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Mechanical Properties of GFRP Laminates Manufactured by Process Combined with Wet Lay-up and Vacuum Curing

机译:湿法上胶与真空固化相结合工艺制造的GFRP层压板的力学性能

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摘要

In this study, a manufacturing process for glass fiber reinforced plastics (GFRP) laminates was developed to improve volume fraction of fibers and mechanical properties. The manufacturing process is combination with wet lay-up and vacuum curing under atmosphere pressure for production of large and complicated structure as a leisure boat and so on. Several kinds of GFRP laminates were produced to consider optimum conditions of the process from viewpoint of volume fraction of fibers and mechanical properties. Volume fractions of fibers in GFRP laminates were measured and cross sections were observed by an optical microscope. The volume fraction in the GFRP laminate made by the suggested method was improved to 41 %, although the one made by conventional wet lay-up method was 17.7 %. Because a lot of large voids included in the laminates were drastically decreased due to the methods. For each laminate, three-point bending test was performed to measure elastic modulus and fracture toughness. Elastic modulus was improved from 5.39 GPa to 8.91 GPa with high volume fractions of fibers. Fracture toughness was improved from 8.19 MPa m~(1/2) to 16.6 MPa m~(1/2). Therefore, it was obtained that the method combined with wet lay-up and vacuum curing is easy process for manufacturing large and complicated structure to improve excellent mechanical properties and accuracy of structural shape.
机译:在这项研究中,开发了玻璃纤维增​​强塑料(GFRP)层压板的制造工艺,以提高纤维的体积分数和机械性能。该制造工艺是将湿法叠层和在大气压力下真空固化相结合,以生产大型复杂结构的休闲船等。从纤维的体积分数和机械性能的观点出发,生产了几种GFRP层压板,以考虑工艺的最佳条件。测量GFRP层压板中纤维的体积分数,并通过光学显微镜观察横截面。通过建议的方法制造的GFRP层压板中的体积分数提高到41%,尽管通过传统的湿法层压方法制造的是17.7%。由于该方法,大大减少了层压板中包含的许多大空隙。对于每个层压板,进行三点弯曲测试以测量弹性模量和断裂韧性。使用高体积分数的纤维,弹性模量从5.39 GPa提高到8.91 GPa。断裂韧性从8.19 MPa m〜(1/2)提高到16.6 MPa m〜(1/2)。因此,获得了将湿法铺层和真空固化相结合的方法是用于制造大型且复杂的结构的容易的工艺,从而提高了优异的机械性能和结构形状的精度。

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