Investigation of the friction behavior of uni- and bidirectional non-crimp fabrics

Bastian Schäfer
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Abstract

Abstract. The friction behavior of engineering textiles directly affects the forming quality during composite molding processes. In forming tests of dry engineering textiles large relative slip between plies and the tools is observed. The resulting tangential contact stresses influence the material’s membrane stresses, which in turn impact the fabric’s deformation and potentially lead to forming defects such as gapping or ruptures of the textile. The characterization of friction is commonly conducted via relative motion between a fabric ply and either another fabric ply (ply-ply) or a tool (tool-ply) under controlled transverse pressure. The resulting behavior of a textile reinforcement depends on the mesoscopic structure of its unit cell and the material of its constituents. In this work, the tangential friction behavior at interfaces between ply and tooling and between plies of a unidirectional and a bidirectional non-crimp fabric are investigated in sled pull-over-tests. The behavior is analyzed with respect to the applied normal forces, the relative velocity and the relative fiber orientation. A generally rate-independent behavior is observed. Tool-ply friction is only slightly affected by the applied pressure, while ply-ply friction is strongly influenced by the stitching pattern at the contact interface.
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单向和双向无皱织物的摩擦行为研究
摘要工程纺织品的摩擦行为直接影响复合材料成型过程中的成型质量。在干燥工程纺织品的成型测试中,可以观察到纤维层与工具之间存在较大的相对滑移。由此产生的切向接触应力会影响材料的膜应力,进而影响织物的变形,并可能导致成形缺陷,如织物间隙或破裂。摩擦表征通常是通过织物层与另一织物层(织物层-织物层)或工具(工具-织物层)在受控横向压力下的相对运动来进行的。由此产生的织物加固行为取决于其单元格的中观结构及其组成材料。在这项研究中,我们在拉力试验中研究了单向和双向非卷曲织物的层与工具之间以及层与层之间界面的切向摩擦行为。分析了与施加的法向力、相对速度和相对纤维方向有关的行为。观察到的行为一般与速度无关。工具-层间摩擦力仅受外加压力的轻微影响,而层间摩擦力则受接触界面缝合模式的强烈影响。
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