Please use this identifier to cite or link to this item: https://doi.org/10.3390/ma10121348
Title: Ti reactive sintering of electrically conductive Al2O3-TiN composite: Influence of Ti particle size and morphology on electrical and mechanical properties
Authors: Zhai, W
Song, X
Li, T
Yu, B
Lu, W 
Zeng, K 
Keywords: Aluminum compounds
Aspect ratio
Ball milling
Mechanical properties
Milling (machining)
Sintering
Solvents
Titanium nitride
Electrical and mechanical properties
Electrical conductors
Electrical percolation threshold
Electrically conductive
Mechanical reinforcement
Percolation theory
Reactive sintering
Tin composites
Particle size
Issue Date: 2017
Publisher: MDPI AG
Citation: Zhai, W, Song, X, Li, T, Yu, B, Lu, W, Zeng, K (2017). Ti reactive sintering of electrically conductive Al2O3-TiN composite: Influence of Ti particle size and morphology on electrical and mechanical properties. Materials 10 (12) : 1348. ScholarBank@NUS Repository. https://doi.org/10.3390/ma10121348
Abstract: In the current study, Al2O3-TiN composites were successfully fabricated with various particle sizes (10, 20, 30, and 50 ?m) and concentrations (5, 10, 15, and 20 vol %) via a novel ball milling + Ti reactive sintering process. By applying the reactive sintering, Ti powders will transform into TiN particles, which act as mechanical reinforcements and electrical conductors in the Al2O3 matrix. The ball milling process alters the Ti powder morphology from a low-aspect-ratio sphere into a high-aspect-ratio disc, which reduces the electrical percolation threshold value from 29% to 15% in the current setup. However, such a threshold value is insensitive to the particle size. Meanwhile, the Ti particle size has a significant influence on the material's mechanical properties. A small particle size results in less porosity and hence higher flexural strength of the composite. © 2017 by the authors.
Source Title: Materials
URI: https://scholarbank.nus.edu.sg/handle/10635/174415
ISSN: 1996-1944
DOI: 10.3390/ma10121348
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