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McCowan, J. W. Bransford, E. S. Drexler, and R. P. Walsh, "Aluminum Alloys for Cryogenic Tanks: Oxygen Compatibility Vol. 1," AL-TR-90-063, Astronautics Lab (AFSC), Edwards AFB, California (September, 1990). 2. R. P. Reed, N. J. Simon, J. D. McColskey, J. R. Berger, C. N. McCowan, J. W. Bransford, E. S. Drexler, and R. P. Walsh, "Aluminum Alloys for Cryogenic Tanks: Oxygen Compatibility Final Report: Vol. 2," Al-TR-90-063, Astronautics Lab (AFSC), Edwards AFB, California (September, 1990). 3. R.

6:167, (1972). 5. A. J. Barnes, Advances in Superplastic Aluminum Forming, in: "Superplasticity in Aerospace," H. C. Heikkenen and T. R. , The Metallurgical Society, Warrendale, PA, (1988). 6. J. M. Silcock, T. J. Heal, and H. K. Hardy, The Structural Aging Characteristics of Ternary Aluminum-Copper Alloys with Cadmium, Indium,and Tin, J. Inst. Metals, 84:23, (1955-56). 7. S. Verzasconi and J. W. , Cryogenic Mechanical Properties of Low Density Superplastically Formable Al-Li-Alloys, in: "Proc.

14:5 (1978). 8. S. , submitted to the Journal ofTesting and Evaluation. 9. L. , 1. ofTesting and Evaluation, 19:1:34-40 (1991). 10. L. S. NIST, Boulder Colorado, (September, 1990). 11. L. S. Hwang, (May 1991). 12. L. Tobler, Advances in Cryogenic Engineering, 16:669-674 (1976). 13. K. , Austenitic Steels at Low Temperatures, Plenum, NY, 171-185 (1983). 14. P. Hirth, J. Dislocations," John Wiley and Sons, NY, 681 (1982). 10 TilE EFFECT OF INDIUM ADDIDONS ON TilE CRYOOENIC TENSILE PROPERTIES OF SUPERPLASTICALLY DEFORMED Al-Cu-Li-Zr ALLOY 2090 E.

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