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Title: Quantitative assessment of the driving force for twin formation utilizing Nye tensor dislocation density mapping

Journal Article · · Scripta Materialia

Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
Grant/Contract Number:
SC0008274
OSTI ID:
1337417
Journal Information:
Scripta Materialia, Journal Name: Scripta Materialia Vol. 121 Journal Issue: C; ISSN 1359-6462
Publisher:
ElsevierCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 7 works
Citation information provided by
Web of Science

References (26)

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Measurement of geometrically necessary dislocation density with high resolution electron backscatter diffraction: Effects of detector binning and step size journal February 2013
The role of annealing twins during recrystallization of Cu journal July 2007
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A method of measuring stored energy macroscopically using statistically stored dislocations in commercial purity aluminum journal January 2006
Optimization of grain boundary character distribution for intergranular corrosion resistant 304 stainless steel by twin-induced grain boundary engineering journal May 2002
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Formation of annealing twins during primary recrystallization of two low stacking fault energy Ni-based alloys journal December 2014
A comparison of grain boundary evolution during grain growth in fcc metals journal June 2013
Estimation of dislocation density from precession electron diffraction data using the Nye tensor journal June 2015
Formation of annealing twins in f.c.c. crystals journal June 1997
Grain boundary character dependence of radiation-induced segregation in a model Ni–Cr alloy journal March 2015
Automated crystal orientation and phase mapping in TEM journal December 2014
Growth Twins and Deformation Twins in Metals journal July 2014
Grain boundary mobility under a stored-energy driving force: a comparison to curvature-driven boundary migration journal October 2005

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