首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >The uncertainty in stiffness and damping of an automotive vehicle's trim-structure mounts and its effect on the variability of the vibration transfer function
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The uncertainty in stiffness and damping of an automotive vehicle's trim-structure mounts and its effect on the variability of the vibration transfer function

机译:汽车车辆装饰结构安装件的刚度和阻尼的不确定性及其对振动传递函数变异性的影响

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摘要

A large number of plastic clips are used in an automotive vehicle to connect the trim to the structure. These are small clips with very small masses compared to the structural elements that they connect together; however, the uncertainty in their properties can affect the dynamic response. The uncertainty arises out of their material and manufacturing tolerances and more importantly the boundary conditions. A test rig has been developed that can model the mounting condition of the clips. This allows measurement of the range of their effective stiffness and damping. Initially, the boundary condition at the structure side is replicated. The variability is found to be 7% for stiffness and 8% for damping. In order to simulate the connection of the trim side, a mount is built using a 3D printer. The variability due to the boundary condition on both sides was as large as 40% for stiffness and 36% for damping. A Monte Carlo simulation is used in order to assess the effect of the uncertainty of the clips' properties on the vibration transfer functions of a door assembly. A simplified connection model is used in this study where only the axial degree of freedom is considered in connecting the trim to the door structure. The uncertainty in the clip stiffness and damping results in a variability in the vibration transfer function which is frequency dependent and can be as high as 10% at the resonant peaks with higher values at some other frequencies. It is shown that the effect of the uncertainty in the clips effective damping is negligible and the variability in the dynamic response is mainly due to the uncertainty in the clip's stiffness. Furthermore, it is shown that the variability would reduce either by increasing or decreasing the effective stiffness of the clips.
机译:在汽车车辆中使用大量塑料夹以将装饰连接到结构。与它们一起连接的结构元素相比,这些是具有非常小的块状的小夹子;但是,其性质的不确定性会影响动态响应。不确定性出现在物质和制造公差之外,更重要的是边界条件。已经开发了一种测试钻机,其可以模拟夹子的安装条件。这允许测量其有效刚度和阻尼的范围。最初,复制结构侧的边界条件。刚度的可变性为7%,8%用于阻尼。为了模拟修剪侧的连接,使用3D打印机构建安装座。由于两侧的边界条件引起的可变性对于刚度和36%的阻尼的边界条件具有大约40%。蒙特卡罗模拟用于评估夹子性能不确定性对门组件的振动传递函数的影响。在本研究中使用简化的连接模型,其中仅考虑将修剪连接到门结构的轴向自由度。夹子刚度和阻尼的不确定度导致振动传递函数的可变性,其频率依赖于频率,并且可以在谐振峰处高达10%,在一些其他频率下具有较高值的​​谐振峰。结果表明,剪辑有效阻尼的不确定性的效果可忽略不计,并且动态响应的可变性主要是由于夹子刚度的不确定性。此外,示出了通过增加或减少夹子的有效刚度来减少可变性。

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