Self-propagating High temperature Synthesis (SHS) in the high activation energy regime [PDF]
We derive the precise limit of SHS in the high activation energy scaling suggested by B.J. Matkowksy-G.I. Sivashinsky in 1978 and by A. Bayliss-B.J. Matkowksy-A.P. Aldushin in 2002. In the time-increasing case the limit turns out to be the Stefan problem
Monneau, Regis, Weiss, G. S.
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Microstructure and properties of porous Si3N4 ceramics by gelcasting-self-propagating high-temperature synthesis (SHS) [PDF]
AbstractPorous silicon nitride ceramics have attracted a considerable attention due to their excellent overall performance, but poor porosity homogeneity and structural shrinkage induced by prolonged high temperature sintering limit its further application.
Shile Chen +4 more
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Theoretical Calculation of Self-Propagating High-Temperature Synthesis (SHS) Preparation of AlB12 [PDF]
Although experimental results of preparing AlB12 by self-propagating high-temperature synthesis using Mg-B2O3-Al2O3 as raw material has been studied, the theoretical calculations for the preparation of AlB12 have not been examined as thoroughly. In this article, for the first time, we report on the study of theoretical calculation and the adiabatic ...
Chao Wang +6 more
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Biocompatibility and Clinical Application of Porous TiNi Alloys Made by Self-Propagating High-Temperature Synthesis (SHS). [PDF]
Porous TiNi alloys fabricated by self-propagating high-temperature synthesis (SHS) are biomaterials designed for medical application in substituting tissue lesions and they were clinically deployed more than 30 years ago. The SHS process, as a very fast and economically justified route of powder metallurgy, has distinctive features which impart special
Yasenchuk Y +11 more
europepmc +4 more sources
Preparation of AlB12 Powder by Self-Propagating High-Temperature Synthesis (SHS) [PDF]
Self-propagating high-temperature synthesis (SHS) process is used to prepare AlB12. The phase analysis results of preparing AlB12 with Al and B2O3 as raw materials show that: under air and argon conditions, the self-propagating and acid-washed self-propagating powders all have α-Al2O3 impurities; Mg, Al and B2O3 are used as raw materials.
Chao Wang +6 more
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Preparation of Aluminium dodecaboride (AlB12) powder by Self-propagating High-temperature Synthesis (SHS) [PDF]
Self-propagating High-temperature Synthesis (SHS) process is used to prepare Aluminium dodecaboride (AlB12). The phase analysis results of preparing AlB12 with Al and B2O3 as raw materials show that under air and argon conditions, the self-propagating and acid-washed self-propagating powders all have α-Al2O3 impurities when Mg, Al and B2O3 are used as ...
Wang Chao +6 more
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Luminescent properties of fine-dispersed self-propagating high-temperature synthesized ZnS:Cu,Mg
The influence of magnesium impurities on luminescent properties of ZnS:Cu,Mg using obtained by self-propagating high-temperature synthesis (SHS) has been investigated.
Yu.Yu. Bacherikov +6 more
doaj +1 more source
A two-stage approach of manufacturing FeAl40 iron aluminides by self-propagating synthesis and pressureless sintering [PDF]
This is an Accepted Manuscript of an article published by Taylor & Francis Group in Powder Metallurgy on 11 June 2018, available online at https://doi.org/10.1080/00325899.2018.1478778.
Chrysanthou, Andreas, Zhang, Zhenxue
core +3 more sources
Purpose. The work is aimed at building an algorithm and coating processing on structural steel, its detailed control at each stage and analysis in obtained material physical and technical characteristics. Methodology. The research of the mechanism of obtaining coatings, as well as operational tests of the obtained samples, computer simulation and ...
Yurii Belokon +3 more
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Self-propagating High Temperature Synthesis of TiB2
Self-propagating high temperature synthesis (SHS) is a very important technique for the synthesis of high technology ceramics, metals and alloys. SHS parameters of TiB2 were carried out in this study. Mg stoichiometry as reductant, process atmosphere and
Turan Ahmet +2 more
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