| 查看: 682 | 回复: 3 | |||
[交流]
各位帮忙查下这两篇文章的EI检索号
|
|
1. Fabrication of Fe-based amorphous composite coating by electrothermal explosion spraying on aluminum substrate 2. Comparison Study of the Fe-based composite coating prepared by different processes |
» 猜你喜欢
有时候真觉得大城市人没有县城人甚至个体户幸福
已经有11人回复
表哥与省会女结婚,父母去帮带孩子被省会女气回家生重病了
已经有7人回复
同年申请2项不同项目,第1个项目里不写第2个项目的信息,可以吗
已经有8人回复
依托企业入选了国家启明计划青年人才。有无高校可以引进的。
已经有7人回复
依托企业入选了国家启明计划青年人才。有无高校可以引进的。
已经有10人回复
天津大学招2026.09的博士生,欢迎大家推荐交流(博导是本人)
已经有9人回复
有院领导为了换新车,用横向课题经费买了俩车
已经有10人回复
AI 太可怕了,写基金时,提出想法,直接生成的文字比自己想得深远,还有科学性
已经有6人回复
» 本主题相关价值贴推荐,对您同样有帮助:
十万火急,帮我查下这篇论文是否被EI检索。。。。
已经有9人回复
请帮忙查下如下两篇文章的ei检索号 谢谢!
已经有3人回复
急求文章的EI检索号(1篇含SCI号),
已经有6人回复
请帮忙查询下2010SOPO的两篇文章是否被Ei检索,谢谢!!
已经有6人回复
» 抢金币啦!回帖就可以得到:
华南师范大学(211)- 光电科学与工程学院 - 申请审核制(2026年4-5月份面试考核)
+2/114
2025难忘的时刻
+1/89
人间烟火,实则就是追求最简单的快乐
+1/84
欢迎报考南京农业大学植物环境适应课题组课题组2026级博士生。
+1/76
感谢小木虫的缘分
+1/47
罗格斯大学纽瓦克校区(Rutgers-Newark) 招收 PHD,计算材料物理方向
+1/41
中国科学院深圳先进技术研究院——招聘博士后
+2/36
同济大学脑机智能团队脑机接口方向招生招聘
+1/32
上海交通大学大气环境科学课题组招收2026年入学博士生
+1/29
澳大利亚麦考瑞大学(Macquarie University)国际博士硕士全额奖学金-计算机-26年中开学
+1/22
新加坡 南洋理工大学- 智能光子/ 传感 PHD 全奖一名 2026 - 8 月入学
+1/17
澳门大学生物医学影像实验室诚招博士生(2026秋季入学)
+1/13
上海工程技术大学张培磊教授团队招收博士生
+1/10
都放假了嘛?
+1/9
26储能博士申请自荐
+1/8
江汉大学轩亮教授课题组招博士研究生/博士后
+1/5
哈工大(深圳)物理招收2026年9月入学博士生1个名额
+1/4
哈工大 张乃庆课题组招收博士快响计划(名额充足),通过后随时入学
+1/4
岭南大学(香港)诚招材料方向研究助理/RA/博士后
+1/3
美国密苏里大学“柔性电子”课题组诚聘博士研究生和博士后
+1/1
hvpet2003(金币+5): 非常感谢 2011-01-23 11:46:10
|
1. Accession number: 20110213566225 Title: Fabrication of Fe-based amorphous composite coating by electrothermal explosion spraying on aluminum substrate Authors: Hu, Weiqiang1 ; Liu, Zongde1 ; Wang, Yongtian1 ; Zhang, Hualei1 ; Wang, Song1 Author affiliation: 1 Key Laboratory of Condition Monitoring, Control for Power Plant Equipment of Ministry of Education, North China Electric Power University, Beijing 102206, China Corresponding author: Hu, W. (huweiqiang@ncepu.edu.cn) Source title: Advanced Materials Research Accession number: 20110213566429 Title: Comparison study of the Fe-based composite coating prepared by different processes Authors: Hu, Weiqiang1 ; Liu, Zongde1 ; Wang, Yongtian1 ; Li, Zhisheng1 Author affiliation: 1 Key Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, North China Electric Power University, Beijing 102206, China Corresponding author: Hu, W. (huweiqiang@ncepu.edu.cn) Source title: Advanced Materials Research |
2楼2011-01-23 10:46:24
hvpet2003(金币+4): 非常感谢 2011-01-23 11:46:24
|
Accession number: 20110213566429 Title: Comparison study of the Fe-based composite coating prepared by different processes Authors: Hu, Weiqiang1 ; Liu, Zongde1 ; Wang, Yongtian1 ; Li, Zhisheng1 Author affiliation: 1 Key Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, North China Electric Power University, Beijing 102206, China Corresponding author: Hu, W. (huweiqiang@ncepu.edu.cn) Source title: Advanced Materials Research Abbreviated source title: Adv. Mater. Res. Volume: 154-155 Monograph title: Materials Processing Technologies Issue date: 2011 Publication year: 2011 Pages: 1575-1580 Language: English ISSN: 10226680 ISBN-13: 9780878492046 Document type: Conference article (CA) Conference name: 2010 International Conference on Advances in Materials and Manufacturing Processes, ICAMMP 2010 Conference date: November 6, 2010 - November 8, 2010 Conference location: Shenzhen, China Conference code: 83174 Sponsor: University of Wollongong (UOW); Northeastern University (NU); University of Science and Technology Beijing (USTB); Hebei Polytechnic University (HPU); Hong Kong Industrial Technology Research Centre (ITRC) Publisher: Trans Tech Publications, P.O. Box 1254, Clausthal-Zellerfeld, D-38670, Germany Abstract: In order to improve the surface properties of the mechanical components, the Fe-based composite coatings were prepared on the surface of the plain steel pipes with different processes, including arc spraying, TIG re-melting and TIG cladding. The microstructure, phase structure and micro-hardness were characterized by XRD, OM, SEM, and Vickers hardness tester. The results show that the composite coatings obtained by different processes improve significantly the surface properties of the matrix material. Compared to the microstructure of the coatings, it can bee seen that the two types of composite coatings prepared by TIG re-melting after spraying and TIG cladding obtain the similar morphologies, and the microstructure of the two types of coatings is more uniform and dense than the microstructure of the coating produced by arc spraying process. The composite coatings produced by TIG cladding and TIG re-melting have the higher micro-hardness than that of the coating by arc spray. © (2011) Trans Tech Publications, Switzerland. Number of references: 8 Main heading: Composite coatings Controlled terms: Cladding (coating) - Mechanical properties - Melting - Phase structure - Surface properties - Vickers hardness - Vickers hardness testing Uncontrolled terms: Arc spray - Arc spraying - Comparison study - Different process - Matrix materials - Mechanical components - Plain steels - SEM - TIG cladding - XRD Classification code: 951 Materials Science - 933 Solid State Physics - 813.2 Coating Materials - 535.1 Metal Rolling - 531.1 Metallurgy - 482 Mineralogy - 422.2 Strength of Building Materials : Test Methods - 422 Strength of Building Materials; Test Equipment and Methods - 421 Strength of Building Materials; Mechanical Properties DOI: 10.4028/www.scientific.net/AMR.154-155.1575 Database: Compendex Compilation and indexing terms, © 2010 Elsevier Inc. |
3楼2011-01-23 11:02:09
hvpet2003(金币+1): 2011-01-23 11:46:29
|
Accession number: 20110213566225 Title: Fabrication of Fe-based amorphous composite coating by electrothermal explosion spraying on aluminum substrate Authors: Hu, Weiqiang1 ; Liu, Zongde1 ; Wang, Yongtian1 ; Zhang, Hualei1 ; Wang, Song1 Author affiliation: 1 Key Laboratory of Condition Monitoring, Control for Power Plant Equipment of Ministry of Education, North China Electric Power University, Beijing 102206, China Corresponding author: Hu, W. (huweiqiang@ncepu.edu.cn) Source title: Advanced Materials Research Abbreviated source title: Adv. Mater. Res. Volume: 154-155 Monograph title: Materials Processing Technologies Issue date: 2011 Publication year: 2011 Pages: 485-489 Language: English ISSN: 10226680 ISBN-13: 9780878492046 Document type: Conference article (CA) Conference name: 2010 International Conference on Advances in Materials and Manufacturing Processes, ICAMMP 2010 Conference date: November 6, 2010 - November 8, 2010 Conference location: Shenzhen, China Conference code: 83174 Sponsor: University of Wollongong (UOW); Northeastern University (NU); University of Science and Technology Beijing (USTB); Hebei Polytechnic University (HPU); Hong Kong Industrial Technology Research Centre (ITRC) Publisher: Trans Tech Publications, P.O. Box 1254, Clausthal-Zellerfeld, D-38670, Germany Abstract: In order to improve the surface properties of the aluminum alloy, an amorphous composite coating was prepared on the surface of the aluminum alloy substrate by electrothermal explosion spraying with fully amorphous Fe-Si-B ribbons. The microstructure, phase structure and micro-hardness of the coating were characterized by SEM, XRD and Vickers hardness tester. The results show that the composite coating is composed of amorphous phase and nanocrystal phase. The coating has dense structure and low porosity. It has not been seen rough laminar microstructure that is frequently obtained by other thermal spray techniques. The amorphous composite coatings with different thickness present higher hardness and show good mechanical properties. © (2011) Trans Tech Publications Switzerland. Number of references: 11 Main heading: Composite coatings Controlled terms: Aluminum - Aluminum alloys - Aluminum coatings - Amorphous silicon - Mechanical properties - Multilayers - Phase structure - Substrates - Surface properties - Vickers hardness - Vickers hardness testing Uncontrolled terms: Aluminum alloy substrate - Aluminum substrate - Amorphous - Amorphous composite - Amorphous phase - Dense structures - Different thickness - Electrothermal explosion spraying - Fe-Si-B - Low porosity - Rough laminar - SEM - Thermal spray techniques - XRD Classification code: 933.2 Amorphous Solids - 933 Solid State Physics - 813.2 Coating Materials - 801 Chemistry - 541.2 Aluminum Alloys - 951 Materials Science - 541.1 Aluminum - 461 Bioengineering and Biology - 422.2 Strength of Building Materials : Test Methods - 422 Strength of Building Materials; Test Equipment and Methods - 421 Strength of Building Materials; Mechanical Properties - 482 Mineralogy DOI: 10.4028/www.scientific.net/AMR.154-155.485 Database: Compendex Compilation and indexing terms, © 2010 Elsevier Inc. |
4楼2011-01-23 11:03:51













回复此楼