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Effects of stinger axial dynamics and mass compensation methods on experimental modal analysis

机译:毒刺轴向动力学和质量补偿方法对实验模态分析的影响

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摘要

A longitudinal bar model that includes both stinger elastic and inertia properties is used to analyse the stinger\u27s axial dynamics as well as the mass compensation that is required to obtain accurate input forces when a stinger is installed between the excitation source, force transducer, and the structure under test. Stinger motion transmissibility and force transmissibility, axial resonance and excitation energy transfer problems are discussed in detail;Stinger mass compensation problems occur when the force transducer is mounted on the exciter end of the stinger. These problems are investigated theoretically, numerically, and experimentally. It is found that the measured Frequency Response Function (FRF) can be underestimated if mass compensation is based on the stinger exciter-end acceleration and can be overestimated if the mass compensation is based on the structure-end acceleration due to the stinger\u27s compliance. A new mass compensation method that is based on two accelerations is introduced and is seen to improve the accuracy considerably. The effects of the force transducer\u27s compliance on the mass compensation are also discussed;A theoretical model is developed that describes the measurement system\u27s FRF around a test structure\u27s resonance. This model shows that very large measurement errors occur when there is a small relative phase shift between the force and acceleration measurements. These errors can be in hundreds of percent corresponding to a phase error on the order of one or two degrees. The physical reasons for this unexpected error pattern are explained. This error is currently unknown to the experimental modal analysis community;Two sample structures consisting of a rigid mass and a double cantilever beam are used in the numerical calculations and experiments.
机译:包含毒刺弹性和惯性特性的纵向条形模型用于分析毒刺的轴向动力学以及在动力源和力传感器之间安装毒刺时获得精确输入力所需的质量补偿。被测结构。详细讨论了毒刺的运动传递性和力传递性,轴向共振和激发能传递问题;当将力传感器安装在毒刺的激励器端时,会发生毒刺质量补偿问题。这些问题在理论上,数值上和实验上都得到了研究。结果发现,如果质量补偿是基于托管器激振器端部加速度,则测得的频率响应函数(FRF)可能会被低估;如果质量补偿基于基于托管器的激振器端部加速度,则可能会高估测得的频率响应函数(FRF)。 。引入了一种基于两个加速度的新质量补偿方法,并且该方法可以显着提高精度。还讨论了力传感器的顺应性对质量补偿的影响;建立了一个理论模型,描述了围绕测试结构共振的测量系统的FRF。该模型表明,在力和加速度测量之间存在较小的相对相移时,会发生非常大的测量误差。这些误差可以百分百表示,对应于一度或两度的相位误差。解释了此意外错误模式的物理原因。该误差目前尚不为实验模态分析界所知;在数值计算和实验中使用了由刚性质量和双悬臂梁组成的两个样本结构。

著录项

  • 作者

    Hu, Ximing;

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  • 年度 1992
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  • 原文格式 PDF
  • 正文语种 en
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