首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Joint stiffness analysis and optimization as a mechanism for improving the structural design and performance of a vehicle
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Joint stiffness analysis and optimization as a mechanism for improving the structural design and performance of a vehicle

机译:关节刚度分析和优化,作为改善车辆结构设计和性能的一种机制

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摘要

An approach is presented to evaluate the structural performance of a vehicle model in terms of the joint stiffness. Seven major joints on the left and right sides of the vehicle body are identified, and each joint is decomposed in the finite element model and assigned a separate set of material properties. By adjusting the elastic modulus of each structural member, the effects of the joint stiffness on the full and offset frontal impacts as well as the vibration characteristics are examined. Latin hypercube sampling is used in the design of experiments to approximate the acceleration, the intrusion distance, and the fundamental vibration frequencies using full quadratic polynomial response surface models. Through direct differentiation, the sensitivities of the crash responses and the vibration responses to the joint stiffness are calculated. A constrained multi-objective optimization problem is formulated and solved to improve the structural responses by adjusting the stiffness at each joint. Evaluation of the car body structure based on the optimum joint stiffness showed a superior performance relative to the baseline model without a weight penalty. The results of both the sensitivity analysis and the design optimization are presented and discussed.
机译:提出了一种根据关节刚度评估车辆模型的结构性能的方法。确定了车身左侧和右侧的七个主要关节,每个关节在有限元模型中分解并分配了一组单独的材料属性。通过调整每个结构构件的弹性模量,可以检查关节刚度对全部和偏移的正面碰撞以及振动特性的影响。拉丁超立方体采样用于实验设计中,使用完整的二次多项式响应面模型来估算加速度,侵入距离和基本振动频率。通过直接区分,计算出碰撞响应和对关节刚度的振动响应的敏感性。提出并解决了受约束的多目标优化问题,以通过调整每个接头的刚度来改善结构响应。基于最佳接头刚度的车身结构评估显示出相对于基线模型的优越性能,而没有重量损失。给出并讨论了灵敏度分析和设计优化的结果。

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