The influence of processing parameters on the micro-hardness and wear resistance of a Ni-based alloy and titanium carbide (TiC) composite cladding layer was studied. Mathematical models were developed to predict the micro-hardness and wear resistance of the cladding layer by controlling the laser cladding processing parameters. Key processing parameters were the laser power, scanning speed, gas flow, and TiC powder ratio. The models were validated by analysis of variance and parameter optimization. Results show that the micro-hardness is positively correlated with laser power and TiC powder ratio, where the TiC powder ratio shows the most significant impact. The wear volume decreased with an increasing TiC powder ratio. The targets for the ...
The wear behaviour of laser-clad TiC-Ni alloy coatings was studied by X-ray diffraction, scanning el...
A TiC-Ni alloy composite coating was clad to 1045 steel substrate using a 2kW CO2 laser. The microst...
Titanium carbide particle (TiCp) reinforced Ni alloy composite coatings were synthesized by laser cl...
The composite coatings were fabricated by laser cladding Ni60A/B4C pre-placed powders on the surface...
This article presents production results concerning metal matrix composite-coatings made using the l...
Laser material deposition process is an additive manufacturing technology that is used to produce fu...
Ni-based alloy powder (NiCrBSi) was applied to prepare coatings on Ti6Al4V by laser cladding to impr...
This study investigated the metallurgical, mechanical properties and quality of coatings fabricated ...
Laser alloying has attracted significant attentions due to the advantages of high processing precisi...
In this paper, the laser cladding method was used to preparation the TiC reinforced Ni-Fe-Al coating...
As a surface coating technique, laser cladding (LC) has been developed for improving wear, corrosion...
Titanium carbide particle (TiCp)-reinforced Ni alloy composite coatings are synthesized by laser cla...
To improve the corrosion resistance and load-bearing performance of titanium alloy, the TiC/Ti based...
Titanium carbide particle (TiCp)-reinforced Ni alloy composite coatings are synthesized by laser cla...
Abstract: Ti6Al4V, an aerospace alloy, is the most widely produced titanium alloy because of its exc...
The wear behaviour of laser-clad TiC-Ni alloy coatings was studied by X-ray diffraction, scanning el...
A TiC-Ni alloy composite coating was clad to 1045 steel substrate using a 2kW CO2 laser. The microst...
Titanium carbide particle (TiCp) reinforced Ni alloy composite coatings were synthesized by laser cl...
The composite coatings were fabricated by laser cladding Ni60A/B4C pre-placed powders on the surface...
This article presents production results concerning metal matrix composite-coatings made using the l...
Laser material deposition process is an additive manufacturing technology that is used to produce fu...
Ni-based alloy powder (NiCrBSi) was applied to prepare coatings on Ti6Al4V by laser cladding to impr...
This study investigated the metallurgical, mechanical properties and quality of coatings fabricated ...
Laser alloying has attracted significant attentions due to the advantages of high processing precisi...
In this paper, the laser cladding method was used to preparation the TiC reinforced Ni-Fe-Al coating...
As a surface coating technique, laser cladding (LC) has been developed for improving wear, corrosion...
Titanium carbide particle (TiCp)-reinforced Ni alloy composite coatings are synthesized by laser cla...
To improve the corrosion resistance and load-bearing performance of titanium alloy, the TiC/Ti based...
Titanium carbide particle (TiCp)-reinforced Ni alloy composite coatings are synthesized by laser cla...
Abstract: Ti6Al4V, an aerospace alloy, is the most widely produced titanium alloy because of its exc...
The wear behaviour of laser-clad TiC-Ni alloy coatings was studied by X-ray diffraction, scanning el...
A TiC-Ni alloy composite coating was clad to 1045 steel substrate using a 2kW CO2 laser. The microst...
Titanium carbide particle (TiCp) reinforced Ni alloy composite coatings were synthesized by laser cl...