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  4. Grain growth and the puzzle of its stagnation in thin films: A detailed comparison of experiments and simulations
 
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2012
Conference Paper
Title

Grain growth and the puzzle of its stagnation in thin films: A detailed comparison of experiments and simulations

Abstract
We revisit grain growth and the puzzle of its stagnation in thin metallic films. We bring together a large body of experimental data that includes the size of more than 30,000 grains obtained from 23 thin film samples of Al and Cu with thicknesses in the range of 25 to 158 nm. In addition to grain size, a broad range of other metrics such as the number of sides and the average side class of nearest neighbors is used to compare the experimental results with the results of two dimensional simulations of grain growth with isotropic boundary energy. In order to identify the underlying cause of the differences between these simulations and experiments, five factors are examined. These are (i) surface energy and elastic strain energy reduction, (ii) anisotropy of grain boundary energy, and retarding and pinning forces such as (iii) solute drag, (iv) grain boundary grooving and (v) triple junction drag. No single factor provides an explanation for the observed experimental behavior.
Author(s)
Barmak, Katayun
Carnegie Mellon Univ.
Eggeling, Eva
Fraunhofer Austria Research  
Sharp, Richard
Fraunhofer Austria Research  
Roberts, Scott
Carnegie Mellon Univ.
Shyu, Terry
Fraunhofer Austria Research  
Sun, Tik
Carnegie Mellon Univ.
Yao, Bo
Fraunhofer Austria Research  
Ta'asan, Shlomo
Carnegie Mellon Univ.
Kinderlehrer, David
Fraunhofer Austria Research  
Rollett, Anthony
Univ.
Coffey, Kevin
Fraunhofer Austria Research  
Mainwork
Recrystallization and grain growth IV. Selected, peer reviewed papers from the Fourth International Conference on Recrystallization and Grain Growth, ReX & GG 2010  
Conference
International Conference on Recrystallization and Grain Growth (ReX & GG) 2010  
Open Access
DOI
10.4028/www.scientific.net/MSF.715-716.473
Additional link
Full text
Language
English
Fraunhofer AUSTRIA  
Fraunhofer-Institut für Graphische Datenverarbeitung IGD  
Keyword(s)
  • simulation

  • materials research

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