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题目:Study on the Preparation and Anisotropic Distribution of Mechanical Properties of Well-Aligned PMIA Nanofiber Mats Reinforced Composites 期刊:Journal of Chemistry 卷期:2017 , 2017 , 2017 (3) :1-7 是否已经被SCI检索? 谢谢! |
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hebin403: 金币+5, ★★★★★最佳答案 2017-09-10 09:14:59
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hebin403: 金币+5, ★★★★★最佳答案 2017-09-10 09:14:59
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已经收录 Study on the Preparation and Anisotropic Distribution of Mechanical Properties of Well-Aligned PMIA Nanofiber Mats Reinforced Composites 作者:He, B (He, Bin)[ 1 ] ; Tan, DY (Tan, Dongyi)[ 1 ] ; Liu, T (Liu, Tao)[ 1 ] ; Wang, ZX (Wang, Zexing)[ 1 ] ; Zhou, HS (Zhou, Hengshu)[ 1 ] JOURNAL OF CHEMISTRY 文献号: 8274024 DOI: 10.1155/2017/8274024 出版年: 2017 查看期刊影响 JOURNAL OF CHEMISTRY 影响因子 1.3 1.319 2016 5 年 JCR® 类别 类别中的排序 JCR 分区 CHEMISTRY, MULTIDISCIPLINARY 105/166 Q3 数据来自第 2016 版 Journal Citation Reports 出版商 HINDAWI LTD, ADAM HOUSE, 3RD FLR, 1 FITZROY SQ, LONDON, WIT 5HE, ENGLAND ISSN: 2090-9063 eISSN: 2090-9071 研究领域 Chemistry 摘要 Well aligned PMIA nanofiber mats were fabricated by electrospinning and then hot-pressing was used to produce PMIA nanofiber mats reinforced PLA matrix by layer-by layer with the interlayer angles of 0, 45, and 90 degrees. Orthogonal experimental design was employed to fix the effect of the hot-pressing parameters on the tensile strength of nanocomposites, and SEM was used to characterize the broken sections of the nanocomposites after tensile test. The optimized process parameters were achieved of pressure as 1000 Pa, temperature as 180 degrees C, and time as 30 min. The SEM images of broken sections showed that the different laminate forms and the state of bearing load of nanofibers resulted in the different morphologies of broken sections. The break strength of PMIA/PLA nanocomposites with any of interlayer angles at different tensile testing directions was revealed as follows: axial > oblique > transverse, and the initial modulus also showed the same except the angle of 90 degrees with the approach initial modulus at the axial and transverse directions. The maximum tensile strength and modulus of the nanocomposites were 17.12MPa and 1642.17MPa, respectively, of the axial tensile testing directions of the interlayer angle of 0 degrees. 关键词 KeyWords Plus:ELECTROSPUN NANOFIBERS; POLY(L-LACTIC ACID); EPOXY MATRIX; NANOCOMPOSITES; MORPHOLOGY; PERFORMANCE; FIBER; NANO 作者信息 通讯作者地址: He, B (通讯作者) Hunan Inst Engn, Inst Text & Fash, 88 East Fuxing Rd, Xiangtan 411104, Hunan, Peoples R China. 地址: [ 1 ] Hunan Inst Engn, Inst Text & Fash, 88 East Fuxing Rd, Xiangtan 411104, Hunan, Peoples R China 电子邮件地址:hb126_b@163.com 基金资助致谢 基金资助机构 授权号 Provincial Natural Science Foundation of Hunan 2015JJ6023 Doctoral Scientific Research Foundation of Hunan Institute of Engineering 14082 14093 查看基金资助信息关闭基金资助信息 This work was supported by Provincial Natural Science Foundation of Hunan [2015JJ6023] and by the Doctoral Scientific Research Foundation of Hunan Institute of Engineering [14082, 14093]. 出版商 HINDAWI LTD, ADAM HOUSE, 3RD FLR, 1 FITZROY SQ, LONDON, WIT 5HE, ENGLAND 类别 / 分类 研究方向:Chemistry Web of Science 类别:Chemistry, Multidisciplinary 文献信息 文献类型:Article 语种:English 入藏号: WOS:000396869000001 ISSN: 2090-9063 eISSN: 2090-9071 期刊信息 Impact Factor (影响因子): Journal Citation Reports 数据来自第 2016 版 Journal Citation Reports 其他信息 IDS 号: EO7KG Web of Science 核心合集中的 "引用的参考文献": 26 Web of Science 核心合集中的 "被引频次": 0 |

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