PSI - Issue 54
Ela Marković et al. / Procedia Structural Integrity 54 (2024) 156 – 163
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Ela Markovi ć et al. / Structural Integrity Procedia 00 (2023) 000–000
the anticipated behavior. However, further experimental validation of the model is required. The findings suggest a promising direction for expansion to cyclic loading conditions. Acknowledgements This work has been fully supported by Croatian Science Foundation under the project IP-2020-02-5764 and by the University of Rijeka under the project number uniri-technic-18-116. The work of doctoral student Ela Marković has been fully supported by the „Young researchers’ career development project – training of doctoral students” of the Croatian Science Foundation. References Abali, B.E., Völlmecke, C., Woodward, B., Kashtalyan, M., Guz, I., Müller, W.H., 2012. Numerical modeling of functionally graded materials using a variational formulation. Continuum Mechanics and Thermodynamics 24, 377–390. Ansys Inc., 2010. ANSYS Mechanical APDL Command Reference. Basan, R., Kunc, R., Franulović, M., 2008. Monotonic Behaviour Of Normalised And Quenched And Tempered Steel 42CrMo4. Engineering review 2, 23–30. Boller, C., Seeger, T., 1987. Materials data for cyclic loading, Part B. Chmelko V, Harakal’ M, Žlábek P, Margetin M, Ďurka R, (2022). Simulation of stress concentrations in notches. Metals 12. Damon, J., Koch, R., Kaiser, D., Graf, G., Dietrich, S., Schulze, V., 2019. Process development and impact of intrinsic heat treatment on the mechanical performance of selective laser melted AISI 4140. Additive Manufacturing 28, 275–284. Dossett, J., Totten, G.E. (eds), 2013. Introduction to Surface Hardening of Steels. In ASM Handbook, Steel Heat Treating Fundamentals and Processes . 389–398. Douglas, D.H., Peucker, T.K., 1973. Algorithms for the Reduction of the Number of Points Required To Represent a Digitized Line or Its Caricature. Cartographica: The International Journal for Geographic Information and Geovisualization 10, 112–122. El-Galy, I.M., Saleh, B.I., Ahmed M.H., 2019. Functionally graded materials classifications and development trends from industrial point of view. SN Applied Sciences 1, 1–23. Hassan Ahmed, H.A., Kurgan, N., 2022. Modeling Functionally Graded Materials in ANSYS APDL. , 0–18. Lang, O.R., 1989. Berechnung und Auslegung induktiv randschichtgehärteter Bauteile. 332–348 pp. Martínez-Pañeda, E., 2019. On the finite element implementation of functionally graded materials. Materials 12. Ramberg, W., Osgood, W.R., 1943. Description of stress–strain curves by three parameters. National Advisory Committee for Aeronautics: Washington, DC, USA. Rousseau, C.E., Tippur, H.V., 2000. Compositionally graded materials with cracks normal to the elastic gradient. Acta Materialia 48, 4021–4033. Thielen, P.N., 1975. Fatigue studies on 4140 quenched and tempered steel , Northwestern University, Evanston, Illinois. Visvalingam, M., Whyatt, J.D., 1993. Line generalisation by repeated elimination of points. The Cartographic Journal 30, 46–51.
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