TiC particle reinforced Ni-based alloy composite coatings were clad to AISI 4140 chromium molybdenum alloy steel substrate using a laser. The microstructure and tribological behavior of coatings were studied experimentally by means of scanning electron microscopy, transmission electron microscopy and wear tests. Partial solution of TiC particles occurs in the laser melting pool during the heating stage. Twins and dislocations were observed at the interface of TiC particles and the matrix. The wear resistance was found to correlate with the load and amount of the TiC particles present in the clad layer. By adding La,03, the hardness of clad coatings was significantly increased, and the wear resistance of clad coatings was enhanced. (C) 2002 Elsevier Science B.V. All rights reserved.
机构:
DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104
Mohanty, M
;
Smith, RW
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机构:
DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104
机构:
DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104
Mohanty, M
;
Smith, RW
论文数: 0引用数: 0
h-index: 0
机构:
DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104DREXEL UNIV,DEPT MAT ENGN,ENGN RES CTR PLASMA AIDED MFG,PHILADELPHIA,PA 19104