Experimental and Numerical Investigation of Crack Propagation in Spherical Porous Cylindrical Specimen under Mixed Mode Loading
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- [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] 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] 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] Van A. L., Royer J., 1993. Part-Circular Surface Cracks in Round Bars under Tension. Bending and Twisting, 61(1), pp. 71-99.
- [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] 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] Liu L., 2018. Modeling of Mixed-Mode Fatigue Crack Propagation, Tennessee, USA.
- [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.
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0000-0001-8477-7906
Türkiye
Yayımlanma Tarihi
30 Kasım 2020
Gönderilme Tarihi
2 Ekim 2020
Kabul Tarihi
22 Ekim 2020
Yayımlandığı Sayı
Yıl 2020 Cilt: 3 Sayı: 2