Crashworthiness study of a civil aircraft fuselage section

This paper studies the crashworthiness characteristics of a fuselage section and its improvement. A full-scale three-dimensional finite element model of the fuselage section is developed using a nonlinear finite element code, PAM-CRASH. The simulation is implemented to determine the structural defor...

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Bibliographic Details
Main Authors: P. Xue, L. Ding, F. Qiao, X. Yu
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252014000900007&lng=en&tlng=en
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spelling doaj-50e01e0d5adf431eaf4e11d6f4a47fb72020-11-25T01:52:55ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-78251191615162710.1590/S1679-78252014000900007S1679-78252014000900007Crashworthiness study of a civil aircraft fuselage sectionP. Xue0L. Ding1F. Qiao2X. Yu3Northwest Normal UniversityNorthwest Normal UniversityNorthwest Normal UniversityHong Kong University of Science and TechnologyThis paper studies the crashworthiness characteristics of a fuselage section and its improvement. A full-scale three-dimensional finite element model of the fuselage section is developed using a nonlinear finite element code, PAM-CRASH. The simulation is implemented to determine the structural deformation and impact response in terms of peak loads and acceleration peaks at the floor-level, deformation mode, energy absorption, and structural integrity, and then to assess the crashworthiness of the fuselage section. By partitioning the total energy dissipated, it is shown that the frames and the supports of the cargo floor play important roles in the process of energy dissipation. Based on the results, an effective approach to improve the crashworthiness of the fuselage section is presented. The paper also provides an in-depth analysis in the deformation mechanism of the fuselage section under a vertical crash, which will be helpful to effectively prevent the cabin floor from heavily damage and maintain the integrity of the fuselage section.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252014000900007&lng=en&tlng=enCrashworthinessfuselage sectionenergy absorptionacceleration peakdeformation mode
collection DOAJ
language English
format Article
sources DOAJ
author P. Xue
L. Ding
F. Qiao
X. Yu
spellingShingle P. Xue
L. Ding
F. Qiao
X. Yu
Crashworthiness study of a civil aircraft fuselage section
Latin American Journal of Solids and Structures
Crashworthiness
fuselage section
energy absorption
acceleration peak
deformation mode
author_facet P. Xue
L. Ding
F. Qiao
X. Yu
author_sort P. Xue
title Crashworthiness study of a civil aircraft fuselage section
title_short Crashworthiness study of a civil aircraft fuselage section
title_full Crashworthiness study of a civil aircraft fuselage section
title_fullStr Crashworthiness study of a civil aircraft fuselage section
title_full_unstemmed Crashworthiness study of a civil aircraft fuselage section
title_sort crashworthiness study of a civil aircraft fuselage section
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description This paper studies the crashworthiness characteristics of a fuselage section and its improvement. A full-scale three-dimensional finite element model of the fuselage section is developed using a nonlinear finite element code, PAM-CRASH. The simulation is implemented to determine the structural deformation and impact response in terms of peak loads and acceleration peaks at the floor-level, deformation mode, energy absorption, and structural integrity, and then to assess the crashworthiness of the fuselage section. By partitioning the total energy dissipated, it is shown that the frames and the supports of the cargo floor play important roles in the process of energy dissipation. Based on the results, an effective approach to improve the crashworthiness of the fuselage section is presented. The paper also provides an in-depth analysis in the deformation mechanism of the fuselage section under a vertical crash, which will be helpful to effectively prevent the cabin floor from heavily damage and maintain the integrity of the fuselage section.
topic Crashworthiness
fuselage section
energy absorption
acceleration peak
deformation mode
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252014000900007&lng=en&tlng=en
work_keys_str_mv AT pxue crashworthinessstudyofacivilaircraftfuselagesection
AT lding crashworthinessstudyofacivilaircraftfuselagesection
AT fqiao crashworthinessstudyofacivilaircraftfuselagesection
AT xyu crashworthinessstudyofacivilaircraftfuselagesection
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