Fan Ruijun, Wang Xiaofeng, Li Haijie, Wang Shaohong, Pi Aiguo
State Key Laboratory of Explosion Science and Safety Protection, Beijing Institute of Technology, Beijing, 100081, China.
Hunan Vangurd Group Co. Ltd., Changsha, 410137, China.
Sci Rep. 2025 Mar 26;15(1):10409. doi: 10.1038/s41598-025-94211-x.
To investigate the mechanism of coupled damage in human body caused by shock waves and fragment, a finite element model of the human thorax was established. The validity of the model was verified by comparing the thorax damage data under blast and fragment. LS-DYNA finite element software was used to numerically simulate the mechanical response of the thorax under combined shock waves and fragment loading, and to analyze the effects of loading modes, mass of TNT charge, and blast distances on damage to human thoracic organs. The results indicate that the coupling damage effect of organs near the impact area is appreciable under the combined shock waves and fragment loading, and the mechanical parameters of human organs exceed the sum caused by shock waves and fragment individually. As the mass of TNT charge increased, both the peak velocity of skeletons and the stress on organs at the non-impact area under combined loading increase, whereas the effect on the peak stress in organs at the impact area of fragment is smaller and much larger than the sum of the stresses under shock waves and fragment loading alone. Meanwhile, the gap between peak stress of the same organ under combined loading and shock waves loading alone widened for different masses of TNT charge. Furthermore, the combined loading sequence of shock waves and fragment affects the mechanical response of human organs. An approach for evaluating the probability of injury under combined loading was proposed. The calculation results show that in the near field, the injury probability is more sensitive to the impulse of the shock waves.
为研究冲击波与破片对人体的耦合损伤机制,建立了人体胸部有限元模型。通过对比爆炸和破片作用下的胸部损伤数据验证了模型的有效性。利用LS-DYNA有限元软件对冲击波与破片联合作用下胸部的力学响应进行了数值模拟,分析了加载方式、TNT装药质量和爆炸距离对人体胸部器官损伤的影响。结果表明,在冲击波与破片联合作用下,撞击区域附近器官的耦合损伤效应明显,人体器官的力学参数超过冲击波和破片单独作用时的力学参数之和。随着TNT装药质量的增加,联合加载下骨骼的峰值速度和非撞击区域器官的应力均增大,而对破片撞击区域器官峰值应力的影响较小,且远大于冲击波和破片单独作用时应力之和。同时,对于不同质量的TNT装药,联合加载与单独冲击波加载下同一器官的峰值应力差值增大。此外,冲击波与破片的联合加载顺序影响人体器官的力学响应。提出了一种评估联合加载下损伤概率的方法。计算结果表明,在近场,损伤概率对冲击波冲量更为敏感。