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Finite Element Simulation Study of Human Brain Safety Threshold Under Medium-Speed Collision Load

  • Junhui Chang
  • , Chao Wan*
  • , Hongpeng Yu
  • , Jian Zhao*
  • *此作品的通讯作者
  • Beijing Forestry University
  • Beijing Institute of Technology
  • CAS - Shenyang Institute of Automation

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

A high-fidelity finite element model of the human head was developed to investigate brain injury under medium-speed impact and to quantify impact conditions related to injury thresholds. The model was reconstructed from MRI data, and the coupled Eulerian-Lagrangian method was used to model the fluid-structure interaction of cerebrospinal fluid. A six-degree-of-freedom stiffness constraint was introduced for the atlantoaxial joint. After validation against the Nahum experiment, intracranial responses under frontal, occipital, vertex, and temporal impacts were compared. A three-factor, three-level response surface method was then applied to the most hazardous impact direction. The model showed good agreement with experimental results. The results showed that occipital impact indicated the greatest injury risk and that impact velocity was the dominant factor affecting injury response. Under m = 4 kg and S = 208 cm2, the critical velocities for 6 kPa von Mises stress, and 18% maximum principal strain were about 1.75 m/s and 4.0 m/s, respectively.

源语言英语
主期刊名Mechanical Design and Simulation
主期刊副标题Emerging Technologies and Applications - Proceedings of the 6th International Conference on Mechanical Design and Simulation
编辑Tamás Mankovits, Natasa Trisovic
出版商Springer Science and Business Media Deutschland GmbH
415-425
页数11
ISBN(印刷版)9789819224395
DOI
出版状态已出版 - 2026
活动6th International Conference on Mechanical Design and Simulation, MDS 2026 - Debrecen, 匈牙利
期限: 20 3月 202622 3月 2026

丛书

姓名Lecture Notes in Mechanical Engineering
ISSN(印刷版)2195-4356
ISSN(电子版)2195-4364

会议

会议6th International Conference on Mechanical Design and Simulation, MDS 2026
国家/地区匈牙利
Debrecen
时期20/03/2622/03/26

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