Document Type

Article

Publication Date

10-2011

Abstract

Sheets of 2195 aluminum-lithium alloy were solution-treated at 507 A degrees C for 30 min. One set was stretched to 3-5% in the 0A degrees, 45A degrees, and 90A degrees angle with respect to the original rolling direction. Two other sets were rolled 6% reduction in thickness and 24% reduction in thickness in the 0A degrees, 45A degrees, and 90A degrees angle with respect to the original rolling direction. All specimens were aged at 143 A degrees C for 36 h. A second group of samples was rolled at 24 and 50% reduction in thickness after a solution treatment of 507 A degrees C for 1 h prior to aging at 190 A degrees C for 24 h. Tensile specimens were machined from each sheet at 0A degrees, 45A degrees, and 90A degrees angles to the original grain orientation. Tensile testing was used to determine the mechanical properties and anisotropic behavior of each condition. Rolling 6% reduction in thickness in the 45A degrees orientation yielded anisotropy of 7.6% in the yield strength.

Publisher Statement

Copyright 2011 ASM International. This paper was published in Journal of Materials Engineering and Performance, Volume 20, Issue 7, pp. 1171-1179 and is made available as an electronic reprint with the permission of ASM International. One print or electronic copy may be made for personal use only. Systematic or multiple reproduction, distribution to multiple locations via electronic or other means, duplications of any material in this paper for a fee or for commercial pruposes, or modification of the content of this paper are prohibited. Available on publisher's site at http://www.springerlink.com/content/m521u45247802667/.

Recommended Citation

Es-Said, O.S., Parrish, C.J., Bradberry, C.A., Hassoun, J.Y., Parish, R.A., Nash, A., Smythe, N.C., Tran, K.N., Ruperto, T., Lee, E.W., Mitchell, D., and Vinquist, C., 2011, "Effect of Stretch Orientation and Rolling Orientation on the Mechanical Properties of 2195 Al-Cu-Li Alloy," Journal of Materials Engineering and Performance, 20(7), pp. 1171-1179.

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