首页> 外文期刊>Journal of Materials Science >THE INTERFACIAL PROPERTIES OF ARAMID/EPOXY MODEL COMPOSITES [Review]
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THE INTERFACIAL PROPERTIES OF ARAMID/EPOXY MODEL COMPOSITES [Review]

机译:芳族/环氧树脂模型复合材料的界面性质[综述]

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摘要

Many attempts have been made to measure, evaluate and improve the level of interfacial adhesion in aramid/epoxy composites. Different surface treatments have been developed in order to promote chemical bonding between the fibre and the matrix but it is found that most of the surface treatments developed have shown little or no improvement in the level of interfacial adhesion. The interfacial properties of a model composite are often determined by measuring the interfacial shear strength using micromechanical test methods that employ different loading configurations. However, the values of interfacial shear strength determined using different test methods are found to be dependent upon the variation of localized stress in the samples due to the different loading configurations and often give different results. Using Raman spectroscopy it is shown that the strain-dependent shift of the 1610 cm(-1) aramid Raman band can be used to determine the point-to-point variation of axial fibre strain along aramid fibres embedded in epoxy resin matrices from which the interfacial properties can be derived. The interfacial properties of aramid/epoxy model composites have been determined using Raman spectroscopy where the properties of the fibre, including different surface treatments, and the matrix have been changed systematically. The results are reviewed here and compared to those obtained using conventional micromechanical test methods. It is also demonstrated that the Raman technique can be used to characterize the interfacial properties of aramid/epoxy model composites deformed using different micromechanical test methods. In this way the interfacial properties can be determined at different loading levels enabling the progressive failure of the fibre/matrix interface to be monitored and defined accurately. [References: 73]
机译:已经进行了许多尝试来测量,评估和改善芳族聚酰胺/环氧树脂复合材料中的界面粘合水平。为了促进纤维和基体之间的化学键合,已经开发了不同的表面处理方法,但是发现大多数所开发的表面处理方法在界面粘合水平上几乎没有改善或没有改善。通常通过使用采用不同加载配置的微机械测试方法测量界面剪切强度来确定模型复合材料的界面特性。但是,发现使用不同测试方法确定的界面剪切强度值取决于样品中局部应力的变化,这归因于不同的加载配置,并且通常会给出不同的结果。使用拉曼光谱显示,可以将1610 cm(-1)芳族聚酰胺拉曼能带的应变相关位移用于确定轴向纤维应变沿着嵌入在环氧树脂基体中的芳族聚酰胺纤维的点对点变化。可以得出界面性质。已使用拉曼光谱法确定了芳族聚酰胺/环氧树脂模型复合材料的界面特性,其中纤维的特性(包括不同的表面处理)和基体已得到系统地改变。结果在这里进行了综述,并与使用常规微机械测试方法获得的结果进行了比较。还证明了拉曼技术可用于表征使用不同的微机械测试方法变形的芳族聚酰胺/环氧树脂模型复合材料的界面性能。以这种方式,可以在不同的载荷水平下确定界面性质,从而能够精确地监测和定义纤维/基质界面的逐渐破坏。 [参考:73]

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