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A Novel Approach: Combination of Automated Fiber Placement (AFP) and Additive Layer Manufacturing (ALM)

机译:一种新方法:自动纤维放置(AFP)和添加剂层制造的组合(ALM)

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摘要

Automated processing techniques such as automated fiber placement (AFP) or automated tape laying (ATL) are well known nowadays. However, there is still a lot of potential for these methods to achieve better results, especially for large and complex composite structures. In this experimental work, the gap effect with the Automated Fiber Placement is shown and a solution to overcome this drawback is presented. The gaps are particularly apparent on complex and/or double-curved surfaces and reduce the mechanical properties of the composite structure. In order to cover the unavoidable weak area of this effect, a plurality of fiber composite layers are laid on top of one another in order to increase the mechanical properties of components. This in turn makes the components heavier and more expensive to produce. In this new method, the gaps are detected by profile sensor after placement of the tape on the mold. The gaps are filled with the aid of a 3D printer with carbon continuous-fiber reinforced plastics. By combining the 3D printing and AFP technology, composite parts can be manufactured in a more homogeneous manner. Subsequently, the components are produced faster, cheaper and even lighter because of the avoidance of the additional layers.
机译:自动化处理技术,如自动光纤放置(AFP)或自动磁带铺设(ATL)现在是众所周知的。然而,这些方法仍有很大的潜力来实现更好的结果,特别是对于大型和复杂的复合结构。在该实验工作中,示出了利用自动纤维放置的间隙效应,并提出了克服该缺点的解决方案。在复合物和/或双弯曲表面上特别显而易见,并降低复合结构的机械性能。为了覆盖这种效果的不可避免的弱面积,彼此铺设多个纤维复合层,以增加部件的机械性能。这反过来使组件更重,生产更昂贵。在这种新方法中,在将带放在模具上之后,通过轮廓传感器检测到间隙。借助带有碳连续纤维增强塑料的3D打印机填充间隙。通过组合3D打印和AFP技术,可以以更均匀的方式制造复合部件。随后,由于避免额外的层,这些部件产生更快,更便宜,更轻。

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