Summary of the Application of Vanadium

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Abstract:

As one of the important strategic metals, Vanadium is applied widely to various fields, 85% of them are used in steel production. In this paper, the properties and the resource distribution of Vanadium are made a rough introduction, and introduced the present application situation of Vanadium in steel ,on-ferrous metals, alloys, batteries, chemical industry, ect.

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55-59

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July 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] TanRuobin. Vanadium resource exploitation at home and abroad. Vanadium and titanium, 1994, (5 , 6): 4-11.

Google Scholar

[2] XiGan, LeiYing, HuKejun, XiXin. The application profiles ofvanadium abroad [J]. The world's non-ferrous metals, 2000, (2): 13–21.

Google Scholar

[3] Rebar with vanadium alloy. US 5851481, (1998).

Google Scholar

[4] ZhangXingren. The future of vanadium depends on the development of steel industry. Vanadium and titanium, 1994, (5, 6): 12~13.

Google Scholar

[5] Vanadium - market upate , analysis &outlook. England: Roskill Information Services Ltd, (1995).

Google Scholar

[6] Bake hardenable vanadium containing steel and method thereof. US5656102, (1997).

Google Scholar

[7] Method for manufacturing vanadium carbide powder added tool steel powder by milling process, and method for manufacturing parts therewith. US5561832 , (1996).

Google Scholar

[8] Corrosion resistant , high vanadium , powder metallurgy tool steel articles with improved metal to metal wear resistance and method for producing the same. US 5900560, (1999).

Google Scholar

[9] Izumi H, Kakuma Y. Hard Alloy. EP 0495101, (1992).

Google Scholar

[10] WenYou, The resources, applications, development and prospect of vanadium[J]. Non-ferrous metals and alloy, 1996, 124: 51 - 54.

Google Scholar

[11] Method for preparing mixed amorphous vanadium oxides and their use as electrodes in rechargeable lithium cells. US 5700598 , (1997).

Google Scholar

[12] Copper, silver, vanadium oxide composite cathode material for high energy density batteries. US 5472810, (1995).

Google Scholar

[13] Process for producing filament - like vanadium oxide for use in solid state rechargeable electrochemical cells and the use thereof as a cathode in electrochemical cells. US 5545496, (1996).

Google Scholar

[14] KAWAKITA J, MIURA T, KISHI T. Charging characteristics of Li1+xV3O8[J]. Solid State Ionices, 1997, 7: 689-694.

Google Scholar

[15] CuiYanhua, MengFanming. The development status and prospects of vanadium battery energy storage system [J]. Power Technology, 2005, 29 (11) : 181–183.

Google Scholar

[16] WenJi. The market outlook analysis of vanadium resource and vanadium products[J]. The world's non-ferrous metals, 2001, (11): 7 -81.

Google Scholar

[17] Krzanowski , J E. Chemical , mechanical , and tribological properties of pulsed - laser - deposited titanium carbide and vanadium carbide. J of American Ceramic Society , 1997 , 80 (5) : 1277~1280.

DOI: 10.1111/j.1151-2916.1997.tb02976.x

Google Scholar

[18] Lipatnikov V N, Ettmayer P. Effect of vacancy ordering on structure and some properties of vanadium carbide. 14th International Plansee Seminar' 1997. 12~16.

Google Scholar

[19] WenYongzhi. The latest trends in research of vanadium in Anti-diabetic effects[J]. World Elements.

Google Scholar