Simulation of short crack propagation under hydrogen influence using a hybrid boundary element technique for anisotropic elastic solids

Author:

Schippl Volker,Fritzen Claus-Peter,Brück Sven,Christ Hans-Jürgen,Schwarz Martina,Weihe Stefan

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics

Reference10 articles.

1. M. Kübbeler C.-P. Fritzen I. Roth H.-J. Christ U. Krupp Proc. Appl. Math. Mech. 9, 203-204 (2009).

2. P.-M. Hilgendorff A. Grigorescu M. Zimmermann C.-P. Fritzen H.-J. Christ Proc. Mater. Sci. 3, 1135-1142 (2014).

3. A. J. Wilkinson S. G. Roberts P. B. Hirsch Acta Metall. Mater. 46, pp. 379-390 (1998).

4. J. Toribio V. Kharin “Role of Fatigue Crack Closure Stresses in Hydrogen-Assisted Cracking”, Advances in Fatigue Crack Closure Measurement and Analysis: 2, ASTM STP 1343, R. C. McClung and J. C. Newman, Jr., Eds., American Society for Testing and Materials, West Conshohocken, PA, pp. 440-458 (1999).

5. J. C. M. Li R. A. Oriani L. S. Darken Z. Physik. Chem. 49, pp. 271-290 (1966).

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