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Manufacturing of braided thermoplastic composites with carbonylon commingled fibers

机译:碳/尼龙混合纤维编织热塑性复合材料的制造

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摘要

Commingled fibers, a blend of reinforcement and matrix filaments within the tow, provide a good material arrangement to overcome the high viscosity at melt of thermoplastic matrices. This study first characterizes the architecture of a carbonylon commingled yarn by microscopy. Then, braiding technology is used to manufacture the tubes at various braiding angles. Laminates are then made by compression molding with preforms extracted from the braids. The consolidation quality is examined using the constituent content method and microscopy. Tensile and flexural properties are obtained for a wide range of angles. Fracture analysis of tensile coupons is realized. Finally, the tensile modulus is predicted using classical lamination theory.
机译:混合纤维是丝束中增强纤维和基质细丝的混合物,提供了一种良好的材料布置,可以克服热塑性基质熔融时的高粘度。这项研究首先通过显微镜表征了碳/尼龙混纺纱的结构。然后,使用编织技术以各种编织角度制造管子。然后用从编织物中提取的预成型件通过压缩成型来制造层压板。使用成分含量法和显微镜检查固结质量。在宽角度范围内均可获得拉伸和弯曲性能。实现了拉伸试样的断裂分析。最后,使用经典层压理论预测拉伸模量。

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