Research Article

EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE

Volume: 9 Number: 1 June 30, 2023
TR EN

EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE

Abstract

Humans have always sought the optimal use of materials around them and, in this field, inspired by nature, have succeeded in inventing various structures. As one example, lattice structures, which are lightweight, strong, and stiff, are used widely in various applications, including energy absorbers. Lattice structures with a negative Poisson's ratio have been developed as a new type of lattice structure. As a result of this feature, auxetic structures have unique properties like shear strength, penetration resistance, fracture toughness, crack resistance, and high energy absorbability. In this paper, the mechanical behavior of the auxetic panels made using the 3D metal printer method is investigated by experimental tests and finite element methods. Experiments are used to verify the accuracy of the numerical model. Using the DMLS method, samples were prepared from metal-based AlS10Mg Aluminum composition. The 3D printing method was used to fabricate samples. Afterwards, experimental tests were made and the mechanical properties of these materials were determined by tensile test and used in finite element simulations. Following the confirmation of the model's accuracy, the finite element simulation results are used to perform a parametric study and determine the appropriate geometry. The numerical analysis is conducted using ABAQUS software, which uses the nonlinear finite element method.

Keywords

Supporting Institution

Bartin University

Project Number

2021-FEN-B-003

References

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  3. Bezazi, A. and Scarpa, F., Mechanical behaviour of conventional and negative Poisson’s ratio thermoplastic polyurethane foams under compressive cyclic loading. International Journal of fatigue, 29(5), pp.922-930, 2007
  4. Bezazi, A. and Scarpa, F., Tensile fatigue of conventional and negative Poisson’s ratio open cell PU foams. International Journal of Fatigue, 31(3), pp.488-494, 2009.
  5. Evans, K.E. and Alderson, A., Auxetic materials: functional materials and structures from lateral thinking!. Advanced materials, 12(9), pp.617-628, 2000.
  6. Grima, J.N., Caruana-Gauci, R., Dudek, M.R., Wojciechowski, K.W. and Gatt, R., Smart metamaterials with tunable auxetic and other properties. Smart Materials and Structures, 22(8), p.084016, 2013.
  7. Grima, J.N., Jackson, R., Alderson, A. and Evans, K.E., Do zeolites have negative Poisson's ratios?. Advanced Materials, 12(24), pp.1912-1918, 2000.
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Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

June 30, 2023

Submission Date

December 21, 2022

Acceptance Date

January 27, 2023

Published in Issue

Year 2023 Volume: 9 Number: 1

APA
Özkan, E., & Khosravı, F. (2023). EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE. Kirklareli University Journal of Engineering and Science, 9(1), 48-62. https://doi.org/10.34186/klujes.1222192
AMA
1.Özkan E, Khosravı F. EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE. Kirklareli University Journal of Engineering and Science. 2023;9(1):48-62. doi:10.34186/klujes.1222192
Chicago
Özkan, Erkan, and Farshıd Khosravı. 2023. “EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE”. Kirklareli University Journal of Engineering and Science 9 (1): 48-62. https://doi.org/10.34186/klujes.1222192.
EndNote
Özkan E, Khosravı F (June 1, 2023) EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE. Kirklareli University Journal of Engineering and Science 9 1 48–62.
IEEE
[1]E. Özkan and F. Khosravı, “EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE”, Kirklareli University Journal of Engineering and Science, vol. 9, no. 1, pp. 48–62, June 2023, doi: 10.34186/klujes.1222192.
ISNAD
Özkan, Erkan - Khosravı, Farshıd. “EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE”. Kirklareli University Journal of Engineering and Science 9/1 (June 1, 2023): 48-62. https://doi.org/10.34186/klujes.1222192.
JAMA
1.Özkan E, Khosravı F. EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE. Kirklareli University Journal of Engineering and Science. 2023;9:48–62.
MLA
Özkan, Erkan, and Farshıd Khosravı. “EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE”. Kirklareli University Journal of Engineering and Science, vol. 9, no. 1, June 2023, pp. 48-62, doi:10.34186/klujes.1222192.
Vancouver
1.Erkan Özkan, Farshıd Khosravı. EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THE MECHANICAL BEHAVIOR OF THE MODIFIED METAL AUXETIC STRUCTURE. Kirklareli University Journal of Engineering and Science. 2023 Jun. 1;9(1):48-62. doi:10.34186/klujes.1222192

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