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等效靶弹药空气中爆炸威力评估

1582    2021-01-27

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作者:陈艳, 林玉亮, 李翔宇, 张玉武, 卢芳云

作者单位:国防科技大学文理学院,湖南 长沙 410073


关键词:爆炸力学;等效靶;威力评估;爆炸当量


摘要:

针对传统的冲击波压力电测法操作复杂且易受干扰的问题,提出基于等效靶塑性变形的炸药爆炸威力评估方法。首先进行小当量立姿等效靶板变形试验,并基于实验结果确定适用于有限元数值模拟的模型;其次,使用量纲分析方法简化等效靶变形的理论模型,建立靶板中心最终变形挠度与爆炸当量、爆炸距离的关系;进一步结合实验数据与数值模拟结果,得出通过靶板变形挠度反演爆炸当量的计算公式,提出采用系列等效靶变形数据进行爆炸当量反演的评估方法。通过小当量试验和大当量数值模拟算例对该方法进行验证,在等效靶变形数据足够多的情况下,可以将反演爆炸当量误差控制在15%以内,满足一般工程评估精度要求。


Evaluation for charge explosion power in the air based on equivalent target
CHEN Yan, LIN Yuliang, LI Xiangyu, ZHANG Yuwu, LU Fangyun
College of Arts and Science, National University of Defense Technology, Changsha 410073, China
Abstract: In order to eliminate the complexity and interference in traditional electric measurement of shock wave parameter, a method to evaluate explosion power based on plastic deformation of equivalent target was proposed. Some experiments of small-scale explosive charges were carried out to study the deformation of equivalent target, and the model of the finite element analysis were corrected by these experimental results. Simplified theoretical model of equivalent target deformation using dimensional analysis. Furthermore, the relationship between central deflection of the equivalent target and explosive TNT equivalent, explosion distance was established. Combining experimental data and numerical simulation data, a formula to calculate TNT equivalent based on the deformation of equivalent target was built, and a test method for explosive equivalent inversion using a series of equivalent targets was proposed. The test method is verified by small-scale explosion tests and large-scale explosion results from numerical simulation. The results show that relative error between TNT equivalent predicted by this method and real value can be controlled within 15% if enough valid deformation data are obtained, which is enough for engineering assessment.
Keywords: mechanics of explosion;equivalent target;explosion power evaluation;TNT equivalent
2021, 47(1):15-21,35  收稿日期: 2019-06-18;收到修改稿日期: 2019-08-02
基金项目: 国家自然科学基金项目(11672329)
作者简介: 陈艳(1993-),男,重庆市人,硕士研究生,专业方向为材料动态力学性能分析
参考文献
[1] 程辰, 林明, 龙源, 等. 基于爆炸现场破坏分析的TNT当量快速估算方法研究[J]. 爆破器材, 2018, 47(3): 37-41
[2] 童晓. 爆炸场冲击波压力测量及数据处理方法研究[D]. 南京: 南京理工大学, 2015.
[3] 王芳, 冯顺山, 俞为民. 爆炸冲击波作用下靶板的塑性大变形响应研究[J]. 中国安全科学学报, 2003, 13(3): 58-61
[4] 陈昌明, 李建平, 白春华. 一种新的冲击波超压测试方法-压力响应膜片[J]. 中国水运(下半月), 2013, 13(1): 104-106
[5] 姬建荣, 苏健军, 孔德仁, 等. 爆炸冲击波参数薄膜测试法研究[J]. 中国测试, 2016, 42(10): 21-24
[6] 沈飞, 王辉, 袁建飞. 爆炸冲量薄板测量法的理论模型及应用[J]. 应用力学学报, 2015, 32(6): 962-966
[7] NURICK G N, MARTIN J B. Deformation of thin plates subjected to impulsive loading-a review Part Ⅱ: Experimental studies[J]. International Journal of Impact Engineering, 1989, 8(2): 171-186
[8] ZHAO Y P, FANG J. Experimental investigation into the dynamic behavior of circular rings with arc-shaped supports[J]. International Journal of Pressure Vessels & Piping, 1995, 62(1): 83-85
[9] 李丽萍, 孔德仁, 王芳, 等. 基于量纲分析的爆炸冲击波效应靶模型分析与实验研究[J]. 振动与冲击, 2016, 35(6): 100-103
[10] 傅辉刚. 效应靶在爆炸冲击波毁伤评估中的应用研究[D]. 南京: 南京理工大学, 2015.
[11] 陈新祥, 刘彦. 爆炸冲击载荷作用下靶板动态响应研究[J]. 兵工学报, 2016(S2): 154-158
[12] MINH T V, SANTOSA S P, WIDAGDO D, et al. Steel plate behavior under blast loading-numerical approach using LS-DYNA[J]. Applied Mechanics and Materials, 2016, 842: 200-207
[13] KAURIN C M. Blast loading on square steel plates; a comparative study of numerical methods[D]. Trondheim: Norwegian University of Science and Technology, 2010.
[14] 欧阳楚萍. 相似与弹药模化[M]. 北京: 兵器工业出版社, 1995: 117-119.
[15] 谈庆明. 量纲分析[M]. 合肥: 中国科学技术大学出版社, 2005: 13-14.