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Design of a Motorcycle Composite Swing-Arm by Means of Multi-objective Optimisation

机译:基于多目标优化的摩托车复合摆臂设计

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摘要

A study for the replacement of a metallic swing-arm of a high performance motorcycle with a composite part is presented. Considering the high structural effectiveness of the original metallic component, the case study evaluates the potential of composites in a challenging application. The FE model of the original component is developed to evaluate the structural performance in the most significant load conditions. A manufacturing process, based on a RTM technique, is proposed and analysed in order to develop realistic design hypotheses. The design approach is based on an optimisation process with 60 design variables. A constrained multi-objective genetic algorithm is applied to identify the solutions representing the best trade-off between mass reduction and improvement of torsional stiffness. Results show that composite materials can enhance the structural efficiency of the original metallic part, even considering technological limitations and damage tolerance requirements.
机译:提出了用复合零件代替高性能摩托车的金属摆臂的研究。考虑到原始金属部件的高结构有效性,该案例研究评估了复合材料在具有挑战性的应用中的潜力。开发原始组件的有限元模型以评估最重要的载荷条件下的结构性能。提出并分析了一种基于RTM技术的制造过程,以提出切合实际的设计假设。该设计方法基于具有60个设计变量的优化过程。一种受约束的多目标遗传算法被用于识别代表质量减少和扭转刚度改善之间最佳折衷的解决方案。结果表明,即使考虑到技术限制和损坏容限要求,复合材料也可以提高原始金属零件的结构效率。

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