Fracture Analysis of Thick-Wall Cylinder Pressure Vessels

Fracture Analysis of Thick-Wall Cylinder Pressure Vessels
Author:
Publisher:
Total Pages: 46
Release: 1982
Genre:
ISBN:

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Fracture mechanics analysis of cylindrical pressure vessels is described in a brief fracture case study. Also included in this report are additional examples of crack growth in pressure vessels and cannons. The case study is of an early brittle failure and subsequent redesign of a cannon tube. Fracture mechanics test methods are described which were developed specifically for testing of cylindrical geometries. Three examples of current fracture analysis of cylindrical pressure vessels are presented. Fast fracture of a vessel is described, including effects of tension residual stress and crack shape. Evidence of environmentally assisted fracture of a cannon tube is presented. Fatigue crack growth and life calculation methods for cylindrical pressure vessels are developed and checked with experimental results; effects of compressive residual stress due to overstrain are analyzed, including reductions from the expected theoretical residual stress due to reduced compressive strength of the alloy steel.

Fracture Mechanics of Through-cracked Cylindrical Pressure Vessels

Fracture Mechanics of Through-cracked Cylindrical Pressure Vessels
Author: Robert B. Anderson
Publisher:
Total Pages: 44
Release: 1966
Genre: Fracture mechanics
ISBN:

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The application of some fracture mechanics concepts to the prediction of the strength of pressure vessels in which cracks have penetrated entirely through the vessel wall is examined. The strength of cylindrical pressure vessels (with longitudinal through-cracks) is related to the geometry of the cylinder, the crack length, the material yield strength, and fracture toughness. An expression for the crack tip stress intensity factor is derived by considering the influence on the stress near the crack tip of membrane stressing in the cylinder and of bending caused by bulging of the partially constrained material on either side of the crack. The form of the derived expression is verified and empirical constants evaluated from burst data at -320 and -423 F of aluminum alloy (2014-T6 A1) and extra-low-interstitial (ELI) titanium alloy (5A1-2. 5Sn-Ti) The analysis, basdd on the Irwin fracture theory, provides a suitable means for the correlation of the strength of flat-sheet specimens with that of cracked pressurized cylinders. The correlation suggests that the fracture strength of through-cracked cylinders of any radius, crack length, and thickness can be determined from material toughness, yield strength, and a bulge coefficient. Neglect of the effect of pressure bulging in the fracture analysis of pressurized cylinders can cause a significant overestimate of the fracture strength.

High Pressure Vessels

High Pressure Vessels
Author: Donald M. Fryer
Publisher: Springer Science & Business Media
Total Pages: 229
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1461559898

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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 aspects of the ASME High Pressure System Standard and the forthcoming ASME High Pressure Vessel Code. Coverage of the safety requirements of these new standards is included, as well as offering the reader examples and original data, a glossary of terms, SI conversions, and lists of references.

Fracture Mechanics Aspects of Thick- Walled Pressure Vessels

Fracture Mechanics Aspects of Thick- Walled Pressure Vessels
Author: THOMAS E. DAVIDSON
Publisher:
Total Pages: 11
Release: 1973
Genre:
ISBN:

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THE FRACTURE MECHANICS ANALYSIS OF EXPERIMENTAL RESULTS FROM FATIGUE CRACK GROWTH STUDIES IN LARGE SIZE THICK-WALLED HIGH STRENGTH STEEL CYLINDERS UNDER REPEATED PRESSURIZATION ARE REPORTED AND DISCUSSED. INCREASE IN FATIGUE LIFE WAS OBSERVED ASSOCIATED WITH THE PRESENCE OF AUTOFRETTAGE RESIDUAL STRESSES AND ALSO WITH INCREASE OF FRACTURE TOUGHNESS. THE RESULTS ARE INTERPRETED IN TERMS OF FRACTURE MECHANICS CONCEPTS WHICH FORM THE BASIS FOR DESIGN PROCEDURES FOR IMPROVING THE FATIGUE AND FRACTURE RESISTANCE OF THICK-WALLED PRESSURE VESSELS.

The Stress Analysis of Pressure Vessels and Pressure Vessel Components

The Stress Analysis of Pressure Vessels and Pressure Vessel Components
Author: S. S. Gill
Publisher: Elsevier
Total Pages: 603
Release: 2016-04-06
Genre: Science
ISBN: 1483155420

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The Stress Analysis of Pressure Vessels and Pressure Vessel Components, Volume 3 deals with the basic principles and concepts underlying stress analysis of pressure vessels and related components used in the nuclear energy industry. Among the components subjected to stress analysis are pressure vessel branches, pressure vessel ends, local attachments, and flanges. Smooth and mitered pipe bends, externally pressurized vessels, and creep effects in structures are also analyzed. This book is comprised of 11 chapters that explore the main problems of structural analysis related to the design of metal pressure vessels and components. After introducing the reader to the basic principles of stress analysis, it turns to nozzles in pressure vessels. The shakedown analysis of radial nozzles in spheres is described for pressure, thrust, moment, shear, and combined loading. The problem of pressure vessel ends is treated next, along with local loads applied to pressure vessel shells at nozzles and local attachments such as support points. An analysis of pressure vessels using a computer is also presented. The final chapter describes the analysis of ligament stresses in pressure vessels and includes a discussion on arrays of holes with reinforcement. This volume will be of value to nuclear and structural engineers as well as designers and research workers in the nuclear industry.

Fracture Toughness Testing

Fracture Toughness Testing
Author: John E. Srawley
Publisher:
Total Pages: 80
Release: 1965
Genre: Fracture mechanics
ISBN:

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A comprehensive survey is presented of current methods of fracture toughness testing that are based on linear elastic fracture mechanics. General principles are discussed in relation to the basic two-dimensional crack stress field model and in relation to real three-dimensional specimens. The designs and necessary dimensions of specimens for mixed mode and opening mode (plane strain) crack toughness measurement are considered in detail. Methods of test instrumentation and procedure are described. Expressions for the calculation of crack toughness values are given for the common types of specimens.

Fracture Toughness Testing and Its Applications

Fracture Toughness Testing and Its Applications
Author: ASTM Committee E-24 Staff
Publisher: ASTM International
Total Pages: 430
Release: 1981-10
Genre: Technology & Engineering
ISBN: 9780803101050

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