Evaluation of the Strain Energy Density Value without the Construction of the Control Volume in the Preprocessing Phase of the Finite Element Analysis
Author:
Publisher
Elsevier BV
Subject
General Engineering,Energy Engineering and Power Technology
Reference7 articles.
1. Recent developments in brittle and quasi-brittle failure assessment of engineering materials by means of local approaches, Mater;Berto;Sci. Eng. R Reports,2014
2. A finite-volume-energy based approach to predict the static and fatigue behavior of components with sharp V-shaped notches;Lazzarin;Int J Fract.;,2001
3. The equivalent strain energy density approach re-formulated and applied to sharp V-shaped notches under localized and generalized plasticity;Lazzarin;Fatigue Fract Eng Mater Struct.;,2002
4. Some expressions for the strain energy in a finite volume surrounding the root of blunt V-notches;Lazzarin;Int J Fract.,2005
5. From Neuber’s elementary volume to Kitagawa and Atzori’s diagrams: An interpretation based on local energy;Lazzarin;Int J Fract.,2005
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