By B. Zinszer, F. Pellerin
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T. Gibson, DOE/ER-031 3/24 15. J. L. F. J. Alexander, (1 998) 33. 16. J. L. Snead, Effects of Radiation in Materials: 18th International Symposium, ASTM STP-1 325, ASTM 1997. 13. 17 UNIAXIAL CREEP BEHAVIOR OF V-4Cr-4Ti Alloy” K. Natesan, W. K. Soppet, and D. L. , all of which are key parameters temperatures; are to (a) to establish such as creep rupture strength, in designing structural (b) provide a basis to establish the upper-use of V-base alloys; and (c) evaluate the influence substitutional and interstitial on the creep components temperature for application elements time/temperature relationships 1Y.
The objective of the present investigation is to examine the effect of oxygen on the propensity for stress-assisted dynamic embrittlement in V-4Cr-4Ti. Dynamic embrittlement is a type of brittle fracture that occurs by quasi-static decohesion, usually along grain boundaries, caused by the stress-driven diffusion of a surface-adsorbed embrittling element. This type of embrittlement has been observed in a number of alloy systems. Oxygen is found to embrittle nickel-base superalloys and interrnetallics [9-11], as well as in a precipitation strengthened Cu-Be alloy [1 2].
Lucas, E. Donahue, Methods for Fusion Reactor Materials with Small Specimens,” Sma// Specimen Test Techniques, ASTM STP-1329, American Society for Testing and Materials, 1998. K. Edsinger, B. Wirth, Effects of Radiation on 7. E. R. W. Sheckherd, Maferia/, 17 hternational Symposium, ASTM-STP 1270, ASTM (1996) 790. 8. R. Odette, E. E. W. Sheckherd, DOE/ER-031 3/20, (1996) 11. 9. R. S. Department of Energy (1996) 283-298. 10. R. Odette, Journa/ of Nuclear Materials 212-215 (1 994) 45. 11. E. R. E.