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Waviness and fiber volume content analysis in continuous carbon fiber reinforced plastics made by tailored fiber placement

机译:量身定制的连续碳纤维增强塑料的波纹度和纤维体积含量分析

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In this paper, the influence of Tailored Fiber Placement (TFP) processing-related parameters on in-plane waviness and fiber volume content of unidirectional carbon fiber reinforced plastic (UD-CFRP) composites is experimentally investigated. Twelve UD-CFRP laminates, whose preforms are produced via TFP, are manufactured by considering different values of stitch width, stitch distance and stitch sequence as well as two different stitching yarn types by resin transfer molding (RTM). The investigated TFP parameters are representative of the producing capability of a typical TFP machine. Based on calibrated high-resolution photographic images and manual recognition of the roving orientation on the laminate surface, the in-plane waviness is qualitatively and quantitatively measured using Fourier analysis. With this approach, the dominant waviness, in-plane wavelengths, and amplitudes of different stitching parameters can be evaluated. Both mean fiber volume content within the roving and within the TFP layer are determined through optical micrographs of the produced laminates. Experimental results reveal that the resulting waviness and the fiber volume content in the roving and within the TFP layer strongly dependent on TFP process parameters. In particular, the stitch width plays a major role on both fiber volume contents, whereas the stitch distance is less relevant.
机译:本文研究了量身定制的纤维铺放(TFP)处理相关参数对单向碳纤维增强塑料(UD-CFRP)复合材料的面内波纹度和纤维体积含量的影响。十二个UD-CFRP层压板(其预成型件是通过TFP生产的)是通过考虑树脂编织法(RTM)的针迹宽度,针迹距离和针迹序列的不同值以及两种不同的缝合纱类型而制成的。研究的TFP参数代表典型TFP机器的生产能力。基于校准的高分辨率摄影图像和人工识别层压板表面上的粗纱取向,可使用傅立叶分析法定性和定量地测量面内波纹度。使用这种方法,可以评估主要的波纹度,面内波长以及不同缝合参数的幅度。粗纱内和TFP层内的平均纤维体积含量均通过生产的层压材料的光学显微照片确定。实验结果表明,在粗纱和TFP层内产生的波纹度和纤维体积含量在很大程度上取决于TFP工艺参数。特别地,针脚宽度在两种纤维体积含量中都起主要作用,而针脚距离则不太重要。

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