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Additive Manufacturing of Structural Cores and Washout Tooling for Autoclave Curing of Hybrid Composite Structures

机译:用于杂交复合结构的高压釜固化的结构芯和冲洗工具的添加剂制造

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摘要

This paper presents a study combining additive manufactured (AM) elements with carbon fiber-reinforced polymers (CFRP) for the autoclave curing of complex-shaped, lightweight structures. Two approaches were developed: First, structural cores were produced with AM, over-laminated with CFRP, and co-cured in the autoclave. Second, a functional hull is produced with AM, filled with a temperature-and pressure-resistant material, and over-laminated with CFRP. After curing, the filler-material is removed to obtain a hollow lightweight structure. The approaches were applied to hat stiffeners, which were modeled,fabricated, and tested in three-point bending. Results show weight savings by up to 5% compared to a foam core reference. Moreover, the AM element contributes to the mechanical performance of the hat stiffener, which is highlighted by an increase in the specific bending stiffness and the first failure load by up to 18% and 310%. Results indicate that the approaches are appropriate for composite structures with complex geometries.
机译:本文介绍了与碳纤维增强聚合物(CFRP)组合的研究组合制造(AM)元素,用于复合,轻质结构的高压釜固化。开发出两种方法:首先,用CFRP过度层压,并在高压釜中共同固化结构核心。其次,用am,填充有温度和耐压材料,并用CFRP过覆层压的功能壳。固化后,除去填料 - 材料以获得中空的轻质结构。将该方法应用于帽子加强筋,其在三点弯曲中被建模,制造和测试和测试。结果与泡沫核心参考相比,速度可节省高达5%。此外,AM元件有助于帽加强筋的机械性能,这通过比特定弯曲刚度和第一故障载荷的增加突出显示高达18%和310%。结果表明,该方法适用于具有复杂几何形状的复合结构。

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