Incorporation of Y2O3 Particles into 410L Stainless Steel by a Powder Metallurgy Route

被引:0
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作者
A. Zeybek
S. Pirfo Barroso
K. B. Chong
L. Edwards
M. E. Fitzpatrick
机构
[1] The Open University,Materials Engineering
[2] Australian Nuclear Science & Technology Organisation,High Performance Computing Centre
[3] University Malaysia of Computer Science & Engineering,Faculty of Engineering and Computing
[4] Persiaran APEC,undefined
[5] Defence Industries Research and Development Institute (TÜBİTAK-SAGE),undefined
[6] Coventry University,undefined
关键词
advanced characterization; creep and stress rupture; mechanical; powder metallurgy;
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摘要
Addition of yttria to steels has been proposed for the fabrication of oxide-dispersion-strengthened materials for nuclear power applications. We have investigated materials prepared from 12 Cr martensitic stainless steel, AISI 410L, produced by powder metallurgy. Materials were produced with and without yttria addition, and two different sizes of yttria were used, 0.9 µm and 50 nm. Tensile and mini-creep tests were performed to determine mechanical properties. Optical microscopy, SEM, TEM, and EDX analysis were used to investigate the microstructures and deformation mechanisms and to obtain information about non-metallic inclusion particles. SiO2, MnS, and Y2Si2O7 inclusion particles were observed. An SiO2 and Y2O3 interaction was seen to have occurred during the ball milling, which impaired the final mechanical properties. Small-angle neutron scattering experiments showed that the matrix chemistry prevented effective dissolution of the yttria.
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页码:2120 / 2130
页数:10
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