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首页> 外文期刊>Composite Structures >Micromechanics analysis of Kevlar-29 aramid fiber and epoxy resin microdroplet composite by Micro-Raman spectroscopy
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Micromechanics analysis of Kevlar-29 aramid fiber and epoxy resin microdroplet composite by Micro-Raman spectroscopy

机译:显微拉曼光谱分析Kevlar-29芳纶纤维和环氧树脂微滴复合材料的微力学分析

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The effect of geometry on interfacial micromechanical behavior of fiber/matrix microdroplets is investigated by means of the combination of microbond test and Micro-Raman spectroscopy in this paper. Microbond test is usually employed to measure the interfacial properties of fiber/matrix composites. Since the existing method was realized through traditional microscopy technique, the test results may not satisfy those accurate analyses such as geometry influence on interfacial micromechanical behavior of composites. To overcome this problem, Micro-Raman spectroscopy is introduced into the microbond test to detect the distributions of micromechanical properties including fiber axial stress, residual stress, interfacial shear stress and stress transfer length along the interfaces between Kevlar-29 aramid fiber and epoxy resin matrix microdroplets. The obtained experimental results show that axial stress transfer will accelerate and then the shear stress concentration will be enhanced along with an increase in the interfacial edge angle. The study indicates that the geometrical characteristics can affect significantly the stress distributions in the fiber/matrix microdroplets.
机译:本文通过结合微键试验和显微拉曼光谱研究了几何形状对纤维/基质微滴界面微机械行为的影响。微粘结测试通常用于测量纤维/基体复合材料的界面性能。由于现有方法是通过传统的显微镜技术实现的,因此测试结果可能无法满足那些精确的分析,例如几何形状对复合材料界面微机械性能的影响。为了克服这个问题,将显微拉曼光谱法引入微粘结测试中,以检测沿Kevlar-29芳纶纤维与环氧树脂基体之间的界面的微机械性能分布,包括纤维轴向应力,残余应力,界面剪切应力和应力传递长度。微滴。获得的实验结果表明,随着界面边缘角的增加,轴向应力传递将加速,剪应力集中将增强。研究表明,几何特性可以显着影响纤维/基质微滴中的应力分布。

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