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首页> 外文期刊>Journal of Composite Materials >GLASS FABRIC VINYL-ESTER COMPOSITES - TAILORING THE FIBER BUNDLE/MATRIX INTERPHASE WITH NYLON COATINGS TO MODIFY ENERGY ABSORPTION BEHAVIOR
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GLASS FABRIC VINYL-ESTER COMPOSITES - TAILORING THE FIBER BUNDLE/MATRIX INTERPHASE WITH NYLON COATINGS TO MODIFY ENERGY ABSORPTION BEHAVIOR

机译:玻璃纤维乙烯基酯复合材料-调整纤维束/基质相间相和尼龙涂层,以改善能量吸收行为

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The influence of a polyamide coating on the energy absorption behavior of an E-glass fabric-Vinylester composite was investigated using low velocity impact events to assess composite response. The evaluation included three different plate thicknesses and two concentrations of polyamide to achieve a thin and thick coating of the fabric reinforcement. Inelastic Energy Curves (IEC) were used to describe and compare the dominant failure modes. Thin ductile coatings were seen to enhance energy absorption primarily through crack blunting and enhanced frictional sliding, while thicker coatings appear to facilitate delamination in addition to matrix-coating slip due to the weak chemical bond between the vinylester matrix and polyamide. These mechanisms combine to allow greater plate deflections which in turn induce transitions between the dominant plate reactions and ultimately translate into greater energy absorption. [References: 32]
机译:使用低速冲击事件评估复合材料的响应,研究了聚酰胺涂层对电子玻璃纤维-乙烯基酯复合材料的能量吸收行为的影响。评估包括三种不同的板厚度和两种浓度的聚酰胺,以实现织物增强材料的薄涂层和厚涂层。非弹性能曲线(IEC)用于描述和比较主要失效模式。薄的延展性涂层主要通过裂纹钝化和增强的摩擦滑动增强能量吸收,而较厚的涂层由于乙烯基酯基体与聚酰胺之间的化学键弱,除基体涂层滑移外,似乎还有助于分层。这些机制相结合,以允许更大的板挠度,进而引起主导板反应之间的过渡,并最终转化为更大的能量吸收。 [参考:32]

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