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Low-pass-filter-based shock response spectrum and the evaluation method of transmissibility between equipment and sensitive components interfaces

机译:基于低通滤波器的冲击响应谱以及设备与敏感组件接口之间的透射率评估方法

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摘要

According to the features of the sources of pyroshock and ballistic shock, this study considers the pyroshock and ballistic shock generated by their respective impulsive sources as damped harmonic waves with different frequencies. According to the linear superposition assumption of damped harmonic waves in a linear elastic structure, a shock analysis method based on low-pass-filtered shock signals and their corresponding shock response spectrum (SRS), termed as low-pass-filter-based shock response spectrum (LPSRS), is proposed. LPSRS contains rich information of the frequency distribution of the shock excitation signal. A method to calculate shock transmissibility is proposed based on LPSRS and basic modal information of the equipment structure. LPSRS and SRS curves can be predicted at any given position of the equipment structure. The prediction method is validated by finite element method (FEM) simulation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:根据热震和弹道冲击源的特点,本研究将它们各自的脉冲源产生的热震和弹道冲击视为具有不同频率的阻尼谐波。根据线性弹性结构中阻尼谐波的线性叠加假设,基于低通滤波后的冲击信号及其对应的冲击响应谱(SRS)的冲击分析方法,称为基于低通滤波器的冲击响应频谱(LPSRS),建议。 LPSRS包含丰富的激振信号频率分布信息。提出了一种基于LPSRS和设备结构基本模态信息的冲击传递率计算方法。 LPSRS和SRS曲线可以在设备结构的任何给定位置进行预测。该预测方法通过有限元方法(FEM)仿真得到了验证。 (C)2018 Elsevier Ltd.保留所有权利。

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