2 edition of influence of cyclic internal pressure on residual stresses in thick-walled cylinders found in the catalog.
influence of cyclic internal pressure on residual stresses in thick-walled cylinders
Written in English
Thesis (Ph. D.)--The Queen"s University of Belfast, 1984.
|The Physical Object|
Used to map hoop (first cut) and axial (second cut) stress in a thick-walled interia-welded cylinder. Ball, D. L. et al., , A Detailed Evaluation of the Effects of Bulk Residual Stress on Fatigue in Aluminum. Advanced Materials Research, , A very nice set of 20 contour measurements is only a small part of this excellent study. Book Pressure Vessel Design Handbook, Henry H Bednar, 2nd Reprint Edition, Kreiger Publishing Company, Florida, ISBN X, Book Pressure Vessel Design Manual, D Moss, 3rd Edition, Gulf Professional Publishing, ISBN ,
Full text of "Strength Of Materials Part.2, Ed.3rd" See other formats. Influence of Ocean Transport on the Design of Onshore and Offshore Constructions, Modules, Topsides, Jackets and Towage on FPSO Design Neutron Diffraction Measurement of Weld Residual Stresses in an UOE Linepipe Subjected to Mechanical Expansion. Shakedown Study of Pipes With External Corrosion Under Cyclic Bending and Internal Pressure.
full text of "dtic ad thermal stress determination techniques in supersonic transport aircraft i: a bibliography of thermal stress . An efficient analytical/numerical method has been developed and programmed to predict the distribution of residual stresses and springback in plane strain pure bending of functionally graded sheets at large strain, followed by unloading. The solution is facilitated by using a Lagrangian coordinate system. The study is concentrated on a power law through thickness distribution of Cited by: 2.
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However, to the authors' knowledge, the shakedown analysis of a thick-walled cylinder subjected to cyclic internal pressure with the USC has not been addressed in the literature. In this paper we presents a shakedown analysis of a thick-walled cylinder subjected to cyclic internal pressure with the USC.
In Section 2, the USC is briefly by: In order to extend the fatigue crack initiation life of an autofrettaged thick-walled cylinder with an external groove subjected to high internal pressure of MPa, the external groove shape was changed to double grooves with a shallow depth, as shown in Fig.
4, resulting in considerably improved fatigue life depending on the level of by: 9. Shakedown analysis of thick-walled cylinders subjected to internal pressure with the unified strength criterion Article in International Journal of Pressure Vessels and Piping 82(9) In this paper a new theoretical model for a high strength steel is proposed and a closed-form solution of residual stresses in autofrettaged tubes has been obtained.
The new results indicate that the influence of the combined Bauschinger and hardening effect on the residual stress distribution is by: Distribution of residual stresses on the wall of internally pressurized cylinders is one of the key factors in the design of thick-walled high pressure cylinders.
The Influence of Bauschinger Effect on the Stability of Residual Stresses in Autofrettaged High Pressure Tubes is to investigate the stability of residual stresses from autofrettage and their influence on the service life of high pressure tubes under cyclic internal pressure loading.
Design Variation Simulation of Thick-walled Cylinders Author: Hermann Maderbacher, Manfred Pölzl. Brown, D., The Influence of Cyclic Internal Pressure on Residual Stresses in Thick-Walled Cylinders: Development of Testing Machine and Preliminary Results.
Ph.D. Thesis, Faculty of Engineering, The Queen’s University of Belfast, October Google ScholarAuthor: Desmond Brown, W. Skelton. Abstract. This paper describes the use of cold-working processes to introduce beneficial residual stresses in highly stressed components, with particular reference to the autofrettage of thick-walled cylindrical pressure vessels for use as large-calibre gun by: 1.
References Uniform cylinders  &, “Shakedown Analysis of thick walled cylinders subjected to internal pressure with the inified strength criterion”, International Journal of.
This study deals with the influence of radial body forces on FGM and non-FGM pressure vessels. It contains an extended overview of pressure vessels made from both kinds of material.
Furthermore, full mathematical development of stress-strain field for both kinds of cylindrical vessels while being influenced by body forces has been performed.
In addition, a new power Cited by: 1. Journal of Biomimetics, Biomaterials and Biomedical Engineering Materials Science.
Defect and Diffusion Forum. Triaxial Residual Stresses in Thermomechanically Rolled Seamless Tubes Characterized by High-Energy Synchrotron X-Ray Diffraction Shakedown Boundary and Limit Load Determination of a Degree Back to Back Pipe Bend Subjected to Steady Internal Perssures and Cyclic In-Plane Bending Moments Limit Analysis Interaction Formulae for Thin.
Residual Stresses IX by M. Francois,available at Book Depository with free delivery worldwide. High Pressure Vessels is the only book to present timely information on high pressure vessel design for student engineers, mechanical and chemical engineers who design and build these vessels, and for chemical engineers, plant engineers and facilities managers who use them.
It concentrates on design issues, giving the reader comprehensive coverage of the design Reviews: 2. Elasto-Plastic Analysis of Some Simple Problems. Analysis of a simple bar structure. Torsion of prismatic bars. Thick-walled spheres and cylinders under internal pressure.
Plastic Analysis of Plane Strain and Plane Stress Problems. Basic relationships. Plane plastic flow. Plane stress problems.
Application of the finite element method. Whereas other books offer only a partial treatment of the subject and frequently consider stress analysis solely in the elastic field, Circular Cylinders and Pressure Vessels broadens the design horizons, analyzing theoretically what happens at pressures that stress the material beyond its yield point and at thermal loads that give rise to creep.
This volume constitutes the Proceedings of the IUTAM Symposium on "Analytical and Computational Fracture Mechanics of Non-homogeneous Materials", held in Cardiff from 18th to 22nd June The Symposium was convened to address and place on record topical issues in analytical and computational. Washington, DC: The National Academies Press.
doi: / The initial in situ stresses, static in nature, are the overburden and residual stresses. The initial stresses typically are lower FIGURE 35 Strains in granular materials during one cycle of load application. 83 tribution as a result of changes in internal pore pressure. Collection of selected, peer reviewed papers from the 9th European Conference on Residual Stresses, ECRS-9, July, Troyes, France.
Volume is indexed by Thomson Reuters CPCI-S (WoS).The papers are grouped as follows: Chapter I. Measurement Methods, I Local Scale Measurements, I Diffraction at Grain Scale and Multiscale Diffraction, I Characterisation of the residual stress state in a double 'V' stainless steel Influence of the Shot Peening Temperature on the Fatigue Strength and Relaxation behaviour of Residual Stresses during Cyclic Bending of AISI Determination and Evaluation of Residual Stresses in Thick-Walled Cylinders due to Auto-Frettage.
stresses results method creep experimental shown model values elastic surface obtained residual axial Post a Review You can write a book review and share your experiences. Other readers will always be interested in your opinion of the books you've read.navid h, fenner rt, nadiri f, webster ga et al.,stress intensity factors for internal and external cracks in pressurised thick-walled cylinders, international journal of pressure vessels and piping, vol: 18, pages:issn: Crack Non-Circularity and Finite Erosion Effects on the 3D SIFs of a Bauschinger Modified Pressurized Thick-Walled Cylinder.
Qin Ma Thin Area Near Vessel and Nozzle Intersections Subjected to Internal Pressure and External Loadings. Kenji OyamadaAdvanced materials, Deformation, External pressure, Residual stresses, Underwater.