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Effect of elemental nano boron on the transformation and morphology of boron carbide (B4C) powders synthesized from polymeric precursors

机译:元素纳米硼对聚合物前体合成的硼碳化硼(B4C)粉末的转化和形貌的影响

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摘要

This paper reports a modified sol-gel approach to synthesize sub-micron sized B4C particles with controlled morphology and without residual phases, such as boron oxide and amorphous carbon. The modification of polymeric gel network by utilization of elemental nano boron particles changed the thermal degradation behaviour of the gel, enhanced the rate of boron carbide transformation and shifted the transformation temperature to lower heat treatment temperature. Mean particle size of transformed B4C is also reduced as a result of elemental boron addition to gel structure. As a result of elemental boron addition, the amount of residual phases greatly reduced. Therefore, first time to date, it is shown that elemental nano boron has an active role in the reduction of boron oxide as an additional reducing agent besides carbon as well as seeding particles, enhancing crystallization of B4C through the ease of transformation process of B-O-C precursors.
机译:本文报道了一种改性溶胶 - 凝胶方法以合成具有受控形态的亚微米尺寸的B4C颗粒,没有残留相,例如氧化硼和无定形碳。 通过利用元素纳米硼颗粒的聚合物凝胶网络改变凝胶的热劣化行为,增强了碳化硼转化的速率,使转变温度变化到较低的热处理温度。 由于对凝胶结构的元素硼制成,转化的B4C的平均粒度也降低。 由于元素硼添加,残留阶段的量大大降低。 因此,首次迄今为止,表明元素纳米硼在除碳以及播种颗粒之外的附加还原剂的氧化硼还原中具有积极作用,通过Boc前体的易于转化过程,增强B4C的结晶 。

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