Microstructure and properties of W–4.9Ni–2.1Fe heavy alloy with Dy2O3 addition

Author:

Xie Yuan-Feng,Zhou Liang-Liang,Zhang Xiao-Yong,Li Xiao-Xian,Zhou Zeng-Lin,Zhang Xue-HuiORCID

Funder

National Natural Science Foundation of Jiangxi province under Grant

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

Reference30 articles.

1. Senthilnathan N, Annamalai AR, Venkatachalam G. Sintering of tungsten and tungsten heavy alloys of W–Ni–Fe and W–Ni–Cu: a review. Trans Indian Inst Met. 2017;70(5):1161.

2. Wu Z, Zhang Y, Yang CM, Liu QJ. Mechanical properties of tungsten heavy alloy and damage behaviors after hypervelocity impact. Rare Met. 2014;33(4):414.

3. Senthilnathan N, Annamalai AR, Venkatachalam G. Microstructure and mechanical properties of spark plasma sintered tungsten heavy alloys. Mater Sci Eng A. 2018;710:66.

4. Lu WR, Gao CY, Ke YL. Constitutive modeling of two-phase metallic composites with application to tungsten-based composite 93W–4.9Ni–2.1Fe. Metal Mater Trans A. 2014;592:136.

5. Xiang DP, Ding L, Li YY. Fabrication fine-grained tungsten heavy alloy by spark plasma sintering of low-energy ball-milled W–2Mo–7Ni–3Fe powders. Metal Mater Trans A. 2013;578:18.

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