On the use of the finite element method for the solution of a cracked strip under thermal shock
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference10 articles.
1. A Green's function for stress intensity factors of edge cracks and its application to thermal stresses;Emery;Trans. ASME, J. Basic Engng,1969
2. Thermal stress concentration caused by structural discontinuities;Emery;SESA J.,1969
3. Thermal shock fracture in an edge-cracked plate;Nied;J. Therm. Str.,1983
4. On the solution of the centre cracked plate with a quadratic thermal gradient;Hellen;Engng Fracture Mech.,1979
5. Elastic-plastic finite element analysis of thermally loaded cracked structures;Muscati;Int. J. Fracture,1984
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2. On the Use of Mechanical Weight Functions for Practical Evaluation of Thermal Shock SIF's in Flexibly Restrained Edge-Cracked Plates;Advanced Materials Research;2008-04
3. Finite element analysis of crack closure in two-dimensional bodies subjected to heating;Computers & Structures;2005-01
4. CRITICAL STRESS INTENSITY FACTORS FOR CRACKED HOLLOW PIPES UNDER TRANSIENT THERMAL LOADS;Journal of Thermal Stresses;2002-10
5. On the computation of mode I and II thermal shock stress intensity factors using a boundary-only element method;International Journal for Numerical Methods in Engineering;1995-12-30
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