透過型電子顕微鏡観察と内部摩擦解析の連携 : セラミックス粒界の性質を定量化するための有効な手法
スポンサーリンク
概要
- 論文の詳細を見る
Three different non-oxide ceramics, Si_3N_4, SiAlON, and SiC were characterized with respect to their high-temperature micromechanical deformation behavior employing both transmission electron microscopy and the internal friction technique. The latter method was utilized to gain a direct measure of the high-temperature response of the respective material, i.e., the effect of the interfacial glass phase commonly observed in liquid-phase sintered ceramics on externally applied shear stress. Transmission electron microscopy provides complementary information about the structure and chemistry of internal grain boundaries, which are known to dominate the high-temperature mechanical behavior of the bulk ceramic polycrystal. In addition, the presence and distribution of amorphous or crystalline secondary phases were characterized by electron microscopy. It is shown that, apart from the overall microstructure, the interface structure and/or the local chemical composition is the main parameter affecting the internal friction behavior. As a consequence, this technique allows one to determine the effective interface viscosity of ceramic polycrystals and to reveal as to whether a bimodal grain-boundary structure has developed, e.g., if both wetted and non-wetted interfaces are present, as is shown for the SiC ceramic.
- 1999-09-01
著者
-
Pezzotti Giuseppe
Department Of Materials Kyoto Institute Of Technology
-
Kleebe Hans-joachim
Materials Research Institute(ima-i) University Of Bayreuth
-
Pezzotti Giuseppe
Department Of Chemistry And Materials Technology Kyoto Institute Of Technology Faculty Of Materials
-
Pezzotti Giuseppe
Department of Materials, Kyoto Institute of Technology
関連論文
- 透過型電子顕微鏡観察と内部摩擦解析の連携 : セラミックス粒界の性質を定量化するための有効な手法
- アルミナ/ヘキサアルミネート複合体の微構造と疑似体液浸積前後における機械的性質
- Na_3PO_4添加ハイドロキシアパタイトの微細組織とマイクロクラックの生成
- Manufacture and bioactivity of tough hydroxyapatite/nylon hybrid composites
- 生体セラミックス : 作製方法と機械的特性評価