Publication:
Dynamic compression and impact analyses of the lattice structures for battery safety

cris.virtual.department#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtual.orcid#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtualsource.departmentb5d3055f-fc34-4d92-bcca-4a66e46affdc
cris.virtualsource.orcidb5d3055f-fc34-4d92-bcca-4a66e46affdc
dc.contributor.affiliationTurkish Aeronautical Association; Turk Hava Kurumu University; TAI - Turkish Aerospace Industries
dc.contributor.authorGultekin, Erol; Yahsi, Mehmet
dc.date.accessioned2024-06-25T11:45:02Z
dc.date.available2024-06-25T11:45:02Z
dc.date.issued2023
dc.description.abstractIn this study, a battery pack consisting of 18650-lithium-ion cells and battery housing was designed considering lattice structures instead of the plain sheet to improve crashworthiness. The behavior of lattice structures, including a novel design, cross semicircle, semicircle lattices, and topology-optimized model, in total seven different lattice models in dynamic compression and impact loading were examined. Displacement, energy absorption, and specific energy absorption values were compared with the 1.5 mm thick plain sheet model, which is common in the market. In the dynamic compression loading, honeycomb, and plain sheet models absorb more energy with the value of 97.34, and 88.67 J, respectively. Specific energy absorption is best for the plain sheet with the value of 3122.05 J/g, but honeycomb and cross semicircle lattices still have an impressive result of 2923.04, and 2158.30 J/g respectively. On the other hand, in the impact loading, the plain sheet is causing the jellyroll deformation with the highest value of 141.65 MPa, while the best protective structure is 3D kagome with a value of 4.85 MPa. However, the cross-semicircle keeps an average safety performance for both loading conditions.
dc.description.doi10.1177/09544070221149812
dc.description.endpage940
dc.description.issue5
dc.description.pages11
dc.description.researchareasEngineering; Transportation
dc.description.startpage930
dc.description.urihttp://dx.doi.org/10.1177/09544070221149812
dc.description.volume237
dc.description.woscategoryEngineering, Mechanical; Transportation Science & Technology
dc.identifier.issn0954-4070
dc.identifier.urihttps://acikarsiv.thk.edu.tr/handle/123456789/1214
dc.language.isoEnglish
dc.publisherSAGE PUBLICATIONS LTD
dc.relation.journalPROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING
dc.subjectLattice; crashworthiness; energy absorption; impact simulation; electric vehicle
dc.subjectDESIGN; BEHAVIOR
dc.titleDynamic compression and impact analyses of the lattice structures for battery safety
dc.typeArticle
dspace.entity.typePublication

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