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sxy5306鐵桿木蟲 (著名寫手)
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代咨詢這篇會議文章是否sci或sciE收錄,等畢業(yè)。謝謝! 已有3人參與
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AU Guo, SH Zhang, M Peng, GY Tang, JC TI Microstructures and Properties of Cu-Cr-Y Alloy After Cold Worked and Aging SO ADVANCED ENGINEERING MATERIALS, PTS 1-3 SE Advanced Materials Research LA English DT Proceedings Paper CT 2nd International Conference on Manufacturing Science and Engineering CY APR 09-11, 2011 CL Guilin, PEOPLES R CHINA SP Guangxi Univ, Guilin Univ Elect Technol, Univ Wollongong, Korea Maritime Univ, Hong Kong Ind Technol Res Ctr DE Transmission Electron Microscopy; Rare Earth Alloys and Compound; Precipitation; Microstructure ID MECHANICAL-PROPERTIES |
鐵桿木蟲 (職業(yè)作家)
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Microstructures and Properties of Cu-Cr-Y Alloy After Cold Worked and Aging Author(s): Guo, SH (Guo, Shouhui)1; Zhang, M (Zhang, Meng)1; Peng, GY (Peng, Guoyin); Tang, JC (Tang, Jiancheng) Editor(s): Zeng, JM; Li, TS; Ma, SJ; Jiang, ZY; Yang, DG Source: ADVANCED ENGINEERING MATERIALS, PTS 1-3 Book Series: Advanced Materials Research Volume: 194-196 Pages: 1301-1304 DOI: 10.4028/www.scientific.net/AMR.194-196.1301 Part: Part 1-3 Published: 2011 Times Cited: 0 (from Web of Science) Cited References: 11 [ view related records ] Citation Map Conference: 2nd International Conference on Manufacturing Science and Engineering Location: Guilin, PEOPLES R CHINA Date: APR 09-11, 2011 Sponsor(s): Guangxi Univ; Guilin Univ Elect Technol; Univ Wollongong; Korea Maritime Univ; Hong Kong Ind Technol Res Ctr Abstract: The influence of cold-worked and aging processes on the microstructures, mechanical properties and conductivity of Cu-Cr-Y alloy has been experimentally investigated. Samples were cut from ingot of Cu-0.8 wt.%Cr-0.05 wt.%Y alloy. They were solution-treated, cold rolled and aging treated. The results show that the Cu-Cr-Y alloy, with 70% deformation and aging at 480 degrees C for 24min, can reach an excellent combination of microhardness and conductivity. The microhardness and conductivity is about 143HV and 84%IACS, respectively. The microstructures by transmission electron microscopy (TEM) show that the fine and dispersed distributed Cr precipitate, which form due to decomposition of the supersaturated solid solution during aging, is responsible for the peak maximum microhardness as it is predominantly present in the peak aged hardening condition. Accession Number: WOS:000292845900269 Document Type: Proceedings Paper Language: English Author Keywords: Transmission Electron Microscopy; Rare Earth Alloys and Compound; Precipitation; Microstructure KeyWords Plus: MECHANICAL-PROPERTIES Reprint Address: Guo, SH (reprint author), Nanchang Univ, Educ Minist, Engn Res Ctr Luminescence Mat & Devices, Nanchang 330047, Peoples R China. Addresses: 1. Nanchang Univ, Educ Minist, Engn Res Ctr Luminescence Mat & Devices, Nanchang 330047, Peoples R China E-mail Address: ghdhui@126.com; tiegang_zm@126.com; pengguoyin02@163.com; jchtangcn@yahoo.com.cn Publisher: TRANS TECH PUBLICATIONS LTD, LAUBLSRUTISTR 24, CH-8717 STAFA-ZURICH, SWITZERLAND Web of Science Categories: Engineering, Manufacturing; Materials Science, Multidisciplinary Research Areas: Engineering; Materials Science IDS Number: BVV00 ISSN: 1022-6680 ISBN: 978-3-03785-033-6 |

金蟲 (著名寫手)

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