Fracture-mechanics based prediction of the fatigue strength of weldments. Material aspects

Author:

Kucharczyk P.,Madia M.,Zerbst U.,Schork B.,Gerwien P.,Münstermann S.

Funder

Deutsche Forschungsgemeinschaft

AiF

FOSTA

FAT

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference39 articles.

1. Toyoda M. Significance of procedure/evaluation of CTOD test of weldments. International Institute of Welding (IIW), Document X-1192-89; 1989.

2. Zerbst U, Madia M, Vormwald M, Beier HTh. Fatigue strength and fracture mechanics - a general perspective. Eng Fract Mech 2018;198:2–23.

3. Schork B, Kucharczyk P, Madia M, Zerbst U, Hensel J, Bernhard J, et al. The effect of the local and global weld geometry as well as material defects on crack initiation and fatigue strength. Eng Fract Mech 2018;198:103–122.

4. Debroy T, Kou S, Tsai C. Heat flow in welding. In: Welding handbook, vol. 1, 9th ed. Welding Science and Technology, Miami (FL): American Welding Society (AWS); 2001. p. 87–113.

5. Review on fracture and crAck propagation in weldments – a fracture mechanics perspective;Zerbst;Eng Fract Mech,2014

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