Effect of Multiwalled Carbon Nanotubes on the Thermal Conductivity and Porosity Characteristics of Blast Furnace Carbon Refractories

被引:0
作者
Yawei Li
Xilai Chen
Yuanbing Li
Shaobai Sang
Lei Zhao
机构
[1] Wuhan University of Science & Technology,Hubei Province Key Laboratory of Ceramics and Refractories
来源
Metallurgical and Materials Transactions A | 2010年 / 41卷
关键词
Thermal Conductivity; Blast Furnace; Cristobalite; Microporous Structure; Apparent Porosity;
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学科分类号
摘要
Different amounts of carbon nanotubes (CNTs) (0–5 mass pct) containing carbon refractory specimens for a blast furnace were prepared and coked for 3 hours at 1473 K (1200 °C) and 1673 K (1400 °C). The thermal conductivity and porosity characteristics of the coked specimens were evaluated using the flash diffusivity technique and mercury porosimetry, respectively. It was found that CNTs acted as carbon source, and most of them were consumed during coking. With the increase of CNT content, the aggregation of CNTs became more severe, the amount of SiC whiskers formed increased and their aspect ratio became larger, and the SiC whiskers tended to be distributed nonhomogeneously. The thermal conductivity of a 4 mass pct CNT containing a carbon specimen was highest because of the contributions of SiC and residual CNTs. The porosity characteristics of a 0.5 mass pct CNT containing a carbon specimen was best because of the uniform filling of SiC whiskers. The excessive addition of CNTs degraded the porosity characteristics because of the severe aggregation of CNTs.
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页码:2383 / 2388
页数:5
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共 118 条
[1]  
Silva S.N.(2005)undefined Ironmaking Steelmaking 32 459-65
[2]  
Vernilli F.(2005)undefined Mater. Corros. 56 475-80
[3]  
Justus S.M.(1998)undefined Naihuo Cailiao 32 15-17
[4]  
Marques O.R.(1996)undefined Steel Times 224 400-04
[5]  
Mazine A.(2004)undefined Refract. Ind. Ceram. 45 235-38
[6]  
Baldo J.B.(2004)undefined Refract. Ind. Ceram. 45 317-19
[7]  
Longo E.(2008)undefined Naihuo Cailiao 42 401-05
[8]  
Varela J.A.(2009)undefined J. Wuhan Univ. Sci. Technol. 32 154-59
[9]  
Vernilli F.J.(2009)undefined Metall. Mater. Trans. A 40A 1675-83
[10]  
Justus S.M.(2010)undefined AMR 93–101 453-56