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首页> 外文期刊>Ceramic Engineering and Science Proceedings >MODULUS AND HARDNESS OF NANOCRYSTALLINE SILICON CARBIDE AS FUNCTIONS OF GRAIN SIZE
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MODULUS AND HARDNESS OF NANOCRYSTALLINE SILICON CARBIDE AS FUNCTIONS OF GRAIN SIZE

机译:晶粒尺寸对纳米晶碳化硅的模量和硬度的影响

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摘要

This experimental investigation reports on the mechanical properties of nanocrystalline silicon carbide as a function of the crystallite size. Monolithic SiC samples are fabricated by controlled pyrolysis of a polymer precursor under an inert atmosphere. The degree of crystallization, and the resulting grain size, is controlled by varying the processing conditions. Subsequently, the modulus and hardness are determined using instrumented indentation. Meanwhile the microstructure is characterized using X-ray diffraction. The process yields grain sizes in the range of ~0-12 nm. It is seen that the presence of nanocrystalline domains in amorphous SiC significantly influences the modulus and hardness. A non-linear relationship is observed with optimal mechanical properties for a grain size of 3.5 nm.
机译:该实验研究报告了纳米晶体碳化硅的机械性能与微晶尺寸的关系。整体式SiC样品是通过在惰性气氛下控制聚合物前体的热解制备的。通过改变加工条件来控制结晶度和所得的晶粒尺寸。随后,使用仪器压痕确定模量和硬度。同时,使用X射线衍射对组织进行表征。该过程产生的晶粒尺寸在〜0-12 nm范围内。可以看出,非晶态SiC中纳米晶畴的存在显着影响模量和硬度。对于3.5 nm的晶粒,观察到具有最佳机械性能的非线性关系。

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