| [1] |
邢肖兵, 谭剑锋, 杨宇霄, 等. 基于子弹击穿理论的直升机机身弹伤快速分析方法[J]. 北京航空航天大学学报, 2025, 51(9): 3212-3221.
|
|
XING X B, TAN J F, YANG Y X, et al. An efficient analysis method of helicopter fuselage bullet damage based on bullet penetration theory[J]. Journal of Beijing University of Aeronautics and Astronautics, 2025, 51(9): 3212-3221 (in Chinese).
|
| [2] |
WALTERS M, LISCIO E. The accuracy and repeatability of reconstructing single bullet impacts using the 2D ellipse method[J]. Journal of Forensic Sciences, 2020, 65(4): 1120-1127.
|
| [3] |
LISCIO E, PARK J. The lead-in method for bullet impacts in metal panels[J]. Forensic Science International, 2021, 326: 110914.
|
| [4] |
胡静, 吕瑜晗. 斜撞击角度对铝合金薄板失效特性影响研究[J]. 机械强度, 2022, 44(5): 1119-1127.
|
|
HU J, LÜ Y H. Study on the effect of oblique impact angle on the failure characteristics of aluminum alloy sheet[J]. Journal of Mechanical Strength, 2022, 44(5): 1119-1127 (in Chinese).
|
| [5] |
KPENYIGBA K M, JANKOWIAK T, RUSINEK A, et al. Influence of projectile shape on dynamic behavior of steel sheet subjected to impact and perforation[J]. Thin-Walled Structures, 2013, 65: 93-104.
|
| [6] |
薛建锋, 沈培辉, 王晓鸣. 钻地弹斜侵彻混凝土靶的工程计算模型[J]. 航空学报, 2016, 37(6): 1899-1911.
|
|
XUE J F, SHEN P H, WANG X M. Engineering calculation model for oblique penetration into concrete target by earth penetration weapon[J]. Acta Aeronautica et Astronautica Sinica, 2016, 37(6): 1899-1911 (in Chinese).
|
| [7] |
管公顺, 哈跃, 庞宝君. 铝球弹丸超高速斜撞击薄铝板特性研究[J]. 高压物理学报, 2007, 21(4): 347-353.
|
|
GUAN G S, HA Y, PANG B J. Investigation on damage characteristics of thin Al-plates by oblique hypervelocity impact of Al-sphere[J]. Chinese Journal of High Pressure Physics, 2007, 21(4): 347-353 (in Chinese).
|
| [8] |
王瀚艺. 硬38CrSi平头弹斜撞击45钢靶侵彻特性研究[J]. 中国民航飞行学院学报, 2019, 30(1): 13-16.
|
|
WANG H Y. Research on penetration characteristics of 45 steel target impact by hard 38CrSi flat-nosed projectile[J]. Journal of Civil Aviation Flight University of China, 2019, 30(1): 13-16 (in Chinese).
|
| [9] |
IQBAL M A, GUPTA G, GUPTA N K. 3D numerical simulations of ductile targets subjected to oblique impact by sharp nosed projectiles[J]. International Journal of Solids and Structures, 2010, 47(2): 224-237.
|
| [10] |
IQBAL M A, CHAKRABARTI A, BENIWAL S, et al. 3D numerical simulations of sharp nosed projectile impact on ductile targets[J]. International Journal of Impact Engineering, 2010, 37(2): 185-195.
|
| [11] |
陈尚军, 秦庆华, 张威, 等. 低速冲击下金属蜂窝夹芯板抗侵彻性能的试验研究[J]. 航空学报, 2018, 39(2): 221483.
|
|
CHEN S J, QIN Q H, ZHANG W, et al. Experimental investigation on against penetration of metallic honeycomb sandwich plates under low-velocity impact[J]. Acta Aeronautica et Astronautica Sinica, 2018, 39(2): 221483 (in Chinese).
|
| [12] |
王立纲, 王日晗, 肖思维, 等. 2024-T42铝合金圆管抗球形钢弹侵彻特性研究[J]. 机械强度, 2025, 47(6): 118-123.
|
|
WANG L G, WANG R H, XIAO S W, et al. Research on the penetration resistance characteristic of 2024-T42 aluminum alloy tube to spherical steel projectile[J]. Journal of Mechanical Strength, 2025, 47(6): 118-123 (in Chinese).
|
| [13] |
王砚书. 刚体弹丸侵彻靶板的毁伤效应预测分析[D]. 哈尔滨: 哈尔滨工业大学, 2023: 14-16.
|
|
WANG Y S. Prediction and analysis of the destructive effect of rigid body projectile penetrating the target plate[D]. Harbin: Harbin Institute of Technology, 2023: 14-16 (in Chinese).
|
| [14] |
王峰, 王肖钧, 胡秀章, 等. 卵形杆弹对铝靶的斜侵彻[J]. 爆炸与冲击, 2005, 25(3): 265-270.
|
|
WANG F, WANG X J, HU X Z, et al. Oblique penetration of an ogive-nosed rod into the aluminum target[J]. Explosion and Shock Waves, 2005, 25(3): 265-270 (in Chinese).
|
| [15] |
伍乾坤, 韩旭, 谭柱华, 等. 考虑攻角的长杆弹斜穿透中厚铝靶机理[J]. 工程力学, 2012, 29(6): 338-345.
|
|
WU Q K, HAN X, TAN Z H, et al. Mechanism of perforation of inclined moderately thick aluminum target by long-rod projectile with yaw[J]. Engineering Mechanics, 2012, 29(6): 338-345 (in Chinese).
|
| [16] |
辛壮壮, 张向东, 江睿毅, 等. 弹头角速度与侵彻倾角对铝合金薄板损伤分析[J]. 弹道学报, 2022, 34(4): 23-29.
|
|
XIN Z Z, ZHANG X D, JIANG R Y, et al. Influence of warhead angular velocity and penetration angle on damage performance of aluminum alloy sheet[J]. Journal of Ballistics, 2022, 34(4): 23-29 (in Chinese).
|
| [17] |
高旭东, 李庆明. 带攻角斜侵彻混凝土的弹道偏转分析[J]. 兵工学报, 2014, 35(): 33-39.
|
|
GAO X D, LI Q M. Trajectory analysis of projectile obliquely penetrating into concrete target at attack angle[J]. Acta Armamentarii, 2014, 35(): 33-39 (in Chinese).
|
| [18] |
李钊, 孙旭光, 周中锋. 穿甲弹斜侵彻钛合金靶板试验与数值模拟研究[J]. 振动与冲击, 2023, 42(23): 159-166.
|
|
LI Z, SUN X G, ZHOU Z F. Tests and numerical simulation of oblique penetration of armour-piercing projectile into titanium alloy target[J]. Journal of Vibration and Shock, 2023, 42(23): 159-166 (in Chinese).
|
| [19] |
康海峰, 代廷静, 沈培辉, 等. 弹体形状对侵彻弹道的影响分析[J]. 弹箭与制导学报, 2012, 32(2): 73-76.
|
|
KANG H F, DAI T J, SHEN P H, et al. The analysis of the influence of projectile’s shape on penetration trajectory[J]. Journal of Projectiles, Rockets, Missiles and Guidance, 2012, 32(2): 73-76 (in Chinese).
|
| [20] |
CHENG J C, ZHANG S, LIU Q, et al. Ballistic impact experiments and modeling on impact cratering, deformation and damage of 2024-T4 aluminum alloy[J]. International Journal of Mechanical Sciences, 2022, 224: 107312.
|
| [21] |
KUMAR REDDY SIRIGIRI V, YADAV GUDIGA V, SHANKAR GATTU U, et al. A review on Johnson Cook material model[J]. Materials Today: Proceedings, 2022, 62: 3450-3456.
|
| [22] |
李春雷. 2A12铝合金本构关系实验研究[D]. 哈尔滨: 哈尔滨工业大学, 2006: 40-42.
|
|
LI C L. Experimental investigation into the constitutive relationship of 2A12 aluminum alloy[D]. Harbin: Harbin Institute of Technology, 2006: 40-42 (in Chinese).
|
| [23] |
熊瑞亮. 2024铝合金超精密车削有限元模拟及实验研究[D]. 南昌: 南昌大学, 2020: 11-12.
|
|
XIONG R L. Finite element simulation and experimental study of 2024 aluminum alloy ultra precision turning[D]. Nanchang: Nanchang University, 2020: 11-12 (in Chinese).
|
| [24] |
余庆波, 王海福, 俞为民. 结构参数对截锥弹低速正侵彻装甲靶的影响[J]. 工程力学, 2012, 29(1): 207-213.
|
|
YU Q B, WANG H F, YU W M. Influence of structural parameters on perpendicular penetrating armor of truncated conical projectile in low speed[J]. Engineering Mechanics, 2012, 29(1): 207-213 (in Chinese).
|
| [25] |
李亚, 任杰, 马大为, 等. 多角度高速侵彻金属靶的有限元模拟和实验研究[J]. 兵器材料科学与工程, 2017, 40(5): 72-77.
|
|
LI Y, REN J, MA D W, et al. FEM simulation and experimental study of multiangular high velocity penetration of metallic targets[J]. Ordnance Material Science and Engineering, 2017, 40(5): 72-77 (in Chinese).
|
| [26] |
裴桂艳, 聂建新, 王秋实, 等. 舰炮半穿甲模拟弹对金属靶板斜侵彻研究[J]. 兵工学报, 2024, 45(3): 731-743.
|
|
PEI G Y, NIE J X, WANG Q S, et al. Study on oblique penetration of metal plate by naval Gun semi-armor-piercing simulation projectile[J]. Acta Armamentarii, 2024, 45(3): 731-743 (in Chinese).
|
| [27] |
于遨洋, 杨通. 平板玻璃上弹孔形态与射击方向的相关性检验[J]. 中国刑警学院学报, 2017(3): 91-95.
|
|
YU A Y, YANG T. Correlation study on the direction of fire and the shape of bullet hole in flat glass[J]. Journal of Criminal Investigation Police University of China, 2017(3): 91-95 (in Chinese).
|