期刊文献+

Simulation of the Impact Between Head and Seat Head Restraint During REC Under Consideration of the Multiphase and Nonlinear Features

Simulation of the Impact Between Head and Seat Head Restraint During REC Under Consideration of the Multiphase and Nonlinear Features
下载PDF
导出
摘要 The impact process between car driver's head and seat head restraint during a car rear end collision is simulated, where the multiphase and nonlinear features of the human brain tissues and the foam material of the seat head restraint are considered. Using the FEM-software I,S-DYNA, the brain tissue deformation caused by a ear REC is calculated. The purpose of this work is to supply references for improving the design of the head protective devices. The results show that the maximum shear strain appears near the boundaries of different phases and there is a great shear strain gradient in the brain tissues. The impact process between car driver's head and seat head restraint during a car rear end collision is simulated, where the multiphase and nonlinear features of the human brain tissues and the foam material of the seat head restraint are considered. Using the FEM-software I,S-DYNA, the brain tissue deformation caused by a ear REC is calculated. The purpose of this work is to supply references for improving the design of the head protective devices. The results show that the maximum shear strain appears near the boundaries of different phases and there is a great shear strain gradient in the brain tissues.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2010年第2期132-135,共4页 北京理工大学学报(英文版)
基金 Sponsored by the Basic Research Foundation of Beijing Institute of Technology (05120246E)
关键词 car crash brain tissue injury MULTIPHASE NONLINEARITY car crash brain tissue injury multiphase nonlinearity
  • 相关文献

参考文献11

  • 1王以进,李永丰,陈跃敏,秦颂.自动生成颅脑冲击响应的图像三维有限元分析[J].上海大学学报(自然科学版),1999,5(4):283-286. 被引量:9
  • 2Jean-Sébastien Raul,Daniel Baumgartner,Rémy Willinger,Bertrand Ludes.Finite element modelling of human head injuries caused by a fall[J]. International Journal of Legal Medicine . 2006 (4)
  • 3B. D. Stemper,Professor N. Yoganandan,F. A. Pintar.Validation of a head-neck computer model for whiplash simulation[J]. Medical & Biological Engineering & Computing . 2004 (3)
  • 4A. Mota,W. S. Klug,M. Ortiz,A. Pandolfi.Finite-element simulation of firearm injury to the human cranium[J]. Computational Mechanics . 2003 (1-2)
  • 5M. D. Gilchrist,D. O’Donoghue.Simulation of the development of frontal head impact injury[J]. Computational Mechanics . 2000 (3)
  • 6H. M. Huang,M. C. Lee,Dr S. Y. Lee,W. T. Chiu,L. C. Pan,C. T. Chen.Finite element analysis of brain contusion: An indirect impact study[J]. Medical & Biological Engineering & Computing . 2000 (3)
  • 7Noureddine A,Eskandarian A,Digges K.Computer modeling and validation of a hybrid III dummy for crash- worthness simulation [ J]. Mathematical and Computer Modelling . 2002
  • 8Wang G Z.The sidelight of research on the traffic acci- dent. J China Journal of Trauma . 2003
  • 9Pander J.Die richtige Einstellung schtzt die Halswirbelsaule [ EB/OL]. http:∥www.spiegel.de/auto/aktuell/0151828756900.html . 2004
  • 10Gennarelli T A,Thibault L E,Adams J H,et al.Diffuse axonal injury and traumatic coma in the primate. Annals of Neurology . 1982

二级参考文献2

共引文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部