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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation of B4C-SiC-HfB2 nanocomposite by mechanically activated combustion synthesis
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Preparation of B4C-SiC-HfB2 nanocomposite by mechanically activated combustion synthesis

机译:通过机械活化燃烧合成制备B4C-SiC-HFB2纳米复合材料

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摘要

The B4C-SiC-HfB2 nanocomposite was synthesized by mechanically activated self-propagating high-temperature synthesis. The starting materials, including B2O3, HfO2, Mg, Si and C, were mixed to form the composite with 1:1:1 and 5:4:1 molar ratio. The powders were synthesized in the tubular furnace at 900 degrees C and the spark plasma sintering (SPS) furnace at 575 degrees C. The XRD pattern of the synthesized sample according to form the composite with 1:1:1 molar ratio showed the presence of HfB2, MgO and HfO2. The phase and microstructural analyses verified that the leached sample contained SiC, HfB2 and HfO2. Thus, the B4C could not be successfully synthesized when the 1:1:1 M ratio was chosen. However, the B4C-SiC-HfB2 composite was successfully synthesized by choosing the 5:4:1 molar ratio with a combustion reaction after optimizing activation energy to 6h. The B4C-SiC-HfB2 nanocomposite could also be formed by SPS at 575 degrees C, but some graphite remained in the system.
机译:通过机械活化的自蔓延高温合成合成B4C-SiC-HFB2纳米复合材料。 将含有B2O3,HFO 2,Mg,Si和C的原料混合以形成复合材料,用1:1:1和5:4:1摩尔比形成。 在900℃下在管状炉中合成粉末,并在575℃下进行火花等离子体烧结(SPS)炉。合成样品的XRD图案根据1:1:1摩尔比形成复合材料显示出存在 HFB2,MgO和HFO2。 相和微观结构分析证明了浸出的样品含有SiC,HFB2和HFO2。 因此,选择1:1:1M的比率时不能成功地合成B4C。 然而,通过在优化活化能量至6h后,通过选择5:4:1摩尔比成功合成B4C-SiC-HFB2复合材料。 B4C-SiC-HFB2纳米复合材料也可以通过SPS在575℃下形成,但是系统仍然存在一些石墨。

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