International audienceDuring the synthesis of MAX phases using combustion synthesis (or Self-Propagating High-temperature Synthesis), the main drawback is the presence of binary phases, and especially the simple MX carbide, when X = C. Our experiments were designed in order to check whether the cooling rate of the sample immediately after synthesis might play a key role for obtaining samples with low-level carbide contents. In the best conditions, a TiC content of about 2% only has been observed. A systematic study on the direct effect of the cooling rate on the final composition has then been conducted, and confirms that high cooling rates allow the synthesis of high-purity MAX phases in the Ti-Al-C system
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
International audienceTernary MAX phase compounds were synthesized using an alternative route called...
The processes of self-propagating high-temperature synthesis (SHS) in the Ti-Al-C powder system were...
International audienceA new approach to synthesis of Ti₂AlC-Ti₃AlC₂/Al₂O₃ compounds is developed bas...
Mechanically Activated Self-propagating High temperature Synthesis (MASHS) is the method which is us...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
Single-phase TiC was rapidly synthesized by self-propagation high-temperature synthesis (SHS) reacti...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
The purpose of this article is to synthesize a Ti-C system under a known cooling rate by applying a ...
In this research, the possibility of production of TiC powder from inexpensive raw materials via sim...
Titanium carbide may be readily produced in high purity via direct reaction between the solid phases...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
International audienceTernary MAX phase compounds were synthesized using an alternative route called...
The processes of self-propagating high-temperature synthesis (SHS) in the Ti-Al-C powder system were...
International audienceA new approach to synthesis of Ti₂AlC-Ti₃AlC₂/Al₂O₃ compounds is developed bas...
Mechanically Activated Self-propagating High temperature Synthesis (MASHS) is the method which is us...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
Single-phase TiC was rapidly synthesized by self-propagation high-temperature synthesis (SHS) reacti...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
International audienceMXene phases are bi-dimensional carbide or nitride phases with original proper...
The purpose of this article is to synthesize a Ti-C system under a known cooling rate by applying a ...
In this research, the possibility of production of TiC powder from inexpensive raw materials via sim...
Titanium carbide may be readily produced in high purity via direct reaction between the solid phases...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...
Based on the general theoretical model proposed in Part I of this work [J. Mater. Res. 20, 1257 (200...