The origin of exceptionally large ductility in molybdenum alloys dispersed with irregular-shaped La2O3 nano-particles

被引:15
作者
Chen, Yujie [1 ,2 ,3 ,4 ]
Fang, Yan [1 ,2 ,5 ]
Cheng, Pengming [6 ]
Ke, Xiaoxing [7 ]
Zhang, Manchen [7 ]
Zou, Jiawei [1 ,2 ]
Ding, Jun [8 ]
Zhang, Bozhao [8 ]
Gu, Lin [3 ,4 ]
Zhang, Qinghua [9 ]
Liu, Gang [6 ]
Yu, Qian [1 ,2 ]
机构
[1] Zhejiang Univ, Ctr Electron Microscopy, Dept Mat Sci & Engn, Hangzhou 310027, Peoples R China
[2] Zhejiang Univ, Dept Mat Sci & Engn, State Key Lab Silicon & Adv Semicond Mat, Hangzhou 310027, Peoples R China
[3] Tsinghua Univ, Sch Mat Sci & Engn, Beijing Natl Ctr Electron Microscopy, Beijing 100084, Peoples R China
[4] Tsinghua Univ, Sch Mat Sci & Engn, Lab Adv Mat, Beijing 100084, Peoples R China
[5] Univ Hong Kong, Dept Mech Engn, Hong Kong 999077, Peoples R China
[6] Xi An Jiao Tong Univ, Sch Mat Sci & Engn, State Key Lab Mech Behav Mat, Xian 710049, Peoples R China
[7] Beijing Univ Technol, Coll Mat Sci & Engn, Beijing Key Lab Microstruct & Properties Solids, Beijing 100124, Peoples R China
[8] Xi An Jiao Tong Univ, Ctr Alloy Innovat & Design, State Key Lab Mech Behav Mat, Xian 710049, Peoples R China
[9] Chinese Acad Sci, Inst Phys, Beijing Natl Lab Condensed Matter Phys, Collaborat Innovat Ctr Quantum Matter, Beijing 100190, Peoples R China
基金
中国国家自然科学基金;
关键词
STRENGTHENED ODS MOLYBDENUM; MECHANICAL-PROPERTIES; FRACTURE-TOUGHNESS; OXIDE; ZIRCONIUM; BOUNDARY; GLASSES; ALUMINA; MO;
D O I
10.1038/s41467-024-48439-2
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Molybdenum and its alloys are known for their superior strength among body-centered cubic materials. However, their widespread application is hindered by a significant decrease in ductility at lower temperatures. In this study, we demonstrate the achievement of exceptional ductility in a Mo alloy containing rare-earth La2O3 nanoparticles through rotary-swaging, a rarity in Mo-based materials. Our analysis reveals that the large ductility originates from substantial variations in the electronic density of states, a characteristic intrinsic to rare-earth elements. This characteristic can accelerate the generation of oxygen vacancies, facilitating the amorphization of the oxide-matrix interface. This process promotes vacancy absorption and modification of dislocation configurations. Furthermore, by inducing irregular shapes in the La2O3 nanoparticles through rotary-swaging, incoming dislocations interact with them, creating multiple dislocation sources near the interface. These dislocation sources act as potent initiators at even reduced temperatures, fostering diverse dislocation types and intricate networks, ultimately enhancing dislocation plasticity.
引用
收藏
页数:9
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