 二维码(扫一下试试看!) | 基于SPH方法的不同材质射流毁伤性能研究 | Study on Damage Characteristics of Different Jets Based on SPH Method | 投稿时间:2017-12-05 | DOI:10.15918/j.tbit1001-0645.2018.04.004 | 中文关键词:光滑粒子流体动力学(SPH)聚能射流数值模拟毁伤性能 | English Keywords:smoothed particle hydrodynamics (SPH)shaped charge jetsnumerical simulationdamage characteristics | 基金项目:国家自然科学基金资助项目(11572291);山西省研究生联合培养基地人才培养项目(20160033) | | 摘要点击次数:795 | 全文下载次数:839 | 中文摘要: | 为研究不同材质射流的毁伤性能,使用AUTODYN有限元软件,采用光滑粒子流体动力学(SPH)方法对Cu、PTFE、PTFE-Cu三种材料药型罩形成射流的成型及侵彻靶板过程进行了数值仿真,并通过实验进行验证.研究结果表明:Cu材料药型罩在爆轰波的作用下形成凝聚的射流,而PTFE和PTFE-Cu材料药型罩则形成飞散的粒子流;三种材料射流侵彻靶板过程中,Cu射流头部速度最低,侵彻深度最深,开孔最小;PTFE粒子流头部速度最高,侵彻深度最浅,开孔大小居中;PTFE-Cu射流的头部速度和侵彻深度都居中,而开孔最大;PTFE-Cu射流克服了PTFE射流侵彻性能不足的缺点,其开孔能力较之铜射流有所提高. | English Summary: | In order to study the damage performance of different jets, the AUTODYN finite element software was used, and the smoothed particle hydrodynamics (SPH) method was adopted, to simulate the formation of jets and penetrating targets of different jets by copper, PTFE and PTFE-Cu materials, and experiments were carried out.The results show that the liner of Cu material form a condensed jet under the effect of detonation wave, while PTFE and PTFE-Cu liner form scattering particle jets. The processes of three kinds of jets penetrating the target plate show that the copper jet head has the lowest speed, deepest penetration depth, and the smallest openings; the head speed of PTFE jet is the highest, the penetration depth is the shallowest and the opening is intermediate. The head speed and penetration depth of the PTFE-Cu jet are intermediate and the openings are the largest. PTFE-Cu jet overcomes the shortcomings of penetration performance of PTFE jet, and its ability of opening is higher than that of the copper jet. | 查看全文查看/发表评论下载PDF阅读器 | |
吴沛飞,尚新春.热冲击下粘-弹塑性材料的热空化[J].北京理工大学学报(自然科学版),2018,38(6):551~556.WUPei-fei,SHANGXin-chun.CavitationinVisco-ElastoplasticMaterialUnderThermalShock[J].Tran ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21杨智明,刘金旭,冯新娅,李树奎,王鑫磊.玄武岩纤维布增强不同树脂基体复合材料的制备与力学性能[J].北京理工大学学报(自然科学版),2018,38(6):655~660.YANGZhi-ming,LIUJin-xu,FENGXin-ya,LIShu-kui,WANGXin-lei.Preparati ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21周晓松,梅志远,张焱冰.纤维缠绕复合材料夹芯圆柱体轴压力学模型及复合吸能机制[J].北京理工大学学报(自然科学版),2018,38(6):647~654.ZHOUXiao-song,MEIZhi-yuan,ZHANGYan-bing.MechanicalModelandDamageMechanism ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21彭文飞,朱健,孙宝寿,黄光兴,束学道.工艺参数对楔横轧42CrMo/Q235复合材料层合轴界面剪切强度的影响[J].北京理工大学学报(自然科学版),2018,38(9):881~887.PENGWen-fei,ZHUJian,SUNBao-shou,HUANGGuang-xing,SHUXue-da ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21于丝竹,李晓东,邹美帅,郭晓燕,金信.AFG-90基固体浮力材料的固化动力学与性能研究[J].北京理工大学学报(自然科学版),2018,38(11):1205~1210.YUSi-zhu,LIXiao-dong,ZOUMei-shuai,GUOXiao-yan,JINXin.StudyonCurin ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21凌建寿,武岳,刘迪.石墨烯复合材料在警车防弹防护方面的研究[J].北京理工大学学报(自然科学版),2018,38(S1):5~9.LINGJian-shou,WUYue,LIUDi.StudyontheBulletproofSkillwithGrapheneCompositeArmorMateria ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21宋光明,李明,龚自正,武强,张庆明.波阻抗梯度材料超高速正/反撞击下防护特性研究[J].北京理工大学学报(自然科学版),2018,38(S2):67~70,80.SONGGuang-ming,LIMing,GONGZi-zheng,WUQiang,ZHANGQing-ming.StudyonPerf ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21梁增友,梁福地,苗春壮,王明广.低密度材料用于串联战斗部可行性研究[J].北京理工大学学报(自然科学版),2018,38(S2):59~62.LIANGZeng-you,LIANGFu-di,MIAOChun-zhuang,WANGMing-guang.StudyontheFeasibilityof ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21甘云丹,张庆明,龙仁荣,翟红波,丁刚,梁浩哲.内爆作用下复合材料柱形爆炸容器的破坏[J].北京理工大学学报(自然科学版),2018,38(S2):71~74.GANYun-dan,ZHANGQing-ming,LONGRen-rong,ZHAIHong-bo,DINGGang,LIANGHao-zh ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21赵长啸,纪冲,高福银,张俊男,冉东岳,李惠明.炸药材料特性对整体式MEFP成形的影响[J].北京理工大学学报(自然科学版),2018,38(S2):139~142.ZHAOChang-xiao,JIChong,GAOFu-yin,ZHANGJun-nan,RANDong-yue,LIHui-ming ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21
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