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A Study on Door Clips and Their Influence on BSR Performance

机译:门夹的研究及其对BSR性能的影响

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Squeak and rattle concerns account for approximately 10% of overall vehicle Things Gone Wrong (TGW) and are major quality concern for automotive OEM’s. Objectionable door noises are one of the top 10 IQS concerns under any OEM nameplate. Door trim significantly contributes to overall BSR quality perception. Door trim is mounted on door in white using small plastic clips with variable properties that can significantly influence BSR performance. In this paper, the performance of various door clips is evaluated through objective parameters like interface dynamic stiffness and system damping. The methodology involves a simple dynamic system for the evaluation of the performance of a clip design. Transmissibility is calculated from the dynamic response of a mass supported by clip. Parameters such as interface stiffness and system damping are extracted for each clip design. Variation of inner panel thickness is also considered when comparing clip performance. In a second step, clip characteristics are transferred to an equivalent finite element model to predict the response of mass supported by clip. The equivalent clip model is compared with generic clip model for analyzing squeak and rattle simulation in a door assembly. A satisfactory correlation has been achieved between measured and simulated response of clip. Design targets are finally presented for the selection of door clips in the product development process, to avoid rattle issues in door trim assemblies.
机译:异响的关注占到整车事情出了错(TGW)的约10%,并且是汽车OEM的主要质量问题。不良门的噪音是任何OEM铭牌顶下10 IQS关注的问题之一。门饰板显著有助于整体BSR质量感知。车门装饰件是使用小塑料夹子具有可显著影响BSR性能变量属性安装在门中的白色。在本文中,各个门剪辑的性能是通过类似的接口动态刚度和阻尼系统客观参数进行评价。该方法涉及的夹子设计的性能评价一个简单的动态系统。传递率是从由夹子支撑的质量的动态响应计算。参数,如界面刚度和阻尼系统提取每个剪辑的设计。内板厚度的变化被比较剪辑性能时也被考虑。在第二步骤中,夹特性被转移到一个等效有限元模型来预测块的由夹支持的响应。等效夹模型与用于在门组件分析异响仿真通用夹子模型进行比较。令人满意的相关性已被剪辑的测量和模拟响应之间实现。设计目标终于给出了门夹在产品开发过程中的选择,以避免在门饰板组件拨浪鼓问题。

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