Journal Article FZJ-2017-03451

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Coarsening Kinetics of Lamellar Microstructures: Experiments and Simulations on a Fully-Lamellar Fe-Al In Situ Composite

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2017
Elsevier Science Amsterdam [u.a.]

Acta materialia 127, 230 () [10.1016/j.actamat.2017.01.041]

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Abstract: A very fine lamellar microstructure consisting of the intermetallic phases FeAl and FeAl2 forms in binary Fe-Al alloys due to the eutectoid reaction Fe5Al8 ↔ FeAl + FeAl2, which takes place in the Al range between 56.0 and 64.4 at.% at 1095 °C. A fully lamellar microstructure is obtained at the eutectoid composition 60.9 at.% Al. The initial lamellar spacing λ0λ0 of as-cast material is 200 ± 40 nm. In this study, the kinetics of coarsening of the FeAl + FeAl2 lamellar microstructure is investigated at four different temperatures in the range 600 °C–1000 °C with holding times from 10 min to 7000 h. It is found that the increase of the lamellar spacing can be described as View the MathML sourceλ3=λ03+kt. The value obtained for the activation energy proves that the lamellar coarsening is a volume-diffusion-controlled process. Besides the experimental investigations, phase-field modeling is used to simulate the lamellar coarsening. The results are in good agreement with the experimental observations with regard to the evolution of the lamellar morphology and the value of the coarsening exponent.

Classification:

Contributing Institute(s):
  1. Werkstoffstruktur und -eigenschaften (IEK-2)
Research Program(s):
  1. 111 - Efficient and Flexible Power Plants (POF3-111) (POF3-111)

Appears in the scientific report 2017
Database coverage:
Medline ; Current Contents - Engineering, Computing and Technology ; Current Contents - Physical, Chemical and Earth Sciences ; Ebsco Academic Search ; IF >= 5 ; JCR ; SCOPUS ; Science Citation Index ; Science Citation Index Expanded ; Thomson Reuters Master Journal List ; Web of Science Core Collection
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 Record created 2017-05-09, last modified 2024-07-11


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