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The sulfides layer prepared on laser cladding coating shows excellent performance on wear and friction-reduction.
The effect of laser power and tempering treatment process on corrosion resistance of the cladding coating was investigated.
With the increase of laser power, corrosion resistance and microhardness of the cladding coating have been improved.
Laser cladding coating exhibiting outstanding wear resistance was fabricated with the addition of 20 wt.% B4C, 7 wt.% SiC and 1 wt.% Y2O3.
One of the vital problems limiting the application of multi-layer cladding coating is that there appears a coarse grain structure at interface between different layers.
The friction results indicate that the friction coefficients and wear losses of the sulfurizing composite layer are decreased remarkably in contrast to the cladding coating under dry condition.
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However, micro pores may be unavoidable in the clad coating.
The clad coating adheres with low carbon steel in a good metallurgical bonding and the rate of dilution is 15 20%.
The as-clad coating had a columnar dendritic structure and it did not show the presence of the relevant defects.
SEM, XRD and EDS analyses show that, the as-clad coating is composed of (Ti,V 5Si3 and a BCC solid solution.
Compared to laser cladded IN625 coating, the composite coating showed higher hardness at bottom region of cladded coating and smaller size of HAZ due to the improvement of thermal conductivity by additional NiGNPs.
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