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Contrast on tensile and flexural properties of glass powder reinforced epoxy composites: Pilot study

机译:玻璃粉增强环氧复合材料的拉伸和弯曲性能对比:先导研究

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Epoxy resin was filled with glass powder to optimize the tensile and flexural strength of the composite for structural applications by a research center in the University of Southern Queensland (USQ). To reduce costs, the center wishes to fill as much glass microspheres as possible subject to maintaining sufficient strength of the composites in structural applications. This project varies the percentage by weight of the glass powder in the composites. After casting the composites to the molds, they were cured at ambient conditions for 24 h. They were then postcured in a conventional oven and subjected to tensile and flexural tests. The contribution of the study was that if tensile and flexural properties were the most important factors to be considered in the applications of the composites, the maximum amount of glass powder can be added to the resin will be five (5) percent. It was also found that the fractured surfaces examined under scanning electron microscope were correlated with the tensile and flexural strength It is also hoped that the discussion and results in this work would not only contribute toward the development of glass powder reinforced epoxy composites with better material properties, but also useful for the investigations of tensile and flexural properties in other composites.
机译:南昆士兰大学(USQ)的研究中心用玻璃粉填充环氧树脂,以优化复合材料的拉伸和挠曲强度,以用于结构应用。为了降低成本,该中心希望尽可能多地填充玻璃微球,以保持复合材料在结构应用中的足够强度。该项目改变了复合物中玻璃粉末的重量百分比。将复合材料浇铸到模具中后,将其在环境条件下固化24小时。然后将它们在常规烤箱中后固化,并进行拉伸和弯曲测试。该研究的贡献在于,如果拉伸和挠曲性能是在复合材料应用中要考虑的最重要因素,则可向树脂中添加的玻璃粉的最大量将为百分之五(5)。还发现在扫描电子显微镜下检查的断裂表面与拉伸强度和弯曲强度相关。还希望这项工作的讨论和结果不仅有助于开发具有更好材料性能的玻璃粉增强环氧复合材料,也可用于研究其他复合材料的拉伸和弯曲性能。

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