全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
材料工程  2015 

不同结构UHMWPE纤维纬编针织复合材料弯曲性能

DOI: 10.11868/j.issn.1001-4381.2015.11.014, PP. 84-90

Keywords: UHMWPE纤维,VARTM,纬编针织复合材料,弯曲性能

Full-Text   Cite this paper   Add to My Lib

Abstract:

以超高分子量聚乙烯(UHMWPE)纤维为原料,在电脑横机上编织出较理想的UHMWPE纤维纬平针、罗纹、畦编针织结构织物。采用VARTM工艺、(0°,90°)3s铺层方式成功制备了六层纬平针、六层罗纹以及六层畦编UHMWPE纤维纬编针织复合材料板。对三种复合材料板的弯曲性能及其影响因素进行研究,比较并分析其弯曲应力-挠度变化曲线和破坏形式。结果表明三种UHMWPE纤维纬编针织结构增强复合材料的弯曲应力-挠度曲线具有非线性特征,曲线均类似于抛物线;其中,纬平针织结构复合材料的弯曲强度最大,罗纹次之,畦编最小;承受弯曲破坏的主要是树脂基体,没有出现增强体断裂、撕开等现象,表明由高强聚乙烯纤维制成的增强体材料具有较强的韧性与较高的强力。

References

[1]  MASRAN S H, ISMAIL A E, MARIAN M F. A study of energy absorption performances of pultruded composites under quasi-static compressive loadings[J]. Applied Mechanics and Materials, 2013, 465-466:662-666.
[2]  张小康.超高分子量聚乙烯纤维增强复合材料的性能研究[D].上海:华东理工大学, 2011. ZHANG X K. Properties of UHMWPE fiber reinforced composites[D]. Shanghai:East China University of Science and Technology, 2011.
[3]  卢锦花,李贺军,刘皓,等.碳纤维表面处理对2D碳/碳复合材料弯曲性能的影响[J].材料工程,2005,(9):3-6. LU J H, LI H J, LIU H, et al. Effect of surface treatment on flexural property of 2D C/C composites conductive oxide thin films[J]. Journal of Materials Engineering,2005,(9):3-6.
[4]  熊翔,黄伯云,李江鸿,等.准三维C/C复合材料的弯曲性能及其破坏机理[J].航空材料学报,2006,26(4):88-91. XIONG X, HUANG B Y, LI J H, et al. Bending property and fracture mechanism of quasi-3D C/C composites[J]. Journal of Aeronautical Materials,2006,26(4):88-91.
[5]  钱鑫,支建海,张永.炭纤维表面化学结构对其增强环氧树脂基复合材料性能的影响[J]. 材料工程,2014,(6):84-88. QIAN X, ZHI J H, ZHANG Y. Effect of surface chemical structure of carbon fibers on properties of carbon fiber/epoxy resin composites[J]. Journal of Materials Engineering,2014,(6):84-88.
[6]  顾超英,赵永霞.国内外超高分子量聚乙烯纤维的生产与应用[J].纺织导报, 2010,(4):52-55. GU C Y, ZHAO Y X. Production and application of UHMWPE fiber at home and abroad[J]. China Textile Leader, 2010,(4):52-55.
[7]  胡春平,刘丽,姜波,等.高硅氧/有机硅复合材料高温弯曲性能研究[J].航空材料学报,2012,32(5):66-69. HU C P, LIU L, JIANG B, et al. Investigation of flexural strength of vycor glass/silicone composites under high temperature[J]. Journal of Aeronautical Materials,2012,32(5):66-69.
[8]  李艳芹,朱博超,黄安平,等.超高分子量聚乙烯研究进展及应用领域[J].广州化工,2011,(2):19-21. LI Y Q, ZHU B C, HUANG A P, et al. Research progress and application of ultra high molecular weight polyethylene[J]. Guangzhou Chemical Industry, 2011,(2):19-21.
[9]  MEHMET A, ERSEN B, ALAATTIN A, et al. Impact and post impact behavior of layer fabric composites[J]. Composite Structures, 2012,94(9):2809-2818.
[10]  苏荣锦. 高性能超高分子量聚乙烯复合材料的制备与性能研究[D].长沙:湖南工业大学,2012. SU R J. Study on preparation and properties of high properties UHMWPE composite[D].Changsha:Hunan University of Technology,2012.
[11]  伊文梅,黄安平,贾军纪,等. 超高相对分子质量聚乙烯纤维的生产应用现状[J].合成纤维,2013,42(4):7-10. YI W M, HUANG A P, JIA J J, et al. Present situation of production and application of UHMWPE fiber[J]. Synthetic Fiber in China,2013,42(4):7-10.
[12]  曹海建,王怡洁,刘菲.三维全五向编织复合材料的弯曲性能研究[J]. 玻璃钢/复合材料, 2013,(9):39-42. CAO H J, WANG Y J, LIU F. Bending properties of three-dimensional full five-directional braided composites[J]. Fiber Reinforced Plastics/Composites, 2013,(9):39-42.
[13]  梁倩囡. 缝合编织复合材料低速冲击及冲击后弯曲性能研究[D].上海:东华大学, 2014. LIANG Q N. Low-velocity impact and post-impact bending performance of stitched braided composites[D]. Shanghai:Donghua University,2014.
[14]  徐艳华,袁新林.双轴向衬纱纬编玄武岩纤维复合材料弯曲性能[J]. 复合材料学报,2013, 30(2):233-239. XU Y H, YUAN X L. Bending properties of bi-axial weft-knitted basalt fiber reinforced composites of different ways of inserted yarn[J]. Acta Materiae Compositae Sinica, 2013, 30(2):233-239.
[15]  ALLISON B D, EVANS J L. Effect of fiber waviness on the bending behavior of s-glass/epoxy composites[J]. Materials and Design, 2012, 36:316-322.
[16]  LI D S, ZHAO C Q. Experimental study on the bending properties and failure mechanism of 3D integrated woven spacer composites at room and cryogenic temperature[J]. Composite Structures, 2014, 111:56-65.
[17]  REN D L, ZHAO F H. Research on bending performance of continuous composite girder bridge with corrugated steel webs[J]. Applied Mechanics and Materials, 2013, 438-439:865-863.
[18]  XUE C, YU J K. Enhanced thermal transfer and bending strength of SiC/Al composite with controlled interfacial reaction[J]. Materials and Design, 2014, 53:74-78.
[19]  GB/T1449-2005, 纤维增强塑料弯曲性能试验方法[S].

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133