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MAX phases are ternary carbides or nitrides with unique properties.
Finally, the reaction mechanisms or pathways during the synthesis of MAX phases are also discussed.
MAX phases are a class of ternary compounds, known to exhibit combined properties of both ceramics and metals.
By now, it is fairly well established that the layered hexagonal MAX phases are thermodynamically stable nanolaminates displaying unusual and sometimes unique properties.
Potential fields of application for MAX phases are structural materials for high temperatures, tribological protective coatings, electrical contacts in aggressive environments, and as sensing materials in sensor technology.
The MAX phases are nanolaminated, wherein every n-layers of M atoms are interleaved with layers of pure A; the X atoms occupy the octahedral sites between the M atoms.
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This paper examines the idea that reversible hysteresis in MAX phases is caused by the formation, growth and collapse of unstable, or incipient, kink bands.
The crystalline transition from the non-MAX competing phases to Ti2AlC MAX phase was found to appear in the region of 600 °C 700 °C.
MAX phases have been suggested to be applicable in the next generation nuclear reactors for their advantages in thermal/mechanical properties at high temperatures and radiation damage resistance.
No MAX-phase was observed in this temperature region.
The bulk solids of MAX phases can be prepared from starting materials or pre-synthesized MAX powders at slightly higher temperature and longer sintering time.
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