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摘要:
Objective::Fragment injury is a type of blast injury that is becoming more and more common in military campaigns and terrorist attacks. Numerical simulation methods investigating the formation of natural fragments and injuries to biological targets are expected to be developed.Methods::A cylindrical warhead model was established and the formation process of natural fragments was simulated using the approach of tied nodes with failure through the explicit finite element (FE) software of LS-DYNA. The interaction between the detonation product and the warhead shell was simulated using the fluid-structure interaction algorithm. A method to simulate the injury of natural fragments to a biological target was presented by transforming Lagrange elements into smooth particle hydrodynamics (SPH) particles after the natural fragments were successfully formed. A computational model of the human thorax was established to simulate the injury induced by natural fragments by the node-to-surface contact algorithm with erosion.Results::The discontinuous velocities of the warhead shell at different locations resulted in the formation of natural fragments with different sizes. The velocities of natural fragments increased rapidly at the initial stage and slowly after the warhead shell fractured. The initial velocities of natural fragments at the central part of the warhead shell were the largest, whereas those at both ends of the warhead shell were the smallest. The natural fragments resulted in bullet holes that were of the same shape as that of the fragments but slightly larger in size than the fragments in the human thorax after they penetrated through. Stress waves propagated in the ribs and enhanced the injury to soft tissues; additionally, ballistic pressure waves ahead of the natural fragments were also an injury factor to the soft tissues.Conclusion::The proposed method is effective in simulating the formation of natural fragments and their injury to biological targets. Moreover, this method will be beneficial for simulating the combined injuries of natural fragments and shock waves to biological targets.
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篇名 A numerical simulation method of natural fragment formation and injury to human thorax
来源期刊 中华创伤杂志英文版 学科
关键词 Finite element analysis Fragment injury Human thorax Fluid-structure interaction Smooth particle hydrodynamics
年,卷(期) 2020,(5) 所属期刊栏目 Original Article
研究方向 页码范围 258-264
页数 7页 分类号
字数 语种 中文
DOI 10.1016/j.cjtee.2020.05.002
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作者信息
序号 姓名 单位 发文数 被引次数 H指数 G指数
1 Ju Yuan-Yuan 1 0 0.0 0.0
2 Zhang Lei 1 0 0.0 0.0
3 Ruan Di-Ke 1 0 0.0 0.0
4 Xu Cheng 1 0 0.0 0.0
5 Hu Ming 1 0 0.0 0.0
6 Long Ren-Rong 1 0 0.0 0.0
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研究主题发展历程
节点文献
Finite element analysis
Fragment injury
Human thorax
Fluid-structure interaction
Smooth particle hydrodynamics
研究起点
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研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
中华创伤杂志(英文版)
双月刊
1008-1275
50-1115/R
大16开
重庆市渝中区大坪长江支路10号
78-81
1998
eng
出版文献量(篇)
1765
总下载数(次)
0
总被引数(次)
7300
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