1. Iss V, Müller D, Haupt N (2022) FVA 835: Extended Calculation of the Tooth Flank Fracture Risk of Case-Carburized Gears with special Consideration of the Residual Stress State in Larger Material Depths vol 1507. Forschungsvereinigung Antriebstechnik e.V. (In German: Eigenspannungsverläufe Flankenbruch: Erweiterte Berechnung der Flankenbruchgefährdung einsatzgehärteter Zahnräder unter besonderer Berücksichtigung des Eigenspannungszustands in größerer Werkstofftiefe)
2. Müller D, Tobie T, Stahl K (2022) Enhanced calculation method for tooth flank fracture risk with consideration of tensile residual stresses in larger material depths. AGMA 2022 Fall Technical Meeting, IL, USA, 22FTM20
3. ISO 6336-4. Calculation of load capacity of spur and helical gears – part 4: Calculation of tooth flank fracture load capacity, 2019.
4. Güntner C, Tobie T, Stahl K (2017) Influences of the residual stress condition on the load carrying capacity of case hardened gears. AGMA 2017 Fall Technical Meeting, Columbus, Ohio, USA, pp 328–344
5. Ho HS, Li DL, Zhang EL, Niu PH (2018) Shot peening effects on subsurface layer properties and fatigue performance of case-hardened 18crnimo7-6 steel. Adv Mater Sci Eng. https://doi.org/10.1155/2018/3795798