Rapid synthesis and consolidation of nanostructured Mg2SiO4–MgSiO3 composites by high frequency induction heated sintering

Rapid synthesis and consolidation of nanostructured Mg2SiO4–MgSiO3 composites by high frequency... Rapid synthesis and sintering of nanostructured MgSiO3–Mg2SiO4 composites was investigated via a high-frequency induction heating sintering process. The advantage of this process is that it enables very quick densification to near theoretical density and prohibition of grain growth in nanostructured materials. High-density nanostructured MgSiO3–Mg2SiO4 composites were produced by simultaneous application of 80 MPa pressure under an induced output power of 15 kW within 2 min. The grain sizes and hardness of MgSiO3–Mg2SiO4 composites were investigated. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Research on Chemical Intermediates Springer Journals

Rapid synthesis and consolidation of nanostructured Mg2SiO4–MgSiO3 composites by high frequency induction heated sintering

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Publisher
Springer Netherlands
Copyright
Copyright © 2011 by Springer Science+Business Media B.V.
Subject
Chemistry; Inorganic Chemistry; Catalysis; Physical Chemistry
ISSN
0922-6168
eISSN
1568-5675
D.O.I.
10.1007/s11164-011-0289-8
Publisher site
See Article on Publisher Site

Abstract

Rapid synthesis and sintering of nanostructured MgSiO3–Mg2SiO4 composites was investigated via a high-frequency induction heating sintering process. The advantage of this process is that it enables very quick densification to near theoretical density and prohibition of grain growth in nanostructured materials. High-density nanostructured MgSiO3–Mg2SiO4 composites were produced by simultaneous application of 80 MPa pressure under an induced output power of 15 kW within 2 min. The grain sizes and hardness of MgSiO3–Mg2SiO4 composites were investigated.

Journal

Research on Chemical IntermediatesSpringer Journals

Published: Jan 29, 2011

References

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