Abstract Mechanical characterization of innovative 3D multi-cell thermoset composites produced with weft-knitted spacer fabrics
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Mechanical characterization of innovative 3D multi-cell thermoset composites produced with weft-knitted spacer fabrics

机译:用纬编间隔织物生产的创新3D多单元热固性复合材料的机械特性

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摘要

AbstractInnovative three-dimensional integrated weft-knitted spacer (3D-IWKS) fabrics due to their unique features and flexibility in design, have recently gained significant popularity. These newly-designed fabrics could meet the requirements of numerous technical applications such as composite manufacturing. This work aims to investigate bending and compression resistance of 3D-IWKS composites with different cross-section geometries. Using 400TexE-glass yarns, two types of 3D-IWKS fabric samples as U-shaped single-decker structure (USSD) and V-shaped single-decker structure (VSSD) were knitted on a modern flat knitting machine. The fabric preforms were then molded via vacuum infusion process (VIP) using epoxy resin in order to produce composite panels in the form of multi-cell thin-walled configurations. As far as bending strength and stiffness was concerned, VSSD composites were found to be superior to USSD type. The influence of connecting layers’ orientation against the applied loads was also evaluated via flatwise compression test. The results pointed to higher strength of USSD samples with vertical inter-connecting layers in comparison to VSSD samples with angularly inter-connecting layers. By comparing the edge-wisely compressed specimens, it was found that both types of samples are similar in load-bearing capacity. The findings totally confirm the high mechanical applicability of these new structures.
机译: 摘要 由于具有独特的功能和设计上的灵活性,创新的三维集成式纬编隔垫(3D-IWKS)织物已经得到了新的应用非常受欢迎。这些新设计的织物可以满足多种技术应用(例如复合材料制造)的要求。这项工作旨在研究具有不同横截面几何形状的3D-IWKS复合材料的抗弯曲性和抗压缩性。使用400 Tex E玻璃纱,两种3D-IWKS织物样本分别为U型单层结构(USSD)和V型单层结构结构(VSSD)在现代横机上编织。然后使用环氧树脂通过真空灌注工艺(VIP)将织物预成型件成型,以生产呈多单元薄壁构造形式的复合板。就弯曲强度和刚度而言,发现VSSD复合材料优于USSD类型。还通过平面压缩试验评估了连接层的方向对施加的载荷的影响。结果表明,与具有角度互连层的VSSD样品相比,具有垂直互连层的USSD样品具有更高的强度。通过比较沿边缘压缩的试样,发现两种类型的试样的承载能力相似。这些发现完全证实了这些新结构的高机械适用性。

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