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Influence of drapability by using stitching technology to reduce fabric deformation and shear during thermoforming

机译:缝合技术对悬垂性的影响,以减少热成型过程中的织物变形和剪切

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摘要

Forming of woven fabric into a complex shape involves shear deformation of the fabric elements (warp and weft). Various researchers investigated the shear deformation during the manufacturing of thermoplastic composites (TPC) based on the hemispherical geometry, where the highly deformed edges and corners are considered as a waste. In many applications the complete formed geometry including areas around the curvature has to be used. A new idea to influence the deformation behavior of woven fabric by incorporated seams at localized sections is presented in this paper. The study is based on the photographic analysis of dry sewn preforms and thermoplastic matrix (PA12) impregnated laminates, before and after the deformation. The seams applied at the highly deformable and predefined zones help to reduce fabric shearing or to transfer the shear forces into the unsheared areas during the thermoforming process. The intensity of reduction in the fabric shear depends on the type of the sewn geometry. The results obtained can be applied in the part design, the preform engineering, and the positioning of stitches.
机译:将机织织物成形为复杂的形状涉及织物元件的剪切变形(经纱和纬纱)。许多研究人员基于半球形几何形状研究了热塑性复合材料(TPC)在制造过程中的剪切变形,其中高度变形的边缘和拐角被视为浪费。在许多应用中,必须使用完整的成形几何形状,包括曲率周围的区域。提出了一种通过局部接缝影响机织织物变形行为的新思路。这项研究基于干式缝制的预成型件和热塑性基质(PA12)浸渍层压板在变形前后的照片分析。在热变形过程中,在高度变形和预定区域施加的接缝有助于减少织物的剪切或将剪切力传递到未剪切的区域。织物剪切力降低的强度取决于缝制几何形状的类型。获得的结果可用于零件设计,瓶坯工程设计和针的定位中。

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