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Therefore, the wear performance of the NiCrAlCoMo clad layer greatly exceeds that of the NiCrAlCoCu clad layer.
Therefore, the wear performance of the NiCrAlCoW clad layer is better than that of the NiCrAlCoSi clad layer.
The normalizing process not only increased the bonding strength between the clad layer and the matrix, but also improved the wear performance of the clad layer under all cladding conditions.
The interface between the clad layer and the substrate has good metallurgical bond.
The NiCrAlCoW clad layer exhibits strong mechanical interlocking, which results from the complex phase and microstructure of the NiCrAlCoW clad layer.
The interface between the clad layer and the substrate has a good metallurgical bonding.
Hf can change the microstructure of the Fe Cr Ni alloy clad layer from eutectic to hypoeutectic.
Additionally, the bonding strength between the clad layer and the matrix with different compositions was also evaluated.
The microhardness of laser clad layer was 800 1200 HV0.3 which was about 5 times of the substrate.
For this we used a rolling technique to form a riblet structure into the Al clad layer.
Similar(1)
With the increment of Co content in clad layer, the cracking susceptibility of the laser cladding layer decreases and the number of overlapping tracks with hypoeutectic structure increases.
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