Synthesis and Characterization of Spark Plasma Sintered FeAl and In situ FeAl–Al2O3 Composite
In the present work, nanocrystalline FeAl and FeAl–Al 2 O 3 composite were synthesized by high energy ball milling and subsequent compaction by spark plasma sintering. Microstructural changes during all stages of processing are studied using X-ray analysis. After 20 h of milling, the disordered FeAl...
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Published in | Transactions of the Indian Institute of Metals Vol. 66; no. 4; pp. 419 - 424 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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01.08.2013
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Abstract | In the present work, nanocrystalline FeAl and FeAl–Al
2
O
3
composite were synthesized by high energy ball milling and subsequent compaction by spark plasma sintering. Microstructural changes during all stages of processing are studied using X-ray analysis. After 20 h of milling, the disordered FeAl and some amount of Fe rich solid solution was obtained in both of these compositions. Subsequent heat treatment results in formation of ordered FeAl. However, disordering of FeAl was observed in both compositions after spark plasma sintering. Nanocrystallinity is retained in both the compositions even after sintering at high temperature of 1,000 °C. Very high hardness of ~575 HV
1
and ~600 HV
1
was exhibited by FeAl and FeAl–Al
2
O
3
composite. |
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AbstractList | In the present work, nanocrystalline FeAl and FeAl–Al
2
O
3
composite were synthesized by high energy ball milling and subsequent compaction by spark plasma sintering. Microstructural changes during all stages of processing are studied using X-ray analysis. After 20 h of milling, the disordered FeAl and some amount of Fe rich solid solution was obtained in both of these compositions. Subsequent heat treatment results in formation of ordered FeAl. However, disordering of FeAl was observed in both compositions after spark plasma sintering. Nanocrystallinity is retained in both the compositions even after sintering at high temperature of 1,000 °C. Very high hardness of ~575 HV
1
and ~600 HV
1
was exhibited by FeAl and FeAl–Al
2
O
3
composite. |
Author | Kottada, Ravi S. Paleti, Sri Harish Kumar Murty, B. S. Chawake, Niraj |
Author_xml | – sequence: 1 givenname: Niraj surname: Chawake fullname: Chawake, Niraj email: niraj.chawake@gmail.com organization: Department of Metallurgical and Materials Engineering, IIT Madras – sequence: 2 givenname: Sri Harish Kumar surname: Paleti fullname: Paleti, Sri Harish Kumar organization: Department of Metallurgical and Materials Engineering, Mahatma Gandhi Institute of Technology – sequence: 3 givenname: B. S. surname: Murty fullname: Murty, B. S. organization: Department of Metallurgical and Materials Engineering, IIT Madras – sequence: 4 givenname: Ravi S. surname: Kottada fullname: Kottada, Ravi S. organization: Department of Metallurgical and Materials Engineering, IIT Madras |
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Keywords | Iron aluminide Spark plasma sintering Reactive milling Disordering |
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2
O
3
composite were synthesized by high energy ball milling and subsequent compaction by spark plasma... |
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SubjectTerms | Chemistry and Materials Science Corrosion and Coatings Materials Science Metallic Materials Technical Paper Tribology |
Title | Synthesis and Characterization of Spark Plasma Sintered FeAl and In situ FeAl–Al2O3 Composite |
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