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Conceptual and detailed design of an automotive engine cradle by using topology, shape, and size optimization

机译:通过使用拓扑,形状和尺寸优化来对汽车发动机支架进行概念和详细设计

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摘要

An automotive engine cradle supports many crucial components and systems, such as an engine, transmission, and suspension. Important performance measures for the design of an engine cradle include stiffness, natural frequency, and durability, while minimizing weight is of primary concern. This paper presents an effective and efficient methodology for engine cradle design from conceptual design to detailed design using design optimization. First, topology optimization was applied on a solid model which only contains the possible engine cradle design space, and an optimum conceptual design was determined which minimizes weight while satisfying all stiffness constraints. Based on topology optimization results, a design review was conducted, and a revised model was created which addresses all structural and manufacturability concerns. Shape and size optimization was then performed in the detailed design stage to further minimize the mass while meeting the stiffness and natural frequency targets. Lastly, the final design was validated for durability. The initial design domain had the mass of 82.6 kg; topology optimization in conceptual design reduced the mass to 26.7 kg; and the detailed design task involving shape and size optimization further reduced the mass to 21.4 kg.
机译:汽车发动机支架可支持许多关键组件和系统,例如发动机,变速箱和悬架。发动机支架设计的重要性能指标包括刚度,固有频率和耐用性,而最小化重量是首要考虑因素。本文提出了一种从概念设计到使用设计优化进行详细设计的发动机支架设计的有效方法。首先,将拓扑优化应用于仅包含可能的发动机支架设计空间的实体模型,并确定最佳概念设计,以在满足所有刚度约束的同时将重量最小化。根据拓扑优化结果,进行了设计审查,并创建了一个修正的模型来解决所有结构和可制造性方面的问题。然后在详细设计阶段进行形状和尺寸优化,以在满足刚度和固有频率目标的情况下进一步最小化质量。最后,对最终设计进行了耐久性验证。初始设计域的质量为82.6 kg;概念设计中的拓扑优化将质量减少到26.7 kg;涉及形状和尺寸优化的详细设计任务将质量进一步降低至21.4 kg。

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