CHINESE JOURNAL OF ENERGETIC MATERIALS
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PBX炸药损伤本构模型及其工程运用
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作者单位:

1.南京理工大学机械工程学院, 江苏 南京 210094;2.西安近代化学研究所, 陕西 西安 710065

作者简介:

黄垂艺(1997-),男,硕士研究生,主要从事炸药装药损伤及演化规律研究。e-mail:huangchuiyi@qq.com

通讯作者:

金朋刚(1978-),男,副研究员,主要从事炸药爆炸及安全特性研究。e-mail:jinpenggang204@126.com

基金项目:

西安近代化学研究所开放合作创新基金(SYJJ03)


Damage Constitutive Model of PBX Explosive and Its Engineering Application
Author:
Affiliation:

1.School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China;2.Xi′an Modern Chemistry Research Institute, Xi′an, 710065, China

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    摘要:

    为了对高聚物黏结炸药(PBX)在动态冲击载荷下可能产生的损伤进行研究,采用分离式霍普金森杆(SHPB)试验装置获得了PBX炸药材料在不同应变率条件下出现力学损伤的本构曲线,并基于含损伤变量的Z-W-T本构模型对本构曲线进行了分段拟合。然后基于拟合结果、有限元理论、弹塑性力学与ABAQUS/VUMAT语法编写了PBX炸药含损伤材料子程序,并对该子程序进行了有限元验证及有限元工程算例计算。结果表明:有限元验证得到的结果与试验结果吻合良好,相关度在0.95以上;破片侵彻算例计算得到的应力云图与损伤变量云图反映PBX炸药材料在冲击载荷下发生的变化及可能产生损伤的部位;并且损伤云图的演化过程反映了PBX炸药材料损伤演化与应变率效应的相关性。

    Abstract:

    In order to study the damage of polymer bonded explosive(PBX) under dynamic shock loads, the constitutive curve of the mechanical damage of PBX under different strain rates was obtained by using the Split-Hopkinson pressure bar(SHPB) test device. And the constitutive parameters in the Z-W-T constitutive model with damage variables were fitted in sections. Then, based on the fitting results, the finite element theory, elastoplastic mechanics and ABAQUS/VUMAT, the subroutine of PBX containing damage is completed, and is verified by the finite element simulation. The model is used for finite element engineering examples. Results show that the verification results of finite element samples are in good agreement with the experimental results, and the correlation degree of the results is higher than 0.95.The stress cloud diagram and damage variable cloud diagram for fragment penetration example reflect the change and possible damage location of PBX under shock loads.The evolution process of damage cloud diagram reflects the correlation between damage evolution and strain rate effect of PBX.

    图2 PBX炸药典型入射波、反射波、透射波信号Fig.2 Signal of incident wave, reflected wave and transmitted wave
    图3 PBX炸药典型应变率-时间曲线Fig.3 Strain rate vs. time curve
    图4 PBX炸药不同应变率下的应力-应变曲线Fig.4 Stress strain curves of cast PBX under different strain rates
    图5 PBX炸药在不同应变率下的真实应力-应变曲线Fig.5 Real stress-strain curves of PBX explosives at different strain rates
    图6 拟合Z-W-T本构曲线与试验本构曲线对比Fig.6 Comparison between fitting Z-W-T constitutive curves and experimental constitutive curves
    图7 本构损伤部分的拟合结果与试验结果对比Fig.7 The comparison between the fitting results of constitutive damage and the experimental results
    图8 验证子程序的计算模型Fig.8 Calculation model of verification subroutine
    图9 验证子程序的仿真结果与试验结果对比Fig.9 The comparison between the simulation results of the verification subroutine and the experimental results
    图10 带壳装药破片撞击仿真物理模型Fig.10 Simulation physical model of shell charge fragment impact
    图14 各工况不同撞击部位单元D-t曲线Fig.14 D-t curves of different impact positions under different working conditions
    表 1 SHPB主要设计参数Table 1 Main design parameters of SHPB
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引用本文

黄垂艺,时岩,金朋刚,等. PBX炸药损伤本构模型及其工程运用[J].含能材料, 2022, 30(3):188-196. DOI:10.11943/CJEM2021161.
HUANG Chui-yi, SHI Yan, JIN Peng-gang, et al. Damage Constitutive Model of PBX Explosive and Its Engineering Application[J]. Chinese Journal of Energetic Materials, 2022, 30(3):188-196. DOI:10.11943/CJEM2021161.

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  • 收稿日期: 2021-06-17
  • 最后修改日期: 2021-08-14
  • 录用日期: 2021-11-30
  • 在线发布日期: 2022-03-17
  • 出版日期: 2022-03-25