Synthesis of finely dispersed chromium diboride from nanofibrous carbon

Q3 Materials Science
Yu. L. Krutskii, K. Dyukova, R. I. Kuz’min, O. Netskina, A. E. Iorkh
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引用次数: 2

Abstract

The paper presents experimental data on synthesis of finely  dispersed powder of chromium diboride. Chromium diboride was  prepared by reduction of chromium oxide Cr2O3 with nanofibrous  carbon (NFC) and boron carbide in the induction furnace under argon atmosphere. NFC is a product of catalytic decomposition of light  hydro carbons. The main characteristic of a NFC is high specific surface area (~150,000 m2/kg), which is significantly higher than that  of soot (~50,000  m2/kg). The content of impurities in NFC is about  1  wt  %. Boron carbide used as a reagent is characterized by high dispersity (at the level of ~2  μm) and insignificant content of impurities – no more than 1.5  wt  %. Based on analysis of state diagram of  the Cr – B system, composition of the charge and upper temperature  limit of diboride formation reaction were determined for obtaining  chromium diboride in powder state. According to the results of thermodynamic analysis, the temperature of beginning of reaction for  chromium oxide Cr2O3 reduction by carbon and boron carbide was  determined at various CO pressures. Composition and characteristics  of chromium diboride were studied using X-ray phase analysis, inductively coupled plasma atomic emission spectrometry (AES-ISP),  scanning electron microscopy using local energy-dispersive X-ray  microanalysis (EDX), low-temperature adsorption of nitrogen, followed by determination of specific surface area by BET method,  sedi mentation analysis, synchronous thermogravimetry and differential scanning calorimetry (TG/DSC). The material obtained at optimal parameters is represented by a single phase – chromium diboride  CrB2 . The content of impurities in chromium diboride does not exceed 2.5  wt  %. The powder particles were predominantly aggregated.  The average size of the particles and aggregates is equal to 7.95  μm  within a wide range of size distribution. The specific surface area of a  single-phase sample is 3600  m2/kg. Oxidation of chromium diboride  begins at a temperature of 430  °C and when the temperature reaches  1000  °C, the degree of oxidation is approximately 25  %. Optimum synthesis parameters are the ratio of reagents according to stoichiometry to obtain chromium diboride at a temperature of 1700  °C and  holding time of 20  min. It is shown that for this process nanofibrous  carbon is an effective reducing agent and that chromium oxide Cr2O3  is almost completely reduced to diboride CrB2 .
纳米纤维碳合成分散的二硼化铬
本文介绍了合成二硼化铬细分散粉末的实验数据。采用纳米纤维碳(NFC)和碳化硼在感应炉中氩气气氛下还原氧化铬(Cr2O3)制备了二硼化铬。NFC是轻烃催化分解的产物,其主要特点是比表面积高(~ 150000 m2/kg),显著高于烟尘的比表面积(~ 50000 m2/kg)。NFC中杂质的含量约为1wt %。碳化硼作为试剂的特点是分散性高(在~2 μm的水平),杂质含量不超过1.5 wt %。通过对Cr - B体系状态图的分析,确定了制备粉末态二硼化铬所需的电荷组成和二硼化反应的温度上限。根据热力学分析结果,确定了不同CO压力下碳和碳化硼还原氧化铬Cr2O3反应的起始温度。采用x射线相分析、电感耦合等离子体原子发射光谱(AES-ISP)、局部能量色散x射线微分析(EDX)扫描电镜、低温吸附氮、BET法测定比表面积、沉积分析、同步热重法和差示扫描量热法(TG/DSC)研究了二硼化铬的组成和特征。在最佳参数下得到的材料为单相-二硼化铬CrB2,二硼化铬中杂质含量不超过2.5 wt %,粉末颗粒以团聚为主。在较宽的粒径范围内,颗粒和团聚体的平均粒径为7.95 μm。单相样品的比表面积为3600m2 /kg。二硼化铬的氧化开始于430℃,当温度达到1000℃时,氧化程度约为25%。最佳合成参数是根据化学计量学的配比,在1700℃的温度下,保温20 min得到二硼化铬。结果表明,在该工艺中,纳米纤维碳是一种有效的还原剂,氧化铬Cr2O3几乎完全还原为二硼化物CrB2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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