Fracture Analysis of Stiffened Panels Under Biaxial Loading with Widespread Cracking
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Page : 42 pages
File Size : 14,41 MB
Release : 1995
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Author :
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Page : 42 pages
File Size : 14,41 MB
Release : 1995
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Author : B. R. Seshadri
Publisher :
Page : 26 pages
File Size : 38,62 MB
Release : 1998
Category : Aluminum
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Author : National Aeronautics and Space Administration (NASA)
Publisher : Createspace Independent Publishing Platform
Page : 42 pages
File Size : 33,57 MB
Release : 2018-07-03
Category :
ISBN : 9781722246761
An elastic-plastic finite-element analysis with a critical crack-tip opening angle (CTOA) fracture criterion was used to model stable crack growth and fracture of 2024-T3 aluminum alloy (bare and clad) panels for several thicknesses. The panels had either single or multiple-site damage (MSD) cracks subjected to uniaxial or biaxial loading. Analyses were also conducted on cracked stiffened panels with single or MSD cracks. The critical CTOA value for each thickness was determined by matching the failure load on a middle-crack tension specimen. Comparisons were made between the critical angles determined from the finite-element analyses and those measured with photographic methods. Predicted load-against-crack extension and failure loads for panels under biaxial loading, panels with MSD cracks, and panels with various numbers of stiffeners were compared with test data whenever possible. The predicted results agreed well with the test data even for large-scale plastic deformations. The analyses were also able to predict stable tearing behavior of a large lead crack in the presence of MSD cracks. The analyses were then used to study the influence of stiffeners on residual strength in the presence of widespread fatigue cracking. Small MSD cracks were found to greatly reduce the residual strength for large lead cracks even for stiffened panels. Newman, J. C., Jr. Langley Research Center RTOP 538-02-10-01...
Author : Gary R. Halford
Publisher : ASTM International
Page : 551 pages
File Size : 40,94 MB
Release : 2000
Category : Fatigue
ISBN : 0803128681
Author : H.P. Rossmanith
Publisher : CRC Press
Page : 610 pages
File Size : 29,27 MB
Release : 1997-01-01
Category : Technology & Engineering
ISBN : 9789054106791
This book describes the historical development of the engineering discipline of fracture mechanics from early times to the scientific treatment of the subject in the 20th century. Most papaers do not require a mathematical background to understand them.
Author : John H. Underwood
Publisher : ASTM International
Page : 697 pages
File Size : 50,94 MB
Release : 1997
Category : Fracture mechanics
ISBN : 0803124104
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Page : 620 pages
File Size : 32,10 MB
Release : 1999
Category : Airframes
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Page : 176 pages
File Size : 27,63 MB
Release : 1996
Category : Aeronautics
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Author : Tina Louise Panontin
Publisher : ASTM International
Page : 922 pages
File Size : 48,13 MB
Release : 1999
Category : Fatigue
ISBN : 0803124864
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Page : 904 pages
File Size : 32,58 MB
Release : 1998
Category : Aeronautics
ISBN :