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用于识别隐藏武器和分析内部化学物质的无损超声检测。

Non-destructive ultrasonic testing for identifying concealed weapons and analyzing internal chemical substances.

作者信息

Lee Hyosung, Lim Ji Won, Kwon Jihyun, Choi Seung-Ki, Kim Hyun Suk, Hwang Young-In, Kim Ki-Bok

机构信息

Department of Measurement Engineering, University of Science and Technology, 217, Gajeong-ro, Yuseong-gu, Daejeon, 34113, Republic of Korea.

Non-Destructive Metrology Group, Division of Physical Metrology, Korea Research Institute of Standards and Science, 267 Gajeong-ro, Yuseong- gu, Daejeon, 34113, Republic of Korea.

出版信息

Sci Rep. 2024 Sep 28;14(1):22509. doi: 10.1038/s41598-024-73141-0.

Abstract

The management of unknown weapons obtained from warfare, military operations, and terrorist situations requires a series of nondestructive testing processes. This management process, which is aimed at collecting information on the nature of the weapons, encompasses identification, processing, transportation, and storage of the obtained weapons. A lack of identification marks in acquired ammunition may indicate the potential presence of a chemical weapon. Therefore, nondestructive evaluation methods have been employed to identify unknown weapons. However, these methods rely on neutron- and radiation-based analyses, which require radiation-handling experts and specific protective facilities. Consequently, their application in this field is challenging. Herein, a nondestructive ultrasonic testing method, which can identify substances inside unknown weapons and optimize the verifiability of the state of the ammunition, was employed as an alternative method to overcome these limitations. The experimental system enabled quantitative and qualitative analyses of the internal chemicals by analyzing the time difference in acquiring the signals, particularly when the results indicate that the internal substance is a liquid. The results of this study can serve as a basis for advancing the application of ultrasonic testing as a viable and efficient approach for managing unknown weapons.

摘要

对从战争、军事行动和恐怖主义局势中获取的不明武器进行管理,需要一系列无损检测过程。这一管理过程旨在收集有关武器性质的信息,包括对所获武器的识别、处理、运输和储存。所获弹药缺乏识别标记可能表明存在化学武器的可能性。因此,已采用无损评估方法来识别不明武器。然而,这些方法依赖基于中子和辐射的分析,这需要辐射处理专家和特定的防护设施。因此,它们在该领域的应用具有挑战性。在此,采用一种无损超声检测方法作为替代方法来克服这些限制,该方法可以识别不明武器内部的物质并优化弹药状态的可验证性。该实验系统通过分析获取信号的时间差,能够对内部化学物质进行定量和定性分析,特别是当结果表明内部物质为液体时。本研究结果可为推进超声检测作为管理不明武器的可行且有效方法的应用提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7578/11438958/c0d816d6bb15/41598_2024_73141_Fig1_HTML.jpg

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