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Determination of Mode-I Fracture Toughness of Epoxy-Glass Fibre Composite Laminate

机译:环氧玻璃纤维复合层压板的模式-I裂缝韧性的测定

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The conventional materials fail to meet the requirements of high technology applications like space applications. In order to meet the requirements like high temperature and wear resistance new materials are being searched. The composite laminar for testing will be prepared with glass fiber rain forced with epoxy. The applications of composite materials have recently increased because of their high strength/stiffness for lower weight, superior fatigue characteristics, and facility to change fiber orientations etc. At the same time, these materials pose new problems such as inter ply cracking, inter laminar de-lamination and fiber cracking. Composite materials failure can be reduced by increasing fracture toughness. Our Aim is to evaluate the fracture toughness of glass fiber/epoxy composites. These composites were prepared with glass fiber reinforced with epoxy based polymer. The fracture Toughness of the specimen is used to conduct mode-I fracture test using special loading fixtures as per ASTM standards.
机译:传统材料未能满足空间应用中高科技应用的要求。为了满足高温和耐磨性的要求,正在搜索新材料。用于测试的复合层,将用玻璃纤维雨用环氧树脂制备。最近,复合材料的应用较轻的强度/刚度,较轻,疲劳特性和改变纤维取向等的设施高度,较高的疲劳特性等。同时,这些材料构成了新的问题,例如冰层裂缝,米兰德米兰德 - 释放和纤维裂化。通过增加裂缝韧性可以减少复合材料失效。我们的目的是评估玻璃纤维/环氧复合材料的断裂韧性。用玻璃纤维加强与环氧基聚合物的玻璃纤维制备这些复合材料。样品的断裂韧性用于使用根据ASTM标准的特殊装载夹具进行模式-I断裂试验。

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