The Study on Sintering Capabilities of High Purity Metal Vanadium Powder

Author:

Wang Yan Hui1,Liu Qi1,Bo Xin Wei1,Wang Xiao Yu1,Jiang Chun Dong1,Tang Rui1

Affiliation:

1. Chongqing Materials Research Institute Co. Ltd.

Abstract

High purity metal vanadium powder was milled by high energy ball milling, and the grain size and morphology of vanadium powder was observed by electron probe, and the stress-strain curve was measured by CMT5305 universal testing machine for research of the mechanical property. In order to investigate the effect of sintering process on the property of product, the vanadium powder was sintered by the hot pressing sintering process and the cold isostatic pressing with vacuum sintering process respectively. The experimental results show that for the cold isostatic pressing with vacuum sintering process, the density of raw compact increases with the increase of pressing pressure. When the pressure increases to 280 MPa, the density and relative density of raw compact are 3.99 g·cm-3 and 66.94% respectively, the density and relative density of product after sintering are 5.28 g·cm-3 and 88.59% respectively. With the pressure increasing from 80 MPa to 200 MPa, the compressive strength increases significantly from 0.4 MPa to 6.0 MPa, the pressure increases to 280 MPa, the compressive strength slowly increases to 7.4 MPa. For the hot pressing sintering process, the relative density of product is higher than that of cold isostatic pressing with vacuum sintering process, and the density and relative density reach to 5.51 g·cm-3 and 92.91% respectively under 280 MPa pressure.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference14 articles.

1. Yang S L. Vanadium titanium material (Metallurgical Industry Press, China (2007).

2. Liao S M, Bo T L. Foreign vanadium metallurgy (Metallurgical Industry Press, China 1985).

3. Xie D H, Ye L S, Len B Y, et al. Study of hot isostatic pressing preparation and properties of pure vanadium. Powder Metallurgy Technology, Vol. 25 (2007) No.5, p.360(In Chinese).

4. Len B Y, Xian X B, Pang X X, et al. High temperature mechanical properties and fracture characteristics of pure vanadium. Rare Metal Materials and Engineering, Vol. 40 (2011) No.8, p.1470(In Chinese).

5. Xian X B, Ye L S, Len B Y, et al. Study on preparation and properties of pure vanadium. Rare Metal Materials and Engineering, Vol. 39 (2010) No.5, p.928(In Chinese).

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