序号 |
文章标题 |
引用格式(中英文) |
1 |
FOX-7/HMX混合体系热性能研究 |
谢虓,于谦,祝青,等.FOX-7/HMX混合体系热性能研究[J].兵器装备工程学报,2024,45(1):217-222. XIE Xiao, YU Qian, ZHU Qing, et al.Study on thermal performance of FOX-7/HMX mixed system[J].Journal of Ordnance Equipment Engineering,2024,45(1):217-222. |
2 |
冲击载荷作用下传爆药细观损伤模式及本构模型研究 |
裴柯磊,肖有才,肖向东,等.冲击载荷作用下传爆药细观损伤模式及本构模型研究[J].兵器装备工程学报,2024,45(2):150-157. PEI Kelei, XIAO Youcai, XIAO Xiangdong, et al.Mesoscopic damage model and constitutive model of explosive transmission under impact load[J].Journal of Ordnance Equipment Engineering,2024,45(2):150-157. |
3 |
不同温度下RDX基熔铸炸药的力学性能研究 |
李媛媛,赵雪,仇斯琪,等.不同温度下RDX基熔铸炸药的力学性能研究[J].兵器装备工程学报,2024,45(3):1-8. LI Yuanyuan, ZHAO Xue, QIU Siqi, et al.Study on the mechanical properties of RDX based meltcast explosives at different temperatures[J].Journal of Ordnance Equipment Engineering,2024,45(3):1-8. |
4 |
装药密度和约束效应对冲击起爆特性规律研究 |
韩甲旭,王健,刘通有.装药密度和约束效应对冲击起爆特性规律研究[J].兵器装备工程学报,2024,45(3):76-85. HAN Jiaxu, WANG Jian, LIU Tongyou.Study on the law of charge density and constraint effect on impact initiation characteristics[J].Journal of Ordnance Equipment Engineering,2024,45(3):76-85. |
5 |
传爆药装药不同过载环境的力学响应规律研究 |
魏亚美,徐文峥,谭宪鹏,等.传爆药装药不同过载环境的力学响应规律研究[J].兵器装备工程学报,2024,45(4):104-111. WEI Yamei, XU Wenzheng, TAN Xianpeng, et al.Study on mechanical response of booster charge under different loading conditions[J].Journal of Ordnance Equipment Engineering,2024,45(4):104-111. |
6 |
泄压孔对聚能传爆管的影响 |
王锋,郭留金,丁明军,等.泄压孔对聚能传爆管的影响[J].兵器装备工程学报,2024,45(5):32-39. WANG Feng, GUO Liujin, DING Mingjun, et al.Effect of pressure relief hole on shaped energy transmitting tube[J].Journal of Ordnance Equipment Engineering,2024,45(5):32-39. |
7 |
陶瓷防护结构对引信抗破片冲击性能影响研究 |
吴立林,钱晨晨,陆静.陶瓷防护结构对引信抗破片冲击性能影响研究[J].兵器装备工程学报,2024,45(6):159-165. WU Lilin, QIAN Chenchen, LU Jing.Study on the influence of ceramic protective structures on the resistance of fuze to fragment impact[J].Journal of Ordnance Equipment Engineering,2024,45(6):159-165. |
8 |
爆炸切割网络传爆能力影响因素的仿真分析 |
郭明开,赵铮.爆炸切割网络传爆能力影响因素的仿真分析[J].兵器装备工程学报,2024,45(7):82-87. GUO Mingkai, ZHAO Zheng.Simulation analysis of factors influencing the explosive transmission ability of explosive cutting networks[J].Journal of Ordnance Equipment Engineering,2024,45(7):82-87. |
9 |
限位自闭锁式引信MEMS安全与解除隔离装置 |
姜学文,赵河明,王军,等.限位自闭锁式引信MEMS安全与解除隔离装置[J].兵器装备工程学报,2024,45(8):266-273. JIANG Xuewen, ZHAO Heming, WANG Jun, et al.Selflocking and positioning fuze safety and arming device based on MEMS[J].Journal of Ordnance Equipment Engineering,2024,45(8):266-273. |
10 |
破片撞击裸药柱临界起爆速度判据的研究 |
张薇,崔浩,高振国,等.破片撞击裸药柱临界起爆速度判据的研究[J].兵器装备工程学报,2024,45(9):1-8. ZHANG Wei, CUI Hao, GAO Zhenguo, et al.Study on criterion for critical velocity of fragment impact detonation bare charge[J].Journal of Ordnance Equipment Engineering,2024,45(9):1-8. |
11 |
弹丸刚体外弹道及其引信力学环境数值解算稳定性 |
回建豪,王雨时,闻泉,等.弹丸刚体外弹道及其引信力学环境数值解算稳定性[J].兵器装备工程学报,2024,45(11):42-50. HUI Jianhao, WANG Yushi, WEN Quan, et al.The stability research of numerical solution for rigid body exterior ballistics and fuze mechanical environment in exterior ballistics[J].Journal of Ordnance Equipment Engineering,2024,45(11):42-50. |
12 |
引信全电子安全系统安全性研究 |
白欣,刘凤丽,郝永平,等.引信全电子安全系统安全性研究[J].兵器装备工程学报,2024,45(11):59-67. BAI Xin, LIU Fengli, HAO Yongping, et al.Security system safety research for fully electronic initiators[J].Journal of Ordnance Equipment Engineering,2024,45(11):59-67. |
13 |
航空炸弹引信多姿态惯性发火性能研究 |
陆俊桦,岳明凯,张骢,等.航空炸弹引信多姿态惯性发火性能研究[J].兵器装备工程学报,2024,45(11):73-82. LU Junhua, YUE Mingkai, ZHANG Cong, et al.Research on the multi-attitude inertial ignition performance of aerial bomb fuze[J].Journal of Ordnance Equipment Engineering,2024,45(11):73-82. |
14 |
内置MEMS安保机构的微型聚能毁伤弹药 |
胡腾江,赵玉龙,张国栋,等.内置MEMS安保机构的微型聚能毁伤弹药[J].兵器装备工程学报,2024,45(12):1-9. HU Tengjiang, ZHAO Yulong, ZHANG Guodong, et al.A micro shaped ammunition with built-in MEMS safety-and-arming device[J].Journal of Ordnance Equipment Engineering,2024,45(12):1-9. |
15 |
某中大口径榴弹引信机电保险装置可靠性与性能一体化设计 |
杨磊,王锋,韩晶,等.某中大口径榴弹引信机电保险装置可靠性与性能一体化设计[J].兵器装备工程学报,2024,45(12):204-212. YANG Lei, WANG Feng, HAN Jing, et al.Integration design of reliability and performance of an electromechanical safety device for a large caliber grenade fuze[J].Journal of Ordnance Equipment Engineering,2024,45(12):204-212. |
16 |
聚氨酯缓冲材料瞬态响应特性研究 |
李浩镕,毕世华,熊文靖.聚氨酯缓冲材料瞬态响应特性研究[J].兵器装备工程学报,2024,45(1):235-242. LI Haorong, BI Shihua, XIONG Wenjing.Investigation on transient response characteristics of polyurethane cushioning materials[J].Journal of Ordnance Equipment Engineering,2024,45(1):235-242. |
17 |
基于模糊故障树的某高炮无线电引信安全评估 |
贺玮,李波,麻旭东.基于模糊故障树的某高炮无线电引信安全评估[J].兵器装备工程学报,2024,45(2):76-82. HE Wei, LI Bo, MA Xudong.Fuzzy fault tree based safety assessment of radio fuzes for antiaircraft guns[J].Journal of Ordnance Equipment Engineering,2024,45(2):76-82. |
18 |
电子时间引信电路部件全流程测试系统设计 |
马景,李豪杰,原红伟,等.电子时间引信电路部件全流程测试系统设计[J].兵器装备工程学报,2024,45(2):225-231. MA Jing, LI Haojie, YUAN Hongwei, et al.Design of whole process test system for electronic time fuze circuit components[J].Journal of Ordnance Equipment Engineering,2024,45(2):225-231. |
19 |
基于MI-EMD的激光引信回波信号去噪方法研究 |
何海军,胡鹏飞,田博,等.基于MI-EMD的激光引信回波信号去噪方法研究[J].兵器装备工程学报,2024,45(5):285-290. HE Haijun, HU Pengfei, TIAN Bo, et al.Research on denoising method for laser fuze echo signal based on MI-EMD[J].Journal of Ordnance Equipment Engineering,2024,45(5):285-290. |
20 |
一种基于火工品技术的数据安全保护方法研究 |
张强,康长盛,樊文韬,等.一种基于火工品技术的数据安全保护方法研究[J].兵器装备工程学报,2024,45(7):267-274. ZHANG Qiang, KANG Changsheng, FAN Wentao, et al.Research on data destruction method based on initiating explosive device technology[J].Journal of Ordnance Equipment Engineering,2024,45(7):267-274. |
21 |
25mm口径引信高过载条件下强度有限元分析 |
冯明龙,曾鹏飞,郝永平,等.25 mm口径引信高过载条件下强度有限元分析[J].兵器装备工程学报,2024,45(8):122-128. FENG Minglong, ZENG Pengfei, HAO Yongping, et al.Finite element analysis of strength under high overload conditions of 25 mm caliber fuze[J].Journal of Ordnance Equipment Engineering,2024,45(8):122-128. |
22 |
电子安全系统解除保险逻辑设计与失效率计算 |
黄志达,黄学功.电子安全系统解除保险逻辑设计与失效率计算[J].兵器装备工程学报,2024,45(8):140-145. HUANG Zhida, HUANG Xuegong.Control logic design of electronic safety system and failure rate calculation[J].Journal of Ordnance Equipment Engineering,2024,45(8):140-145. |
23 |
薄壁球壳在平头弹冲击作用下的变形预测模型 |
范升阳,栗建桥.薄壁球壳在平头弹冲击作用下的变形预测模型[J].兵器装备工程学报,2024,45(10):1-11. FAN Shengyang, LI Jianqiao.Deformation prediction model of thin-walled spherical shells under flat-headed projectile impact[J].Journal of Ordnance Equipment Engineering,2024,45(10):1-11. |
24 |
基于LS-DYNA二次开发的AlNi合金弹丸对单层靶的撞击特性研究 |
于陆然,郭香华,张庆明.基于LS-DYNA二次开发的AlNi合金弹丸对单层靶的撞击特性研究[J].兵器装备工程学报,2024,45(10):12-18. YU Luran, GUO Xianghua, ZHANG Qingming.Impact characteristics of AlNi alloy projectile on single-layer target based on LS-DYNA secondary development[J].Journal of Ordnance Equipment Engineering,2024,45(10):12-18. |
25 |
基于主动磁探测的侵彻引信磁异响应特性研究 |
曹娟,赵静,马帅.基于主动磁探测的侵彻引信磁异响应特性研究[J].兵器装备工程学报,2024,45(11):51-58. CAO Juan, ZHAO Jing, MA Shuai.Research on magnetic anomaly response characteristics of penetration fuze based on active magnetic detection[J].Journal of Ordnance Equipment Engineering,2024,45(11):51-58. |
26 |
基于时域可变响应度的激光引信研究 |
李琪琪,李慧,张诗敏,等.基于时域可变响应度的激光引信研究[J].兵器装备工程学报,2024,45(11):68-72. LI Qiqi, LI Hui, ZHANG Shimin, et al.Research on laser fuze based on time-domain variable responsiveness[J].Journal of Ordnance Equipment Engineering,2024,45(11):68-72. |
27 |
基于有限元的帽形感应装定引信接收骨架的优化方法 |
符超群,崔佳,张晨,等.基于有限元的帽形感应装定引信接收骨架的优化方法[J].兵器装备工程学报,2024,45(11):83-89,150. FU Chaoqun, CUI Jia, ZHANG Chen, et al.Optimization method of the receiving frame of the hat shaped induction set fuzebased on finite element[J].Journal of Ordnance Equipment Engineering,2024,45(11):83-89,150. |
28 |
穿爆弹丸装药摩擦起爆特性数值模拟 |
章猛华,阮文俊,于霜.穿爆弹丸装药摩擦起爆特性数值模拟[J].兵器装备工程学报,2024,45(12):33-38,52. ZHANG Menghua, RUAN Wenjun, YU Shuang.Numerical simulation of friction initiation characteristics of armour-piercing explosive projectile[J].Journal of Ordnance Equipment Engineering,2024,45(12):33-38,52. |
29 |
聚黑-2压装成形仿真及药柱孔隙分析 |
达奔那,姜夏冰,段海霞,等.聚黑-2压装成形仿真及药柱孔隙分析[J].兵器装备工程学报,2024,45(12):45-52. DA Benna, JIANG Xiabing, DUAN Haixia, et al.Simulation and pore analysis of JH-2 pressing and forming[J].Journal of Ordnance Equipment Engineering,2024,45(12):45-52. |