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A Systematic Evaluation of Test Specification Derivation Methods for Multi-axis Vibration Testing

机译:多轴振动检测测试规范衍生方法的系统评价

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In the past decade, multi-axis vibration testing has progressed from its early research stages towards becoming a viable technology which can be used to simulate more realistic environmental conditions. The benefits of multi-axis vibration simulation over traditional uniaxial testing methods have been demonstrated by numerous authors. However, many challenges still exist to best utilize this new technology. Specifically, methods to obtain accurate and reliable multi-axis vibration specifications based on data acquired from field tests is of great interest. Traditional single axis derivation approaches may be inadequate for multi-axis vibration as they may not constrain profiles to adhere to proper cross-axis relationships - they may introduce behavior that is neither controllable nor representative of the field environment. A variety of numerical procedures have been developed and studied by previous authors. The intent of this research is to benchmark the performance of these different methods in a well-controlled lab setting to provide guidance for their usage in a general context. Through a combination of experimental and analytical work, the primary questions investigated are as follows: (1) In the absence of part-to-part variability and changes to the boundary condition, which specification derivation method performs the best? (2) Is it possible to optimize the sensor selection from field data to maximize the quality/accuracy of derived multi-axis vibration specifications? (3) Does the presence of response energy in field data which did not originate due to rigid body motion degrade the accuracy of multi-axis vibration specifications obtained via these derivation methods?
机译:在过去的十年中,多轴振动测试从其早期的研究阶段开始成为一种可行的技术,可用于模拟更现实的环境条件。多次作者证明了多轴振动仿真对传统的单轴测试方法的好处。然而,许多挑战仍然存在最好利用这项新技术。具体而言,基于现场测试获取的数据获得准确可靠的多轴振动规范的方法非常令人兴趣。传统的单轴推导方法对于多轴振动可能不充分,因为它们可能不会限制配置轮廓以粘附到适当的横轴关系 - 它们可能引入既不控制的行为,也不是现场环境的控制。以前的作者开发和研究了各种数值程序。本研究的目的是在良好控制的实验室设置中基准这些不同方法的性能,以便在一般背景下为其使用提供指导。通过实验和分析工作的组合,研究的主要问题如下:(1)在没有部分到部分可变性和对边界条件的变化的情况下,哪种规范推导方法表现最好? (2)是否可以从现场数据优化传感器选择,以最大化导出的多轴振动规范的质量/准确性? (3)是否存在由于刚体运动而非刚突出的现场数据中的响应能量降低了通过这些衍生方法获得的多轴振动规格的精度?

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