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电磁驱动高速弹丸成型模式与影响因素

Modes and influencing factors of electromagnetically driven high velocity formed projectile
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摘要 为了研究电磁驱动药型罩形成高速成型弹丸的可行性及弹丸成型特性,基于CQ-7脉冲功率装置,开展了电磁驱动线性药型罩形成弹丸技术实验。结合激光多普勒测速技术,实现了电磁驱动药型罩形成弹丸的速度测量和侵彻铝靶验证。同时,基于流体动力学软件和相应电磁仿真模块,建立了电磁驱动弹丸成型的物理模型和数值模拟方法,模拟了弹丸成型和侵彻铝靶的动力学过程,利用实验结果验证了数值模拟方法的可靠性。在此基础上,研究了等壁厚球缺型药型罩的结构参数以及加载能量对弹丸成型参数的影响规律。结果表明:外曲率半径对弹丸的头部速度影响较小,而头部速度会随壁厚的减小和加载能量的增大显著增加;弹丸的长径比随外曲率半径和壁厚的减小、加载能量的增大呈逐渐增加的趋势。最后,利用数值模拟方法预测并验证了利用电磁驱动技术获得高速度和大质量成型弹丸的可行性。 To investigate the feasibility and characteristics of high-velocity formed projectile formation driven by electromagnetic loading,exploratory experiments of projectile formation by electromagnetically driven the linear liner were conducted using the pulsed power generator CQ-7.Photon Doppler velocimeter(PDV)was employed to measure the velocity of the electromagnetic-driven projectiles and validate their penetration into aluminum targets.A physical model and numerical simulation method for electromagnetic-driven projectile formation were established using fluid dynamics software and corresponding electromagnetic simulation modules.The changes in current density and magnetic pressure during the electromagnetic loading stage were studied and the dynamic processes of projectile formation and penetration into aluminum targets were simulated.The numerical simulation method was verified through the comparison between numerical results and experimental data.Based on this,the influences of liner configuration and loading energy on the projectile formation parameters of equal wall thickness hemispherical liner were explored.The results indicate that the outer curvature radius has a minor impact on the head velocity of the projectile,while the head velocity significantly increases with decreasing wall thickness and increasing loading energy.The aspect ratio of the projectile gradually increases with decreasing outer curvature radius and wall thickness,as well as increasing loading energy.The conversion between quasi-spherical and long rod-shaped projectile modes can be achieved by changing the structural parameters,and for the same structural parameter,the conversion between two modes can be achieved by controlling the loading energy.Finally,the feasibility of obtaining high-velocity and high-mass-formed projectiles using electromagnetic-driven technology was predicted using numerical simulation methods,and it can be figured out from the results that a projectile with a higher velocity and larger mass can be formed by increasing the loading energy and the sizes of the shaped liner,effectively breaking through the velocity limit of a traditional penetrator driven by explosive detonation.
作者 黄炳瑜 陈学秒 张旭平 熊玮 王桂吉 张先锋 税荣杰 胥超 谭福利 HUANG Bingyu;CHEN Xuemiao;ZHANG Xuping;XIONG Wei;WANG Guiji;ZHANG Xianfeng;SHUI Rongjie;XU Chao;TAN Fuli(School of Mechanical Engineering,Nanjing University of Science and Technology,Nanjing 210094,Jiangsu,China;Institute of Fluid Physics,China Academy of Engineering Physics,Mianyang 621999,Sichuan,China)
出处 《爆炸与冲击》 EI CAS CSCD 北大核心 2024年第4期95-108,共14页 Explosion and Shock Waves
基金 国家自然科学基金(11972031,92166201,12141202)。
关键词 电磁驱动 高速成型弹丸 线性药型罩 球缺型药型罩 成型模式 electromagnetically driven high velocity formed projectile linear liner hemispherical liner forming mode
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