Vertical Projectile Launcher for Study of Rapid Penetration into Soil Targets

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL
L. Giacomo, D. Grace, M. Omidvar, S. Bless, M. Iskander
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Abstract

The majority of ballistic experiments in granular media in the literature involve horizontally launching projectiles. Notwithstanding the significant scientific findings resulting from these studies, the depth-dependence of geostatic stresses is not captured in a horizontal configuration. The design and performance of a vertical ballistic range is described herein. The range is capable of launching projectiles at impact speeds of up to 900 m/s into soil targets. A pluviator is employed to prepare sand targets with precise and highly repeatable bulk densities. Use of a photon Doppler velocimeter (PDV) and other instrumentation to track projectile velocity both in-flight and during penetration into the soil target are elucidated. A relationship is found between the muzzle velocity and chamber pressure. Launcher performance is quantified by comparing measured muzzle velocities with theoretical velocities calculated from isentropic expansion of gas behind the projectile in the launcher barrel. It is found that the launcher efficiency is in the range of 70 to 90%, with efficiency increasing for heavier projectiles. The PDV instrumentation developed for the range successfully resolves projectile velocities in flight and during penetration into the soil target.

Abstract Image

用于研究快速穿透土壤目标的垂直射弹发射器
文献中的大多数颗粒介质弹道实验都涉及水平发射的弹丸。尽管这些研究取得了重要的科学成果,但在水平配置中无法捕捉到地应力的深度依赖性。本文介绍了垂直弹道靶场的设计和性能。该靶场能以高达 900 米/秒的冲击速度向土壤目标发射弹丸。该靶场采用了一种犁耕器来制备具有精确和高重复性体积密度的沙土靶。使用光子多普勒测速仪(PDV)和其他仪器跟踪射弹在飞行中和穿透土壤目标时的速度。发现了炮口速度与炮膛压力之间的关系。通过比较测得的炮口速度和根据发射筒内弹丸后方气体等熵膨胀计算得出的理论速度,对发射器的性能进行了量化。结果发现,发射器的效率在 70% 至 90% 之间,重型弹丸的效率更高。为该靶场开发的 PDV 仪器成功地解析了弹丸在飞行和穿透土壤目标时的速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Experimental Techniques
Experimental Techniques 工程技术-材料科学:表征与测试
CiteScore
3.50
自引率
6.20%
发文量
88
审稿时长
5.2 months
期刊介绍: Experimental Techniques is a bimonthly interdisciplinary publication of the Society for Experimental Mechanics focusing on the development, application and tutorial of experimental mechanics techniques. The purpose for Experimental Techniques is to promote pedagogical, technical and practical advancements in experimental mechanics while supporting the Society''s mission and commitment to interdisciplinary application, research and development, education, and active promotion of experimental methods to: - Increase the knowledge of physical phenomena - Further the understanding of the behavior of materials, structures, and systems - Provide the necessary physical observations necessary to improve and assess new analytical and computational approaches.
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