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Effect of grain size on microstructure, properties and surface roughness of reaction bonded SiC ceramics

机译:晶粒尺寸对反应结合SiC陶瓷微观结构,性能和表面粗糙度的影响

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Silicon carbide (SiC) based ceramics have received significant study for optical applications due to high specific stiffness, high thermal conductivity, and low coefficient of thermal expansion (CTE). Reaction bonded SiC ceramics, which are composites of SiC and Si, are of particular interest due to large size and complex shape capability. The behavior of these ceramics is very much affected by the grain size of the SiC phase. The present work examines SiC grain sizes ranging from 6 to 50 μm, with the goal of optimizing properties and finishing capability for optical uses. Microstructures are reviewed; physical, mechanical and thermal properties are presented; and post-polishing surface roughness data are provided. In particular, results demonstrate that properties can be tailored by SiC particle size selection, and that measureable enhancement in surface roughness can be achieved by moving to smaller SiC grain size.
机译:由于碳化硅(SiC)陶瓷具有较高的比刚度,较高的导热性和较低的热膨胀系数(CTE),因此已在光学应用方面进行了大量研究。由于SiC和Si的复合材料,反应结合SiC陶瓷由于尺寸大和形状复杂而特别受关注。这些陶瓷的行为在很大程度上受到SiC相晶粒尺寸的影响。本工作研究了6至50μm的SiC晶粒尺寸,目的是优化光学用途的性能和精加工能力。审查了微观结构;介绍了物理,机械和热性能;提供抛光后的表面粗糙度数据。尤其是,结果表明,可以通过选择SiC颗粒尺寸来调整性能,并且可以通过移动到更小的SiC颗粒尺寸来实现表面粗糙度的可测量提高。

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