CHINESE JOURNAL OF ENERGETIC MATERIALS
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多模聚能装药毁伤元水下成型机理及侵彻性能研究
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作者单位:

1.南京理工大学机械工程学院;2.西安近代化学研究所;3.山西江阳化工有限公司;4.南京理工大学化学与化工学院

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中央高校基本科研业务费专项资金(30925010708)


Study on Underwater Formation Mechanism and Penetration Performance of Damage Elements from a Multimode Shaped Charge
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Affiliation:

1.School of Mechanical Engineering, Nanjing University of Science and Technology;2.Institute of Modern Chemistry, Xi′an , China;3.Shanxi Jiangyang Chemical Co , Ltd;4.School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology

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    摘要:

    为实现单种聚能装药结构同时对水下装甲防护有较好的开孔性能和对水介质有较好的穿透效果,解决常规水中聚能装药功能单一问题,基于W型聚能装药结构,建立了有限元计算模型,通过对比文献中射流成型与侵彻试验,验证了仿真结果的可靠性,并对多模毁伤元水下成型机理和侵彻性能进行了研究。结果表明:通过改变起爆方式,可调控药形罩的压垮模式,从而使W型聚能装药形成爆炸成型弹丸(EFP)和环形射流两种毁伤元;EFP侵彻水介质深度与药型罩内罩厚度(a值)呈正比,环形射流侵彻靶板孔径与a值成反比,当a值由3.2 mm增大至7.2 mm时,EFP侵彻水介质深度提高239.2%,环形射流侵彻孔径降低30%;EFP侵彻水介质深度与药型罩外罩厚度(b值)成反比,环形射流侵彻靶板孔径与b值成正比,当b值由1.5 mm增大至2.5 mm时,EFP侵彻水介质深度降低63.5%,环形射流侵彻孔径提高45.4%。本研究可为水下聚能装药及多模聚能装药的设计提供参考。

    Abstract:

    To achieve favorable hole-opening performance against underwater armored protection and effective penetration in water medium simultaneously with a single shaped charge structure, and to overcome the single-functionality limitation of conventional underwater shaped charges, a finite element model was established based on the W shaped charge structure. The reliability of the simulation results was validated by comparison with jet formation and penetration experiments from the literature. The underwater formation mechanism and penetration performance of the multimode damage elements were further investigated. The results show that by controlling the initiation mode, the W shaped charge can form two types of damage elements: an explosively formed projectile (EFP) and an annular jet. The penetration depth of the EFP into water medium is proportional to the inner liner thickness (value a), while the penetration hole diameter of the annular jet in the target plate is inversely proportional to value a. When value a increases from 3.2 mm to 7.2 mm, the penetration depth of the EFP in water medium increases by 239.2%, and the penetration hole diameter of the annular jet decreases by 30%. The penetration depth of the EFP into water medium is inversely proportional to the outer liner thickness (value b), while the penetration hole diameter of the annular jet in the target plate is proportional to value b. When value b increases from 1.5 mm to 2.5 mm, the penetration depth of the EFP in water medium decreases by 63.5%, and the penetration hole diameter of the annular jet increases by 45.4%. This study can provide references for the design of underwater shaped charges and multimode shaped charges.

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引用本文

潘乾坤,崔浩,宋浦,等.多模聚能装药毁伤元水下成型机理及侵彻性能研究[J].含能材料, 2026, 34(7):807-822. DOI:10.11943/CJEM2026126.
PAN Qiankun, CUI Hao, SONG Pu, et al. Study on Underwater Formation Mechanism and Penetration Performance of Damage Elements from a Multimode Shaped Charge[J]. Chinese Journal of Energetic Materials, 2026, 34(7):807-822. DOI:10.11943/CJEM2026126.

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  • 收稿日期: 2026-05-28
  • 最后修改日期: 2026-07-13
  • 录用日期: 2026-07-05
  • 在线发布日期: 2026-07-12
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