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란타넘 산화물의 분산을 통해 향상된 파괴인성을 갖는 몰리브데넘 합금의 제조Fabrication of Molybdenum Alloys with Improved Fracture Toughness through the Dispersion of Lanthanum Oxide

Other Titles
Fabrication of Molybdenum Alloys with Improved Fracture Toughness through the Dispersion of Lanthanum Oxide
Authors
최원준박천웅박정효김영도변종민
Issue Date
Jun-2019
Publisher
한국분말야금학회
Keywords
Molybdenum; Lanthanum oxide; Pressureless sintering; Fracture toughness
Citation
한국분말야금학회지, v.26, no.3, pp.208 - 213
Indexed
KCI
Journal Title
한국분말야금학회지
Volume
26
Number
3
Start Page
208
End Page
213
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/13431
DOI
10.4150/KPMI.2019.26.3.208
ISSN
1225-7591
Abstract
In this study, lanthanum oxide (La2O3) dispersed molybdenum (Mo–La2O3) alloys are fabricated using lanthanum nitrate solution and nanosized Mo particles produced by hydrogen reduction of molybdenum oxide. The effect of La2O3 dispersion in a Mo matrix on the fracture toughness at room temperature is demonstrated through the formation behavior of La2O3 from the precursor and three-point bending test using a single-edge notched bend specimen. The relative density of the Mo–0.3La2O3 specimen sintered by pressureless sintering is approximately 99%, and La2O3 with a size of hundreds of nanometers is uniformly distributed in the Mo matrix. It is also confirmed that the fracture toughness is 19.46 MPa·m1/2, an improvement of approximately 40% over the fracture toughness of 13.50 MPa·m1/2 on a pure-Mo specimen without La2O3, and this difference in the fracture toughness occurs because of the changes in fracture mode of the Mo matrix caused by the dispersion of La2O3.
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