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首页> 外文期刊>Journal of Elastomers & Plastics >Fracture toughness enhancement of carbon fiber-reinforced polymer composites utilizing additive manufacturing fabrication
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Fracture toughness enhancement of carbon fiber-reinforced polymer composites utilizing additive manufacturing fabrication

机译:利用添加剂制造制造的碳纤维增强聚合物复合材料的断裂韧性提高

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摘要

The present work reports a novel approach to enhance the fracture resistance and notch sensitivity of carbon fiber-reinforced polymer composites utilizing additive manufacturing (3-D printing) fabrication. The 3-D printed composites utilize carbon fiber bundles to reinforce nylon/chopped fiber resin in a multilayered structure configuration. Single-edge (60 degrees) notched samples were printed using Mark Two printer. Three reinforcement schemes were designed and used to manufacture the specimens. The focus was placed on selective reinforcement at the crack tip to arrest crack initiation. The mechanical properties, fracture toughness, and fracture behavior of the printed composites were evaluated. It was found that wrapping fiber around the notch effectively blunted the notch and redirected crack propagation away from the notch tip, thereby lengthening the crack path and leading to improved fracture resistance. It was also found that such improvement reaches a saturation level. Excessive notch reinforcement beyond optimal limit can reverse the gains in fracture resistance due to notch-targeted reinforcement. Examination of the fracture surface morphology of the printed composites reveals lack of fusion of the sizing of the individual continuous carbon fiber bundles and the lack of adhesion between the matrix layers (nylon/chopped fiber resin) and the adjacent carbon fiber bundle reinforcement. Damage to the fibers within the carbon bundle was also observed. Thus, a synergetic effect of the carbon fiber bundles reinforcement and the matrix requires more optimization to manufacture carbon-reinforced polymer composites using 3-D printing.
机译:本作者报告了一种新的方法来利用添加剂制造(3-D印刷)制造来提高碳纤维增强聚合物复合材料的裂缝抗性和缺口敏感性。 3-D印刷复合材料利用碳纤维束来加强多层结构构造中的尼龙/切碎的纤维树脂。使用标记两台打印机打印单边缘(60度)缺口样本。设计并用于制造标本的三种强化方案。将重点放在裂缝尖端的选择性加固上,以防止裂纹启动。评估了印刷复合材料的机械性能,断裂韧性和断裂行为。发现围绕凹口的包裹纤维有效地钝化了凹口和重定向的裂缝远离凹口尖端的传播,从而延长了裂纹路径并导致改善的裂缝抗性。还发现这种改进达到了饱和水平。超越最佳限制的过度陷波强化可以逆转由于凹口靶向增强而导致的断裂抗性。检查印刷复合材料的骨折表面形态显示缺乏各个连续碳纤维束的施胶的熔化和基质层(尼龙/短切纤维树脂)和相邻的碳纤维束加强件之间的粘附性缺乏。还观察到碳束内的纤维损坏。因此,碳纤维束加强件和基质的协同作用需要更优化以使用3-D印刷制造碳增强的聚合物复合材料。

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