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Effect of adding methods of metallic phase on microstructure and thermal shock resistance of Ni/(90NiFe2O4-10NiO) cermets

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【作者】 赖延清张勇田忠良孙小刚张刚李劼

【Author】 LAI Yan-qing, ZHANG Yong, TIAN Zhong-liang, SUN Xiao-gang, ZHAN G Gang, LI Jie School of Metallurgical Science and Engineering, Central South University, Changsha 410083, China

【机构】 School of Metallurgical Science and Engineering Central South UniversitySchool of Metallurgical Science and EngineeringCentral South UniversityChangsha 410083 China

【摘要】 Ball mixing and electroless plating were respectively used as the adding methods of metallic phase to prepare Ni/(90NiFe2O4-10NiO) cermets for the inert anode in aluminum electrolysis. The microstructure and thermal shock resistance of cermet samples were studied. The results show that, for the samples prepared by ball mixing method, aggregation of metallic phase is found in either the green blocks or sintered samples and the extent of aggregation increases with the increase of metal content. For 6.5Ni/(90NiFe2O4-10NiO) cermets prepared with electroless plating method, the homogeneous and fine metallic particles are found in either the green compacts or sintered samples, but the relative density and thermal shock residual strength decrease by 3% and 28%-58% respectively, compared with samples prepared with ball mixing method.

【Abstract】 Ball mixing and electroless plating were respectively used as the adding methods of metallic phase to prepare Ni/(90NiFe2O4-10NiO) cermets for the inert anode in aluminum electrolysis. The microstructure and thermal shock resistance of cermet samples were studied. The results show that, for the samples prepared by ball mixing method, aggregation of metallic phase is found in either the green blocks or sintered samples and the extent of aggregation increases with the increase of metal content. For 6.5Ni/(90NiFe2O4-10NiO) cermets prepared with electroless plating method, the homogeneous and fine metallic particles are found in either the green compacts or sintered samples, but the relative density and thermal shock residual strength decrease by 3% and 28%-58% respectively, compared with samples prepared with ball mixing method.

【基金】 Project(50474051) supported by the National Natural Science Foundation of China;Project(2005CB623703) supported by the National Basic Research Program of China;Project(03JJY3080) supported by the Natural Science Foundation of Hunan Province, China
  • 【文献出处】 Transactions of Nonferrous Metals Society of China ,中国有色金属学会会刊(英文版) , 编辑部邮箱 ,2007年04期
  • 【分类号】TG148
  • 【被引频次】10
  • 【下载频次】45
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