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Evaluating the mechanical properties of E-Glass fiber/carbon fiber reinforced interpenetrating polymer networks

机译:评估E-玻璃纤维/碳纤维增强互穿聚合物网络的机械性能

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A series of vinyl ester and polyurethane interpenetrating polymer networks were prepared by changing the component ratios of VER (Vinyl ester) and PU (Polyurethane) and the polymerization process was confirmed with Fourier Transform infrared spectroscopy. IPN (Inter Penetrating Polymer Network - VER/PU) reinforced Glass and carbon fiber composite laminates were made using the Hand lay up technique. The Mechanical properties of the E-glass and carbon fiber specimens were compared from tests including Tensile, Compressive, Flexural, ILSS (Inter Laminar Shear Strength), Impact & Head Deflection Test (HDT). The IPN Reinforced Carbon fiber specimen showed better results in all the tests than E-Glass fibre reinforced IPN laminate with same thickness of the specimen, according to ASTM standards. It was found that the combination of 60%VER and 40%PU IPN exhibits better impact strength and maximum elongation at break, but at the slight expense of mechanical properties such as tensile, compressive, flexural, ILSS properties. The morphology of the unreinforced and reinforced composites was analyzed with help of scanning electron microscopy.
机译:通过改变VER(乙烯基酯)和PU(聚氨酯)的组分比,制备了一系列乙烯基酯和聚氨酯互穿聚合物网络,并通过傅里叶变换红外光谱法确定了聚合过程。 IPN(互穿聚合物网络-VER / PU)增强玻璃和碳纤维复合材料层压板是采用手工铺层技术制成的。从包括拉伸,压缩,弯曲,ILSS(层间剪切强度),冲击和头部挠度测试(HDT)在内的测试中比较了电子玻璃和碳纤维样品的机械性能。根据ASTM标准,IPN增强碳纤维样品在所有测试中均比具有相同厚度样品的E玻璃纤维增​​强IPN层压板表现出更好的结果。发现60%VER和40%PU IPN的组合表现出更好的冲击强度和最大断裂伸长率,但是以机械性能如拉伸,压缩,挠曲,ILSS性能为代价。借助扫描电子显微镜分析了未增强和增强复合材料的形态。

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