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首页> 外文期刊>Materials transactions >Low-Temperature Synthesis and Mechanical Properties of SiC Porous Granules from Activated Charcoal with a Na Flux
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Low-Temperature Synthesis and Mechanical Properties of SiC Porous Granules from Activated Charcoal with a Na Flux

机译:活性炭含Na助熔剂的SiC多孔颗粒的低温合成及力学性能

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SiC porous granules were synthesized from activated granular charcoal and Si powder at 973 K by using a Na flux. The SiC granules maintained the shape of the charcoal with a dimension of about 5 mm in diameter and 7-10 mm in length. X-ray diffraction showed the structure of the formed SiC to be cubic beta-type. Agglomerates of a few dozen nm of SiC grains and an electron diffraction ring pattern of beta-SiC were observed with a transmission electron microscope. A micropore size distribution of < 4 nm and mesopores in the range of 20-40 nm were shown by a nitrogen adsorption technique. The SiC granules had a specific surface area of 3.4 +- 1.0 m~2/g and a pore volume of 0.006 +- 0.002 cm~3/g. The fracture stress of the SiC porous granules was evaluated to be 47 MPa by a compressive test at room temperature. The Vickers hardness of the granule surface was 13.1 +- l.0 GPa.
机译:使用Na助熔剂,由活性炭和Si粉在973 K下合成SiC多孔颗粒。 SiC颗粒保持直径为约5mm,长度为7-10mm的木炭的形状。 X射线衍射显示所形成的SiC的结构为立方β型。用透射电子显微镜观察到几十nm的SiC晶粒的团聚体和β-SiC的电子衍射环图案。通过氮吸附技术显示了<4 nm的微孔尺寸分布和20-40 nm范围的中孔。 SiC颗粒的比表面积为3.4±1.0m 2 / g,孔体积为0.006±0.002cm 3 / g。通过在室温下的压缩试验,将SiC多孔颗粒的断裂应力评估为47MPa。颗粒表面的维氏硬度为13.1±1.0GPa。

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