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Chemistry and inherent viscosity of glasses segregated at grain boundaries of silicon nitride and silicon carbide ceramics

机译:在氮化硅和碳化硅陶瓷晶界偏析的玻璃的化学性质和固有粘度

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Electron microscopy/microanalysis and internal friction characterizations have been concurrently used to quantitatively assess both the morphology/chemistry and the inherent viscosity of residual high-SiO2 glasses segregated to grain boundaries of polycrystalline Si3N4 and SIC ceramics. The anelastic relaxation peak of internal friction, arising from the viscous slip along grain boundaries wetted by glass, was collected in a plot of internal friction vs temperature. The peak was analyzed with respect to its shift upon changing the oscillation frequency, in order to assess the inherent viscosity of the intergranular glass film. From the internal friction analysis and the precise information of both thickness and chemistry of the grain-boundary him obtained by electron microscopy, a quantitative determination of the intergranular viscosity and the activation energy for viscous flow was attempted. The viscosity of intergranular high-SiO2 glasses as a function of temperature is compared to the literature data for bulk SiO2 glass and discussed in terms of the respective anion structure of the glass. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 19]
机译:电子显微镜/显微分析和内部摩擦特性已被同时用于定量评估形态学/化学和分离到多晶Si3N4和SIC陶瓷晶界的残余高SiO2玻璃的固有粘度。在内部摩擦与温度的关系图中,收集了内部摩擦的无弹性松弛峰,该峰是由沿着玻璃润湿的晶界的粘性滑移引起的。分析峰在改变振荡频率时的偏移,以评估晶间玻璃膜的比浓对数粘度。从内部摩擦分析和通过电子显微镜获得的晶界的厚度和化学的精确信息,试图定量测定晶间粘度和粘性流的活化能。将晶间高SiO2玻璃的粘度随温度的变化与大块SiO2玻璃的文献数据进行比较,并根据玻璃的各自阴离子结构进行讨论。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:19]

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