Influence of carbon fiber non-crimp fabrics stitching parameters on the out-of-plane permeability in liquid composite molding process

G. Başer
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Abstract

The widespread use of carbon-fiber-reinforced plastics (CFRP) has attracted many industries such as defense, and aerospace as well as in sailboats, automotive, and rotor-blades, where high strength-to-weight ratios are required. For the aerospace and defense customer today, the importance is no longer just on minimum weight and therefore performance, but primarily on cost of ownership. Textile-manufactured composites, particularly of non-crimp fabric (NCF) type offer significant cost savings in terms of reduced labor time and higher deposition rates over the unidirectional prepreg tape which is the most traditional method. Vacuum vacuum-assisted infusion method is the most used production technic in CFRP parts which also offers high fiber ratios. The most important goal is the impregnation of carbon fiber package in a through-the-thickness direction to get good quality parts in infusion. The behavior of the impregnability depends mainly on the out-of-plane permeability of the fabric. The fiber type, orientation of the fibers, and the stitching parameters, mainly influence the permeability of the fabric. In this study, the influence of textile parameters on the out-of-plane permeability of UD (unidirectional) carbon fiber NCF was investigated. The stitching yarn parameters (stitch pattern, stitch tension, and stitch length) were varied to see the influence on the out-of-plane permeability. The out-of-plane permeability was measured using a tailored visual flow front monitoring method by measuring resin flow distance on the X and Y axes of the fabric during infusion. The results show that the out-of-plane permeability of the UD (0°) carbon fiber NCF is significantly affected by the stitch pattern, stitch tension, and stitch length.
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碳纤维无卷曲织物拼接参数对液体复合成型过程中面外渗透率的影响
碳纤维增强塑料(CFRP)的广泛使用吸引了许多行业,如国防、航空航天以及帆船、汽车和转子叶片,这些行业需要高强度重量比。对于今天的航空航天和国防客户来说,重要性不再仅仅是最小重量和因此的性能,而是主要是拥有成本。与最传统的单向预浸料带相比,纺织制造的复合材料,特别是无卷曲织物(NCF)类型的复合材料在减少劳动时间和提高沉积速率方面节省了大量成本。真空辅助灌注法是碳纤维增强塑料零件中使用最多的生产技术,具有较高的纤维比。最重要的目标是在全厚度方向上对碳纤维包件进行浸渍,以获得高质量的浸渍件。织物的浸渍性能主要取决于织物的面外渗透性。纤维类型、纤维取向和针法参数是影响织物透气性的主要因素。研究了纺织参数对单向碳纤维NCF面外渗透率的影响。研究了不同的缝纱参数(针型、针张力、针长)对面外透气性的影响。通过测量注射过程中树脂在织物X轴和Y轴上的流动距离,采用定制的视觉流前沿监测方法测量面外渗透率。结果表明:UD(0°)碳纤维NCF的面外磁导率受针脚方式、针脚张力和针脚长度的影响较大;
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