首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >ON THE MANUFACTURING DEFECTS OF THERMOPLASTIC CARBON/EPOXY COMPOSITES MANUFACTURED BY AUTOMATED TAPE PLACEMENT
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ON THE MANUFACTURING DEFECTS OF THERMOPLASTIC CARBON/EPOXY COMPOSITES MANUFACTURED BY AUTOMATED TAPE PLACEMENT

机译:关于自动胶带展示位置制造的热塑性碳/环氧复合材料的制造缺陷

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Thermoplastic composites are highly recommended for structural application, not only for their superior characteristics derived from the fiber and matrix materials but also for their recycling possibilities, which is a major issue in the today's engineering practice. The manufacturing techniques for thermoplastics are different from those for the well-established thermoset composites. This paper addresses the quality of the thermoplastic composites by assessing the distribution of the fiber, the void contents and the waviness of the fibers, compared to the thermoset composites. IM7/PEEK and AS4/PA12 are the two thermoplastic composite systems used for this study, whereas, IM7/8552 is the thermoset composite used as reference. The specimens were examined using optical microscopy and computed tomography (CT) and the results were statistically treated using circular statistics. Compared to the IM7/8552 composite, the analysis reveals that the IM7/PEEK and AS4/PA12 composites, manufactured by ATP result in a higher volume of voids. On the other hand, A TP processing improves the alignment of the fibers, as the solidification process occurs while the fibers are in tension. The microscopy studies also show that the ATP manufactured composites have an area in between the different layers of tape with a low number of fibers, compared to the other areas.
机译:热塑性复合材料强烈推荐用于结构应用,不仅用于其源自纤维和矩阵材料的优异特性,而且还用于其回收可能性,这是当今工程实践中的一个主要问题。热塑性塑料的制造技术与良好的良好的热固性复合材料不同。本文通过评估光纤的分布,与热固性复合材料相比,通过评估光纤的分布,空隙含量和纤维波纹的分布来解决热塑性复合材料的质量。 IM7 / PEEK和AS4 / PA12是用于本研究的两个热塑性复合系统,而IM7 / 8552是用作参考的热固性复合材料。使用光学显微镜检查标本和计算断层扫描(CT),结果使用圆形统计进行统计治疗。与IM7 / 8552复合材料相比,分析显示,IM7 / PEEK和AS4 / PA12复合材料通过ATP制造的,导致更高的空隙。另一方面,随着在纤维处于张力时发生凝固过程,TP处理改善了纤维的对准。显微镜研究还表明,与其他区域相比,ATP制造的复合材料具有较少数量的纤维数量的不同胶带之间的区域。

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