The Ammunition Projectile Test and Evaluation Used Polymer Flexible Film Sensors System Design and Application

IF 1.4 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Sensors Pub Date : 2024-03-22 DOI:10.1155/2024/3068590
Xiangdong Cui, Youliang Xu, Yanli Zhang, Xinglin Qi, Aiqiang Guo
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Abstract

Background. The mainly lethal ability of ammunition fragments on creatures is achieved by hitting the effective organs or key parts of the biological body with high-speed projectiles. How to efficiently and accurately obtain the projectile speed and hitting position coordinates when the fragment hits the creature after the ammunition blast is the key to the scientific evaluation of ammunition power. Materials and Methods. For the measurement of fragment velocity and hitting coordinates, a series of flexible film circuit sensors can be generated by printing comb-like circuits on polyethylene terephthalate substrates using silver paste printing technology. These sensors are cheap, flexible, and easy to fold and can be printed into different shapes according to the characteristics of the test target to simulate the biological key organs or lethal parts. At the same time, the software and hardware design of the high-speed data signal reading and processing module can realize the data rapidly recording and processing and quickly give the ammunition fragment parameter test results. Results. The test accuracy of the fragment velocity of the laser light screen target and the flexible circuit sensor is compared through the live-fire test. It is proved that the test accuracy of the flexible sensor based on the polymer substrate can meet the accuracy requirements. The flexible sensor based on the organ simulation can quickly give the accurate hit position of the fragment. Conclusion. The newly polymer substrate printed circuit sensor system is a new type of sensor used to replace the laser screen target, and the copper comb printed circuit in the ammunition power test, which can improve the parameter test accuracy, reduce the test consumption, and improve the test quality.
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使用聚合物柔性薄膜传感器的弹药射弹测试和评估系统设计与应用
背景。弹药碎片对生物的杀伤力主要是通过高速弹丸击中生物体的有效器官或关键部位来实现的。如何高效准确地获取弹药爆炸后碎片击中生物体时的射速和命中位置坐标,是科学评价弹药威力的关键。材料与方法。为测量弹片速度和命中坐标,可利用银浆印刷技术在聚对苯二甲酸乙二醇酯基板上印刷梳状电路,从而生成一系列柔性薄膜电路传感器。这些传感器价格低廉、柔性好、易于折叠,可根据测试目标的特点印制成不同形状,模拟生物的关键器官或致命部位。同时,高速数据信号读取和处理模块的软硬件设计,可实现数据的快速记录和处理,快速给出弹药破片参数测试结果。测试结果通过实弹射击试验,比较了激光光屏靶和柔性电路传感器的破片速度测试精度。结果证明,基于聚合物基板的柔性传感器的测试精度可以满足精度要求。基于器官模拟的柔性传感器能快速给出碎片的准确命中位置。结论新型聚合物基板印制电路传感器系统是弹药威力试验中替代激光屏靶、铜梳印制电路的新型传感器,可提高参数试验精度,降低试验消耗,提高试验质量。
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来源期刊
Journal of Sensors
Journal of Sensors ENGINEERING, ELECTRICAL & ELECTRONIC-INSTRUMENTS & INSTRUMENTATION
CiteScore
4.10
自引率
5.30%
发文量
833
审稿时长
18 weeks
期刊介绍: Journal of Sensors publishes papers related to all aspects of sensors, from their theory and design, to the applications of complete sensing devices. All classes of sensor are covered, including acoustic, biological, chemical, electronic, electromagnetic (including optical), mechanical, proximity, and thermal. Submissions relating to wearable, implantable, and remote sensing devices are encouraged. Envisaged applications include, but are not limited to: -Medical, healthcare, and lifestyle monitoring -Environmental and atmospheric monitoring -Sensing for engineering, manufacturing and processing industries -Transportation, navigation, and geolocation -Vision, perception, and sensing for robots and UAVs The journal welcomes articles that, as well as the sensor technology itself, consider the practical aspects of modern sensor implementation, such as networking, communications, signal processing, and data management. As well as original research, the Journal of Sensors also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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