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Energy Absorption of a Novel Lattice Structure-Filled Multicell Thin-Walled Tubes Under Axial and Oblique Loadings

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Date

2024, 2024

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Volume Title

Publisher

John Wiley and Sons Inc

Open Access Color

HYBRID

Green Open Access

Yes

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No
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Top 10%
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Average
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Top 10%

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Abstract

Multicell design and lattice structure as filling material are two effective methods for enhancing the energy absorption performance of thin-walled tubes. This study combines these two approaches to present a multicell tube with a novel lattice structure and investigates the energy absorption performances of these hybrid multicell tubes under axial (0°) and oblique (10°, 20°, and 30°) impact loading conditions. As filling structure, β-Ti<inf>3</inf>Au lattice geometry with varying lattice strut diameters and the number of lattice unit cells are used, while the single and multicell thin-walled tubes with different tube thicknesses are employed as main absorbing element. In this context, the effects of numbers of lattice unit cells, lattice strut diameter, cell numbers of the tube, and tube thickness on energy absorption performance of hybrid tubes are examined using validated nonlinear finite element models. This investigation unveils that the synergistic interplay between the multicell tubes and lattice structure during deformation significantly elevates the energy absorption performance of the hybrid structure. Notably, the findings demonstrate that multicell hybrid tubes exhibit a remarkable capacity to absorb up to 30.36% more impact energy compared to the aggregate absorption of individual components in hybrid tubes. © 2024 The Author(s). Advanced Engineering Materials published by Wiley-VCH GmbH.

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Keywords

Crashworthiness, Finite Element Methods, Lattice Structures, Multicell Tubes, Thin-Walled Tubes, DESIGN, Finite Element Methods, Lattice Structures, Multicell Tubes, Crashworthiness, Thin-Walled Tubes, OPTIMIZATION, 530, CRASHWORTHINESS PERFORMANCE, BEHAVIOR, 620

Fields of Science

Citation

Kocabas, G. B., Yalcinkaya, S., Cetin, E., & Sahin, Y. (2024). Energy Absorption of a Novel Lattice Structure‐Filled Multicell Thin‐Walled Tubes Under Axial and Oblique Loadings. Advanced Engineering Materials, 2400483.

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Q2
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Q2
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Source

Advanced Engineering Materials

Volume

26

Issue

20

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Citations

CrossRef : 15

Scopus : 17

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Mendeley Readers : 17

SCOPUS™ Citations

17

checked on Feb 28, 2026

Web of Science™ Citations

16

checked on Feb 28, 2026

Page Views

12

checked on Feb 28, 2026

Downloads

464

checked on Feb 28, 2026

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