Analytical study of tensile behaviors of UHMWPE/nano-epoxy bundle composites

被引:0
作者
S. Jana
B. R. Hinderliter
W. H. Zhong
机构
[1] Washington State University,School of Mechanical and Materials Engineering
[2] North Dakota State University,Department of Coatings and Polymers
来源
Journal of Materials Science | 2008年 / 43卷
关键词
UHMWPE; Weibull Modulus; Pure Epoxy; Epoxy Network; UHMWPE Fiber;
D O I
暂无
中图分类号
学科分类号
摘要
Ultra-high molecular polyethylene (UHMWPE) fiber reinforced nano-epoxy and pure epoxy composites in bundle form were prepared and tested for tensile properties. UHMWPE fiber composites are well known for their superior tensile performance, and this work was conducted to assess the effect of adding nanoadditives to the resin and to evaluate possible enhancements or degradations to that attribute. The results showed that tensile tests on various types of UHMWPE fibers/nano-epoxy bundle composites resulted in an increase in modulus of elasticity due to the addition of small amounts of reactive nanofibers (r-GNFs) to epoxy matrix. It was observed that the modulus of elasticity of the composite bundles depended on both volume fractions of the matrix and the weight percent (wt%) of r-GNFs in the matrix. A non-linear relationship was established among them and an optimal modulus was determined by calculation. A three-dimensional surface plot considering these two parameters has been generated which gives an indication of change in modulus of elasticity with respect to volume fraction of matrix and wt% of r-GNFs in the matrix. A Weibull analysis of tensile strengths for the various bundle composites was performed and their Weibull moduli were compared. The results showed that presence of r-GNFs in the composites increased the strength effectively, and 0.3 wt% r-GNFs based composites showed the highest strength. An important ancillary finding is that optimum tensile values are a function not only of the above parameters, but also strongly influenced by the addition of diluents which control the viscosity of the blend.
引用
收藏
页码:4236 / 4246
页数:10
相关论文
共 158 条
[1]  
Ujvari T(2001)undefined Solid State Ionics 141 225-undefined
[2]  
Toth A(2004)undefined Appl Surf Sci 227 1149-undefined
[3]  
Bertoti I(2004)undefined Surf Coat Technol 186 287-undefined
[4]  
Nagy PM(2001)undefined Surf Coat Technol 138 33-undefined
[5]  
Juhasz A(1997)undefined Compos Sci Technol Vol 57 1149-undefined
[6]  
Torrisi L(1999)undefined Polymer 40 7261-undefined
[7]  
Gammino S(1995)undefined J Colloid Interf Sci 170 241-undefined
[8]  
Mezzasalma AM(1993)undefined J Mater Sci 28 569-undefined
[9]  
Visco AM(2007)undefined Composites A 38 699-undefined
[10]  
Badziak J(2006)undefined J Colloid Interface Sci 299 332-undefined