The present study concerns the wear behavior of laser composite surfaced Al with SiC and Al + SiC particulates. A thin layer of SiC and Al + SiC (at a ratio of 1:1 and dispersed in alcohol) were pre-deposited (thickness of 100 μm) on an Al substrate and laser irradiated using a high power continuous wave (CW) CO2 laser. Irradiation leads to melting of the Al substrate with a part of the pre-deposited SiC layer, intermixing and followed by rapid solidification to form the composite layer on the surface. Following laser irradiation, a detailed characterization of the composite layer was undertaken in terms of microstructure, composition and phases. Mechanical properties like microhardness and wear resistance were eval...
SiC particles (SiCp)-reinforced Al−Si matrix composite coatings were synthesized on 4032 alumi...
In this paper, the influence of a laser surface treatment on the structure and properties of alumini...
Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used t...
The present study concerns development of a hard SiC dispersed composite layer on an Al substrate to...
Coatings of a composite material consisting of an Al-Si matrix reinforced with SiC particles were pr...
Surface coatings of an Al-Si-SiC composite were produced on UNS A03560 cast Al-alloy substrates by l...
Surface coatings of an Al-Si-SiC composite were produced on UNS A03560 cast Al-alloy substrates by l...
Laser composite surfacing of aluminum alloys with ceramic particles has been extensively investigate...
Surface coatings of Al-Si/SiC metal-matrix composites were deposited on Al-7 wt. % Si alloy substrat...
The properties and processing parameters of the metal matrix composite (MMC) surface layers, obtaine...
The present study concerns an attempt to improve the wear resistance of a recently developed magnesi...
Coating steel surfaces with hard ceramic particles in Aluminum has a great influence to improve mech...
SiC particles with a mean size of 80 mu m were injected into Al substrate:by the laser particle inje...
In the present study, an attempt has been made to improve wear resistance of AISI 304 stainless stee...
SiC particles (SiCp)-reinforced Al−Si matrix composite coatings were synthesized on 4032 alumi...
In this paper, the influence of a laser surface treatment on the structure and properties of alumini...
Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used t...
The present study concerns development of a hard SiC dispersed composite layer on an Al substrate to...
Coatings of a composite material consisting of an Al-Si matrix reinforced with SiC particles were pr...
Surface coatings of an Al-Si-SiC composite were produced on UNS A03560 cast Al-alloy substrates by l...
Surface coatings of an Al-Si-SiC composite were produced on UNS A03560 cast Al-alloy substrates by l...
Laser composite surfacing of aluminum alloys with ceramic particles has been extensively investigate...
Surface coatings of Al-Si/SiC metal-matrix composites were deposited on Al-7 wt. % Si alloy substrat...
The properties and processing parameters of the metal matrix composite (MMC) surface layers, obtaine...
The present study concerns an attempt to improve the wear resistance of a recently developed magnesi...
Coating steel surfaces with hard ceramic particles in Aluminum has a great influence to improve mech...
SiC particles with a mean size of 80 mu m were injected into Al substrate:by the laser particle inje...
In the present study, an attempt has been made to improve wear resistance of AISI 304 stainless stee...
SiC particles (SiCp)-reinforced Al−Si matrix composite coatings were synthesized on 4032 alumi...
In this paper, the influence of a laser surface treatment on the structure and properties of alumini...
Two laser surface engineering techniques, Laser Cladding and Laser Melt Injection (LMI), were used t...