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Impact of a microwave curing process on tensile strength of selected carbon fiber composites.

机译:微波固化工艺对所选碳纤维复合材料拉伸强度的影响。

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The traditional process for curing carbon fiber (CF) composites has been the autoclave system. A review of recent research indicates curing CF composites in a microwave oven has the potential for reducing processing time. The problem statement of the experimental study was that the impact of a microwave curing process on tensile strength of selected CF composite specimens was unknown. The research study describes the statistical procedure and analysis of data to answer the specific question for the experimental trials: What is the effect on the tensile strength of cured CF composite samples due to the relationship of the autoclave and microwave curing process cycle time and temperature? ASTM International standard test method designation D 5083 - 02 was used for testing tensile strength of reinforced carbon fiber plastics using straight-sided specimens. Analytical data was obtained for evaluating the effects of process cycle time and temperature on tensile strength of the CF composite specimens. The result was that curing time of the autoclave system and microwave process had significant effects on the maximum tensile stress of CF composite specimen. Although 83% faster than the autoclave system, the microwave curing process had CF specimens with lower maximum tensile strength compared with the autoclave system results. The primary reason for the difference was that the microwave process did not use vacuum or pressure. Considering the cost/benefit ratio, the research study indicated that the microwave oven would be a viable and efficient process for curing CF composites.
机译:固化碳纤维(CF)复合材料的传统方法是高压釜系统。最近的研究综述表明,在微波炉中固化CF复合材料具有减少加工时间的潜力。实验研究的问题在于,微波固化工艺对所选CF复合材料试样拉伸强度的影响尚不清楚。该研究描述了统计程序和数据分析,以回答实验试验中的特定问题:由于高压釜和微波固化过程的周期时间和温度之间的关系,对固化的CF复合材料样品的拉伸强度有何影响? ASTM国际标准测试方法名称D 5083-02用于使用直边样本测试增强碳纤维塑料的拉伸强度。获得了用于评估工艺周期时间和温度对CF复合材料试样拉伸强度的影响的分析数据。结果表明,高压釜系统的固化时间和微波工艺对CF复合材料试样的最大拉伸应力有显着影响。尽管比高压灭菌器系统快83%,但微波固化过程中的CF试样的最大拉伸强度比高压灭菌器系统的结果低。造成这种差异的主要原因是微波过程没有使用真空或压力。考虑到成本/收益比,研究表明,微波炉将是一种固化CF复合材料的可行且有效的工艺。

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