A practical review study on shaped charge in the last two decades (2000–2020)

IF 2.1 Q2 ENGINEERING, CIVIL International Journal of Protective Structures Pub Date : 2021-06-06 DOI:10.1177/20414196211017923
H. Mehmannavaz, A. Ramezani, Mohammad Amin Nabakhteh, G. Liaghat
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引用次数: 6

Abstract

Shaped charges are devices used for cutting or penetrating different aerial, on land, and underwater targets, based on the concentration of the explosion energy to the liner. The purpose of this study is to present a practical review of the studies related to shaped charges in the last twenty years (2000–2020). In this regard, these studies have been reviewed in two different categories for ordinary and advanced shaped charges. In the case of ordinary shaped charges, different aspects including shaped charges against different targets, different types of shaped charges (such as linear shaped charge and explosively formed penetrators), and theoretical advancements are presented. On the other hand, the new kinds of shaped charges developed for a specific purpose are introduced in the case of advanced shaped charges. The survey of the literature indicates that different concepts such as cut-off velocity and theoretical applicability of hydrodynamics theory in shaped charge penetration still Requires effort. Also, few studies have been focused on new shaped charges, such as hyper-velocity shaped charges, annular and dual-mode ones; and the field is still open for further progress. Besides, some of these new shaped-charges, such as double-layer shaped charges, are not realistic enough to be produced for practical purposes or the market.
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近二十年来(2000-2002年)对聚能装药的实践回顾研究
聚能装药是根据爆炸能量对衬管的集中程度,用于切割或穿透不同的空中、陆地和水下目标的装置。本研究的目的是对过去二十年(2000-2020年)与成型装药相关的研究进行实际回顾。在这方面,对普通和高级定型装药的两个不同类别的这些研究进行了审查。在普通形状装药的情况下,介绍了不同的方面,包括针对不同目标的形状装药、不同类型的形状装弹(如线性形状装药和爆炸成型穿甲弹)以及理论进展。另一方面,在先进的聚能射孔弹的情况下,介绍了为特定目的开发的新型聚能射孔弹。文献综述表明,不同的概念,如截止速度和流体动力学理论在聚能射孔弹侵彻中的理论适用性,仍然需要努力。此外,很少有研究集中在新型装药上,如超高速装药、环形装药和双模装药;该领域仍有待进一步发展。此外,其中一些新的成型药,如双层成型药,还不够现实,无法用于实际用途或市场。
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来源期刊
CiteScore
4.30
自引率
25.00%
发文量
48
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