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浸渍工艺对陶/炭复合材料抗氧化性能的影响 被引量:6
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作者 李广田 吴国玺 +1 位作者 杜成武 武振廷 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 1999年第1期50-52,共3页
采用不同浸渍工艺制取陶/炭复合材料,研究浸渍量与浸渍时间的关系,常压浸渍、真空浸渍、加压浸渍及真空加压浸渍工艺对陶/炭复合材料抗氧化性能的影响,并对影响抗氧化性能的因素进行分析·研究结果表明:采用真空加压浸渍工艺... 采用不同浸渍工艺制取陶/炭复合材料,研究浸渍量与浸渍时间的关系,常压浸渍、真空浸渍、加压浸渍及真空加压浸渍工艺对陶/炭复合材料抗氧化性能的影响,并对影响抗氧化性能的因素进行分析·研究结果表明:采用真空加压浸渍工艺为最佳工艺,形成的陶瓷量大,陶瓷层厚,可大幅度提高复合材料的抗氧化性能· 展开更多
关键词 复合材料 浸渍 抗氧化性能 陶瓷/炭
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浸渍硼化物制取陶/炭复合材料的研究 被引量:3
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作者 李广田 吴国玺 +1 位作者 杜成武 武振庭 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 1999年第2期166-168,共3页
选择以硼化物为成分的浸渍液制取陶/炭复合材料并对浸渍液进行了优选,测定了材料的物理性能对陶瓷层的形态进行了电子探针分析·用此方法处理了电炉炼钢用石墨电极并在钢厂进行了考核·对硼化物浸渍制取陶/炭复合材料的抗氧... 选择以硼化物为成分的浸渍液制取陶/炭复合材料并对浸渍液进行了优选,测定了材料的物理性能对陶瓷层的形态进行了电子探针分析·用此方法处理了电炉炼钢用石墨电极并在钢厂进行了考核·对硼化物浸渍制取陶/炭复合材料的抗氧化机理进行了探讨·研究结果表明,炭材料经优选硼化处理后其氧化起始温度可以提高到1177K,经浸渍后的石墨电极在钢厂应用可使其消耗降低12%· 展开更多
关键词 硼化物 浸渍 复合材料 陶瓷/炭 制备
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Effect of baking processes on properties of TiB_2/C composite cathode material 被引量:1
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作者 吕晓军 李劼 +1 位作者 赖延清 方钊 《Journal of Central South University》 SCIE EI CAS 2009年第3期429-433,共5页
Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of... Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of TiB2/C composite cathode material were investigated. The results show that thermogravimetrie behavior of pitch and TiB2/C green composite cathode is similar, and appears the largest mass loss rate in the temperature range from 200 to 600 ℃. The bulk density variation of sample K5 before and after baking is the largest (11.9%), that of sample K25 is the second, and that of sample M5 is the smallest (6.7%). The crushing strength of sample M5 is the biggest (51.2 MPa), that of sample K2.5 is the next, and that of sample K5 is the smallest (32.8 MPa). But, the orders of the electrical resistivity and electrolysis expansion of samples are just opposite with the order of crushing strength. The heating rate has a great impact on the microstructure of sample. The faster the heating rate is, the bigger the pore size and porosity of sample are. Compared with the heating rate between 200 and 600℃ of samples K25 and K5, that of sample M5 is slower and suitable for baking process of TiB2/C composite cathode material. 展开更多
关键词 aluminum electrolysis TiB2/C composite cathode material baking process
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