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Investigation of Force-Limited Vibration for Reduction of Overtesting

机译:力限制振动减少过度测试的研究

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摘要

The force-limited vibration approach was developed in the 1990s to reduce overtesting associated with conventional vibration tests of aerospace hardware. Because of its numerous advantages, the semiempirical method is presently the most widely used method to derive the force limits. The configuration-dependent constant parameter C is one of the key parameters of the method. The main results and findings of a research and development project investigating the semiempirical method are presented. More specifically, the project investigated the range of values taken by C (or C~2) and the parameters on which it depends. The details and the results of an in-depth analytical sensitivity study with 134 different cases and the results of the experimental validation of the analytical procedures are included. The analytical sensitivity study shows that the C~2 value depends mainly on 1) the effective mass ratio between the test item and the mounting structure, at the fundamental frequency of the test item, 2) the number and position of the interface attachment points between the test item and the mounting structure, and 3) the direction of excitation. It also shows that the C~2 value is basically independent of the damping value for most configurations.
机译:受力限制的振动方法是在1990年代开发的,目的是减少与航空航天硬件的常规振动测试相关的过度测试。由于其众多优点,半经验方法是当前获得推力极限的最广泛使用的方法。与配置有关的常数参数C是该方法的关键参数之一。介绍了研究半经验方法的研究和开发项目的主要结果和发现。更具体地说,该项目研究了C(或C〜2)所取值的范围及其依赖的参数。包括对134种不同情况的深入分析敏感性研究的详细信息和结果,以及分析程序的实验验证结果。分析灵敏度研究表明,C〜2值主要取决于1)测试项目和安装结构之间的有效质量比,在测试项目的基本频率下,2)之间的界面连接点的数量和位置测试项目和安装结构,以及3)激励方向。它还表明,对于大多数配置,C〜2值基本上与阻尼值无关。

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