共 79 条
[1]
Matlock DK(2005)Surface Processing to Improve the Fatigue Resistance of Advanced Bar Steels for Automotive Applications Mat. Res. 8 453-459
[2]
Alogab KA(2018)Current Challenges in MATERIAL choice for High-Performance Engine Crankshaft Proc. Struct. Integ. 8 486-500
[3]
Richards MD(2015)Measurement and Correction of Residual Stress Gradients in Aeronautical Gears After Various Induction Surface Hardening Treatments J. Mater. Process. Technol. 220 113-123
[4]
Speer JG(2014)Crankshaft Fillet Hardening: Challenges and Prospects Industrial Heating 12 47-48
[5]
Citti P(2008)Residual Stresses in Surface Induction Hardening of Steels: Comparison Between Experiment and Simulation Mater. Sci. Eng., A 487 328-339
[6]
Giorgetti A(2016)State of the art of Deep Rolling Precis. Eng. 46 1-10
[7]
Millefanti U(2018)Local Fatigue Strength Assessment of Induction Hardened Components Based on Numerical Manufacturing Process Simulation Proc. Eng. 213 644-650
[8]
Savaria V(2001)Influence of Process Parameters for Induction Hardening on Residual Stresses Mater. Des. 22 637-644
[9]
Monajati H(2002)Fatigue Lives for Induction Hardened Shafts with Subsurface Crack Initiation Eng. Fail. Anal. 9 45-61
[10]
Bridier F(1997)Messung von Festwalzeigenspannungsverteilungen an Bauteilen Mat.-wiss. u. Werkstofftech. 28 153-157