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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Consolidation via spark plasma sintering of HfB_2/SiC and HfB_2/HfC/SiC composite powders obtained by self-propagating high-temperature synthesis
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Consolidation via spark plasma sintering of HfB_2/SiC and HfB_2/HfC/SiC composite powders obtained by self-propagating high-temperature synthesis

机译:自蔓延高温合成获得的HfB_2 / SiC和HfB_2 / HfC / SiC复合粉末通过火花等离子体烧结进行固结

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摘要

HfB_2-SiC and HfB_2-HfC-SiC dense composites have been prepared by self-propagating high-temperature synthesis (SHS) followed by spark plasma sintering (SPS) without the addition of any sintering aid.Starting from Hf, B_4C, Si, and, when synthesizing the ternary system, also graphite powders, it was found that the SHS technique leads to the complete conversion of reactants to the desired products and the SPS allows for the full consolidation under the following optimal operating conditions: maximum dwell temperature (1800 deg C), total processing time (30 min) and applied pressure (20 MPa). The obtained ternary composite displayed relatively low resistance to oxidation while the binary product exhibited low and thermally stable oxidation rate up to 1450 deg C. In addition, the mechanical properties of both products are comparable to, and, in some cases better than, those related to analogous HfB_2-based composites prepared with other processing routes. Moreover, the required consolidation conditions (processing time, temperature, and pressure) resulted to be milder in this investigation.
机译:HfB_2-SiC和HfB_2-HfC-SiC致密复合材料是通过自蔓延高温合成(SHS)然后进行火花等离子烧结(SPS)而不添加任何烧结助剂而制备的。从Hf,B_4C,Si和,当合成三元体系(也包括石墨粉)时,发现SHS技术可将反应物完全转化为所需的产物,而SPS可在以下最佳操作条件下完全固结:最高保压温度(1800摄氏度) C),总处理时间(30分钟)和施加压力(20 MPa)。所获得的三元复合材料显示出相对较低的抗氧化性,而二元产物在1450℃以下的温度下具有较低且热稳定的氧化速率。此外,两种产物的机械性能与相关产品相当,在某些情况下还优于相关产品。用其他加工路线制备的类似的基于HfB_2的复合材料。此外,在这项研究中,所需的固结条件(加工时间,温度和压力)也较温和。

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