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Shock Response Spectra Reconstruction of Pointwise Explosive-Induced Pyroshock Based on Signal Processing of Laser Shocks

机译:基于激光冲击信号处理的点状炸药热震的冲击响应谱重构

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摘要

Pyroshock has been an issue of great concern for aerospace and defense industrial applications. When pyroshock devices are detonated, they can easily cause failures in electronic, optical, relay, and magnetic components generally in mid-and far-fields which is not avoidable at the design level. Thus, many numerical and experimental pyroshock simulations have been widely studied to predict explosive-induced pyroshock effect quantitatively, especially the shock response spectrum (SRS). In this study, a laser shock-based pyroshock reconstruction method is proposed to simulate a pointwise explosive-induced pyroshock signal. The signal processing algorithm for the laser shock-based pyroshock reconstruction is developed in a LabVIEW platform and consists of subbands decomposition, SRS matching in decomposed bands, and wave synthesizing. Then, two experimental setups are configured to obtain pyroshock signals and laser shock signals at four points in an aluminum plate. The reconstructed pyroshock signals synthesized according to the signal processing of the laser shocks demonstrate high similarity to the real pyroshock signals, where the similarity is evaluated by the mean acceleration difference between the SRS curves. The optimized settings of the subband decomposition were obtained and can be in the future used in a pyroshock simulator based on laser shock for pyroshock simulation at any arbitrary point.
机译:焦磷酸一直是航空航天和国防工业应用中非常关注的问题。当引爆电击装置时,它们很容易造成电子,光学,继电器和磁性部件的故障,通常是在中场和远场,这在设计水平上是无法避免的。因此,已经广泛研究了许多数值和实验的热震模拟,以定量地预测爆炸引起的热震效应,尤其是冲击响应谱(SRS)。在这项研究中,提出了一种基于激光冲击的热震重建方法,以模拟点状爆炸诱发的热震信号。在LabVIEW平台上开发了基于激光冲击的热震重建的信号处理算法,该算法包括子带分解,分解带中的SRS匹配以及波合成。然后,配置两个实验装置,以在铝板上的四个点获得热震信号和激光冲击信号。根据激光冲击的信号处理合成的重建热震信号显示出与真实热震信号的高度相似性,其中真实性通过SRS曲线之间的平均加速度差来评估。获得了子带分解的优化设置,并且将来可以在基于激光冲击的热震模拟器中用于任意点的热震模拟。

著录项

  • 来源
    《Shock and vibration》 |2014年第2期|695836.1-695836.14|共14页
  • 作者单位

    Chonbuk Natl Univ, LANL CBNU Engn Inst Korea, Jeonju 561756, Jeonju, South Korea.;

    X NDT Inc, Jeonbuk 561756, Jeonju, South Korea.;

    Korea Aerosp Res Inst, Dept Mat & Struct, Taejon 305333, South Korea.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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