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  4. Investigation of microstructure and microhardness of pure W and W-2Y(2)O(3) materials before and after ion-irradiation
 
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research article

Investigation of microstructure and microhardness of pure W and W-2Y(2)O(3) materials before and after ion-irradiation

Battabyal, M.
•
Spätig, P.
•
Murty, B. S.
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2014
International Journal Of Refractory Metals & Hard Materials

Pure W and W-2Y(2)O(3) materials were fabricated using powder metallurgy method. The microstructures of the materials were investigated by electron back-scattered diffraction and transmission electron microscopy techniques. Both materials contain 1-2 mu m size W grains. In the case of W-2Y(2)O(3), the material contains yttria particles having sizes between 300 and 900 nm. The W matrix in W-2Y(2)O(3) shows stronger texture than that of pure W. Berkovich hardness values are 4.5 GPa in pure W and 4.9 GPa in W-2Y(2)O(3) for a 10 N load. Ion irradiation experiments were performed on both materials at the JANNuS facility (Saclay, France) using Fe and He ions with energies of 24 MeV and 2 MeV, respectively. Radiation loops are present on the W grains whereas on yttria particles, radiation-induced damages appear as voids. Berkovich hardness values of irradiated materials are slightly higher than the non-irradiated materials. Results of the microstructure and microhardness of irradiated as well as non-irradiated materials are presented in detail. (C) 2014 Elsevier Ltd. All rights reserved.

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Type
research article
DOI
10.1016/j.ijrmhm.2014.06.004
Web of Science ID

WOS:000340863600025

Author(s)
Battabyal, M.
•
Spätig, P.
•
Murty, B. S.
•
Baluc, N.
Date Issued

2014

Published in
International Journal Of Refractory Metals & Hard Materials
Volume

46

Start page

168

End page

172

Subjects

Tungsten

•

Yttria

•

Irradiation

•

Microhardness

•

Transmission electron microscopy

•

Voids

Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
October 23, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/107717
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