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[求助]
帮忙看一下文章是否被检索
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我有一篇论文,题目是:TiB2含量和烧结温度对 B4C/Al2O3基复合陶瓷的影响,作者是刘长霞, 孙军龙;期刊是:材 料 热 处 理 学 报 (TRANSACTIONS OF MATERIALS AND HEAT TREATMENT),2013年第34卷第8期。英文题目是:Effect of TiB2 content and sintering temperature on microstructure and properties of B4C /Al2O3 matrix ceramic composites。 请好心人帮我看看,是否被检索;如果被检索,请帮忙将检索号和具体的检索信息发送到我的邮箱,sjlthink@126.com,非常感谢。 |
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jssxh
至尊木虫 (知名作家)
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sjlthink(oven1986代发): 金币+25, 代扣结帖。 2014-01-10 22:17:27
oven1986: 检索EPI+1, 感谢你的应助! 2014-01-10 22:17:52
sjlthink(oven1986代发): 金币+25, 代扣结帖。 2014-01-10 22:17:27
oven1986: 检索EPI+1, 感谢你的应助! 2014-01-10 22:17:52
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EI收录 Accession number: 20134817030260 Title: Effect of TiB2 content and sintering temperature on microstructure and properties of B4C/Al2O3 matrix ceramic composites Authors: Liu, Chang-Xia1 ; Sun, Jun-Long1 Author affiliation: 1 Key Laboratory of Advanced Manufacturing and Automation Technology, Ludong University, Yantai 264025, China Corresponding author: Liu, C.-X. (hester5371@yahoo.com.cn) Source title: Cailiao Rechuli Xuebao/Transactions of Materials and Heat Treatment Abbreviated source title: Cailiao Rechuli Xuebao Volume: 34 Issue: 8 Issue date: August 2013 Publication year: 2013 Pages: 6-10 Language: Chinese ISSN: 10096264 CODEN: JRXUDO Document type: Journal article (JA) Publisher: Editorial Office of Transactions of Materials, 18 Xueqing Road, Beijing, 100083, China Abstract: B4C/Al2O3 matrix ceramic composites were fabricated by in-situ hot-pressing technology. The effect of TiB2 content, which formed by in-situ reaction, and sintering temperature on mechanical properties and microstructure of the B4C/Al2O3 ceramic composites was researched. Results show the sintering densification and mechanical properties of the composites are improved with the increase of TiB2 content. The mechanical properties increased with increasing the sintering temperature as the sintering temperature is lower than 1900°C. The optimum properties of B4C/Al2O3 matrix ceramics with 87% TiB2 are obtained when the composite is sintered at temperature of 1900°C and soaking time of 60 min. The hardness, fracture toughness and bending strength of the composite are 248 GPa, 482 MPa·m1/2 and 4452 MPa, respectively. Number of references: 15 Main heading: Sintering Controlled terms: Ceramic materials - Ceramic matrix composites - Mechanical properties - Microstructure Uncontrolled terms: Ceramic composites - Hot-pressing technologies - Microstructure and properties - Optimum properties - Properties and microstructures - Sintering densification - Sintering temperatures - TiB2 Classification code: 812.1 Ceramics - 812.2 Refractories - 933 Solid State Physics - 951 Materials Science Database: Compendex Compilation and indexing terms, © 2013 Elsevier Inc. |
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