Cross bore configuration and size effects on the stress distribution in thick-walled cylinders

Author:

Masu L.M.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference24 articles.

1. Statistical aspects of fatigue at microstructure, specimen and component levels;Fong,1975

2. Fatigue strength of thick-walled cylinders containing cross bores with blending features;Masu;Journal of Mechanical Engineering Science,1992

3. Stress concentrations in heavy walled cylindrical pressure vessels: effect of clliptic and circular sideholes;Faupel;Journal of Industrial and Engineering Chemistry,1957

4. Strength of cylinders containing radial or offset cross bores;Cole;Journal of Mechanical Engineering Science,1976

5. Plastic analysis and cross bore size effects on the fatigue strength of thick walled cylinders;Masu;East African Journal of Engineering,1994

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1. Stress Concentration Factor in vessels with circular crosshole: Continuous parameters analysis;International Journal of Pressure Vessels and Piping;2022-10

2. Cross bore geometry configuration effects on stress concentration in high-pressure vessels: a review;International Journal of Mechanical and Materials Engineering;2019-05-28

3. Cross bore size and wall thickness effects on elastic pressurised thick cylinders;International Journal of Mechanical and Materials Engineering;2019-04-25

4. Fatigue Evaluation of Autofrettaged Thick-Walled Cylinders with a Radial Cross-Bore;Advanced Materials Research;2014-09

5. Stress Concentration Factors for Oblique Holes in Pressurized Thick-Walled Cylinders;Journal of Pressure Vessel Technology;2008-03-17

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