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GLASS-CERAMIC COMPOSITE MATERIAL
An easily-administered technology which demonstrates the intrinsic thermal conductivity improvement effect by addition of non-oxide system compound crystal phase (filler particles) and makes it possible to sufficiently raise the thermal conductivity of a glass-ceramics composite material is provided. In the glass phase which constitutes a glass-ceramics composite material, the quantity of aluminum oxide (Al 2 O 3 ) component is increased under a condition where at least either of zinc oxide (ZnO) component or magnesium oxide (MgO) component exists in a predetermined quantity or more. Thereby, the unintended reaction between a non-oxide system compound crystal phase and a glass phase can be suppressed, and the intrinsic thermal conductivity improvement effect by addition of non-oxide system compound crystal phase (filler particles) can be demonstrated.
GLASS-CERAMIC COMPOSITE MATERIAL
An easily-administered technology which demonstrates the intrinsic thermal conductivity improvement effect by addition of non-oxide system compound crystal phase (filler particles) and makes it possible to sufficiently raise the thermal conductivity of a glass-ceramics composite material is provided. In the glass phase which constitutes a glass-ceramics composite material, the quantity of aluminum oxide (Al 2 O 3 ) component is increased under a condition where at least either of zinc oxide (ZnO) component or magnesium oxide (MgO) component exists in a predetermined quantity or more. Thereby, the unintended reaction between a non-oxide system compound crystal phase and a glass phase can be suppressed, and the intrinsic thermal conductivity improvement effect by addition of non-oxide system compound crystal phase (filler particles) can be demonstrated.
GLASS-CERAMIC COMPOSITE MATERIAL
GLASKERAMIK-VERBUNDMATERIAL
MATÉRIAU COMPOSITE DE VERRE ET DE CÉRAMIQUE
YANO SHINSUKE (Autor:in) / TANAKA YOSHIHIRO (Autor:in) / NANATAKI TSUTOMU (Autor:in) / YAMAGUCHI HIROFUMI (Autor:in) / SHIMOGAWA NATSUMI (Autor:in) / OHIRA NAOTO (Autor:in)
20.04.2016
Patent
Elektronische Ressource
Englisch
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