMC of Si3N4 on AA6061 Aluminium Alloy
[1] [1] R. H. Richman, W. P. McNaughton. Correlation of cavitation erosion behavior with mechanical-properties of metals [J]. Wear, 1990, 140(1):63~82
[4] [4] Uenishi, Keisuke, Kobayashi et al.. Laser cladding of intermetallic compound Al3Ti on aluminum substrate [J]. Journal of Light Metal Welding and Construction, 1993, 31(4):153~157
[5] [5] ASTM Standard G61-86, Standard Method for Conducting Cyclic Potentiodynamic Polarization Measurements for Localised Corrosion Susceptibility of Iron-, Nickel- or Cobalt-Based Alloys [S]. In: Annual Book of ASTM Standards Vol.03. 02, ASTM, Philadelphia, 1992
[6] [6] ASTM Standard G32-92, Standard Method of Vibratory Cavitation Erosion Test [S]. In: Annual Book of ASTM Standards, Vol. 03. 02, ASTM, Philadelphia, 1992
[7] [7] W. W. Duley. CO2 Lasers: Effects and Applications [M]. London: Academic Press New York San Francisco London, 1976. 136
[8] [8] J. Wei, F. X. Wang, Y. Q. Cheng et al.. Cavitation erosion of cobalt alloy coatings containing tungsten carbide particles in hydrochloric and sulfuric corrosive media [J]. Journal of Tribology, 1993, 115(2):285~288
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[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Cavitation Erosion Performance of Laser Surface Cladding MMC of Si3N4 on AA6061 Aluminium Alloy[J]. Chinese Journal of Lasers, 2003, 30(2): 185