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Research on mechanical properties of epoxy/glass fiber composites cured by microwave radiation

机译:微波辐射固化环氧/玻璃纤维复合材料力学性能的研究

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摘要

Microwave curing of epoxy/glass fiber composites was investigated in this paper. By studying the reaction characteristics of the resin matrix, detailed curing processes were established. With the use of a self-designed pressure-exerting device, the resin weight fraction of the composites was controllable. The glass transition temperature was measured by differential scanning calorimetry, and the mechanical properties were determined by three-point-bend and uniaxial tensile tests at room temperature. The tensile failure surfaces of both microwave and thermally cured composites were observed with scanning electron microscope. A comparison of the microwave and thermal processes was conducted to evaluate the advantage of microwave curing process. The microwave process (a) and thermal process (b) were regarded as the optimized process for each curing method. It was concluded that the epoxy/glass composites cured by microwave radiation had slightly higher T_g, comparable flexural strength and better tensile properties. Furthermore, the microwave process had a great advantage in saving the cycle time.
机译:本文研究了环氧/玻璃纤维复合材料的微波固化。通过研究树脂基体的反应特性,建立了详细的固化工艺。通过使用自行设计的压力施加装置,可控制复合材料的树脂重量分数。通过差示扫描量热法测量玻璃化转变温度,并且通过在室温下的三点弯曲和单轴拉伸测试来确定机械性能。用扫描电子显微镜观察微波和热固化复合材料的拉伸破坏表面。进行了微波和热工艺的比较,以评估微波固化工艺的优势。微波工艺(a)和热处理(b)被视为每种固化方法的最佳工艺。结论是,通过微波辐射固化的环氧/玻璃复合材料的T_g稍高,抗弯强度相当,拉伸性能更好。此外,微波工艺在节省周期时间方面具有很大的优势。

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