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| Effect of sintering process on the microstructures and properties of in situ TiB2-TiC reinforced steel matrix composites produced by spark plasma sintering, Journal of Materials Processing Technology, 2010 , 210(1):91-95. |
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baiyuefei
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被引频次: 47 Effect of sintering process on the microstructures and properties of in situ TiB2-TiC reinforced steel matrix composites produced by spark plasma sintering 作者:Li, BH (Li, Binghong)[ 1 ] ; Liu, Y (Liu, Ying)[ 1 ] ; Li, J (Li, Jun)[ 1 ] ; Cao, H (Cao, Hui)[ 1 ] ; He, L (He, Lin)[ 1 ] 查看 Web of Science ResearcherID 和 ORCID JOURNAL OF MATERIALS PROCESSING TECHNOLOGY 卷: 210 期: 1 页: 91-95 DOI: 10.1016/j.jmatprotec.2009.08.008 出版年: JAN 1 2010 文献类型:Article 查看期刊影响力 摘要 Spark plasma sintering (SPS) is anew technique to rapidly produce metal matrix composites (MMCs), but there is little work on the production of TiB2-TiC reinforced steel matrix composites by SPS. In this work. in situ TiB2-TiC particulates reinforced steel matrix composites have been successfully produced using cheap ferrotitanium and boron carbide powders by SPS technique. The effect of sintering process on the densification, hardness and phase evolution of the composite is investigated. The results show that when the composite is sintered at 1050 degrees C for 5 min, the maximum densification and hardness are 99.2% and 83.8 HRA. respectively. The phase evolution of the composite during sintering indicates that the in situ TiB2-TiC reinforcements are formed by a hybrid formation mechanism containing solid-solid diffusion reaction and solid-liquid solution-precipitation reaction. The microstructure investigation reveals that fine TiB2-TiC particulates with a size of similar to 2 mu m are homogeneously distributed in the steel matrix. The TiB2-TiC/Fe composites possess excellent wear resistance under the condition of dry sliding with heavy loads. (C) 2009 Elsevier B.V. All rights reserved. 关键词 作者关键词:Spark plasma sintering; Steel matrix composites; In situ TiB2-TiC; Microstructure KeyWords Plus:ELECTRIC-FIELD; SYSTEM; FABRICATION; NI-TI-B4C 作者信息 通讯作者地址: Liu, Y (通讯作者) 显示更多 Sichuan Univ, Sch Mat Sci & Engn, Chengdu 610065, Peoples R China. 地址: 显示更多 [ 1 ] Sichuan Univ, Sch Mat Sci & Engn, Chengdu 610065, Peoples R China 电子邮件地址:liuying5536@163.com 出版商 ELSEVIER SCIENCE SA, PO BOX 564, 1001 LAUSANNE, SWITZERLAND 类别 / 分类 研究方向:Engineering; Materials Science Web of Science 类别:Engineering, Industrial; Engineering, Manufacturing; Materials Science, Multidisciplinary 文献信息 语言:English 入藏号: WOS:000272636800012 ISSN: 0924-0136 其他信息 IDS 号: 531BD Web of Science 核心合集中的 "引用的参考文献": 15 Web of Science 核心合集中的 "被引频次": 45 查看较少数据字段 |
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