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Lightweight flatbed trailer design by using topology and thickness optimization

机译:利用拓扑和厚度优化设计轻型平板拖车

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摘要

A new design for a lightweight flatbed trailer with high bending stiffness and torsional frequency is presented. The design procedure consists of two main steps: topology optimization and thickness optimization. During topology optimization, a creative frame layout different from existing ladder-type frames can be obtained by searching the best layout out of all possible layouts of a simplified design domain model. After approximating the result of topology optimization as a thin-walled structure, the approximated thicknesses of the plates are optimized to minimize the mass of a trailer. The bending stiffness and torsional frequency obtained by topology optimization are set as design constraints for thickness optimization. Due to the closed cross-section, the optimized trailer can efficiently increase the stiffness-to-mass ratio to a large extent. Discrete thicknesses are employed as design variables for thickness optimization so that the thicknesses of the plates of a trailer can be included in those of commercially available high-strength steel products. The final model has a 29% reduction in total mass, a 21% decrease in mean compliance with a uniform bending load, and a 169% increase in torsional frequency.
机译:提出了一种具有高弯曲刚度和扭转频率的轻型平板拖车的新设计。设计过程包括两个主要步骤:拓扑优化和厚度优化。在拓扑优化过程中,可以通过从简化设计域模型的所有可能布局中搜索最佳布局来获得不同于现有梯形框架的创意框架布局。在将拓扑优化结果近似为薄壁结构后,对板的近似厚度进行优化以最小化挂车的质量。通过拓扑优化获得的弯曲刚度和扭转频率被设置为厚度优化的设计约束。由于具有封闭的横截面,优化的挂车可以在很大程度上有效地提高刚度/质量比。离散厚度用作优化厚度的设计变量,因此拖车板的厚度可以包含在市售高强度钢产品中。最终模型的总质量减少了29%,在均匀弯曲载荷下的平均顺应性减少了21%,扭转频率增加了169%。

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