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Journal Article

Citation

Fang QR, Yang XM, Yang JK. Hunan Daxue Xuebao 2006; 33(Suppl): 120-125.

Affiliation

Advanced Technology for Vehicle Body Design and Manufacture Key Laboratory, Hunan Univ, Changsha 410082, China

Copyright

(Copyright © 2006, Hunan da xue xue bao bian ji bu)

DOI

unavailable

PMID

unavailable

Abstract

This study aimed to analyze the dynamic responses of child occupants in frontal impacts in terms of head accelerations, thorax accelerations and neck loads. A 6-year old Hybrid-III dummy model was used to simulate the child occupant in three different restraint conditions in frontal impacts. The simulations were implemented by using MADYMO code. The results showed that the head acceleration, HIC, thorax acceleration and neck loads of the dummy model in frontal impacts could be decreased effectively by using the booster seat. It was confirmed that using booster seats properly could minimize the injury risks of head, brain, neck and thorax in frontal impacts.

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