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Microwave Curing Characteristics of CFRP Composite Depending on Thickness Variation Using FBG Temperature Sensors

机译:FBG温度传感器根据厚度变化改变CFRP复合材料的微波固化特性

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摘要

Microwave curing technology, which has seen increased commercialization recently due to its ability to cut the curing time and ensure high quality, requires an understanding of the curing characteristics of composite materials of varying thickness. Therefore, this study aimed to perform cure monitoring to evaluate the effects of variations in thickness on the quality of microwave curing. For this study, a fiber Bragg grating sensor was used to measure temperature changes in specimens during the curing cycle for cure monitoring which is generally used for optimization of the curing cycle; then, the time taken for temperature increase and overshoot of the specimen, and the times at which the specimen thickness varied, were quantitatively evaluated. Testing confirmed that microwave curing reduced the curing time in the sections in which the temperature rose; also, the specimen thickness caused overshoot of up to approximately 40 °C at the side, which can affect the curing quality of the composite materials. Furthermore, voids were observed on the side of all specimens. The results indicated that, in order to improve the quality of microwave curing of composite materials, the curing cycle should be optimized by considering the characteristics of the microwave curing equipment.
机译:微波固化技术由于其缩短固化时间和确保高质量的能力而在最近已经得到了商业化,它需要了解不同厚度的复合材料的固化特性。因此,本研究旨在进行固化监控以评估厚度变化对微波固化质量的影响。在这项研究中,使用了一个光纤布拉格光栅传感器来测量固化周期内样品的温度变化,以进行固化监控,这通常用于优化固化周期。然后,定量评估温度升高和样品超调所花费的时间,以及样品厚度变化的时间。测试证实,微波固化减少了温度升高部分的固化时间。同样,样品厚度会在侧面引起最高约40°C的过冲,这可能会影响复合材料的固化质量。此外,在所有样品的侧面均观察到空隙。结果表明,为提高复合材料的微波固化质量,应考虑微波固化设备的特点优化固化周期。

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