Research Article

Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates

Volume: 4 Number: 1 June 26, 2023
TR EN

Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates

Abstract

This article studies the free vibration responses of functionally graded material (FGM) porous nanoplates exposed to thermal load. The developed mathematical model includes a shear deformation, size-scale, and microstructure influence by a high-order shear deformation (HSDT) and nonlocal strain gradient (NGST) theories. The study considers four different porosity patterns across the thickness: uniform, symmetrical, asymmetric bottom, and asymmetric top distributions. The equation of motion of the FGM porous nanoplate, including the effects of thermal load, is derived with Hamilton's principle, and then solved analytically by employing the Navier method. For the free vibration responses of the nanoplate, the effects of nonlocal and strain gradient elasticities, temperature rise, porosity volume fraction and its distribution are analyzed.

Keywords

References

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Details

Primary Language

English

Subjects

Mechanical Engineering

Journal Section

Research Article

Early Pub Date

June 23, 2023

Publication Date

June 26, 2023

Submission Date

March 6, 2023

Acceptance Date

April 4, 2023

Published in Issue

Year 2023 Volume: 4 Number: 1

APA
Özmen, R. (2023). Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates. Journal of Materials and Mechatronics: A, 4(1), 224-243. https://doi.org/10.55546/jmm.1261024
AMA
1.Özmen R. Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates. J. Mater. Mechat. A. 2023;4(1):224-243. doi:10.55546/jmm.1261024
Chicago
Özmen, Ramazan. 2023. “Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates”. Journal of Materials and Mechatronics: A 4 (1): 224-43. https://doi.org/10.55546/jmm.1261024.
EndNote
Özmen R (June 1, 2023) Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates. Journal of Materials and Mechatronics: A 4 1 224–243.
IEEE
[1]R. Özmen, “Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates”, J. Mater. Mechat. A, vol. 4, no. 1, pp. 224–243, June 2023, doi: 10.55546/jmm.1261024.
ISNAD
Özmen, Ramazan. “Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates”. Journal of Materials and Mechatronics: A 4/1 (June 1, 2023): 224-243. https://doi.org/10.55546/jmm.1261024.
JAMA
1.Özmen R. Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates. J. Mater. Mechat. A. 2023;4:224–243.
MLA
Özmen, Ramazan. “Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates”. Journal of Materials and Mechatronics: A, vol. 4, no. 1, June 2023, pp. 224-43, doi:10.55546/jmm.1261024.
Vancouver
1.Ramazan Özmen. Thermomechanical Response of Functionally Graded Ti-6Al-4V and Zirconia Biomaterial Plates. J. Mater. Mechat. A. 2023 Jun. 1;4(1):224-43. doi:10.55546/jmm.1261024

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