PSI - Issue 37

Zbigniew Marciniak et al. / Procedia Structural Integrity 37 (2022) 606–613 Author name / Structural Integrity Procedia 00 (2019) 000 – 000

613

8

Future works:

-

Tests for torsional moments

- Tests for biaxial loads (bending and torsion) with in-phase and out-of-phase sequences

References

Toribo. J, Matos J.-C., Gonzalez B., 2013 Role of Surface Defects in the Initiation of Fatigue Cracks in Pearlitic Steel. 13th International Conference on Fracture, Beijing, China Roy M.J., Nadot Y., Nadot-Martin C., Bardin P.-G., Maijer D.M., 2011. Multiaxial Kitagawa analysis of A356-T6, International Journal of Fatigue; 33: 823-832 Gonzalez R., Martinez D. I., Gonzalez J. A., Talamantes J., Valtierra S., Colas R., 2014. Influence of casting defects on the fatigue behavior of cast aluminium AS7G06-T6, International Journal of Fatigue; 63: 97-109. Mu P., Nadot Y., Nadot-Martin C., Chabod A., Serrano-Munoz I., Verdu C., 2011. Experimental investigation for fatigue strength of a cast aluminium alloy, International Journal of Fatigue; 33: 273-278 Branco R., Costa J.D., Martins Ferreira J.A., Capela C., Antunes F.V., Macek W., 2021. Multiaxial fatigue behaviour of maraging steel produced by selective laser melting, Mater. Des., 201 (2021), Article 109469, 10.1016/j.matdes.2021.109469 Murakami Y., 2002. Metal fatigue. Effects of Small Defects and Nonmetallic Inclusions. Elsevier, 369 Taylor D., 1999 Geometrical effects in fatigue: a unifying theoretical model, Int J Fatigue, 21, pp. 413-420 Taylor D.,2001. Amechanistic approach to critical-distance methods in notch fatigue, Fatigue Fract Engng Mater Struct, 24, pp. 215-24 Taylor D., 1998. The theory of critical distances, Engng Fract Mech, 75, 2008, pp. 1696-1705 Qylafku G., Azari Z., Kadi N., Gjonaj M., Pluvinage G. 1999. Application of a new model proposal for fatigue life prediction on notches and key seats, Int J Fatigue, 21, pp. 753-760. Qylafku G., Pluvinage G. 2001. Multiaxial fatigue criterion for notched specimens including the effective stress range, relative stress gradient, and hydrostatic pressure, Mater Sci, 37(4), pp. 573-582 Qilafku G., Kadi N., Dobranski J., Azari Z., Gjonaj M., Pluvinage G., 2001. Fatigue of specimens subjected to combined loading. Role of hydrostatic pressure, Int J Fatigue, 23, pp. 689-701 Seweryn A., Mróz Z., 1995. Anon-local stress failure condition for structural elements under multiaxial loading, Engng Fract Mech 51(6), pp. 955 973 Susmel L., Taylor D., 2006. A simplified approach to apply the theory of critical distances to notched components under torsional fatigue loading, Int J Fatigue, 28, pp. 417-430 Palin-Luc T., Lasserre S.,1998. An energy based criterion for high cycle multiaxial fatigue, Eur J Mech., A/Solids, 17(2), pp. 237-251 Kasprzyczak L., Macha E., Marciniak Z., 2013. Energy parameter Control System of strength Machine for Material Test under cyclic bending and torsion, Mechatronic Systems and Materials IV 198, pp.489-494 Rozumek D., Marciniak Z., 2012. The investigation of crack growth in specimens with rectangular cross-sections under out-of-phase bending and torsional loading, Int. J. of Fatigue, Vol. 39, 81-87 Macek W., Marciniak Z., Branco R., Rozumek D., Królczyk GM, 2021. A fractographic study exploring the fracture surface topography of S355J2 steel after pseudo-random bending-torsion fatigue tests, Measurement, 178, 109443, 10.1016/j.measurement.2021.109443

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