LI HongTao, ZHANG JiaQi, SONG QingSong, et al. RESEARCH ON THE COLLISION ENERGY ABSORPTION CHARACTERISTICS OF THE ENERGY-ABSORBING BOX FRONT ANTICOLLISION BEAM SYSTEM[J]. Journal of mechanical strength , 2024, 46(6): 1338-1345.
DOI:
LI HongTao, ZHANG JiaQi, SONG QingSong, et al. RESEARCH ON THE COLLISION ENERGY ABSORPTION CHARACTERISTICS OF THE ENERGY-ABSORBING BOX FRONT ANTICOLLISION BEAM SYSTEM[J]. Journal of mechanical strength , 2024, 46(6): 1338-1345. DOI: 10.16579/j.issn.1001.9669.2024.06.010.
RESEARCH ON THE COLLISION ENERGY ABSORPTION CHARACTERISTICS OF THE ENERGY-ABSORBING BOX FRONT ANTICOLLISION BEAM SYSTEM
The front anti-collision beam system is an important component to improve the safety of the whole vehicle.Among them
the structural parameters of the energy-absorbing box and the beam directly affect the crash resistance of the vehicle body.In order to obtain the optimization scheme of the energy-absorbing box-type front anti-collision beam system
firstly
from the three perspectives of crushing form
initial peak force and specific energy absorption
the impact of the cross-section structure of the energy-absorbing box on the crash-worthiness performance was studied.Then
the impact of the cross-section structure of the beam on the crash-worthiness performance was studied from the two dimensions of bending strength and energy absorption value.Finally
the crash-worthiness performance of the optimized energy-absorbing box-type front anti-collision beam system in the case of frontal collision and partial collision was studied.The results show that
the regular hexagonal section has a good energy absorption effect;the tripple channel beam has high flexural strength and good energy absorption effect;the new energy-absorbing box-type front anti-collision beam system compared to traditional systems
in the case of frontal collision and partial collision
the energy absorption values increase respectively by 11.5% and 31.6%
and the intrusion amount decreases respectively by 53.2% and 16.1%.The support for the research on the safety performance of the optimized anti-collision beam system is provided.