Araştırma Makalesi

Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading

Cilt: 3 Sayı: 2 30 Kasım 2020
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Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading

Öz

In this study, mixed mode-I/III fatigue crack propagation is examined experimentally and numerically by using spherical porous cylindrical specimen. The crack propagation path, profiles of crack front, the differences of stress intensity factors (SIF) and equivalent SIF were computed by Ansys, FCPAS and Solidworks softwares and compared with experimental data. Modeling, meshing and problem solving were performed using ANSYS, and the resulting SIF and equivalent SIF along the crack front were calculated using FCPAS. Two digital cameras were used to observing the crack growth path and fractured surfaces on specimen under mixed mode loading and the obtained images was converted into 3D CAD data by using Solidworks software. It was found that good agreements are achieved between the results of the experiment and simulation, considering both evolving the crack propagation paths and crack front.

Anahtar Kelimeler

Destekleyen Kurum

TUBITAK

Proje Numarası

217M690

Teşekkür

This work was supported by the Scientific and Technological Research Council of Turkey (TUBITAK), Project No: 217M690. I would like to thank Prof. Dr. Ali Osman Ayhan for allowing me to use the FCPAS software and also Strategic Products Research and Development Center (SARGEM) for the use of the facilities.

Kaynakça

  1. [1] Chandra D., Purbolaksono J., Nukman Y., 2018. Surface Crack Growth in A Solid Cylinder Under Combined Cyclic Bending-Torsion Loading. ARPN Journal of Engineering and Applied Sciences, 13(3), pp. 1033-1041.
  2. [2] Yang Y., Chu S., Chen H., 2019. Prediction of Shape Change for Fatigue Crack in a Round Bar Using Three-Parameter Growth Circles. Applied Sciences, 9(9), p. 1751, doi:10.3390/app9091751.
  3. [3] Lin X. B., Smith R. A., 1998. Fatigue Growth Simulation for Cracks in Notched and Unnotched Round Bars. International Journal of Mechanical Sciences, 40 (5), pp. 405-419.
  4. [4] Van A. L., Royer J., 1993. Part-Circular Surface Cracks in Round Bars under Tension. Bending and Twisting, 61(1), pp. 71-99.
  5. [5] Chaves V., Beretta G., Balbín J. A., Navarro A., 2019. Fatigue Life and Crack Growth Direction in 7075-T6 Aluminium Alloy Specimens with a Circular Hole under Biaxial Loading. International Journal of Fatigue, 125, pp. 222-236.
  6. [6] Fatemi A., Gates N., Socie D. F., Phan N., 2014. Fatigue Crack Growth Behaviour of Tubular Aluminium Specimens with a Circular Hole under Axial and Torsion Loadings. Engineering Fracture Mechanics, 123, pp. 137-147.
  7. [7] Liu L., 2018. Modeling of Mixed-Mode Fatigue Crack Propagation, Tennessee, USA.
  8. [8] Schollmann M., Richard H. A., Kullmer G., 2002. A New Criterion for the Prediction of Crack Development in Multiaxially Loaded Structures. International Journal of Fracture, 117, pp. 129-141.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Kasım 2020

Gönderilme Tarihi

2 Ekim 2020

Kabul Tarihi

22 Ekim 2020

Yayımlandığı Sayı

Yıl 2020 Cilt: 3 Sayı: 2

Kaynak Göster

APA
İriç, S. (2020). Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading. Kocaeli Journal of Science and Engineering, 3(2), 41-45. https://doi.org/10.34088/kojose.804138
AMA
1.İriç S. Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading. KOJOSE. 2020;3(2):41-45. doi:10.34088/kojose.804138
Chicago
İriç, Sedat. 2020. “Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading”. Kocaeli Journal of Science and Engineering 3 (2): 41-45. https://doi.org/10.34088/kojose.804138.
EndNote
İriç S (01 Kasım 2020) Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading. Kocaeli Journal of Science and Engineering 3 2 41–45.
IEEE
[1]S. İriç, “Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading”, KOJOSE, c. 3, sy 2, ss. 41–45, Kas. 2020, doi: 10.34088/kojose.804138.
ISNAD
İriç, Sedat. “Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading”. Kocaeli Journal of Science and Engineering 3/2 (01 Kasım 2020): 41-45. https://doi.org/10.34088/kojose.804138.
JAMA
1.İriç S. Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading. KOJOSE. 2020;3:41–45.
MLA
İriç, Sedat. “Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading”. Kocaeli Journal of Science and Engineering, c. 3, sy 2, Kasım 2020, ss. 41-45, doi:10.34088/kojose.804138.
Vancouver
1.Sedat İriç. Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading. KOJOSE. 01 Kasım 2020;3(2):41-5. doi:10.34088/kojose.804138