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工业合成SiC的节能提质技术及CO收集 被引量:7
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作者 陈杰 郭继华 王晓刚 《金刚石与磨料磨具工程》 CAS 北大核心 2005年第1期49-52,共4页
碳化硅生产是高耗能行业。本文在简述各种炉体改进和工艺改进的基础上,详细阐述了多热源工业合成碳化硅新技术的节能降耗提质理论及CO回收技术。工业实践表明,三热源合成炉较单热源炉产量提高48.1%,特、一级品率提高30%,节能10%以上... 碳化硅生产是高耗能行业。本文在简述各种炉体改进和工艺改进的基础上,详细阐述了多热源工业合成碳化硅新技术的节能降耗提质理论及CO回收技术。工业实践表明,三热源合成炉较单热源炉产量提高48.1%,特、一级品率提高30%,节能10%以上,杜绝了单热源生产中频繁喷炉事故,炉体易实现大型化。多热源合成炉炉气中CO含量高达92%,利用新型高温涂塑布气体收集装置收集CO,可提纯利用,生产甲醇进而生产洁净燃料二甲醚。研究成果对于碳化硅工业生产的环境污染控制和提高经济效益具有重要意义。 展开更多
关键词 碳化硅化合成 多热源合 节能降耗 CO收集与利用
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Synthesis and ceramization of polycarbosilane containing beryllium 被引量:6
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作者 黄小忠 周珊 +3 位作者 程勇 杜作娟 段曦东 王超英 《Journal of Central South University》 SCIE EI CAS 2014年第1期71-75,共5页
Polycarbosilane containing beryllium(BPCS) precursors was prepared by the reaction of polycarbosilane(PCS) with beryllium acetylacetone(Be(acac)2).The analysis of structures and components of BPCS demonstrates that th... Polycarbosilane containing beryllium(BPCS) precursors was prepared by the reaction of polycarbosilane(PCS) with beryllium acetylacetone(Be(acac)2).The analysis of structures and components of BPCS demonstrates that their main structures are basically the same as PCS.Ceramization of BPCS precursors shows that BPCS precursors are organic below 600 °C and inorganic at 800 °C.At 1400 °C,BPCS precursors convert into silicon carbide ceramics.The ceramization of different beryllium content precursors were studied,which show that beryllium plays an important role in the inhibition of crystalline grain growth of β-SiC at high temperature and it can adjust the dielectric constant of silicon carbide ceramics. 展开更多
关键词 POLYCARBOSILANE BERYLLIUM PRECURSOR CERAMIZATION
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Effects of SiC amount on phase compositions and properties of Ti_3SiC_2-based composites 被引量:2
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作者 蔡艳芝 殷小玮 尹洪峰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期14-22,共9页
The phase compositions and properties of Ti3SiC2-based composites with SiC addition of 5%-30% in mass fraction fabricated by in-situ reaction and hot pressing sintering were studied. SiC addition effectively prevented... The phase compositions and properties of Ti3SiC2-based composites with SiC addition of 5%-30% in mass fraction fabricated by in-situ reaction and hot pressing sintering were studied. SiC addition effectively prevented TiC synthesis but facilitated SiC synthesis. The Ti3SiC2/Ti C-SiC composite had better oxidation resistance when SiC added quantity reached 20% but poorer oxidation resistance with SiC addition under 15% than Ti3SiC2/TiC composite at higher temperatures. There were more than half of the original SiC and a few Ti3SiC2 remaining in Ti3SiC2/Ti C-SiC with 20% SiC addition, but all constituents in Ti3Si2/TiC composite were oxidized after 12 h in air at 1500 °C. The oxidation scale thickness of TS30, 1505.78 μm, was near a half of that of T,2715 μm, at 1500 °C for 20 h. Ti3SiC2/Ti C composite had a flexural strength of 474 MPa, which was surpassed by Ti3SiC2/TiC-SiC composites when SiC added amount reached 15%. The strength reached the peak of 518 MPa at 20% SiC added amount. 展开更多
关键词 in-situ reaction composites oxidation mechanical properties
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Preparation of porous silicon carbide by combustion synthesis
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作者 张宇民 张剑寒 韩杰才 《Journal of Central South University of Technology》 2005年第2期163-166,共4页
Porous silicon carbide ceramics were prepared by combustion synthesis technique. SiC/TiC composite was gained by combustion reaction of Si, C and Ti. Thermodynamics analysis of Si-C-Ti system indicates that the conten... Porous silicon carbide ceramics were prepared by combustion synthesis technique. SiC/TiC composite was gained by combustion reaction of Si, C and Ti. Thermodynamics analysis of Si-C-Ti system indicates that the content of TiC in products should be larger than 30%. The experimental results show that the content of Ti+C should be larger than 25% to achieve a complete combustion reaction. The X-ray diffractometry results show that the final products with a relative density of 45%64% are composed of α-SiC, β-SiC, TiC and a small quantity of Si. The images of scanning electron microscopy show that the structures of grain in SiC based porous ceramics consist of particles with a few microns in size. 展开更多
关键词 combustion synthesis silicon carbide CERAMIC
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