Stress intensity factors for multiple radial cracks emanating from the bore of an autofrettaged or thermally stressed, thick cylinder

Author:

Parker A.P.,Farrow J.R.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference10 articles.

1. Fatigue and fracture of thick walled cylinders and gun barrels;Goldthorpe;Case Studies in Fracture Mechanics, AMMRC MS 77-5,1977

2. A critical analysis of crack propogation laws;Paris;Trans. ASME, J. Basic Engng,1963

3. Theoretical Elasticity and Plasticity for Engineers;Godfrey,1959

4. The effect of material removal on the strength of autofrettaged cylinders;Kendall,1970

5. Stress intensity factors for a circular ring with uniform array of radial cracks using cubic isoparametric singular elements;Pu,1978

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2. Finite element method modeling of hydraulic and thermal autofrettage processes;Mechanics of Materials in Modern Manufacturing Methods and Processing Techniques;2020

3. Development of a Thermal Autofrettage Setup to Generate Compressive Residual Stresses on the Surfaces of a Cylinder;Journal of Pressure Vessel Technology;2019-07-17

4. High cycle fatigue analysis in the presence of autofrettage compressive residual stress;Fatigue & Fracture of Engineering Materials & Structures;2018-06-15

5. Mixed mode cracks in annular planes of cylindrical orthotropy subjected to inplane loading;Theoretical and Applied Fracture Mechanics;2018-02

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