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Structural Optimization of a Knuckle with Consideration of Stiffness and Durability Requirements

机译:考虑到刚度和耐用性要求的转向节的结构优化

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摘要

The automobile's knuckle is connected to the parts of the steering system and the suspension system and it is used for adjusting the direction of a rotation through its attachment to the wheel. This study changes the existing material made of GCD45 to Al6082M and recommends the lightweight design of the knuckle as the optimal design technique to be installed in small cars. Six shape design variables were selected for the optimization of the knuckle and the criteria relevant to stiffness and durability were considered as the design requirements during the optimization process. The metamodel-based optimization method that uses the kriging interpolation method as the optimization technique was applied. The result shows that all constraints for stiffness and durability are satisfied using A16082M, while reducing the weight of the knuckle by 60% compared to that of the existing GCD450.
机译:汽车的转向节连接到转向系统和悬架系统的部件,并且通过将其安装在车轮上来调节旋转方向。这项研究将由GCD45制成的现有材料更改为Al6082M,并建议将转向节的轻型设计作为安装在小型汽车中的最佳设计技术。选择了六个形状设计变量以优化转向节,并且在优化过程中将与刚度和耐用性相关的标准视为设计要求。应用了基于元模型的优化方法,该方法使用克里格插值法作为优化技术。结果表明,使用A16082M可以满足对刚度和耐用性的所有限制,并且与现有GCD450相比,转向节的重量减少了60%。

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