本构方程
结构工程
计算机模拟
分离式霍普金森压力棒
变形(气象学)
机械
双线性插值
射弹
LS-DYNA系列
人体模型
工程类
试验数据
耐撞性
超弹性材料
非线性系统
毒物控制
准静态过程
人体躯干
材料科学
机械工程
迟钝的
计算机科学
压力(语言学)
粘塑性
有限元法
作者
Weixiao Nie,Yaoke Wen,Liang Xu,Zhouyu Shen,Huicheng Wang,Haoran Xu,Lizhen Wang
标识
DOI:10.1080/13588265.2026.2691724
摘要
In modern warfare, body armor has greatly reduced soldier casualties, yet back-face deformation from high-velocity bullets can still cause severe blunt trauma. Current studies mainly rely on numerical simulations, where accurately defining soft-tissue mechanical properties and constitutive models remains a key challenge. This study fitted a rate-dependent bilinear constitutive model for soft tissue using Hopkinson bar test data and implemented it in ABAQUS through a VUMAT subroutine. A protected human blunt-impact model was then established by combining a validated body-armor model with the Toyota THUMS human model. The model was used to simulate the impact of a 5.8 mm rifle bullet on an armored human thorax. Results show that the proposed constitutive model effectively captures the dynamic mechanical behavior of the heart and liver. Under impact, peak pressures reached 11.2 MPa in the ribs, 0.1 MPa in the lungs, 0.06 MPa in the heart, and 0.23 MPa in the liver, indicating the need for improved torso protection.
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