Hardfacing by laser provides a cost-effective option for protecting components against mechanical wear and corrosion. In the present work, high speed steel hardfacings were deposited using a high-power direct diode laser with the aim of investigating the role of niobium content on their mechanical and corrosion properties. The content of niobium was varied between 0.1 and 3 wt%. The results show that niobium content has a high impact on the hardfacing microstructure and its resulting mechanical properties. In particular, niobium is able to significantly enhance the abrasive wear resistance of high speed steel laser hardfacings. This improvement is accompanied by a superior corrosion resistance. The impact of niobium content on slurry erosio...
Niobium (Nb) and molybdenum (Mo) are conventionally added to stainless steels to improve their mecha...
A great variety of studies have been performed in order to develop new materials with high performan...
The effects of niobium addition up to 0.11 wt% on the microstructure and tensile properties of as-ca...
This paper presents an effect of niobium (Nb) on the microstructure-property relationship in H11 hot...
The corrosion and wear are major limiting factors for steel in the harsh environments and can be con...
Fe-C-Cr-Nb-B-Mo alloy powder and AISI 420 SS powder are deposited using laser cladding to increase t...
Laser hardfacing were produced using a high power Disk laser of 4 kW maximum power as a heat source ...
Three high-speed steels (HSSs) M2, ASP23, ASP30 were surface-melted by a CW 2.5-kW Nd:YAG laser. The...
Laser cladding to improve the corrosion and cavitation resistance of stainless steels 13Cr-4Ni and A...
Laser surface cladding is a significant process used for improving and altering the surface properti...
To improve the surface corrosion resistance of ductile iron, Ni-based alloy coatings were prepared u...
In fast neutron reactors, some parts can be subjected to displacements between each other (as movabl...
© 2019 Elsevier B.V. Austempered ductile iron (ADI) is a heat-treated nodular iron variant that has ...
Stainless steels are used in some industries requiring mechanicalproperties and corrosion resistance...
Laser deposited coatings were made from Colmonoy 69 Ni–Cr–B–Si–C alloy and Nb-modified Colmonoy 69 u...
Niobium (Nb) and molybdenum (Mo) are conventionally added to stainless steels to improve their mecha...
A great variety of studies have been performed in order to develop new materials with high performan...
The effects of niobium addition up to 0.11 wt% on the microstructure and tensile properties of as-ca...
This paper presents an effect of niobium (Nb) on the microstructure-property relationship in H11 hot...
The corrosion and wear are major limiting factors for steel in the harsh environments and can be con...
Fe-C-Cr-Nb-B-Mo alloy powder and AISI 420 SS powder are deposited using laser cladding to increase t...
Laser hardfacing were produced using a high power Disk laser of 4 kW maximum power as a heat source ...
Three high-speed steels (HSSs) M2, ASP23, ASP30 were surface-melted by a CW 2.5-kW Nd:YAG laser. The...
Laser cladding to improve the corrosion and cavitation resistance of stainless steels 13Cr-4Ni and A...
Laser surface cladding is a significant process used for improving and altering the surface properti...
To improve the surface corrosion resistance of ductile iron, Ni-based alloy coatings were prepared u...
In fast neutron reactors, some parts can be subjected to displacements between each other (as movabl...
© 2019 Elsevier B.V. Austempered ductile iron (ADI) is a heat-treated nodular iron variant that has ...
Stainless steels are used in some industries requiring mechanicalproperties and corrosion resistance...
Laser deposited coatings were made from Colmonoy 69 Ni–Cr–B–Si–C alloy and Nb-modified Colmonoy 69 u...
Niobium (Nb) and molybdenum (Mo) are conventionally added to stainless steels to improve their mecha...
A great variety of studies have been performed in order to develop new materials with high performan...
The effects of niobium addition up to 0.11 wt% on the microstructure and tensile properties of as-ca...