PSI - Issue 57
Felix-Christian Reissner et al. / Procedia Structural Integrity 57 (2024) 411–419 F.-C. Reissner et al. / Structural Integrity Procedia 00 (2023) 000–000
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Fig. 6. Estimated design S-N curves for (a) EN-GJS-700-2 at the design point 900 Nm and for (b) 34CrNiMo6+QT at the design point 2000 Nm.
Acknowledgements
This research was carried out in the framework of the industrial collective research programme (IGF no. 20407 N). It was supported by the Federal Ministry for Economic Affairs and Climate Action (BMWK) through the AiF (German Federation of Industrial Research Associations eV) based on a decision taken by the German Bundestag. In addition, we would like to thank FONDIUM Singen GmbH and MAN Energy Solutions SE for the provision of the specimens, Metal Improvement Company LLC and ECOROLL AG for the post treatment of the specimens, and the Institute for Materials Applications in Mechanical Engineering (IWM) of RWTH Aachen University for their support and provision of the torsion test rig for testing the EN-GJS-700-2 specimens.
References
Bartels, C., Gerhards, R., Hanselka, H., .
Gusseisen mit kugelgraphit: Mechanische und physikalis www.guss.de/prozess/gussverwendung/gusswerkstoffe/gusseisen-mit-kugelgraphit/
che eigenschaften.
URL:
mechanische-und-physikalische-eigenschaften. Chaboche, J.L., 1986. Time-independent constitutive theories for cyclic plasticity. International Journal of plasticity 2, 149–188. Dassault Systèmes, D., 2016. Abaqus analysis user’s guide . Luca Susmel, 2008. The theory of critical distances: a review of its applications in fatigue. Engineering Fracture Mechanics 75, 1706–1724. URL: https://www.sciencedirect.com/science/article/pii/S0013794406004553, doi:10.1016/j.engfracmech.2006. 12.004. Ould, C., Rouhaud, E., François, M., Chaboche, J.L., 2006. A kinematic hardening finite elements model to evaluate residual stresses in shot-peened parts, local measurements by x-ray diffraction, in: Materials science forum, pp. 161–166. Rennert, R., Kullig, E., Vormwald, M., Esderts, A., Luke, M., 2020. Rechnerischer festigkeitsnachweis für maschinenbauteile: aus stahl, eisenguss- und aluminiumwerkstoffen . Rouhaud, E., Ouakka, A., Ould, C., Chaboche, J.L., François, M., 2005. Finite elements model of shot peening, effects of constitutive laws of the material. Proceedings ICSP-9, Paris, France 1. Siebel, E., Stieler, M., 1955. Ungleichförmige spannungsverteilung bei schwingender belastung, z. Störzel, K., Baumgartner, J., 2021. Statistical evaluation of fatigue tests using maximum likelihood. Materials Testing 63, 714–720. Takahashi, K., Okada, H., Ando, K., 2012. Effects of shot peening on the torsional fatigue limit of high-strength steel containing an artificial surface defect. International Journal of Structural Integrity 3, 274–284. Wang, Z.Y., Wang, Q.Y., Cao, M., 2017. Experimental study on fatigue behaviour of shot-peened open-hole steel plates. Materials 10. URL: https://www.mdpi.com/1996-1944/10/9/996, doi:10.3390/ma10090996.
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