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MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES

Cilt: 27 Sayı: 3 31 Aralık 2022
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MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES

Öz

Inflated hollow cylinder is an important problem encountered in a variety of fields in engineering. In industry, tires and fire hoses are pressurized from inside. In biomechanics, veins, arteries and intervertebral discs can also be modeled using the inflated cylinder problem. The soft ground substance of biological tissues in question are incompressible and portray large non-linear deformations under loading. Classical theories of linear elasticity are incapable of modeling such behavior. Instead, continuum mechanics based large displacement formulation and hyperelasticity are necessary to understand the deformation and mechanics of soft materials. In this study, inflation of a cylinder composed of an isotropic neo-Hookean type of material is analyzed in plane strain and generalized plane strain conditions. First, an analytical solution is established using a continuum mechanical framework. Second, the finite element method is employed to model the same problem. The numerical approach is verified by using a mesh sensitivity analysis and validated by using analytical solution. Therefore, the proposed analytical benchmark can quantify the accuracy of any commercial finite element software solution of neo-Hookean tube inflation. As a side result, it was also revealed that the hydrostatic pressure in the tube is more than six times the inflation pressure.

Anahtar Kelimeler

Teşekkür

We would like to thank Mr. Cevat Volkan Karadağ (M.Sc., ME) for reading through the entire manuscript and providing valuable comments and corrections.

Kaynakça

  1. 1. Arruda, E. M., & Boyce, M. C. (1993). A three-dimensional constitutive model for the large stretch behavior of rubber elastic materials. Journal of the Mechanics and Physics of Solids, 41(2), 389–412. https://doi.org/10.1016/0022-5096(93)90013-6
  2. 2. Behnke, R., Dal, H., & Kaliske, M. (2011). An extended tube model for thermo-viscoelasticity of rubberlike materials: Parameter identification and examples. PAMM, 11, 353–354. https://doi.org/10.1002/pamm.201110168
  3. 3. Breslavsky, I. D., Amabili, M., Legrand, M., & Alijani, F. (2016). Axisymmetric deformations of circular rings made of linear and Neo-Hookean materials under internal and external pressure: A benchmark for finite element codes. International Journal of Non-Linear Mechanics, 84, 39–45. https://doi.org/10.1016/j.ijnonlinmec.2016.04.011
  4. 4. Cook, R. D., & Young, W. C. (1999). Pressurized cylinders and spinning disks. In Advanced Mechanics of Materials. Prentice Hall.
  5. 5. Dogan, F., & Celebi, M. S. (2016). Quasi-non-linear deformation modeling of a human liver based on artificial and experimental data. The International Journal of Medical Robotics and Computer Assisted Surgery, 12(3), 410–420. https://doi.org/https://doi.org/10.1002/rcs.1704
  6. 6. Dogan, F., & Serdar Celebi, M. (2010). Real-time deformation simulation of non-linear viscoelastic soft tissues. Simulation, 87(3), 179–187. https://doi.org/10.1177/0037549710364532
  7. 7. Erdem, A., Usal, M., & Usal, M. (2005). Keyfi fiber takviyeli viskoelastik piezoelektrik bir cismin elektro-termomekanik davranışı için matematiksel bir model. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 20(3), 305–319.
  8. 8. Fung, Y. C. (1981). Bio-viscoelastic solids. In Biomechanics: Mechanical Properties of Living Tissues (2nd ed., pp. 196–260). New York, NY: Springer New York. https://doi.org/10.1007/978-1-4757-1752- 5_7

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

31 Aralık 2022

Gönderilme Tarihi

2 Şubat 2022

Kabul Tarihi

10 Kasım 2022

Yayımlandığı Sayı

Yıl 2022 Cilt: 27 Sayı: 3

Kaynak Göster

APA
Büyükkaya, Ö. F., & Okyar, A. F. (2022). MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 27(3), 1023-1042. https://doi.org/10.17482/uumfd.1066879
AMA
1.Büyükkaya ÖF, Okyar AF. MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES. UUJFE. 2022;27(3):1023-1042. doi:10.17482/uumfd.1066879
Chicago
Büyükkaya, Ömer Faruk, ve Ali Fethi Okyar. 2022. “MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 27 (3): 1023-42. https://doi.org/10.17482/uumfd.1066879.
EndNote
Büyükkaya ÖF, Okyar AF (01 Aralık 2022) MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 27 3 1023–1042.
IEEE
[1]Ö. F. Büyükkaya ve A. F. Okyar, “MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES”, UUJFE, c. 27, sy 3, ss. 1023–1042, Ara. 2022, doi: 10.17482/uumfd.1066879.
ISNAD
Büyükkaya, Ömer Faruk - Okyar, Ali Fethi. “MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 27/3 (01 Aralık 2022): 1023-1042. https://doi.org/10.17482/uumfd.1066879.
JAMA
1.Büyükkaya ÖF, Okyar AF. MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES. UUJFE. 2022;27:1023–1042.
MLA
Büyükkaya, Ömer Faruk, ve Ali Fethi Okyar. “MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, c. 27, sy 3, Aralık 2022, ss. 1023-42, doi:10.17482/uumfd.1066879.
Vancouver
1.Ömer Faruk Büyükkaya, Ali Fethi Okyar. MECHANICS OF A HYPERELASTIC INFLATED TUBE WITH EMPHASIS ON BIOLOGICAL SOFT TISSUES. UUJFE. 01 Aralık 2022;27(3):1023-42. doi:10.17482/uumfd.1066879

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