TiB2-Based Composites for Ultra-High-Temperature Devices, Fabricated by SHS, Combining Strong and Weak Exothermic Reactions
Author:
Publisher
MDPI AG
Subject
General Materials Science
Link
http://www.mdpi.com/1996-1944/6/5/1903/pdf
Reference43 articles.
1. The Effects of Residual Stress Distributions on Indentation-induced Microcracking in B4C-TiB2 Eutectic Ceramic Composites
2. Modeling of thermal explosion in constrained dies for B4C–Ti and BN–Ti powder blends
3. In SituSynthesis of Ceramic Composite Materials in the Ti-B-C-N System by a Mechanically Induced Self-Sustaining Reaction
4. Interface interaction in the (B4C + TiB2)/Cu system
5. In situ HIP synthesis of TiB2/SiC ceramic composites;Zhu;J. Mater. Process. Technol.,1999
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1. Influence of Mechanical Activation and Impurity Gas Release on the Macrokinetics of Combustion and the Product Structure in the Ti–C–B System for Pressed Compacts and Granulated Mixtures;Russian Journal of Physical Chemistry B;2024-08
2. B4C Composites with a TiB2-C Core–Shell Microstructure Produced by Self-Propagating High-Temperature Synthesis-Assisted Spark Plasma Sintering;The Journal of Physical Chemistry C;2022-11-18
3. Production of B4C-TiB2 composite powder by self-propagating high-temperature synthesis;Journal of the Australian Ceramic Society;2022-03-25
4. Adhesion strength, stability and electronic properties of TiB2 reinforced copper matrix composites: A first principles study;Physica B: Condensed Matter;2022-01
5. Thermal stability of n-TiB2 reinforced α-Al2O3/SiC based nanocomposite sintered at 1600˚C using TG/DTA under controlled Ar atmosphere;Journal of Engineering Research;2021-12-04
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