A modified hybrid III 6-year-old dummy head model for lateral impact assessment

Hybrid III six-year-old (6YO) child dummy head model was developed and validated for frontal impact assessment according to the specifications contained in Code of Federal Regulations, Title 49, Part 572.122, Subpart N by Livermore Software Technology Corporation (LSTC). This work is aimed at improv...

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Main Authors: Rafukka, Ibrahim Abdullahi, Sahari, Barkawi, Abdul Aziz, Nuraini, Arumugam, Manohar
Format: Article
Language:English
Published: Hindawi Publishing Corporation 2016
Online Access:http://psasir.upm.edu.my/id/eprint/54860/1/A%20Modified%20Hybrid%20III%206-Year-Old%20Dummy%20Head%20Model%20for%20Lateral%20Impact%20Assessment.pdf
http://psasir.upm.edu.my/id/eprint/54860/
https://www.hindawi.com/journals/ijvt/2016/1768512/
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spelling my.upm.eprints.548602020-05-14T03:45:56Z http://psasir.upm.edu.my/id/eprint/54860/ A modified hybrid III 6-year-old dummy head model for lateral impact assessment Rafukka, Ibrahim Abdullahi Sahari, Barkawi Abdul Aziz, Nuraini Arumugam, Manohar Hybrid III six-year-old (6YO) child dummy head model was developed and validated for frontal impact assessment according to the specifications contained in Code of Federal Regulations, Title 49, Part 572.122, Subpart N by Livermore Software Technology Corporation (LSTC). This work is aimed at improving biofidelity of the head for frontal impact and also extending its application to lateral impact assessment by modifying the head skin viscoelastic properties and validating the head response using the scaled nine-year-old (9YO) child cadaver head response recently published in the literature. The modified head model was validated for two drop heights for frontal, right, and left parietal impact locations. Peak resultant acceleration of the modified head model appeared to have good correlation with scaled 9YO child cadaver head response for frontal impact on dropping from 302 mm height and fair correlation with 12.3% difference for 151 mm drop height. Right parietal peak resultant acceleration values correlate well with scaled 9YO head experimental data for 153 mm drop height, while fair correlation with 16.4% difference was noticed for 302 mm drop height. Left parietal, however, shows low biofidelity for the two drop heights as the difference in head acceleration response was within 30%. The modified head model could therefore be used to estimate injuries in vehicle crash for head parietal impact locations which cannot be measured by the current hybrid III dummy head model. Hindawi Publishing Corporation 2016 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/54860/1/A%20Modified%20Hybrid%20III%206-Year-Old%20Dummy%20Head%20Model%20for%20Lateral%20Impact%20Assessment.pdf Rafukka, Ibrahim Abdullahi and Sahari, Barkawi and Abdul Aziz, Nuraini and Arumugam, Manohar (2016) A modified hybrid III 6-year-old dummy head model for lateral impact assessment. International Journal of Vehicular Technology, 2016. art. no. 1768512. pp. 1-8. ISSN 1687-5702; ESSN: 1687-5710 https://www.hindawi.com/journals/ijvt/2016/1768512/ 10.1155/2016/1768512
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Hybrid III six-year-old (6YO) child dummy head model was developed and validated for frontal impact assessment according to the specifications contained in Code of Federal Regulations, Title 49, Part 572.122, Subpart N by Livermore Software Technology Corporation (LSTC). This work is aimed at improving biofidelity of the head for frontal impact and also extending its application to lateral impact assessment by modifying the head skin viscoelastic properties and validating the head response using the scaled nine-year-old (9YO) child cadaver head response recently published in the literature. The modified head model was validated for two drop heights for frontal, right, and left parietal impact locations. Peak resultant acceleration of the modified head model appeared to have good correlation with scaled 9YO child cadaver head response for frontal impact on dropping from 302 mm height and fair correlation with 12.3% difference for 151 mm drop height. Right parietal peak resultant acceleration values correlate well with scaled 9YO head experimental data for 153 mm drop height, while fair correlation with 16.4% difference was noticed for 302 mm drop height. Left parietal, however, shows low biofidelity for the two drop heights as the difference in head acceleration response was within 30%. The modified head model could therefore be used to estimate injuries in vehicle crash for head parietal impact locations which cannot be measured by the current hybrid III dummy head model.
format Article
author Rafukka, Ibrahim Abdullahi
Sahari, Barkawi
Abdul Aziz, Nuraini
Arumugam, Manohar
spellingShingle Rafukka, Ibrahim Abdullahi
Sahari, Barkawi
Abdul Aziz, Nuraini
Arumugam, Manohar
A modified hybrid III 6-year-old dummy head model for lateral impact assessment
author_facet Rafukka, Ibrahim Abdullahi
Sahari, Barkawi
Abdul Aziz, Nuraini
Arumugam, Manohar
author_sort Rafukka, Ibrahim Abdullahi
title A modified hybrid III 6-year-old dummy head model for lateral impact assessment
title_short A modified hybrid III 6-year-old dummy head model for lateral impact assessment
title_full A modified hybrid III 6-year-old dummy head model for lateral impact assessment
title_fullStr A modified hybrid III 6-year-old dummy head model for lateral impact assessment
title_full_unstemmed A modified hybrid III 6-year-old dummy head model for lateral impact assessment
title_sort modified hybrid iii 6-year-old dummy head model for lateral impact assessment
publisher Hindawi Publishing Corporation
publishDate 2016
url http://psasir.upm.edu.my/id/eprint/54860/1/A%20Modified%20Hybrid%20III%206-Year-Old%20Dummy%20Head%20Model%20for%20Lateral%20Impact%20Assessment.pdf
http://psasir.upm.edu.my/id/eprint/54860/
https://www.hindawi.com/journals/ijvt/2016/1768512/
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score 13.18916