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首页> 外文期刊>Journal of the European Ceramic Society >Comminution of B4C powders with a high-energy mill operated in air in dry or wet conditions and its effect on their spark-plasma sinterability
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Comminution of B4C powders with a high-energy mill operated in air in dry or wet conditions and its effect on their spark-plasma sinterability

机译:B4C粉末的粉碎具有在干燥或潮湿条件下的空气中运行的高能轧机及其对火花血浆烧结性的影响

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The comminution of a typical submicrometre B4C powder with a high-energy mill (i.e., a shaker mill) operated in air in either a dry or a wet environment was investigated. It was found that dry shaker milling (i.e., high-energy ball-milling) is able to progressively refine the B4C particles to the nanoscale. While this is accompanied by oxidation and aggregation, these are not serious drawbacks. Wet shaker milling in methanol (i.e., conventional ball-milling) resulted only in a moderate B4C particle refinement with greater contamination by the milling tools, which limits its usefulness. It was also found that both dry and wet milling modify the B4C crystal structure, attributable to carbon enrichment. Consequently, dry shaker milling was found to be more recommendable than wet shaker milling to provide B4C starting powders with superior sinterability. A comparative densification study by spark-plasma sintering confirmed this recommendation, and also showed the usefulness of dry shaker milling to obtain refined B4C microstructures for structural applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了在干燥或湿环境中在空气中运行的高能磨机(即振动筛机)的典型子模谱仪B4C粉末的粉碎。发现干式振动器研磨(即,高能量球磨机)能够逐步细化B4C颗粒到纳米级。虽然这伴随着氧化和聚合,但这些不是严重的缺点。湿振动器在甲醇中研磨(即常规球磨机),仅导致铣削工具更大污染的中等B4C颗粒细化,这限制了其有用性。还发现干湿铣削均可改变B4C晶体结构,可归因于碳富集。因此,发现干振动筛铣削比湿式振动筛铣刀更加推荐,以提供具有优异烧结性的B4C起始粉末。火花血浆烧结的比较致密化研究证实了这一建议书,并显示了干振荡器研磨的有用性,以获得用于结构应用的精制B4C微观结构。 (c)2017 Elsevier Ltd.保留所有权利。

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