Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phase formation of cubic silicon carbide from reactive silicon–carbon multilayers

View through CrossRef
AbstractSilicon carbide layers were fabricated using self-propagating high-temperature synthesis of binary silicon-carbon based reactive multilayers. The silicon and carbon bilayers were fabricated with two different bilayer thicknesses. They are deposited by magnetron sputtering in an alternating layer system with a total thickness of 1 μm. The entire system is annealed by rapid thermal annealing at different temperatures ranging from 500 to 1100 °C. From XRD analysis we could find that the formation of the silicon carbide phase was initiated from 700 °C. With increasing bilayer thickness the silicon carbide phase formation was partially suppressed by the silicon recrystallization due to resulting lower carbon diffusion into silicon. The transformation process proceeds in a four-step process: densification/recrystallization, interdiffusion, nucleation and transformation. From this, it was noted that when compared to low bilayer thickness samples, the formation of the silicon carbide phase is delayed with increasing bilayer thickness and needs higher reaction initiation temperatures. Graphical abstract
Title: Phase formation of cubic silicon carbide from reactive silicon–carbon multilayers
Description:
AbstractSilicon carbide layers were fabricated using self-propagating high-temperature synthesis of binary silicon-carbon based reactive multilayers.
The silicon and carbon bilayers were fabricated with two different bilayer thicknesses.
They are deposited by magnetron sputtering in an alternating layer system with a total thickness of 1 μm.
The entire system is annealed by rapid thermal annealing at different temperatures ranging from 500 to 1100 °C.
From XRD analysis we could find that the formation of the silicon carbide phase was initiated from 700 °C.
With increasing bilayer thickness the silicon carbide phase formation was partially suppressed by the silicon recrystallization due to resulting lower carbon diffusion into silicon.
The transformation process proceeds in a four-step process: densification/recrystallization, interdiffusion, nucleation and transformation.
From this, it was noted that when compared to low bilayer thickness samples, the formation of the silicon carbide phase is delayed with increasing bilayer thickness and needs higher reaction initiation temperatures.
Graphical abstract.

Related Results

Silicon Carbide
Silicon Carbide
AbstractSilicon carbide, SiC, is a crystalline material having a color that varies from nearly clear through pale yellow or green to black, depending on the amount of impurities. I...
Mechanical Study of Aluminium -Silicon Carbide -Tungsten Carbide Hybrid Composite Synthesized Through Powder Metallurgy Technique
Mechanical Study of Aluminium -Silicon Carbide -Tungsten Carbide Hybrid Composite Synthesized Through Powder Metallurgy Technique
In this study, powder metallurgy is used to create hybrid metal matrix alloys made of aluminium-silicon carbide -tungsten carbide. Aluminium metal matrix composites are now vastly ...
Carbides, Cemented
Carbides, Cemented
AbstractCemented carbides belong to a class of hard, wear‐resistant, refractory materials in which the hard carbides of Group 4–6 (IVB‐VIB) metals are bound together or cemented by...
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Modern plant tissues are often processed for phytolith analysis. They represent a fundamental source of comparison for archeological and palaeoenvironmental phytolith assemblages; ...
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v2
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v2
Modern plant tissues are often processed for phytolith analysis. They represent a fundamental source of comparison for archeological and palaeoenvironmental phytolith assemblages; ...
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Phytolith extraction and counting procedure for modern plant material rich in silica skeletons v1
Modern plant tissues are often processed for phytolith analysis. They represent a fundamental source of comparison for archeological and palaeoenvironmental phytolith assemblages; ...
ATTAINMENT OF PHASE EQUILBRIUM IN MULTILAYERS
ATTAINMENT OF PHASE EQUILBRIUM IN MULTILAYERS
Structural, phase and chemical stabilities of multilayers Mo-Si, MOSi2- Si, W-Si, WSi2-Si, Cr-Sc, W-Sc, Mo-B4C, Mo−(B+C), Mo2B5-B4C, Cr3C2-C, TiC-C, Ti-Be and others were studied i...
Influence of pretreatment of SiC on microstructure and properties of SiCp/A390
Influence of pretreatment of SiC on microstructure and properties of SiCp/A390
In this paper, two pretreatment methods of silicon carbide (SiC) particles were adopted: washing by hydrochloric acid (HCl) and high-temperature oxidation after washing by hydrochl...

Back to Top