[1] |
LI Y L,DU D M,SONG J G,et al.Application and development of surface strengthening technology of moulds[J].Heat Treatment Technology and Equipment,2010,31 (4):9-12(in Chinese). |
[2] |
LI J G.Surface hardening technologies and mould service life[J].China Surface Engineering,2002,15 (1):2-7 (in Chinese). |
[3] |
GARRIDO A H,CONZALEZ R,CADENAS M,et al.Tribological behavior of laser-textured NiCrBSi coatings[J].Wear,2011,271 (5/6):925-933. |
[4] |
OCELIK V,FURAR I,de HOSSON J.Microstructure and properties of laser clad coatings studied by orientation imaging microscopy[J].Acta Materialia,2010,58 (20):6763-6772. |
[5] |
EMAMIAN A,CORBIN S F,KHAJEPOUR A.The influence of combined laser parameters on in-situ formed TiC morphology during laser cladding[J].Surface & Coatings Technology,2011,206 (1):124-131. |
[6] |
MASANTA M,SHARIFF S M,CHOUDHURY A R.A comparative study of the tribological performances of laser clad TiB2-TiC-Al203composite coatings on AISI 1020 and AISI 304 substrates[J].Wear,2011,271(7/8):1124-1133. |
[7] |
WANG X H,QU S Y,DU B S,et al.Effect of molybdenum on microstructure and wear properties of Fe-Ti-Mo-C laser clad coatings[J].Materials Science and Technology,2011,27(7):1222-1228. |
[8] |
LEI Y W,SUN R L,LEI J B,et al.A new theoretical model for high power laser clad TiC/NiCrBSiC composite coatings on Ti6Al4V alloys[J].Optics and Lasers in Engineering,2010,48(9):899-905. |
[9] |
CHEN C Z,WANG D G,LEI T Q.Structure characteristics of laser clad ceramic and its composite coatings[J].Laser Technology,2001,25(6):401-405 (in Chinese). |
[10] |
SHEN X C,GUO W M,GUO Y F,et al.Preparation and photocatalytic property of iron-doped TiO2 nanoparticles[J].Chinese Journal of Applied Chemistry,2005,22 (10):34-38 (in Chinese). |
[11] |
ZHU W D,LIU Q B.Microstructure and properties of broadhand laser cladding WCp/Ni base alloy gradient coating[J].Laser Technology,2002,26(3):183-185(in Chinese). |