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Journal Article

Citation

Mo F, Jiang X, Duan S, Xiao Z, Xiao S, Shi W. PLoS One 2017; 12(9): e0184521.

Affiliation

The State Key Laboratory of Advanced Design & Manufacturing for Vehicle Body, Hunan University, Changsha, China.

Copyright

(Copyright © 2017, Public Library of Science)

DOI

10.1371/journal.pone.0184521

PMID

28910377

Abstract

OBJECTIVE: Non-fatal tibia and ankle injuries without proper protection from the restraint system has gotten wide attention from researchers. This study aimed to investigate occupant tibia and ankle injuries under realistic frontal impact environment that is rarely considered in previous experimental and simulant studies.

METHODS: An integrated occupant-vehicle model was established by coupling an isolated car cab model and a hybrid occupant model with a biofidelic pelvis-lower limb model, while its loading conditions were extracted from the realistic full-frontal impact test. A parametric study was implemented concerning instrument panel (IP) design and pedal intrusion/rotation parameters.

RESULTS: The significant influences of the IP angle, pedal intrusion and pedal rotation on tibia axial force, tibia bending moment and ankle dorsiflexion angle are noted. By coupling their effects, a new evaluation index named CAIEI (Combined Ankle Injury Evaluation Index) is established to evaluate ankle injury (including tibia fractures in ankle region) risk and severity in robustness.

CONCLUSIONS: Overall results and analysis indicate that ankle dorsiflexion angle should be considered when judging the injury in lower limb under frontal impact. Meanwhile, the current index with coupling effects of tibia axial force, bending moment and ankle dorsiflexion angle is in a good correlation with the simulation injury outcomes.


Language: en

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