ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION

In order to improve the crashworthiness of the crash cushion energy-absorbing box,firstly,this paper established the"vehicle-crash cushion"FE models of frontal impact,offset impact,oblique impact and frontal side impact in accordance with the regulations,and then a crashworthiness topology...

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Main Authors: HUANG YuPeng, SONG Jie, LEI ZhengBao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2020-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.01.016
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author HUANG YuPeng
SONG Jie
LEI ZhengBao
author_facet HUANG YuPeng
SONG Jie
LEI ZhengBao
author_sort HUANG YuPeng
collection DOAJ
description In order to improve the crashworthiness of the crash cushion energy-absorbing box,firstly,this paper established the"vehicle-crash cushion"FE models of frontal impact,offset impact,oblique impact and frontal side impact in accordance with the regulations,and then a crashworthiness topology optimization method of cellular automata was used for the energyabsorbing box topology optimization in the transverse and longitudinal extrusion constraint respectively,the optimized results show that the obtained beam configuration in the longitudinal extrusion constraint is different from the barrel configuration in the transverse extrusion constraint and it performs better in the crashworthiness. Secondly,taking into account the effects of the design variable uncertainties on the crashworthiness target responses,a multiobjective robust optimization combined with Taguchi method and satisfaction function was carried out for the optimization design of the new beam energy-absorbing box. The results show that the acceleration of the optimized energy-absorbing box is 106. 6 m/s~2,less than 200 m/s~2,it is in good safety performance; SEA is 2. 54 kJ/kg,it improves 32. 8% than before optimization; the total satisfaction increases 30. 4%,it greatly enhances the robustness of the energy-absorbing box.
format Article
id doaj-art-d5ad8c63e0804e71b3c0862a969a862b
institution Kabale University
issn 1001-9669
language zho
publishDate 2020-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-d5ad8c63e0804e71b3c0862a969a862b2025-01-15T02:28:32ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692020-01-014210210830606895ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATIONHUANG YuPengSONG JieLEI ZhengBaoIn order to improve the crashworthiness of the crash cushion energy-absorbing box,firstly,this paper established the"vehicle-crash cushion"FE models of frontal impact,offset impact,oblique impact and frontal side impact in accordance with the regulations,and then a crashworthiness topology optimization method of cellular automata was used for the energyabsorbing box topology optimization in the transverse and longitudinal extrusion constraint respectively,the optimized results show that the obtained beam configuration in the longitudinal extrusion constraint is different from the barrel configuration in the transverse extrusion constraint and it performs better in the crashworthiness. Secondly,taking into account the effects of the design variable uncertainties on the crashworthiness target responses,a multiobjective robust optimization combined with Taguchi method and satisfaction function was carried out for the optimization design of the new beam energy-absorbing box. The results show that the acceleration of the optimized energy-absorbing box is 106. 6 m/s~2,less than 200 m/s~2,it is in good safety performance; SEA is 2. 54 kJ/kg,it improves 32. 8% than before optimization; the total satisfaction increases 30. 4%,it greatly enhances the robustness of the energy-absorbing box.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.01.016Crash cushion energy absorbing boxCrashworthinessTopology optimizationLongitudinal extrusionMultiobjective robust optimization
spellingShingle HUANG YuPeng
SONG Jie
LEI ZhengBao
ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION
Jixie qiangdu
Crash cushion energy absorbing box
Crashworthiness
Topology optimization
Longitudinal extrusion
Multiobjective robust optimization
title ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION
title_full ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION
title_fullStr ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION
title_full_unstemmed ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION
title_short ROBUST DESIGN OF CRASH CUSHION ENERGY-ABSORBING BOX BASED ON THE CRASHWORTHINESS TOPOLOGY OPTIMIZATION
title_sort robust design of crash cushion energy absorbing box based on the crashworthiness topology optimization
topic Crash cushion energy absorbing box
Crashworthiness
Topology optimization
Longitudinal extrusion
Multiobjective robust optimization
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2020.01.016
work_keys_str_mv AT huangyupeng robustdesignofcrashcushionenergyabsorbingboxbasedonthecrashworthinesstopologyoptimization
AT songjie robustdesignofcrashcushionenergyabsorbingboxbasedonthecrashworthinesstopologyoptimization
AT leizhengbao robustdesignofcrashcushionenergyabsorbingboxbasedonthecrashworthinesstopologyoptimization