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Effect of Surface Modification and Hybridization of UHMWPE Fibers on Performance of their Composites with Epoxy Resin |
Jun QIU( ),Zengyi WANG,Qian SUN,Xueyuan GAO |
Key Laboratory of Advanced Civil Engineering Materials (Tongji University), Ministry of Education, School of Materials Science and Engineering, Tongji University, Shanghai 201804, China |
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Cite this article:
Jun QIU,Zengyi WANG,Qian SUN,Xueyuan GAO. Effect of Surface Modification and Hybridization of UHMWPE Fibers on Performance of their Composites with Epoxy Resin. Chinese Journal of Materials Research, 2015, 29(11): 807-813.
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Abstract Ultra high molecular weight polyethylene (UHMWPE) fibers possess outstanding properties such as high tensile strength and low density. However, their low surface polarity and poor heat resistance restrict the application of UHMWPE fibers as a reinforcing material for high performance composites. These shortcomings of UHMWPE fibers can be overcome by ultraviolet (UV) assisted grafting treatment and hybridization with aramid fibers. Results show that UHMWPE fibers could firstly be modified by means of an UV radiation assisted one step grafting process with acetone as solvent and acrylic acid as monomers, then the mechanical properties of composites of epoxy resin with the modified UHMWPE fibers was greatly enhanced; with the increasing monomer content in the acetone solvent, the tensile strength of UHMWPE fibers/epoxy resin composites increased obviously, while there was no significant change of flexural strength and impact strength. In order to further improve the heat resistance of UHMWPE fibers/epoxy resin composites, UHMWPE fibers were hybridized with aramid fibers and then the hybrid fibers were used as reinforcing material to produce hybrid fibers/epoxy resin composites. As a result, the deformation of the hybrid fibers/epoxy resin composites decreased by 66.7% at 90℃ compared to that of UHMWPE fibers/epoxy resin composites. The result proves that the pre-hybridization of UHMWPE fibers is an effective means to enhance the heat resistance of UHMWPE fibers/epoxy resin composites .
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Received: 07 May 2015
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Fund: *Supported by Shanghai Programs for Science and Technology Development No. 12521102204. |
1 | GUO Changsheng,YANG Jianzhong, AN Hongyu, The research of ultra-high molecular weight polyethylene fiber's modification, Hi-Tech Fiber & Application, 39(6), 21(2014) | 1 | (郭昌盛, 杨建忠, 安红玉, 超高相对分子质量聚乙烯纤维改性方法, 高科技纤维与应用, 39(6), 21(2014)) | 2 | LING Rihui,DU Ya, MU Yi, JIANG Zhirong, ZHAO Guoliang, Effect of ultra-violet irradiation on structure and properties of ultra-high molecular weight polyethylene fibers, Polymer Materials Science and Engineering, 30(8), 85(2014) | 2 | (梁日辉, 都 亚, 牧 艺, 江志荣, 赵国樑, 紫外光辐照对超高分子量聚乙烯纤维结构与性能的影响, 高分子材料科学与工程, 30(8), 85(2014)) | 3 | WANG Fei,LIU Lichao, XUE Ping, Research progress in preparation technology of ultra-high molecular weight polyethylene fiber, Plastics, 43(5), 31(2014) | 3 | (王 非, 刘丽超, 薛平, 超高分子量聚乙烯纤维制备技术进展, 塑料, 43(5), 31(2014)) | 4 | M. M. Xiao, J. R. Yu, J. J. Zhu, L. Chen,Effect of UHMWPE concentration on the extracting, drawing and crystallizing properties of gel fibers, Journal of Materials Science, 46(17), 5690(2011) | 5 | Z. Li, W. Zhang, X.W. Wang,Surface modification of ultra high molecular weight polyethylene fibers via the sequential photoinduced graft polymerization, Applied Surface Science, 257(17), 7600(2011) | 6 | CHEN Zili,YU Junrong, LIU Zhaofeng, TAN Guanhong, Effect of UV irradiation process on the structure and properties of UHMWPE fibers, Polymer Materials Science And Engineering, 17(3), 62(2001) | 6 | (陈自力, 于俊荣, 刘兆峰, 谈冠红, 紫外光辐照交联对超高相对分子质量聚乙烯纤维结构和性能的影响, 高分子材料科学与工程, 17(3), 62(2001)) | 7 | LUO Yuxiang,WU Yue, HU Fuzeng, UV-photo initiated grafting treatment of UHMWPE fibers, Acta Materiae Compositae Sinica, 18(4), 29(2001) | 7 | (骆玉祥, 吴 越, 胡福增, 超高分子量聚乙烯纤维紫外接枝处理, 复合材料学报, 18(4), 29(2001)) | 8 | LI Zhi,ZHANG Wei, WU Xiangyang, Surface modification of ultra high molecular weight polyethylene fibers via the UV-induced graft polymerization, New Chemical Materials, 39(11), 46(2011) | 8 | (李 志, 张 炜, 吴向阳, 超高分子量聚乙烯纤维表面紫外接枝聚合改性研究, 化工新型材料, 39(11), 46(2011)) | 9 | ZHU Wuhuang,SU Ping, ZHOU Kechao, Development of ultra-high molecular weight polyethylene fibers and its composites, Materials Review, 19(3), 66(2005) | 9 | (朱武黄, 苏 萍, 周科朝, 超高分子量聚乙烯纤维及其复合材料的研究现状, 材料导报, 19(3), 66(2005)) | 10 | Kiranh Kale,Shitals Palaskar, Plasma technology for wettability, dyeability and function finish of polyester and nylon fabrics, BTRA Scan, 43(1), 18(2013) | 11 | Choonki Na,Hyunju Park, Preparation of acrylic acid arafted polypropylene nonwoven fabric by photoinduced graft polymerization with preabsorption of monomer solution, Journal of Applied Polymer Science, 114(1), 387(2009) | 12 | LI Tongqi,WANG Chengyang, Effect factors and improving methods of the properties of aramid fiber and its Composite, Polymer Materials Science And Engineering, 19(5), 5(2003) | 12 | (李同起, 王成扬, 影响芳纶纤维及其复合材料性能的因素和改善方法, 高分子材料科学与工程, 19(5), 5(2003)) |
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