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Application of Laminated Composite Materials in Vehicle Design: Theories and Analyses of Composite Shells

机译:层压复合材料在车辆设计中的应用:复合壳的理论与分析

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With rising fuel prices, light weight structures and materials (like composites) are receiving more attention. Composite materials offer high stiffness to weight ratio when compared with traditional metallic materials. Traditionally, composite materials were generally costly which made them only attractive to very limited industries (e.g., the defense industry). Advances in their manufacturing and new innovations have brought the cost of these materials down and made them reasonably competitive. They have gained more and more usage in the last 3 decades in the aerospace industry and have recently been gaining more usage in the automotive industry. In automotive design, they yield lighter structures which have positive impact on attributes like fuel economy, emission and others. Proper modeling and analyses need to be performed to make sure that other attributes (e.g. noise, vibration and harshness or NVH) are assessed properly and remain competitive. Composite materials offered for real applications in the automotive industry vary from thermo-plastics to laminated and fiber-reinforced structures. This paper will focus on composite shells and their applications in the auto industry.
机译:随着燃料价格上涨,轻量级结构和材料(如复合材料)正在受到更多关注。与传统金属材料相比,复合材料为重量比提供高刚度。传统上,复合材料通常是昂贵的,这使得它们仅为极限的行业(例如,国防工业)。他们的制造业和新创新的进步使这些材料的成本降低了,使其具有合理竞争力。他们在航空航天行业的最后三十年中获得了越来越多的用法,最近在汽车行业中获得了更多的用法。在汽车设计中,它们屈服于较轻的结构,这些结构对燃料经济性,排放等的属性产生积极影响。需要执行适当的建模和分析以确保正确评估其他属性(例如噪声,振动和哈希智能或NVH)并保持竞争力。为汽车工业中的真实应用提供的复合材料因热塑性而异,以层压和纤维增强的结构。本文将专注于复合壳及其在汽车行业的应用。

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