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chen-song1982银虫 (小有名气)
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论文被收录与引用情况查询
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| 谁能帮我查询两篇论文被收录与引用情况,谢谢了 |
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wpq113
至尊木虫 (著名写手)
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1.scie检索 Fabrication and structure analysis of sprayed Al/SiC composite with high performance 更多选项 作者: Hu M (Hu Ming), Hu HT (Hu Haiting), Wu MZ (Wu Mingzhong) 来源出版物: RARE METAL MATERIALS AND ENGINEERING 卷: 36 页: 808-811 增刊: Suppl. 1 出版年: AUG 2007 被引频次: 0 参考文献: 9 引证关系图 摘要: High performance Al/SiC composite was fabricated by both plasma spraying and subsonic flame spraying techniques. Based on the techniques, the microstructures of high performance AL/SiC composite were analyzed in detail by means of OM, SEM, TEM and XRD. The result revealed that Al/SiC composite with SiC volume fraction over 50% could be fabricated by the. two above techniques, and the microstructures of the composite were uniform and dense. At the same time, the interfaces between SiC particle and Al bonded well. The XRD test result showed that the composite by plasma spraying consisted of SiC and Al, along with crystal Si. While SiC and Al were main phases in the flame sprayed composite, and a few Al2O3 was found in the composite. Compared to the plasma spraying composite, the composite oxidation and porosity made through flame spraying were a little higher. Meanwhile, a few nano-grain and particle were found in the plasma sprayed composite. 文献类型: Article 语言: Chinese 作者关键词: Al/SiC composite; subsonic flame spraying; plasma spraying; microstructure 通讯作者地址: Hu, M (通讯作者), Jiamusi Univ, Coll Mat Sci & Engn, Jiamusi 154007, Peoples R China 地址: 1. Jiamusi Univ, Coll Mat Sci & Engn, Jiamusi 154007, Peoples R China 出版商: NORTHWEST INST NONFERROUS METAL RESEARCH, C/O RARE METAL MATERIAL ENGINEERING PRESS, PO BOX 51, XIAN, SHAANXI 710016, PEOPLES R CHINA 学科类别: Materials Science, Multidisciplinary; Metallurgy & Metallurgical Engineering IDS 号: 216GQ ISSN: 1002-185X [ Last edited by wpq113 on 2009-5-5 at 23:32 ] |
6楼2009-05-05 23:26:07
2楼2008-06-10 18:50:55
chen-song1982
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3楼2008-06-10 18:53:41
houmx7235
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哪位同任能帮我查询下面几篇论文被SCI收录与引用情况. 1. Ultrasound-assisted synthesis of dentritic ZnO nanostructure in ionic liquid. 2. Superhydrophobic zinc oxide surface by differential etching and hydrophobic modification. 3.PEG-mediated synthesis of ZnO nanostructures at room temperature. 4.A facile low-cost synthesis of ZnO nanorods via a solid-state reaction at low temperature. 先谢谢了!我的邮箱:houmx7235@163.com |
4楼2008-06-18 06:51:54














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