Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used to prepare three different metal matrix composite layers with a thickness of about 1 mm and approximately 25–30% volume fraction of ceramic particles. SiC/Al–8Si, WC/Ti–6Al–4V and TiB2/Ti–6Al–4V layers were prepared by a Laser Melt Injection process, whereby additional material in the form of ceramic particles is injected into the molten substrate. As a result, a microstructure characterized by hard ceramic particles distributed in a metal matrix with very strong bonding is formed in the surface layer of the treated metal. A TiB/Ti–6Al–4V metal matrix composite layer was produced on Ti–6Al–4V substrates by conventional laser cladding. A mixtur...
TiB/Ti-6Al-4V metal-matrix composite (MMC) layers were produced on Ti-6Al-4V substrates by laser cla...
This work was based on the dry sliding wear of Al-Cu-Sn matrix composite coating deposited on titani...
The conditions for a successful Laser Melt Injection (LMI) of SiC and WC particles into the melt poo...
Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used t...
Laser Melt Injection (LMI) was used to prepare metal matrix composite layers with a thickness of abo...
Laser cladding of the Al + TiC alloy powder on Ti–6Al–4V alloy can form the Ti3Al/TiAl + TiC ceramic...
Abstract: Laser composite surfacing technique is an emerging field of surface engineering that has b...
The objective of this paper is to present an overview of the possibilities of the laser melt injecti...
The objective of this paper is to present an overview of the possibilities of the laser melt injecti...
Current trends in the mechanics and energy industries impose increasing demands on metallic materia...
Laser processing of Ti-SiC composite coating on titanium was carried out to improve wear resistance ...
This paper concentrates on the laser particle injection process. TiC, TiN end SiC particles were inj...
The composite coatings were fabricated by laser cladding Ni60A/B4C pre-placed powders on the surface...
TiB/Ti-6Al-4V metal-matrix composite (MMC) layers were produced on Ti-6Al-4V substrates by laser cla...
This work was based on the dry sliding wear of Al-Cu-Sn matrix composite coating deposited on titani...
The conditions for a successful Laser Melt Injection (LMI) of SiC and WC particles into the melt poo...
Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used t...
Laser Melt Injection (LMI) was used to prepare metal matrix composite layers with a thickness of abo...
Laser cladding of the Al + TiC alloy powder on Ti–6Al–4V alloy can form the Ti3Al/TiAl + TiC ceramic...
Abstract: Laser composite surfacing technique is an emerging field of surface engineering that has b...
The objective of this paper is to present an overview of the possibilities of the laser melt injecti...
The objective of this paper is to present an overview of the possibilities of the laser melt injecti...
Current trends in the mechanics and energy industries impose increasing demands on metallic materia...
Laser processing of Ti-SiC composite coating on titanium was carried out to improve wear resistance ...
This paper concentrates on the laser particle injection process. TiC, TiN end SiC particles were inj...
The composite coatings were fabricated by laser cladding Ni60A/B4C pre-placed powders on the surface...
TiB/Ti-6Al-4V metal-matrix composite (MMC) layers were produced on Ti-6Al-4V substrates by laser cla...
This work was based on the dry sliding wear of Al-Cu-Sn matrix composite coating deposited on titani...
The conditions for a successful Laser Melt Injection (LMI) of SiC and WC particles into the melt poo...