首页> 外文会议>SAMPE Europe Conference >CONTINUOUS DRAPING OF DOUBLE CURVED GEOMETRIES - A GEOMETRICAL APPROACH TO DESCRIBE AN AUTOMATED LAYUP PROCESS OF FABRICS ON COMPLEX SURFACE
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CONTINUOUS DRAPING OF DOUBLE CURVED GEOMETRIES - A GEOMETRICAL APPROACH TO DESCRIBE AN AUTOMATED LAYUP PROCESS OF FABRICS ON COMPLEX SURFACE

机译:双弯曲几何形状的持续悬垂 - 一种描述复杂表面上织物自动铺设过程的几何方法

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To achieve a higher grade of integral aircraft structure design, a new unconventionally stiffened lattice composite fuselage panel is developed allowing a co-curing process of fuselage skin and stiffening structure. For this purpose, a novel automated layup module is under development. Within this contribution, the geometrical behaviour of the fibre-fabric during continuous draping onto the mould surface is investigated. Based on experimental draping studies on occurring issues during fabric draping, a process model was created. The presented approach is based on geometrical boundary conditions and neglects specific material properties. To ensure proper draping results, the fabric has to be kept under tension. Thus, it must be dropped in dependence of the surface geometry at the resulting "draping-spline" (Figure 4). Simulation results are verified and discussed through three-dimensional measuring data of the layup process. Subsequently, the geometrical data of the "draping-spline" for different process situations is analysed to determine the workspace for the layup modules shape-replicating kinematics. Furthermore, possible kinematical configurations and needed degrees of freedom to replicate the shape-changing three-dimensional spline mechanically are discussed.
机译:为了实现更高等级的整体飞机结构设计,开发了一种新的非传统加强的晶格复合机身面板,允许具有机身皮肤和加强结构的共固化过程。为此目的,新颖的自动铺设模块正在开发中。在这种贡献中,研究了在连续覆盖到模具表面期间的纤维织物的几何行为。基于对织物悬垂期间发生问题的实验帷幕研究,创建了一个过程模型。所提出的方法基于几何边界条件并忽略了特定的材料特性。为确保正确悬垂的结果,必须保持张力的织物。因此,它必须依赖于所得“覆盖样条”的表面几何形状(图4)。通过铺设过程的三维测量数据验证和讨论了仿真结果。随后,分析了用于不同处理情况的“覆盖样条”的几何数据,以确定用于叠加模块的工作空间形状复制运动学。此外,讨论了可能的运动型配置和所需的自由度来复制形状改变的三维样条线。

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