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兵工学报 ›› 2025, Vol. 46 ›› Issue (10): 250529-.doi: 10.12382/bgxb.2025.0529

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铝钨活性材料力学性能及侵彻特性

张力中1, 任会兰1, 栗建桥1,*(), 李尉2   

  1. 1 北京理工大学 爆炸科学与安全防护全国重点实验室, 北京 100081
    2 中国兵器工业导航与控制技术研究所, 北京 100089
  • 收稿日期:2025-06-23 上线日期:2025-11-05
  • 通讯作者:

The Mechanical Properties and Penetration Characteristics of Al/W Reactive Materials

ZHANG Lizhong1, REN Huilan1, LI Jianqiao1,*(), LI Wei2   

  1. 1 State Key Laboratory of Explosion Science and Safety Protection, Beijing Institute of Technology, Beijing 100081, China
    2 Navigation and Control Technology Institute of China North Industries Group Corporation, Beijing 100089, China
  • Received:2025-06-23 Online:2025-11-05

摘要: 为研究铝钨(Al/W)活性材料的力学性能以及对靶板的侵彻特性,利用模压烧结法制备了Al/W活性材料,并开展了准静态/动态压缩实验与Al/W活性破片侵彻钢靶弹道枪实验研究。实验获取了Al/W活性材料的力学性能及其侵彻特性,并基于一维冲击波理论给出了Al/W活性破片的弹道极限速度预测公式;结合Al/W活性破片侵彻钢靶的高速摄影图像,通过图像识别技术定性分析了Al/W活性破片在不同侵彻速度下的释能特性。结果表明:Al/W活性材料动态应力应变曲线呈现出弹塑性变形特征,并具有明显的应变率效应;Al/W活性破片侵彻靶板时通过化学反应释放大量能量,其释能强度与释能时间显著增强;同密度相近的钛(Ti)破片相比,高温效应显著增强了Al/W活性破片对靶板的毁伤能力。

关键词: Al/W活性材料, 力学性能, 释能特性, 弹道极限速度

Abstract:

In order to study the mechanical properties and penetration characteristics of aluminum/tungsten (Al/W) reactive materials, Al/W reactive materials specimens were prepared by compression molding and sintering, and quasi-static/dynamic compression experiments, and ballistic gun experiments of Al/W reactive fragment penetrating the steel target were conducted. The mechanical properties and penetration characteristics of Al/W reactive materials were obtained by experiments, and the formula for predicting the ballistic terminal velocity of Al/W reactive fragments was provided based on one-dimensional shock wave theory. Combined with the high-speed photographic images of Al/W reactive fragment penetrating the steel target, the energy release characteristics of Al/W reactive fragment at different penetration speeds are qualitatively analyzed by image recognition technology. The results show that, the dynamic stress-strain curves of Al/W reactive materials show elastic-plastic deformation characteristics and obvious strain rate effects. When Al/W reactive fragment penetrate the target plate, a large amount of energy is released through the chemical reaction, and the energy release intensity and time are significantly enhanced. Compared with titanium (Ti) fragments of similar density, the high-temperature effect significantly enhance the damage capability of Al/W reactive fragment against the target plate.

Key words: Al/W reactive material, mechanical property, energy release characteristics, ballistic limit velocity