首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Frequency-based dynamic topology optimization methodology for improved door closing sound quality
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Frequency-based dynamic topology optimization methodology for improved door closing sound quality

机译:基于频率的动态拓扑优化方法,改进门关闭音质

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摘要

Door closing sound quality of a vehicle has become one of the most important customer-related quality metrics in the recent years. There has been a vast amount of information on the design parameters contributing to this attribute in the literature. Amongst them, damping pad on the door outer panel emerges as one of the most significant factors on the door closing sound quality. In this paper, we apply solid isotropic material with penalization topology optimization method to determine the optimum material layout for within a given volume constraint on a front door of a typical vehicle. The objective function of the topology optimization is chosen as the minimization of residual sum of squares of the accelerance of the door outer panel up to 200 Hz. The optimization problem is subject to design constraint to use a predetermined percentage of the full damping pad. The methodology is demonstrated on the finite element model of front door of a Toyota vehicle. Two optimization case studies using 60% and 45% of the damping pad on the door outer panel are introduced as a result of the application of the proposed topology optimization methodology. In addition, more manufacturable optimization configurations with the same % of the damping pad are suggested as a means for more feasible application by automotive original equipment manufacturers. All the optimization configurations are compared to each other on (i) accelerance spectrum up to 200 Hz, (ii) residual sum of squares of the accelerance, and (iii) weight of the damping pad. The results show that it is possible to improve the aforementioned metrics significantly by the application of topology optimization.
机译:近年来车辆的门关闭声音质量已成为最重要的客户相关质量指标之一。有关在文献中有助于此属性的设计参数的大量信息。其中,门外面板上的阻尼垫作为门关闭音质最重要的因素之一。在本文中,我们利用惩罚拓扑优化方法应用纯度各向同性材料,以确定在典型车辆的前门上的给定体积约束内的最佳材料布局。拓扑优化的目标函数被选为最小化门外面板加速度高达200Hz的剩余平方和。优化问题涉及设计约束来使用预定百分比的全阻尼垫。在丰田车辆前门的有限元模型上证明了方法。由于应用提出的拓扑优化方法,引入了使用门外面板上的60%和45%的阻尼垫的两种优化案例研究。此外,建议具有相同占阻尼垫的较差率的更具可制造的优化配置作为汽车原始设备制造商更加可行的应用程序。所有优化配置相互比较(i)加速频谱,高达200 Hz,(ii)加速度的剩余平方和的剩余平方和,和(iii)阻尼垫的重量。结果表明,通过应用拓扑优化,可以显着改善上述度量。

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