CHINESE JOURNAL OF ENERGETIC MATERIALS
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含推进剂复合凝胶炸药的能量输出特性
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南京理工大学化学与化工学院, 江苏 南京 210094

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Energy Output Characteristics of Composite Gel Explosives containing Propellant
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School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China

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    摘要:

    为推进退役HTPB推进剂的资源化利用,研究将其与含能凝胶复合制备了复合凝胶炸药:含三组元推进剂的复合炸药1-PxDyϕz、含9%RDX四组元推进剂的复合凝胶炸药2-PxDyϕz、含15%RDX推进剂的复合炸药3-PxDyϕz以及含20%HMX推进剂复合炸药4-PxDyϕzx为推进剂P的含量,x=30%,40%,50%,y为粒径D的大小,y=5,10,15 mm,z装药尺寸ϕ的大小,z=40,50,65 mm),并对该复合凝胶炸药开展爆速、验证板毁伤及水下爆炸能量的研究,研究含不同推进剂的含量和粒度以及装药直径条件下的复合凝胶炸药能量特性。结果表明,1-PxDyϕz和2-PxDyϕz复合炸药中推进剂的含量增加会降低复合炸药的爆速和猛度,3-PxDyϕz和4-PxDyϕz随推进剂含量增加会使爆速和猛度提高。1-PxDyϕz ~4-PxDyϕz随推进剂粒度的减小均有助于复合炸药爆速和猛度的提升,并且装药直径增大显著增加毁伤能力。水下爆炸实验结果表明,1-PxDyϕz和2-PxDyϕz中推进剂的含量增加会降低水下总能量输出,3-PxDyϕz随推进剂含量增加总能量基本不变,4-PxDyϕz随推进剂含量增加会使水下总能量提高。此外,1-PxDyϕz ~4-PxDyϕz 随推进剂粒度的减小水下总能量呈现上升趋势。

    Abstract:

    To promote the resource utilization of retired HTPB propellants, composite gel explosives were prepared by compounding them with energetic gels: the three-component propellant-containing composite explosive 1-PxDyϕz, the quaternary propellant-containing composite explosive 2-PxDyϕz that contains 9% RDX, the propellant-containing composite explosive 3-PxDyϕz that contains 15% RDX, and the propellant-containing composite explosive 4-PxDyϕz that contains 20% HMX. (x represents the content of propellant P, x=30%, 40%, 50%, y is particle size, y=5, 10, 15 mm; z denotes the charge size, z=40, 50, 65 mm). Tests on detonation velocity, witness plate damage, and underwater explosion energy were conducted to investigate the energy characteristics of these composite gel explosives with varying propellant content, particle size, and charge diameter. The results indicate that an increase in the propellant content in 1-PxDyϕz and 2-PxDyϕz composite explosives reduces the detonation velocity and brisance of the composite explosives, whereas increasing the propellant content in 3-PxDyϕz and 4-PxDyϕz increases both detonation velocity and brisance. The decrease in propellant particle size from 1-PxDyϕz to 4-PxDyϕz contributes to the increase of detonation velocity and brisance, and the increase in charge diameter significantly increases the damage capability. Results of underwater explosion tests show that an increase of propellant content in 1-PxDyϕz and 2-PxDyϕz reduces the total underwater energy output, while 3-PxDyϕz has a relatively constant total energy with an increase in propellant content, and 4-PxDyϕz has an increasing total underwater energy with an increased of propellant content. Additionally, the total underwater energy from 1-PxDyϕz to 4-PxDyϕz increases with the decrease of propellant particle size.

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引用本文

刘玺辰,王一鸣,刘大斌,等.含推进剂复合凝胶炸药的能量输出特性[J].含能材料, 2026, 34(1):16-25. DOI:10.11943/CJEM2025184.
LIU Xi-chen, WANG Yi-ming, LIU Da-bin, et al. Energy Output Characteristics of Composite Gel Explosives containing Propellant[J]. Chinese Journal of Energetic Materials, 2026, 34(1):16-25. DOI:10.11943/CJEM2025184.

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  • 收稿日期: 2025-08-18
  • 最后修改日期: 2026-01-18
  • 录用日期: 2025-12-30
  • 在线发布日期: 2026-01-04
  • 出版日期: