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Fatigue Crack Growth Behaviour of Aa6013 Aluminum Alloy

AUTHOR Varli, Aziz Egemen
PUBLISHER VDM Verlag (03/05/2009)
PRODUCT TYPE Paperback (Paperback)

Description
The effect of different aging treatments on fatigue crack growth behavior of AA6013 aluminum alloy was investigated. C(T) (Compact Tension) specimens were prepared in L-T and T-L direction for fatigue crack growth tests. Samples were in T651 as received, T42 which is solution heat treated at 538 C for 90 minutes, water quenched and aged in room temperature for 96 hours, and one group of samples were overaged at 245 C for 12 hours after T42 condition was achieved. Hardness and conductivity measurements were achieved for all conditions after the heat treatments. Fatigue crack growth tests were performed at as received condition T651, T42 and 245 C aged samples in laboratory air with sinusoidal loading of stress ratio R=0.1 and at a frequency of 1 Hz. The highest fatigue crack growth resistance is observed for T651 T-L and 245 C overaged L-T condition."
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ISBN-13: 9783639129762
ISBN-10: 3639129768
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 104
Carton Quantity: 76
Product Dimensions: 6.00 x 0.25 x 9.00 inches
Weight: 0.36 pound(s)
Country of Origin: US
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Technology & Engineering | Engineering (General)
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The effect of different aging treatments on fatigue crack growth behavior of AA6013 aluminum alloy was investigated. C(T) (Compact Tension) specimens were prepared in L-T and T-L direction for fatigue crack growth tests. Samples were in T651 as received, T42 which is solution heat treated at 538 C for 90 minutes, water quenched and aged in room temperature for 96 hours, and one group of samples were overaged at 245 C for 12 hours after T42 condition was achieved. Hardness and conductivity measurements were achieved for all conditions after the heat treatments. Fatigue crack growth tests were performed at as received condition T651, T42 and 245 C aged samples in laboratory air with sinusoidal loading of stress ratio R=0.1 and at a frequency of 1 Hz. The highest fatigue crack growth resistance is observed for T651 T-L and 245 C overaged L-T condition."
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