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Development of Multi-Material Overhead Stowage Systems for Commercial Aircrafts by Using New Design and Production Methods

机译:利用新的设计和生产方法开发商用飞机的多材料架空存放系统

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Innovative, lightweight and cost-efficient aircraft components require the use of modern lightweight materials and efficient production technologies. A promising technology is the combination of chopped fiber Sheet Molding Compounds (SMC) and pre-impregnated, continuous fiber fabrics processed by single-stage compression molding. The so-called Hybrid SMC Technology obtains cost-efficiency as well as time-saving production of loaded and functional aircraft components. However, reliable design principles for components and computing methods for predicting the material behavior have to be developed for a use in aviation industry. Hence, this paper deals with the development of materials, fabrics, manufacturing processes and computing methods related to the Hybrid SMC Technology. Those developments are demonstrated and validated by the implementation of a lightweight multi-material overhead stowage compartment (OHSC) using new design approaches as well as assembly principles.
机译:创新,轻巧和经济高效的飞机组件需要使用现代轻质材料和高效的生产技术。有希望的技术是切碎的纤维片成型化合物(SMC)和预浸渍的连续的连续纤维织物的组合,通过单级压缩成型加工。所谓的混合SMC技术获得成本效率以及装载和功能飞机部件的节省时间。然而,必须开发用于预测材料行为的组件和计算方法的可靠设计原理,以便在航空工业中使用。因此,本文涉及与杂交SMC技术相关的材料,面料,制造工艺和计算方法的开发。通过使用新的设计方法以及装配原则,通过实施轻量级多重材料开销分船(OHSC)来证明和验证这些开发。

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