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Comparison study of silicon carbide coatings produced at different deposition conditions with use of high temperature nanoindentation

机译:使用高温纳米压痕在不同沉积条件下生产的碳化硅涂层的比较研究

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摘要

The elastic modulus and hardness of different silicon carbide (SiC) coatings in tristructural-isotropic (TRISO) fuel particles were measured by in situ high temperature nanoindentation up to 500 °C. Three samples fabricated by different research institutions were compared. Due to varied fabrication parameters the samples exhibited different grain sizes and one contained some visible porosity. However, irrespective of the microstructural features in each case the hardness was found to be very similar in the three coatings around 35 GPa at room temperature. Compared with the significantly coarser grained bulk CVD SiC, the drop in hardness with temperature was less pronounced for TRISO particles, suggesting that the presence of grain boundaries impeded plastic deformation. The elastic modulus differed for the three TRISO coatings with room temperature values ranging from 340 to 400 GPa. With increasing measurement temperature the elastic modulus showed a continuous decrease.
机译:通过高达500°C的原位高温纳米压痕测量了三向同性(TRISO)燃料颗粒中不同碳化硅(SiC)涂层的弹性模量和硬度。比较了不同研究机构制造的三个样本。由于制造参数的变化,样品表现出不同的晶粒尺寸,并且其中包含一些可见的孔隙度。但是,不论每种情况下的微观结构特征如何,发现室温下35 GPa左右的三种涂层的硬度都非常相似。与明显粗大的块状CVD SiC相比,TRISO颗粒的硬度随温度下降不明显,表明晶界的存在阻碍了塑性变形。三种TRISO涂层的弹性模量不同,室温范围为340至400GPa。随着测量温度的升高,弹性模量显示出连续降低。

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