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The detection of fatigue cracks by nondestructive testing methodsX-radiographic penetrant, ultrasonic, eddy current, holographic, and acoustic emission techniques were optimized and applied to the evaluation of 2219-T87 aluminum alloy test specimens. One hundred eighteen specimens containing a total of 328 fatigue cracks were evaluated. The cracks ranged in length from 0.500 inch (1.27 cm) to 0.007 inch (0.018 cm) and in depth from 0.178 inch (0.451 cm) and 0.001 inch (0.003 cm). Specimen thicknesses were nominally 0.060 inch (0.152 cm) and 0.210 inch (0.532 cm) and surface finishes were nominally 32 and 125 rms and 64 and 200 rms respectively. Specimens were evaluated in the as-milled surface condition, in the chemically milled surface condition and, after proof loading, in a randomized inspection sequence. Results of the nondestructive test (NDT) evaluations were compared with actual crack size obtained by measurement of the fractured specimens. Inspection data was then analyzed to provide a statistical basis for determinating the threshold crack detection sensitivity (the largest crack size that would be missed) for each of the inspection techniques at a 95% probability and 95% confidence level.
Document ID
19740009172
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Rummel, W. D.
(Martin Marietta Corp. Denver, CO, United States)
Todd, P. H., Jr.
(Martin Marietta Corp. Denver, CO, United States)
Frecska, S. A.
(Martin Marietta Corp. Denver, CO, United States)
Rathke, R. A.
(Martin Marietta Corp. Denver, CO, United States)
Date Acquired
September 3, 2013
Publication Date
February 1, 1974
Publication Information
Publisher: NASA
Subject Category
Materials, Nonmetallic
Report/Patent Number
MCR-73-145
NASA-CR-2369
Report Number: MCR-73-145
Report Number: NASA-CR-2369
Accession Number
74N17285
Funding Number(s)
CONTRACT_GRANT: NAS9-12276
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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