Tailoring the impact response of a spaceframe vehicle structure towards optimum crashworthiness
An approach to develop a spaceframe vehicle structure that shows improved structural crashworthiness in frontal impacts is presented in this paper. A baseline model of the vehicle impact system was formulated through preconception of the vehicle size, shape, components' dimension and material....
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| Published in | International journal of crashworthiness Vol. 29; no. 2; pp. 224 - 236 |
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| Main Authors | , , , , |
| Format | Journal Article |
| Language | English |
| Published |
Cambridge
Taylor & Francis
03.03.2024
Taylor & Francis Ltd |
| Subjects | |
| Online Access | Get full text |
| ISSN | 1358-8265 1754-2111 |
| DOI | 10.1080/13588265.2023.2230642 |
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| Abstract | An approach to develop a spaceframe vehicle structure that shows improved structural crashworthiness in frontal impacts is presented in this paper. A baseline model of the vehicle impact system was formulated through preconception of the vehicle size, shape, components' dimension and material. Preliminary evaluation of crash performance of the vehicle structure using the baseline model revealed some avenues to improve on crashworthiness. Wall thicknesses of the crash boxes, the lower fore rails, and the upper fore rails, were identified as design variables. Structural crashworthiness was evaluated at the design steps using appropriate metrics including; global absorbable energy index (GAEI), local absorbable energy index (LAEI) and acceleration severity index (ASI). A multi-objective optimisation problem was solved to maximise LAEI while ASI was minimised subject to the physical constraints of the system. Pareto optimal solutions showing 30-35% improvement on ASI were achieved with a reasonable 3.56-7.14% trade-off on the LAEI. |
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| AbstractList | An approach to develop a spaceframe vehicle structure that shows improved structural crashworthiness in frontal impacts is presented in this paper. A baseline model of the vehicle impact system was formulated through preconception of the vehicle size, shape, components’ dimension and material. Preliminary evaluation of crash performance of the vehicle structure using the baseline model revealed some avenues to improve on crashworthiness. Wall thicknesses of the crash boxes, the lower fore rails, and the upper fore rails, were identified as design variables. Structural crashworthiness was evaluated at the design steps using appropriate metrics including; global absorbable energy index (GAEI), local absorbable energy index (LAEI) and acceleration severity index (ASI). A multi-objective optimisation problem was solved to maximise LAEI while ASI was minimised subject to the physical constraints of the system. Pareto optimal solutions showing 30–35% improvement on ASI were achieved with a reasonable 3.56–7.14% trade-off on the LAEI. |
| Author | Nwigbo, Solomon C. Akuchi, Ikenna J. Azaka, Onyemazuwa A. Enibe, Samuel O. Ofochebe, Sunday M. |
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| Cites_doi | 10.1137/S1052623496307510 10.1080/0305215X.2020.1775824 10.1080/14484846.2022.2069920 10.1007/s12204-020-2223-y 10.1177/1687814017711854 10.1016/j.ress.2005.11.018 10.1016/j.mechmat.2022.104269 10.1007/s40430-022-03677-7 10.3141/1904-04 10.1016/j.aej.2022.03.049 10.9790/1684-1020105 10.1016/j.tws.2013.04.003 10.1016/j.mechrescom.2016.08.005 10.1016/j.proeng.2013.09.188 10.1088/1757-899X/551/1/012007 10.5539/mer.v9n2p36 10.1080/13588265.2020.1773739 10.1134/S1064562412050213 |
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| SubjectTerms | Crashworthiness Design analysis Impact analysis Impact response Impact strength Multiple objective analysis optimisation Pareto optimization Performance evaluation Rails spaceframe |
| Title | Tailoring the impact response of a spaceframe vehicle structure towards optimum crashworthiness |
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