The susceptibility of Ti2AlN and Ti4AlN3 to high-temperature thermal dissociation in a dynamic environment of high-vacuum has been investigated using in situ neutron diffraction. Under high vacuum, these ternary nitrides decomposed above 1400°C through the sublimation of Al, and possibly Ti, to form a surface coating of TiNx (0.5 ≤ x ≤ 0.75). The kinetics of isothermal phase decomposition were modelled using the Avrami equation and the Avrami exponents (n) of isothermal decomposition of Ti2AlN and Ti4AlN3 were determined to be 0.62 and 0.18, respectively. The characteristics of thermal stability and phase transitions in Ti2AlN and Ti4AlN3 are compared in terms of the rate of decomposition, phase relations and microstructures. © 2010, Elsevi...
The susceptibility of MAX phases to thermal dissociation at 1300-1550 °C in high vacuum has been stu...
The role of pore microstructures on the susceptibility of MAX phases (Ti3SiC2, Ti3AIC2, TisAIC, Ti2A...
The susceptibility of four MAX phases (Ti2AlC, Cr2AlC, Ti3AlC2, and Ti3SiC2) to high-temperature the...
The susceptibility of two MAX phases (Ti2AlN and Ti4AlN3) to high-temperature thermal dissociation i...
The susceptibility of two MAX phases (Ti2AlN and Ti 4AlN3) to high-temperature thermal dissociation ...
The susceptibility of Ti2AlN to thermal dissociation at 1500–1800°C in high-vacuum has been studied ...
The susceptibility of Ti2AlN to thermal dissociation at 1500–1800 °C in high-vacuum has been studied...
A method for determining the kinetics of and the activation energy for the thermal dissociation of T...
A method for determining the kinetics of and the activation energy for the thermal dissociation of T...
The thermal stability of Ti2AlC at elevated temperature (1000–1550°C) in vacuum has been investigate...
The thermal stability of Ti(2)AlC at elevated temperature (1000–1550 °C) in vacuum has been investig...
The susceptibility of four MAX phases (Ti 2 AlC, Cr 2 AlC, Ti 3 AlC 2 , and Ti 3 SiC 2 ) to high-tem...
The susceptibility of MAX phases to thermal dissociation at 1300-1800 °C in high vacuum has been stu...
The role of pore microstructures on the susceptibility of MAX phases (Ti3SiC2, Ti3AlC2, Ti2AlC, Ti2A...
The susceptibility of MAX phases to thermal dissociation at 1300-1550 °C in high vacuum has been stu...
The susceptibility of MAX phases to thermal dissociation at 1300-1550 °C in high vacuum has been stu...
The role of pore microstructures on the susceptibility of MAX phases (Ti3SiC2, Ti3AIC2, TisAIC, Ti2A...
The susceptibility of four MAX phases (Ti2AlC, Cr2AlC, Ti3AlC2, and Ti3SiC2) to high-temperature the...
The susceptibility of two MAX phases (Ti2AlN and Ti4AlN3) to high-temperature thermal dissociation i...
The susceptibility of two MAX phases (Ti2AlN and Ti 4AlN3) to high-temperature thermal dissociation ...
The susceptibility of Ti2AlN to thermal dissociation at 1500–1800°C in high-vacuum has been studied ...
The susceptibility of Ti2AlN to thermal dissociation at 1500–1800 °C in high-vacuum has been studied...
A method for determining the kinetics of and the activation energy for the thermal dissociation of T...
A method for determining the kinetics of and the activation energy for the thermal dissociation of T...
The thermal stability of Ti2AlC at elevated temperature (1000–1550°C) in vacuum has been investigate...
The thermal stability of Ti(2)AlC at elevated temperature (1000–1550 °C) in vacuum has been investig...
The susceptibility of four MAX phases (Ti 2 AlC, Cr 2 AlC, Ti 3 AlC 2 , and Ti 3 SiC 2 ) to high-tem...
The susceptibility of MAX phases to thermal dissociation at 1300-1800 °C in high vacuum has been stu...
The role of pore microstructures on the susceptibility of MAX phases (Ti3SiC2, Ti3AlC2, Ti2AlC, Ti2A...
The susceptibility of MAX phases to thermal dissociation at 1300-1550 °C in high vacuum has been stu...
The susceptibility of MAX phases to thermal dissociation at 1300-1550 °C in high vacuum has been stu...
The role of pore microstructures on the susceptibility of MAX phases (Ti3SiC2, Ti3AIC2, TisAIC, Ti2A...
The susceptibility of four MAX phases (Ti2AlC, Cr2AlC, Ti3AlC2, and Ti3SiC2) to high-temperature the...