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An exploration of the relationship of chemical and physical parameters in the micromechanical characterisation of the apparent interfacial strength in glass fibre epoxy systems

机译:在玻璃纤维环氧体系表观界面强度的微机械表征中,探讨化学和物理参数之间的关系

摘要

This paper focuses on the cure shrinkage and the thermomechanical properties of an amine cured epoxy resin system and its adhesion to glass fibre. The fibre-matrix interfacial shear strength (IFSS) was characterized using the microbond test over a range of test temperatures and a range of amine:epoxy ratios. The apparent IFSS in this glass-epoxy system was shown to be strongly dependent on the testing temperature and the matrix stoichiometry. High levels of cure shrinkage were measured in the IFSS microdroplets which resulted in internal stresses causing significant levels of droplet deformation. The results presented here can be interpreted as providing further support for the hypothesis that a significant fraction of the interfacial stress transfer capability in epoxy composites can be attributed to a combination of residual radial compressive stress and static friction at the fibre-matrix interface.
机译:本文着重于胺固化环氧树脂体系的固化收缩率和热机械性能及其与玻璃纤维的粘合性。纤维-基体界面剪切强度(IFSS)在一定范围的测试温度和一定范围的胺:环氧比的条件下使用微粘结测试进行了表征。该玻璃-环氧树脂体系中的表观IFSS被证明与测试温度和基体化学计量关系密切。在IFSS微滴中测量到高水平的固化收缩率,这会导致内部应力,从而导致显着水平的液滴变形。此处给出的结果可解释为以下假设提供了进一步的支持:环氧复合材料中很大一部分界面应力传递能力可归因于残余径向压缩应力和纤维-基体界面处的静摩擦的结合。

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