Analysis Of Surface Cracks At Hole By A 3 D Weight Function Method With Stresses From Finite Element Method PDF Download

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Analysis of Surface Cracks at Hole by a 3-D Weight Function Method with Stresses from Finite Element Method

Analysis of Surface Cracks at Hole by a 3-D Weight Function Method with Stresses from Finite Element Method
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 44
Release: 2018-06-30
Genre:
ISBN: 9781722088767

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Parallel with the work in Part-1, stress intensity factors for semi-elliptical surface cracks emanating from a circular hole are determined. The 3-D weight function method with the 3D finite element solutions for the uncracked stress distribution as in Part-1 is used for the analysis. Two different loading conditions, i.e. remote tension and wedge loading, are considered for a wide range in geometrical parameters. Both single and double surface cracks are studied and compared with other solutions available in the literature. Typical crack opening displacements are also provided. Zhao, W. and Newman, J. C., Jr. and Sutton, M. A. and Shivakumar, K. N. and Wu, X. R. Langley Research Center RTOP 538-02-10-01...


Analysis of Corner Cracks at Hole by a 3-D Weight Function Method with Stresses from Finite Element Method

Analysis of Corner Cracks at Hole by a 3-D Weight Function Method with Stresses from Finite Element Method
Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
Total Pages: 66
Release: 2018-11-03
Genre: Science
ISBN: 9781730728839

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Stress intensity factors for quarter-elliptical corner cracks emanating from a circular hole are determined using a 3-D weight function method combined with a 3-D finite element method. The 3-D finite element method is used to analyze uncracked configuration and provide stress distribution in the region where crack is to occur. Using this stress distribution as input, the 3-D weight function method is used to determine stress intensity factors. Three different loading conditions, i.e. remote tension, remote bending and wedge loading, are considered for a wide range in geometrical parameters. The significance in using 3-D uncracked stress distribution and the difference between single and double corner cracks are studied. Typical crack opening displacements are also provided. Comparisons are made with solutions available in the literature. Zhao, W. and Newman, J. C., Jr. and Sutton, M. A. and Wu, X. R. and Shivakumar, K. N. Langley Research Center...


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.


Fatigue and Fracture Mechanics

Fatigue and Fracture Mechanics
Author: Robert S. Piascik
Publisher: ASTM International
Total Pages: 640
Release: 1997
Genre: Aluminum alloys
ISBN: 0803124120

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Surface-crack Growth

Surface-crack Growth
Author: Walter G. Reuter
Publisher: ASTM International
Total Pages: 428
Release: 1990
Genre: Fracture mechanics
ISBN: 080311284X

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From the symposium (on title) held in Sparks, Nevada, April 1988. Twenty-two peer-reviewed papers are divided into sections on models and experiments (monotonic loading), and fatigue crack growth. Areas addressed include the differences in constraint for 2-D through-thickness cracks and 3-D surface


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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Small-crack Test Methods

Small-crack Test Methods
Author: James M. Larsen
Publisher: ASTM International
Total Pages: 228
Release: 1992
Genre: Elasticity
ISBN: 0803114699

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Reviews the most recent methods for testing small cracks in a variety of materials, providing detailed quantitative information on necessary procedures for data acquisition. Emphasizes the characterization of small, three-dimensional fatigue cracks, initiated either naturally or artificially. The ei