Microstructure and properties of La2O3-doped tungsten-based bulk material and its densification mechanism during spark plasma sintering process

Chan Wang, Ping Wang, Qing Yu Hou*, Zhi Qiang Cui, Ning Fei Zhang, Lai Ma Luo, Zhen Yi Huang

*此作品的通讯作者

科研成果: 期刊稿件文献综述同行评审

4 引用 (Scopus)

摘要

In the present work, the feasibility and effectiveness of fabricating La2O3-doped W-based bulk using W-based composite powders of core-shell structure with W particle as a core and La(OH)3 as a shell, without hydrogen reduction treatment, was evaluated. La(OH)3 was first coated on the surface of pure W (uncoated) powders at a weight percentage of 3.50% to prepare composite (coated) powders using the electroless plating method. The uncoated and coated powders without being treated by hydrogen reduction were then sintered using spark plasma sintering (SPS) to fabricate bulks. The results showed that the core-shell structure with W particle as a core and La(OH)3 film as a shell was fabricated. La2O3-doped W-based bulk with about 2.93 wt.% La2O3 was obtained because of the transformation from La(OH)3 to La2O3. The La2O3 particles with larger sizes were distributed mainly at W grain boundaries and those with smaller sizes were distributed mainly inside W grains. The major densification mechanism of the sintered bulk from coated powders was the filling effect of La2O3 particles on the pores as compared with the sintered bulk from uncoated powders, which could be evaluated by using a two-ball sintering neck model. The relative content of O in the form of WO3 in the sintered bulk from coated powders was identical to that in the sintered bulk from uncoated powders. The W grain size of the sintered bulk from coated powders was smaller than that of the sintered bulk from uncoated powders. The thermal properties, mechanical properties, and irradiation properties of the sintered bulk from coated powders were all higher than those of the sintered bulk from uncoated powders. With the increase of sintering temperature, the evolution of the coated powders in the initial sintering period could be divided into six stages that were not completely independent and occurred in approximate sequence from the perspective of simplification. It was feasible and effective to fabricate La2O3-doped W-based bulk using the precursor W-based composite powders of core-shell structure with W particle as a core and La(OH)3 as a shell without being treated by hydrogen reduction.

源语言英语
文章编号113420
期刊Fusion Engineering and Design
188
DOI
出版状态已出版 - 3月 2023
已对外发布

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