CHINESE JOURNAL OF ENERGETIC MATERIALS
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战斗部多次侵彻中姿态变化对装药微缺陷损伤累积影响
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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西安近代化学研究所, 陕西 西安 710065

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国家自然科学基金(12202060),含能材料陕西实验室开放合作创新基金(204-J-2025-1773)


Influence of Projectile Attitude Changes on the Cumulative Damage of Micro-defects in Explosive Charge in Warhead during Multiple Penetrations
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1State Key Laboratory of Explosion Science and Safety Protection, Beijing Institute of Technology, Beijing 100081, China;2Xi'an Modern Chemistry Research Institute, Xi'an 710065, China

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    摘要:

    针对多次侵彻工况下炸药装药应力状态相关损伤累积演化规律问题,研究基于PBX炸药微裂纹-微孔洞宏细观损伤模型,结合界面内聚力损伤模拟方法,综合考虑了炸药颗粒微裂纹张开与剪切扩展、基体微孔洞演化与扭曲变形、以及界面开裂与撕裂等多种微缺陷损伤机制,对比分析了不同着角下侵爆战斗部侵彻10层靶过程中装药应力状态与微缺陷累积演化规律。研究结果表明:多次侵彻过程中装药承受循环脉冲载荷作用,弹体姿态偏转使载荷模式由轴向压缩为主转变为切向剪切为主,诱发局部压力峰值突变与剪应力显著升高,进而加速损伤累积。装药内部微裂纹与界面损伤首先萌生于头部边缘区域,在姿态显著偏转阶段扩展至尾部,最终弹体装药中部因弯折作用产生张开型裂纹。侵彻着角增大会加剧装药内部剪切作用,促使微裂纹损伤向中后部延伸、微孔洞扭曲损伤增强、界面损伤由前期张开主导转向后期剪切主导。仿真获得的损伤分布与形态特征与试验CT图像吻合较好,验证了所建模型的有效性。研究结果可为深化多次侵彻下装药损伤累积与安定性劣化机理的认识,提升侵彻安定性数字化设计能力提供理论支撑。

    Abstract:

    Aiming at the unclear issue of damage accumulation and evolution related to the stress state of explosive charge during multiple penetration processes, this study employs a micro-crack and micro-void macro-meso damage model for PBX explosives, combined with an interface cohesion damage model. It comprehensively considers various micro-defect damage mechanisms, including the opening and shear propagation of microcracks in explosive particles, the expansion and distortion of microvoids in the matrix, as well as interface cracking and tearing damage. The stress states and micro-defect accumulation and evolution of a penetration warhead charge during penetration of a ten-layer concrete target at different impact angles are comparatively analyzed. The results indicate that during multiple penetrations, the charge experiences cyclic pulse loading. The deflection of the projectile attitude (from 10° to 44°) shifts the loading mode from predominantly axial compression to tangential shear, inducing abrupt changes in local pressure peaks (from 50 to 220 MPa) and significant increases in shear stress, thereby accelerating damage accumulation. Microcrack and interface damage within the charge initially initiate at the head edge region, propagate to the tail during stages of pronounced attitude deflection, and eventually, opening-mode cracks develop in the middle section of the charge due to bending effects. An increased impact angle (from 0° to 10°) intensifies the internal shear action on the charge, extending microcrack damage towards the middle and rear sections, enhancing microvoid distortion damage, and transitioning interface damage from early-stage opening-dominated to late-stage shear-dominated behavior. The simulated damage distribution and morphological characteristics are in good agreement with experimental CT images, validating the effectiveness of the proposed model. The findings provide theoretical support for deepening the understanding of damage accumulation and stability degradation mechanisms of charges under multiple penetrations, and for advancing the digital design capability of penetration stability.

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路一鸣,盛星宇,杨昆,等. 战斗部多次侵彻中姿态变化对装药微缺陷损伤累积影响[J]. 含能材料,DOI:10.11943/CJEM2026055.

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  • 收稿日期: 2026-03-11
  • 最后修改日期: 2026-06-30
  • 录用日期: 2026-05-30
  • 在线发布日期: 2026-06-24
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