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Analysis of interfacial micromechanics in microdroplet model composites using synchrotron microfocus X-ray diffraction

机译:同步加速器微聚焦X射线衍射分析微滴模型复合材料中的界面微力学

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摘要

Microfocus X-ray diffraction, a synchrotron radiation based technique, has been used to determine the fibre matrix interfacial shear stress within a new type of model composite. This model composite comprises a single fibre of poly(p-phenylene terephthalamide) or poly(p-phenylene benzobisoxazole) with an epoxy resin microdroplet attached along its length. Shifts of meridional Bragg peaks as a function of stress have been determined for each fibre type and used as a calibration of fibre stress both inside and outside of the droplets. The variation of stress was mapped along the fibre in the microdroplet composites at different levels of applied stress. A modified single fibre pull-out shear lag analysis with an interfacial failure criterion was used to interpret the data. The microdroplet geometry, which is similar to the more established microbond test has several advantages; the primary advantage is that there is no need for a mechanical restraint on the droplet, as in a microbond test.
机译:Microfocus X射线衍射是一种基于同步辐射的技术,已用于确定新型模型复合材料中的纤维基质界面剪切应力。该模型复合材料包含一条聚对苯二甲酰对苯二甲酰胺或聚对苯二甲酰苯并二恶唑的单纤维,并沿其长度方向附着了环氧树脂微滴。对于每种纤维类型,已经确定了经向布拉格峰随应力的变化,并用作液滴内部和外部的纤维应力的校准。在不同水平的施加应力下,应力变化沿微滴复合材料中的纤维分布。修改后的单纤维拉拔剪切滞后分析,采用界面破坏准则来解释数据。类似于更成熟的微键测试的微滴几何结构具有几个优点;主要优点是不需要像微粘结测试中那样对液滴进行机械约束。

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