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The Effects of Cure Schedule on Water-Based LASD Loss Factor and Implications for Prototype Testing

机译:治愈时间表对水基损伤因子的影响及原型测试的影响

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Liquid applied sound deadener (LASD) is a light-weight, targeted vibration damping treatment traditionally used in the automotive market for body-in-white (BIW) panels. Water-based LASDs may cure over a wide range of conditions from room temperature to over 200°C. However, curing conditions commonly affect change in the damping characteristics. A thorough understanding of the relationship between curing conditions and subsequent damping performances will inform the material selection process and may allow pre-manufacturing designs to be adjusted with limited impact during validation. This paper aims to strengthen the quantitative understanding of the role LASD curing conditions have on damping performance by observing the effects of variations in thickness and cure temperature as measured by the Oberst method. Additionally, this paper proposes a simple approach to using LASD treatments of equivalent damping loss factor to approximate heat-cure LASD performance with room temperature-cure LASD.
机译:液体施加的声音死亡器(LASD)是一种轻量级,靶向振动阻尼处理,传统上用于适用于身体白色(BIW)面板的汽车市场。水基拉斯可以在室温范围内固化到超过200°C的范围内。然而,固化条件通常会影响阻尼特性的变化。对固化条件和随后的阻尼性能之间的关系的彻底理解将通知材料选择过程,并且可以允许在验证期间使用有限的影响进行预制造设计。本文旨在通过观察由Oberst方法测量的厚度和固化温度的影响,加强对角色溶液固化条件的定量理解。另外,本文提出了一种简单的方法来利用等效阻尼损耗因子的LASD处理与室温固化LASD近似热固化液位性能。

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