Araştırma Makalesi

A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder

Cilt: 11 Sayı: 3 29 Eylül 2022
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A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder

Abstract

In this study, the thermoelastic behavior of a thick-walled homogeneous cylinder based on Lord-Shulman theory is investigated. It is assumed that the inner and outer surfaces of the cylinder are traction-free, and the outer surface is insulated while the inner surface is subjected to a time-dependent internal temperature load. The governing equations in coupled form are solved with the pseudospectral Chebyshev method. The numerical approach is validated with benchmark results in the literature. The temperature, radial and tangential stress distributions are examined for three different moments to represent the time-varying effects of the applied instantaneous temperature load. The effect of the coupled term in Lord-Shulman theory for different high temperatures is examined and the difference between the coupled and uncoupled solution in different time periods is tabulated and the difference is highlighted.

Keywords

Kaynakça

  1. Ai ZY, Ye ZK, Yang JJ. Thermo-mechanical behaviour of multi-layered media based on the Lord-Shulman model. Comput Geotech. 2021;129.
  2. Biot MA. Thermoelasticity and irreversible thermodynamics. J. Appl. Phys. 1956;27:240–253.
  3. Zamani A, Hetnarski RB, Eslami MR. Second sound in a cracked layer based on Lord–Shulman theory. J. Therm. Stresses. 2011;34(3):181-200.
  4. Lord HW, Shulman Y. A generalized dynamical theory of thermo-elasticity. J. Mech. Phys. Solids. 1967;15(5):299–309.
  5. Shakeriaski F, Ghodrat M, Escobedo-Diaz J, Behnia M. Recent advances in generalized thermoelasticity theory and the modified models: a review. J. Comput. Des. Eng. 2021;8(1):15-35.
  6. Furukawa T, Noda N, Ashida F. Generalized thermoelasticity in an infinite solid with a hole. J. Therm. Stresses. 1989;12(3):385–402.
  7. Furukawa T, Naotake N, Fumihiro A. Generalized thermoelasticity for an infinite solid cylinder. JSME Int J., Ser. A. 1991;34(3):281-286.
  8. Hosseini-Tehrani P, Eslami MR. Boundary element analysis of coupled thermoelasticity with relaxation times in finite domain. AIAA Journal. 2000;38(3):534–41.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

29 Eylül 2022

Gönderilme Tarihi

23 Haziran 2022

Kabul Tarihi

14 Eylül 2022

Yayımlandığı Sayı

Yıl 2022 Cilt: 11 Sayı: 3

Kaynak Göster

APA
Eker, M., & Yarımpabuç, D. (2022). A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder. Türk Doğa ve Fen Dergisi, 11(3), 123-128. https://doi.org/10.46810/tdfd.1134722
AMA
1.Eker M, Yarımpabuç D. A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder. TDFD. 2022;11(3):123-128. doi:10.46810/tdfd.1134722
Chicago
Eker, Mehmet, ve Durmuş Yarımpabuç. 2022. “A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder”. Türk Doğa ve Fen Dergisi 11 (3): 123-28. https://doi.org/10.46810/tdfd.1134722.
EndNote
Eker M, Yarımpabuç D (01 Eylül 2022) A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder. Türk Doğa ve Fen Dergisi 11 3 123–128.
IEEE
[1]M. Eker ve D. Yarımpabuç, “A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder”, TDFD, c. 11, sy 3, ss. 123–128, Eyl. 2022, doi: 10.46810/tdfd.1134722.
ISNAD
Eker, Mehmet - Yarımpabuç, Durmuş. “A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder”. Türk Doğa ve Fen Dergisi 11/3 (01 Eylül 2022): 123-128. https://doi.org/10.46810/tdfd.1134722.
JAMA
1.Eker M, Yarımpabuç D. A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder. TDFD. 2022;11:123–128.
MLA
Eker, Mehmet, ve Durmuş Yarımpabuç. “A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder”. Türk Doğa ve Fen Dergisi, c. 11, sy 3, Eylül 2022, ss. 123-8, doi:10.46810/tdfd.1134722.
Vancouver
1.Mehmet Eker, Durmuş Yarımpabuç. A Generalized Thermoelastic Behaviour of Isotropic Hollow Cylinder. TDFD. 01 Eylül 2022;11(3):123-8. doi:10.46810/tdfd.1134722