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Design of Tailored Non-Crimp Fabrics Based on Stitching Geometry

机译:基于缝合几何定制非压接织物的设计

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摘要

Automation of the preforming process brings up two opposing requirements for the used engineering fabric. On the one hand, the fabric requires a sufficient drapeability, or low shear stiffness, for forming into double-curved geometries; but on the other hand, the fabric requires a high form stability, or high shear stiffness, for automated handling. To meet both requirements tailored non-crimp fabrics (TNCFs) are proposed. While the stitching has little structural influence on the final part, it virtually dictates the TNCFs local capability to shear and drape over a mold during preforming. The shear stiffness of TNCFs is designed by defining the local stitching geometry. NCFs with chain stitch have a comparatively high shear stiffness and NCFs with a stitch angle close to the symmetry stitch angle have a very low shear stiffness. A method to design the component specific local stitching parameters of TNCFs is discussed. For validation of the method, NCFs with designed tailored stitching parameters were manufactured and compared to benchmark NCFs with uniform stitching parameters. The designed TNCFs showed both, generally a high form stability and in locally required zones a good drapeability, in drape experiments over an elongated hemisphere.
机译:预成型工艺的自动化为二手工程面料带来了两种反对要求。一方面,织物需要足够的可覆盖性或低剪切刚度,以形成双弯曲的几何形状;但另一方面,织物需要高形式的稳定性或高剪切刚度,用于自动处理。为了满足这两个要求,提出了定制的非压接面料(TNCFS)。虽然缝合对最终部分具有很小的结构影响,但它几乎决定了在预成型期间在模具上剪切和覆盖的TNCFS局部能力。通过定义局部拼接几何形状来设计TNCF的剪切刚度。具有链针针的NCFS具有相对高的剪切刚度和NCF,其靠近对称针的针角度具有非常低的剪切刚度。讨论了设计TNCFS的组件特定局部拼接参数的方法。为了验证方法,制造了具有设计定制拼接参数的NCF,并与具有均匀拼接参数的基准NCF进行比较。设计的TNCF在悬垂的半球上的悬垂实验中,设计的TNCF均显示出高度稳定性和局部所需的区域良好的可覆盖性。

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