A finite element model is presented for investigating the influence of residual stress induced due to grinding on mouth opening displacement (MOD) values. A general three-dimensional case is studied by converting it to a two-dimensional one using semi-analytical finite-element method. Auxiliary load
Numerical analysis of the influence of residual stresses on crack closure in rings
β Scribed by A.T. Jones; M.L. Callabresi
- Publisher
- Elsevier Science
- Year
- 1979
- Tongue
- English
- Weight
- 682 KB
- Volume
- 11
- Category
- Article
- ISSN
- 0013-7944
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β¦ Synopsis
The stress intensity factors which result when an axially cracked ring containing residual stresses is subjected to an external load have been calculated using a numerical method. When partial crack closure occurs, it has been taken into account. The computations show that residual stresses can cause both cracking problems in service and scatter in experimental data. The method uses a finite-element procedure that is similar to those used with contact problems to provide the basis for a numerical solution. The procedure can be applied to any geometrical configuration that can be analyzed with the finite-element method.
π SIMILAR VOLUMES
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Double edge notched axial compression specimens taken from thick welded steel joints have been used to grow fatigue cracks under pulsating compressive loads at mean stresses up to 55% of that needed for general yielding. The redistribution of residual stresses during specimen preparation and during
Plates with centraI through cracks subjected to bending is analysed taking into account the closure of ihe crack faces on the compression side. A r~ee-dimension finite element method emplo~g t~ee~~ensjon~ degenerate SOB element is used for the amdysis. The crack faces have been mode&d such that they