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首页> 外文期刊>Journal of the European Ceramic Society >Enhancing the spark-plasma sinterability of B4C nanopowders via room-temperature methylation induced purification
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Enhancing the spark-plasma sinterability of B4C nanopowders via room-temperature methylation induced purification

机译:通过室温甲基化诱导纯化增强B4C纳米粉粉的火花血浆烧结性

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B4C nanopowders were subjected to room-temperature methylation to assess its possible beneficial effect on single-step cycle spark-plasma sinterability. It was found that methylation removes the oxidic impurities, thus chemically purifying the B4C nanopowders without nanoparticle growth. Next, it was determined that the temperature of spark-plasma sintering optimizing the microstructure and mechanical properties is similar to 1500 degrees C, below which there is insufficient densification and above which there is marked grain growth, scenarios both detrimental for the hardness of these B4C ceramics. It was also found that the so-purified nanopowders are more sinterable than the as-received nanopowders, and also than the same nanopowders purified by annealing under an inert atmosphere. This greater sinterability resulting from the elimination of the oxidic impurities is attributable to the enhanced grain-boundary diffusion favouring the densification. Thanks to the methylation, dense, nano-grained, superhard B4C ceramics can thus be fabricated with greater energy efficiency. Implications of interest for the ceramics community are discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对B4C纳米粉粉进行室温甲基化,以评估其对单步循环火花血浆烧结性可能的有益效果。发现甲基化除去氧化杂质,从而在没有纳米颗粒生长的情况下化学净化B4C纳米粉末。接下来,确定火花血浆烧结的温度优化微观结构和机械性能类似于1500℃,下面的致密化不足,并且上面有明显的晶粒生长,方案对于这些B4C的硬度有害陶瓷。还发现所纯化的纳米粉末比由接收的纳米粉末更甜味,并且比在惰性气氛下通过退火纯化的相同纳米粉末。由于消除氧化杂质而导致的这种较大的烧结性可归因于增强的晶界扩散,偏好致密化。由于甲基化,致密,纳米颗粒,超硬B4C陶瓷因此可以以更大的能量效率制造。讨论了陶瓷群落感兴趣的含义。 (c)2016 Elsevier Ltd.保留所有权利。

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