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Measurement of Residual Stresses Using Fracture Mechanics Weight Functions

Measurement of Residual Stresses Using Fracture Mechanics Weight Functions
Author:
Publisher:
Total Pages: 13
Release: 2000
Genre:
ISBN:

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A residual stress measurement method has been developed to quantify through-the-thickness residual stresses. Accurate measurement of residual stresses is crucial for many engineering structures. Fabrication processes such as welding and machining generate residual stresses that are difficult to predict. Residual stresses affect the integrity of structures through promoting failures due to brittle fracture, fatigue, stress corrosion cracking, and wear. In this work, the weight function theory of fracture mechanics is used to measure residual stresses. The weight function theory is an important development in computational fracture mechanics. Stress intensity factors for arbitrary stress distribution on the crack faces can be accurately and efficiently computed for predicting crack growth. This paper demonstrates that the weight functions are equally useful in measuring residual stresses. In this method, an artificial crack is created by a thin cut in a structure containing residual stresses. The cut relieves the residual stresses normal to the crack-face and allows the relieved residual stresses to deform the structure. Strain gages placed adjacent to the cut measure the relieved strains corresponding to incrementally increasing depths of the cut. The weight functions of the cracked body relate the measured strains to the residual stresses normal to the cut within the structure. The procedure details, such as numerical integration of the singular functions in applying the weight function method, will be discussed.


Residual Stress Measurement and the Slitting Method

Residual Stress Measurement and the Slitting Method
Author: Weili Cheng
Publisher: Springer Science & Business Media
Total Pages: 212
Release: 2007-02-24
Genre: Science
ISBN: 0387390308

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This book provides complete coverage of the slitting method. It details new results in analysis, computation, and estimation and discusses different roles of residual stresses from the fracture mechanics perspective. It provides detailed formulations and examples of compliance functions, weighted least squares fit and convergence test in stress estimation, and computer programs to facilitate the implementation of the slitting method.


Weight Functions and Stress Intensity Factor Solutions

Weight Functions and Stress Intensity Factor Solutions
Author: Xue-Ren Wu
Publisher: Pergamon
Total Pages: 540
Release: 1991
Genre: Science
ISBN:

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Fracture mechanics is an indispensible tool in the design and safe operation of damage tolerant structures. One of the essential elements in fracture mechanics based analysis is the stress intensity factor. This book provides a powerful theoretical background to the weight function method in fracture mechanics and numerous stress intensity factors. Part I gives a theoretical background and overview of the weight function method. Part II provides further details of the weight functions for various geometries and a large number of stress intensity factor solutions. Part II deals with the determination of crack opening displacements, Dugdale model solutions and crack opening areas.


Weight Function Methods in Fracture Mechanics

Weight Function Methods in Fracture Mechanics
Author: Xue-Ren Wu
Publisher: Springer Nature
Total Pages: 665
Release: 2022-07-04
Genre: Science
ISBN: 981168961X

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This book provides a systematic and standardized approach based on the authors’ over 30 years of research experience with weight function methods, as well as the relevant literature. Fracture mechanics has become an indispensable tool for the design and safe operation of damage-tolerant structures in many important technical areas. The stress intensity factor—the characterizing parameter of the crack tip field—is the foundation of fracture mechanics analysis. The weight function method is a powerful technique for determining stress intensity factors and crack opening displacements for complex load conditions, with remarkable computational efficiency and high accuracy. The book presents the theoretical background of the weight function methods, together with a wealth of analytical weight functions and stress intensity factors for two- and three-dimensional crack geometries; many of these have been incorporated into national, international standards and industrial codes of practice. The accuracy of the results is rigorously verified, and various sample applications are provided. Accordingly, the book offers an ideal reference source for graduate students, researchers, and engineers whose work involves fracture and fatigue of materials and structures, who need not only stress intensity factors themselves but also efficient and reliable tools for obtaining them.


Residual Stress Effects in Fatigue

Residual Stress Effects in Fatigue
Author: J. F. Throop
Publisher: ASTM International
Total Pages: 252
Release: 1982
Genre: Technology & Engineering
ISBN: 9780803107113

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Fracture Mechanics

Fracture Mechanics
Author: John Knott
Publisher: CRC Press
Total Pages: 119
Release: 2019-04-10
Genre: Technology & Engineering
ISBN: 0429610696

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This book is aimed at those in both industry and academic institutions who require a grounding not only in the basic principles of this important field but also in the practical aspects of evaluating fracture mechanics parameters.


Fatique and Fracture Mechanics

Fatique and Fracture Mechanics
Author: Gary R. Halford
Publisher: ASTM International
Total Pages: 551
Release: 2000
Genre: Fatigue
ISBN: 0803128681

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Stress Intensity Factors - T-Stresses - Weight Functions. Supplement Volume

Stress Intensity Factors - T-Stresses - Weight Functions. Supplement Volume
Author: Theo Fett
Publisher: KIT Scientific Publishing
Total Pages: 146
Release: 2014-08-13
Genre: Technology (General)
ISBN: 386644446X

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Stresses in the vicinity of the crack tips are responsible for failure of crack-containing components. The singular stress contribution is characterised by the stress intensity factor K, the first regular stress term is represented by the so-called T-stress. Whereas in the main volume, IKM 50, predominantly one-dimensional cracks were considered in homogeneous materials, this supplement volume compiles new results on one-dimensional and two-dimensional cracks.


Use of Weight Functions to Determine the Stress Intensity for a Cracked Thick-walled Cylinder

Use of Weight Functions to Determine the Stress Intensity for a Cracked Thick-walled Cylinder
Author: Graham Clark
Publisher:
Total Pages: 14
Release: 1981
Genre: Fracture mechanics
ISBN: 9780642891624

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The use of weight functions to determine stress intensities for cracked specimens is relatively simple, and, while the initial derivation of a suitable weight function for some specimen geometries may be complex, the technique offers substantial benefits. In particular, stress intensities may be estimated for any initial stress distribution, and variations in stress intensity which result from the introduction of residual stress fields may be handled without the need to perform a full re-analysis for each case. The stress intensity at the tip of a crack which grows through a known stress field has been estimated using a weight function technique. The geometry considered is a thick-walled cylinder (Ro/Ri = 1.8) containing a longitudinal crack along the bore surface, and stress distributions corresponding to a variety of loading arrangements are used as examples. (Author).