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Observations of Glide and Decomposition of a<101> Dislocations at High Temperatures in Ni-Al Single Crystals Deformed along the Hard OrientationNi-44at.% Al and Ni-50at.% single crystals were tested in compression in the hard (001) orientations. The dislocation processes and deformation behavior were studied as a function of temperature, strain and strain rate. A slip transition in NiAl occurs from alpha(111) slip to non-alphaaaaaaaaaaa9111) slip at intermediate temperatures. In Ni-50at.% Al single crystal, only alpha(010) dislocations are observed above the slip transition temperature. In contrast, alpha(101)(101) glide has been observed to control deformation beyond the slip transition temperature in Ni-44at.%Al. alpha(101) dislocations are observed primarily along both (111) directions in the glide plane. High-resolution transmission electron microscopy observations show that the core of the alpha(101) dislocations along these directions is decomposed into two alpha(010) dislocations, separated by a distance of approximately 2nm. The temperature window of stability for these alpha(101) dislocations depends upon the strain rate. At a strain rate of 1.4 x 10(exp -4)/s, lpha(101) dislocations are observed between 800 and 1000K. Complete decomposition of a alpha(101) dislocations into alpha(010) dislocations occurs beyond 1000K, leading to alpha(010) climb as the deformation mode at higher temperature. At lower strain rates, decomposition of a alpha(101) dislocations has been observed to occur along the edge orientation at temperatures below 1000K. Embedded-atom method calculations and experimental results indicate that alpha(101) dislocation have a large Peieris stress at low temperature. Based on the present microstructural observations and a survey of the literature with respect to vacancy content and diffusion in NiAl, a model is proposed for alpha(101)(101) glide in Ni-44at.%Al, and for the observed yield strength versus temperature behavior of Ni-Al alloys at intermediate and high temperatures.
Document ID
20030113134
Acquisition Source
Glenn Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Srinivasan, R.
(Ohio State Univ. Columbus, OH, United States)
Daw, M. S.
(Clemson Univ. SC, United States)
Noebe, R. D.
(NASA Glenn Research Center Cleveland, OH, United States)
Mills, M. J.
(Clemson Univ. SC, United States)
Date Acquired
August 21, 2013
Publication Date
February 1, 2003
Subject Category
Atomic And Molecular Physics
Funding Number(s)
OTHER: 22-708-31-02
PROJECT: RTOP 708-31-13
CONTRACT_GRANT: DE-FG02-96ER-45550
Distribution Limits
Public
Copyright
Other

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