Al2O3–ZrB2 in situ composites of 97% of theoretical density were successfully fabricated by a novel self-propagating high temperature synthesis (SHS) dynamic compaction, using less expensive raw materials zirconium oxide, boron oxide, and aluminium. The process is fast, energy efficient, where no furnace sintering is required. The process inhibits and controls the grain growth and microstructure. The densification behaviour and correlation with microstructure of the SHS dynamic compacts were compared with the furnace sintered composite samples where the composite powder was prepared by SHS process. The furnace sintered samples showed coarser grain growth and maximum density of 94.5% of theoretical density was achieved. The SHS dynamic compa...
The combination of the Self-propagating High-temperature Synthesis (SHS) technique and the Spark Pl...
Various aspects of insitu formation of Al2O3–SiC composites by the self-propagating high-temperature...
A novel method for the fabrication of fully dense ZrB2-ZrC-SiC Ultra High Temperature Ceramic (UHTC)...
A detailed investigation of the effect of alumina diluent on the Al2O3-TiB2/ZrB2 composite by self p...
Synthesis of a ZrB2-Al2O3 in-situ composite powder by the self-propagating, high-temperature synthes...
An investigation on the effect of titanium as diluent (5–20 wt%) on the Al2O3–ZrB2 composite by self...
A detailed investigation on sintering behaviour of SHS produced ZrB2–Al2O3 composite was carried out...
A time-resolved X-ray diffraction study during the formation of a zirconium diboride (ZrB2)-alumina ...
Various aspects of in situ formation of Al2O3–SiC composites by the self-propagating high-temperatur...
Preparation of TiB2-Al2O3 and CrB2-Al2O3 composites with a broad range of phase composition was con...
Over the last few years, our research group at National Metallurgical Laboratory Jamshedpur had ...
ZrB2-Al2O3 nanocomposite powder was produced by aluminothermic reduction in Al/ZrO2/B2O 3 system. In...
Self-propagating high-temperature synthesis (SHS) has been used to prepare many refractory materials...
Abstract ZrB 2 -Al 2 O 3 nanocomposite powder was produced by aluminothermic reduction in Al/ZrO 2 /...
In-situ metal matrix composites (MMCs) offer significant advantages over conventional MMCs from both...
The combination of the Self-propagating High-temperature Synthesis (SHS) technique and the Spark Pl...
Various aspects of insitu formation of Al2O3–SiC composites by the self-propagating high-temperature...
A novel method for the fabrication of fully dense ZrB2-ZrC-SiC Ultra High Temperature Ceramic (UHTC)...
A detailed investigation of the effect of alumina diluent on the Al2O3-TiB2/ZrB2 composite by self p...
Synthesis of a ZrB2-Al2O3 in-situ composite powder by the self-propagating, high-temperature synthes...
An investigation on the effect of titanium as diluent (5–20 wt%) on the Al2O3–ZrB2 composite by self...
A detailed investigation on sintering behaviour of SHS produced ZrB2–Al2O3 composite was carried out...
A time-resolved X-ray diffraction study during the formation of a zirconium diboride (ZrB2)-alumina ...
Various aspects of in situ formation of Al2O3–SiC composites by the self-propagating high-temperatur...
Preparation of TiB2-Al2O3 and CrB2-Al2O3 composites with a broad range of phase composition was con...
Over the last few years, our research group at National Metallurgical Laboratory Jamshedpur had ...
ZrB2-Al2O3 nanocomposite powder was produced by aluminothermic reduction in Al/ZrO2/B2O 3 system. In...
Self-propagating high-temperature synthesis (SHS) has been used to prepare many refractory materials...
Abstract ZrB 2 -Al 2 O 3 nanocomposite powder was produced by aluminothermic reduction in Al/ZrO 2 /...
In-situ metal matrix composites (MMCs) offer significant advantages over conventional MMCs from both...
The combination of the Self-propagating High-temperature Synthesis (SHS) technique and the Spark Pl...
Various aspects of insitu formation of Al2O3–SiC composites by the self-propagating high-temperature...
A novel method for the fabrication of fully dense ZrB2-ZrC-SiC Ultra High Temperature Ceramic (UHTC)...