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[求助]
幫忙查詢(xún)下AMR上的文章是否被檢索? 已有1人參與
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熱心蟲(chóng)友好。去年7月在A(yíng)dvanced materials research上錄了一篇會(huì)議文章,但是一直不知道檢索沒(méi)有,檢索號(hào)是多少,請(qǐng)好心的蟲(chóng)友幫忙查詢(xún)一下。我怎么感覺(jué)AMR已經(jīng)不是IEEE檢索了? 這是文章題目,High Power Diode Laser Clad Cu-WC-Ni Composite Coatings on Brass for Wear Resistance Enhancement,謝謝! |
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Accession number: 20134416928100 Title: High power diode laser clad Cu-Wc-Ni composite coatings on brass for wear resistance enhancement Authors: Yan, An Ru1 ; Wang, Zheng1 ; Wang, Zhi Yong1 Author affiliation: 1 Institute of Laser Engineering, Beijing University of Technology, Beijing 100124, China Source title: Advanced Materials Research Abbreviated source title: Adv. Mater. Res. Volume: 816-817 Monograph title: Manufacturing Science and Technology (ICMST2013) Issue date: 2013 Publication year: 2013 Pages: 47-53 Language: English ISSN: 10226680 ISBN-13: 9783037858677 Document type: Conference article (CA) Conference name: 4th International Conference on Manufacturing Science and Technology, ICMST 2013 Conference date: August 3, 2013 - August 4, 2013 Conference location: Dubai, United arab emirates Conference code: 100393 Sponsor: University of Tabriz, Iran; Cambridge Institute of Technology, India Publisher: Trans Tech Publications Ltd, Kreuzstrasse 10, Zurich-Durnten, CH-8635, Switzerland Abstract: To improve the wear resistance of brass substrate while retaining the electrical conductivity, laser cladding was applied to Cu-WC-Ni composite coating on brass using High Power Diode Laser. Microstructures, phase constitution and wear properties are investigated by means of scanning electronic microscopy with energy disperse spectroscopy and X-ray diffraction, as well as microhardness test and speed friction and wear test. The result shows that microhardness and wear resistance of clad coating were improved obviously compared with the brass substrate owing to the addition of WC ceramic phase, when the content of WC is 25%, the hardness of coating is 4 times of substrate, as well the cumulation mass loss is 1/19 of substrate. Electrical conductivity did not change as copper powder had high electrical conductivity. © (2013) Trans Tech Publications, Switzerland. Number of references: 8 Main heading: Tungsten carbide Controlled terms: Brass - Composite coatings - Copper powder - Electric conductivity - Laser beam welding - Laser cladding - Manufacture - Microhardness - Nickel - Substrates - Wear of materials - Wear resistance - X ray diffraction Uncontrolled terms: Electrical conductivity - Friction and wear - High electrical conductivity - High power diode laser - Microhardness tests - Phase constitution - Resistance enhancement - Scanning electronic microscopy Classification code: 951 Materials Science - 744.9 Laser Applications - 801 Chemistry - 812.1 Ceramics - 813.1 Coating Techniques - 813.2 Coating Materials - 931.3 Atomic and Molecular Physics - 701.1 Electricity: Basic Concepts and Phenomena - 546.3 Zinc and Alloys - 537.1 Heat Treatment Processes - 536 Powder Metallurgy - 461 Bioengineering and Biology - 421 Strength of Building Materials; Mechanical Properties - 548.1 Nickel DOI: 10.4028/www.scientific.net/AMR.816-817.47 Database: Compendex Compilation and indexing terms, © 2013 Elsevier Inc. |

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