Alumina-TiB2 is a hard ceramic composite with applications in aviation, aerospace and wear resistant tools. It can be manufactured in-situ through a highly exothermic aluminothermic self-sustaining reaction from the starting materials of Al, TiO2 and B2O3. In this paper, the effect of vibration ball milling on the particle size reduction and the reactivity enhancement of the Al–TiO2–B2O3 powder mixture is examined by XRD, SEM, EDS, DTA and particle analysis techniques. Measures for combating the stoichiometric inconsistencies deriving from the tendency of B2O3 to absorb atmospheric water, giving boric acid H3BO3, are implemented. Characterisation of the milled samples display Al microparticles with d(0.9) below 64 μm, coated with nano-parti...
Laser powder bed fusion is an emerging industrial technology, especially for metal and polymer appli...
A novel ultrasonic assisted in-situ stir mixing method, in which the reinforcements are synthesized ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
The present work reports on the preparation of Al2O3-TiO2 ceramics by high-energy ball milling and s...
AbstractAl2O3–TiB2 composites were synthesized using high-energy ball milling from starting powders ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
High-energy ball milling of Al2O3–13 wt% TiO2 and Al2O3–44 wt% TiO2 powders have been studied and mo...
This study has been conducted in order to improve several drawbacks in Al203 matrix composite such a...
Aluminium oxides or alumina (Al2O3) had been used widely in various high performance application sin...
The paper focusses on the phase and microstructural evolution in ceramic composite based on alumina ...
The in situ formation of TiB2 particulates via an interface reaction between Ti and FeB powders was...
In this study, a powder mixture of Al and TiO₂ was employed to investigate the milling process in a ...
In-situ synthesis of Al2O3/TiAl composite was carried out by mechanical milling of the pre-alloy Ti-...
Al2O3–TiB2 composites were synthesized using high-energy ball milling from starting powders containi...
ZrB2-Al2O3 nanocomposite powder was produced by aluminothermic reduction in Al/ZrO2/B2O 3 system. In...
Laser powder bed fusion is an emerging industrial technology, especially for metal and polymer appli...
A novel ultrasonic assisted in-situ stir mixing method, in which the reinforcements are synthesized ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
The present work reports on the preparation of Al2O3-TiO2 ceramics by high-energy ball milling and s...
AbstractAl2O3–TiB2 composites were synthesized using high-energy ball milling from starting powders ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
High-energy ball milling of Al2O3–13 wt% TiO2 and Al2O3–44 wt% TiO2 powders have been studied and mo...
This study has been conducted in order to improve several drawbacks in Al203 matrix composite such a...
Aluminium oxides or alumina (Al2O3) had been used widely in various high performance application sin...
The paper focusses on the phase and microstructural evolution in ceramic composite based on alumina ...
The in situ formation of TiB2 particulates via an interface reaction between Ti and FeB powders was...
In this study, a powder mixture of Al and TiO₂ was employed to investigate the milling process in a ...
In-situ synthesis of Al2O3/TiAl composite was carried out by mechanical milling of the pre-alloy Ti-...
Al2O3–TiB2 composites were synthesized using high-energy ball milling from starting powders containi...
ZrB2-Al2O3 nanocomposite powder was produced by aluminothermic reduction in Al/ZrO2/B2O 3 system. In...
Laser powder bed fusion is an emerging industrial technology, especially for metal and polymer appli...
A novel ultrasonic assisted in-situ stir mixing method, in which the reinforcements are synthesized ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...