Titanium carbide is used as reinforcement component in composites due to its stability, hardness and wear resistance. A potential application is local reinforcement of stainless steel castings in which TiC is added only to the surfaces, which acquire wear resistance. This work is part of the study in which Ti and C are added in the mould during casting of stainless steel to form TiC at a specific surface. Wettability, stability and dissolution of the reinforcement particles are key phenomena in producing these composites in liquid state. Wetting experiments between TiC and Fe as well as FeNi and FeCr alloys were performed in order to get information about wettability, dissolution and formation of TiC and other phases related to the systems....
The carbon/carbon (C/C) composites and T2-copper were joined via thermo-compensated resistance brazi...
Fabrication of steel-matrix composites locally reinforced with in situ TiC particulate using self-pr...
Within the context of the design of high-temperature brazing process for C and SiC-based composites,...
Titanium carbide (TiC) reinforced Fe-Ni alloy composite has been prepared by the In-Situ method by r...
This work includes a study of the interface between matrix and reinforcement in Fe-Ti(C,N) systems. ...
In order to increase wear resistance cast steel casting the TiC-Fe-Cr type composite zones were fabr...
This literature review aims to summarize the research conducted on the production of locally reinfor...
The mechanical incompatibilities between ferrite and martensite at the cladding interface of stainle...
The influence of Cr, C and Ni on intergranular segregation and precipitation has been investigated w...
International audienceAs a first step to devise a hybrid process for the production of TiC wear coat...
The interfacial reactions between a solidified Fe shell and Ti were investigated within the framewor...
Ti-6%Al-4%V composites containing 20?vol.% TiC particles were sintered at temperatures between 1273 ...
The effect of reaction substrates for the TiC carbide synthesis on the composite layer thickness pro...
TiC-reinforced composite surface layers (TRLs) on a ductile cast iron EN-GJS-700-2 grade (DCI) subst...
The carbon/carbon (C/C) composites and T2-copper were joined via thermo-compensated resistance brazi...
Fabrication of steel-matrix composites locally reinforced with in situ TiC particulate using self-pr...
Within the context of the design of high-temperature brazing process for C and SiC-based composites,...
Titanium carbide (TiC) reinforced Fe-Ni alloy composite has been prepared by the In-Situ method by r...
This work includes a study of the interface between matrix and reinforcement in Fe-Ti(C,N) systems. ...
In order to increase wear resistance cast steel casting the TiC-Fe-Cr type composite zones were fabr...
This literature review aims to summarize the research conducted on the production of locally reinfor...
The mechanical incompatibilities between ferrite and martensite at the cladding interface of stainle...
The influence of Cr, C and Ni on intergranular segregation and precipitation has been investigated w...
International audienceAs a first step to devise a hybrid process for the production of TiC wear coat...
The interfacial reactions between a solidified Fe shell and Ti were investigated within the framewor...
Ti-6%Al-4%V composites containing 20?vol.% TiC particles were sintered at temperatures between 1273 ...
The effect of reaction substrates for the TiC carbide synthesis on the composite layer thickness pro...
TiC-reinforced composite surface layers (TRLs) on a ductile cast iron EN-GJS-700-2 grade (DCI) subst...
The carbon/carbon (C/C) composites and T2-copper were joined via thermo-compensated resistance brazi...
Fabrication of steel-matrix composites locally reinforced with in situ TiC particulate using self-pr...
Within the context of the design of high-temperature brazing process for C and SiC-based composites,...