Influence of crack closure on the stress intensity factor for plates subjected to bending—A 3-D finite element analysis
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference21 articles.
1. The bending stress distribution at the base of a stationary crack;Williams;J. Appl. Mech.,1961
2. On the bending of an elastic plate containing a crack;Knowles;J. Maths. Phys.,1960
3. Effect of plate thickness on the bending stress distribution around through cracks;Hartranft;J. Maths. Phys.,1968
4. Effects of plate thickness on the bending of an elastic plate containing a crack;Wang;J. Maths. Phys.,1968
5. Bending of a cracked plate with an arbitrary stress distribution across the thickness;Sih;J. Engng Ind. Trans. ASME,1970
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1. Crack shape evolution under bending-induced partial closure;Engineering Fracture Mechanics;2018-02
2. Bending of Reissner’s plate containing a through-the-thickness crack by concentrated moments taking into account the width of a contact zone of its faces;Journal of Mathematical Sciences;2012-11-18
3. Analytical Solution for an Orthotropic Elastic Plate Containing Cracks;International Journal of Fracture;2005-08
4. Fracture Mechanics of Thin Plates and Shells Under Combined Membrane, Bending, and Twisting Loads;Applied Mechanics Reviews;2005-01-01
5. ANALYTICAL DETERMINATION OF STRESS INTENSITY FACTOR FOR PLATE BENDING PROBLEMS;International Journal of Computational Engineering Science;2003-03
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