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A novel microwave combined ultraviolet radiator based on slotted coaxial line for epoxy resin curing

机译:基于环氧树脂固化的开槽同轴线的新型微波组合紫外线

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摘要

Curing resin matrix composite quickly constitutes one of the key technologies for industrial lightweight production, especially in automobile manufacturing and aircraft maintenance. In this study, a novel gap coaxial line microwave combined ultraviolet radiator is proposed for epoxy resin curing. With the same power of 100 W, epoxy resin is cured both by the proposed radiator working at a microwave frequency of 2.45 GHz and single ultraviolet. Respectively, the ultraviolet radiation and microwave combined ultraviolet radiation are measured. The microwave radiation and plasma absorption of this radiator is close to 3:4 by simulation and experiment. In addition, experimental results indicate that the processing time using this radiator is 3.6 times shorter than using single ultraviolet. The toughness and adhesiveness of the epoxy resin after curing are compared by scanning electron microscope and X-ray diffusion, and the fracture surface of the cured epoxy resin demonstrates that microwave combined ultraviolet curing is more effective.
机译:固化树脂基复合材料快速构成用于工业轻质生产中的关键技术之一,特别是在汽车制造和飞机维修。在这项研究中,一种新型的间隙同轴线微波复合紫外线辐射器提出了一种用于环氧树脂的固化。用100 W的相同的功率,环氧树脂通过所提出的散热器在2.45GHz和单紫外线的微波频率工作固化两者。分别,紫外线辐射和微波复合紫外辐射进行测量。这种散热器的微波辐射和等离子体吸收接近3:通过仿真和实验4。此外,实验结果表明,使用该散热器的处理时间比使用单紫外线较短的3.6倍。固化后的环氧树脂的韧性和粘合性通过扫描电子显微镜和X-射线扩散相比,固化的环氧树脂的断裂面显示,微波复合紫外线固化是更有效的。

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