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首页> 外文期刊>Polymer Testing >Exploration of specimen geometry and tab configuration for tensile testing exploiting the potential of 3D printing freeform shape continuous carbon fibre-reinforced nylon matrix composites
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Exploration of specimen geometry and tab configuration for tensile testing exploiting the potential of 3D printing freeform shape continuous carbon fibre-reinforced nylon matrix composites

机译:试样几何形状和拉纹突片配置的探索,用于利用3D印刷自由形状连续碳纤维增强尼龙基复合材料的电位

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摘要

Now that the design freedom of printing of continuous fibre-reinforced polymers has become available, the recommendations on the specimens' geometry and tab configuration to experimentally determine the elastic properties of conventionally manufactured composites are reviewed. To explore this design freedom, tensile tests for five types of specimen geometry and tabs were investigated. Continuous carbon fibre-reinforced Nylon specimens were printed using a Mark Two commercial 3D printer. Dumbbell shape specimens according to ASTM D638-14 with proposed radius dimension, 76 mm, and with enlarged radius, 244 mm to reduce stress concentrations at the fillet and avoid crack initiation were tested. Rectangular specimens according to ASTM D3039/3039M-14 outperform other specimen geometries. The effectiveness of printed end tabs was investigated. Even although 3D printing offers facilities for printing end tabs, there is no convincing evidence that the performance of specimen gripping is better and the printing is more time consuming and expensive. Rectangular specimens with paper end tabs work best and that is why they were used in the further characterization. The effect of alternating Nylon layers was also investigated and shows drastic reduction in stiffness. In a next step, the tensile properties of a set of eight rectangular specimens with 0 degrees unidirectional layup were characterized and compared with conventionally manufactured composites. The tensile properties for different fibre orientations were also determined. The effect of fibre location and microstructure was studied bringing important insights to the promising 3D printing but also revealing challenges to overcome (e.g. inhomogeneity in fibre distribution) to be able to fully explore the design freedom.
机译:现在,印刷连续纤维增强聚合物的印刷自由度已有可用,对试样的几何和标签配置的建议进行了综述确定以实验确定常规制造的复合材料的弹性性能。为了探索这种设计自由,研究了五种类型的样品几何形状和标签的拉伸试验。使用标记两种商用3D打印机打印连续碳纤维增强尼龙样本。哑铃形状试样根据ASTM D638-14,具有提出的半径尺寸,76毫米,并扩大半径,244毫米以减少圆角处的应力浓度,并避免裂纹引发。矩形试样根据ASTM D3039 / 3039M-14优于其他标本几何形状。研究了印刷端标签的有效性。即使3D打印提供用于印刷末端标签的设施,也没有说明的证据表明,样品抓握的性能更好,印刷更耗时和昂贵。带纸末端标签的矩形标本最为适用,这就是为什么它们在进一步表征中使用。还研究了交替尼龙层的效果并显示出刚度的急剧降低。在下一步骤中,表征并与常规制造的复合材料相比,并将其具有0度的八个矩形样品的拉伸性能。还确定了不同纤维取向的拉伸性能。研究了纤维位置和微观结构的影响,对有前途的3D印刷带来了重要的见解,但也揭示了克服的挑战(例如,纤维分布中的不均匀性)能够充分探索设计自由。

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