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Measuring Damping Loss Factors of High Performance LASD Coatings

机译:测量高性能Lasd涂料的阻尼损耗因子

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One of the most effective NVH solutions used in the automotive industry to reduce structure-borne noise is to apply vibration damping treatments to the vehicle structure. These damping treatments need to meet increasing weight reduction targets, while offering the same or better damping properties. While Liquid Applied Structural Dampers (LASD) are now delivering high damping performance at lower densities, traditional damping measuring techniques are falling short in describing the performance of these extensional layers when applied onto more realistic test samples or real structures. This paper discusses the damping performance of LASD technology, in particular the newer generations of acrylic-based waterborne LASD materials, which through improvements in polymer architecture are achieving increased damping efficiencies together with reduced density. The paper further describes a test method for evaluating the composite damping loss factor (CDLF) properties of LASD treatment layers applied to metal panels used as test samples. The panel test method is based on the calculation of the reverberation time as determined from the initial decay rate of the band filtered impulse response functions. The damping data determined by using this test method is found to be in good agreement with similar data measured independently by using power injection methods (PIM). Correlations between damping performance of LASD treatments measured by using panel testing, one-dimensional beam testing, and body-in-white testing methods are also discussed. The damping measurement technique described was used as a validation tool for the latest generation, lower weight, high performance, LASD materials. Panel measurements correlate well with existing test techniques and provide useful information on damping performance, in a high modal density environment, which can be used as input into advanced NVH modeling techniques.
机译:用于减少结构噪声的汽车行业中使用的最有效的NVH解决方案之一是将振动阻尼处理施加到车辆结构。这些阻尼处理需要满足增加重量减轻目标,同时提供相同或更好的阻尼性能。虽然液体施加的结构阻尼器(LASD)现在在较低的密度下提供高阻尼性能,但是在应用于更现实的测试样品或真实结构上时,传统的阻尼测量技术在描述这些延伸层的性能时下降。本文讨论了LASD技术的阻尼性能,特别是丙烯酸类水性漫游材料的较新一代,通过改善聚合物结构的改进是达到更高的密度的阻尼效率。本文进一步介绍了用于评估应用于用作试样用作测试样品的金属面板的LASD处理层的复合阻尼损耗因子(CDLF)性能的试验方法。面板测试方法基于从带滤波脉冲响应函数的初始衰减率确定的混响时间的计算。通过使用该测试方法确定的阻尼数据与使用功率注入方法(PIM)独立测量的类似数据很好。还讨论了通过使用面板测试,一维光束测试测量的LASD处理的阻尼性能与白色测试方法的相关性。所描述的阻尼测量技术被用作最新一代,重量,高性能,vASD材料的验证工具。面板测量与现有的测试技术相互关联,并提供有关阻尼性能的有用信息,在高模态密度环境中,可以用作进入高级NVH建模技术的输入。

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