首页> 外文期刊>Journal of Composites Science >Influence of the Fibre Content, Exposure Time, and Compaction Pressure on the Mechanical Properties of Ultraviolet-Cured Composites
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Influence of the Fibre Content, Exposure Time, and Compaction Pressure on the Mechanical Properties of Ultraviolet-Cured Composites

机译:纤维含量,曝光时间和压力对紫外线固化复合材料的力学性能的影响

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A new process for the impregnation, consolidation, and curing of glass-fibre-reinforced polyester composites was developed to reduce manufacturing costs and secure end properties that compete with other traditional materials. This new process, based on the ultraviolet (UV) curing of prepregs, could be a viable alternative to infusion and other processes. In this paper, we showed that glass fibre composites 3 mm thick could be easily formed using suitable photoinitiating systems. We achieved improved mechanical properties through the application of favourable parameters to traditional manufacturing processes such as hand lay-up and infusion. The prepreg polymerization was monitored by dielectric analysis (DEA), and we evaluated the relationship between the UV radiation exposure time and curing degree. Both the exposure time and compaction pressure affected the fibre content of composites and interlaminar shear strength. Experimental results showed that compaction pressures higher than 4 bar are necessary to increase the mechanical properties of the UV-cured composites. Finally, the properties of the composites manufactured by this new process were compared to the properties of composites manufactured using traditional processes such as hand lay-up and infusion.
机译:开发了一种新的浸渍,固结和固化玻璃纤维增​​强涤纶复合材料的方法,以降低与其他传统材料竞争的制造成本和安全的最终性质。基于预浸料的紫外线(UV)固化的新方法可能是输液和其他过程的可行替代方案。在本文中,我们表明,使用合适的光引发系统可以容易地形成3mm厚的玻璃纤维复合材料。我们通过将有利的参数应用于传统的制造方法,例如手叠层和输注,我们实现了改进的机械性能。通过介电分析(DEA)监测预浸料坯聚合,我们评估了UV辐射暴露时间和固化度之间的关系。曝光时间和压缩压力均影响复合材料和层间剪切强度的纤维含量。实验结果表明,高于4巴的压实压力是增加UV固化复合材料的机械性能所必需的。最后,将通过使用传统方法制造的复合材料的性质进行比较了通过手动铺设和输注制造的复合材料的性质。

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