Download Advanced Ceramic Coatings and Interfaces IV (Ceramic by Hua-Tay Lin, Dongming Zhu, Tatsuki Ohji, Andrew Wereszczak PDF
By Hua-Tay Lin, Dongming Zhu, Tatsuki Ohji, Andrew Wereszczak
This quantity is an invaluable source for realizing the main necessary facets of complex ceramic coatings and interfaces. Containing twelve contributed papers from the symposium, issues comprise vibration damping coatings, thermal and environmental barrier coating processing, checking out and lifestyles modeling, non-destructive overview, multifunctional coatings and interfaces, highlighting the cutting-edge ceramic coatings applied sciences for varied severe engineering functions.
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SEM analysis allowed to make a preliminary measurement of semiconducting property of the glaze by the coating technique showed in Fig. 3. Figure 6 and Figure 7 show two distinct behaviors related to charging-up phenomena. In Figure 6 (standard glaze) it is not possible to analyze the uncoated surface, because it is charging-up. Conversely, in the semiconductor glaze (Figure 7) the surface can be observed in detail since no charging-up phenomena are present and the semiconductor glaze can carry the small current (80 mA) generated by SEM.
Mater. , 18, 878-884 (2003). 25 Choi, S. , Crack healing in silicon nitride due to oxidation, Ceram. Eng. Sci. Proc. 12, 2190-2202(1991). 26 Lewis, M. , Oxidation mechanisms in Si-Al-O-N ceramics, J. Mater. , 15,443-448 (1980). 27 Floyd, R. , Effect of composition and crystal size of alumina ceramics on metal-to ceramic bond strength, Am. Ceram. Soc. , 42,65-70, (1963) 32 ■ Advanced Ceramic Coatings and Interfaces IV Advanced Ceramic Coatings and Interfaces IV Edited by Dongming Zhu and Hua-Tay Lin Copyright 02010 The American Ceramic Society APPLICATION OF SEMICONDUCTOR CERAMIC GLAZES TO HIGH-VOLTAGE CERAMIC INSULATORS André L.
Already showed the positive effect of MgO on the DCB substrate quality as well as Kim et al. for the DCB process on MgO-doped SÌ3N4 [10,8]. Also in this study, un-coated, oxidised Mg-SN substrates exhibited a higher bonding strength than Y-SN substrates (Tab. IV). Nevertheless, the reason for the positive effect of MgO is not clear so far. It can be supposed, like for Y203+Al203-doped SÌ3N4, that the bonding mechanism is based on the reaction between the Cu-O eutectic melt and the glassy phase , But then the bonding results for Y-SN substrates should have been better than those of Mg-SN substrates.