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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Synthesis of boron carbide powder in relation to composition and structural homogeneity of precursor using condensed boric acid-polyol product
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Synthesis of boron carbide powder in relation to composition and structural homogeneity of precursor using condensed boric acid-polyol product

机译:缩合硼酸-多元醇产物合成碳化硼粉末与前驱体组成和结构均匀性的关系

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摘要

Crystalline boron carbide (B4C) powder was synthesized by the carbothermal reduction of boron oxide (B2O3) using a condensed boric acid (HaBO3)-mannitol product. The condensed product was prepared by the dehydration condensation of H3BO3 and mannitol at several molar ratios. The composition of the precursor was controlled by thermal decomposition in air before the carbothermal reduction of the condensed product, which had a homogeneous structure but an excessive carbon component compared with that required for the carbothermal reduction. B4C powder with less free carbon could be synthesized by heat treatment at 1250 °C for 5 h in an Ar flow of the thermally decomposed product prepared from the condensed product by thermal decomposition at 400 °C for 3 h in air. Furthermore, the structural homogeneity of the precursor affected the B4C formation behavior at the low synthesis temperature. These results demonstrated that the compatibility of the composition, the dispersibility, and the homogeneity of the B2O3 and carbon components in the precursor, which was achieved by thermal decomposition of the condensed product in air, leads to the low-temperature synthesis of crystalline B4C powder using a condensed H3BO3-polyol product.
机译:使用缩合的硼酸(HaBO3)-甘露醇产物通过碳热还原氧化硼(B2O3)合成结晶碳化硼(B4C)粉末。通过H 3 BO 3和甘露醇在几种摩尔比下的脱水缩合反应来制备缩合产物。在冷凝产物的碳热还原之前,通过在空气中的热分解来控制前体的组成,该冷凝产物具有均匀的结构,但是与碳热还原所需的碳相比,碳组分过多。游离碳含量较低的B4C粉末可通过在空气中400℃下热分解3小时,在1250°C的条件下在由冷凝产物制得的热分解产物的Ar流中热处理5 h来合成。此外,前体的结构均匀性影响了低合成温度下B4C的形成行为。这些结果表明,通过冷凝产物在空气中的热分解实现的前驱体中B2O3和碳组分的组成兼容性,分散性以及均质性导致了晶体B4C粉末的低温合成。使用缩合的H3BO3-多元醇产物。

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