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Main Authors: Munoz, A., Martinez, J., Monge, M. A., Savoini, B., Pareja, R., Radulescu, A.
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2501.11521
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author Munoz, A.
Martinez, J.
Monge, M. A.
Savoini, B.
Pareja, R.
Radulescu, A.
author_facet Munoz, A.
Martinez, J.
Monge, M. A.
Savoini, B.
Pareja, R.
Radulescu, A.
contents The development of dispersion of nanoparticles in the W-1%Y$_2$O$_3$ and W-1%La$_2$O$_3$ (wt%) alloys processed by hot isostatic pressing has been investigated using small angle neutron scattering. The mode values of these centers are found at 10 and 40 nm in W-1%Y$_2$O$_3$, and 15 and 80 nm in W-1%La$_2$O$_3$. The scanning electron microscopy analyses showed the presence of small second phase particles. The contribution of the pore space to the scattering curves has been analyzed using the results obtained for pure W processed following the same procedure used for the alloys, and the porosity measurements of the samples.
format Preprint
id arxiv_https___arxiv_org_abs_2501_11521
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle SANS evidence for the dispersion of nanoparticles in W-1Y$_2$O$_3$ and W-1La$_2$O$_3$ processed by hot isostatic pressing
Munoz, A.
Martinez, J.
Monge, M. A.
Savoini, B.
Pareja, R.
Radulescu, A.
Materials Science
The development of dispersion of nanoparticles in the W-1%Y$_2$O$_3$ and W-1%La$_2$O$_3$ (wt%) alloys processed by hot isostatic pressing has been investigated using small angle neutron scattering. The mode values of these centers are found at 10 and 40 nm in W-1%Y$_2$O$_3$, and 15 and 80 nm in W-1%La$_2$O$_3$. The scanning electron microscopy analyses showed the presence of small second phase particles. The contribution of the pore space to the scattering curves has been analyzed using the results obtained for pure W processed following the same procedure used for the alloys, and the porosity measurements of the samples.
title SANS evidence for the dispersion of nanoparticles in W-1Y$_2$O$_3$ and W-1La$_2$O$_3$ processed by hot isostatic pressing
topic Materials Science
url https://arxiv.org/abs/2501.11521