Javascript must be enabled to continue!
Tungsten and Tungsten Alloys
View through CrossRef
AbstractTungsten, discovered in 1755 and produced as a metal in 1783, is notable for having a very low vapor pressure, the highest melting point of any metal, and the highest tensile strength of any metal above 1650°C. It has been used formerly in the manufacture of high speed steels and as a metal filament in electric lamps, where it was fabricated by powder metallurgy using the Coolidge process. The largest modern application is in the manufacture of cemented carbide cutting tools. Tungsten is rated as a strategic material in the U.S. economy.Tungsten occurs in a number of mineral forms, the most important being scheelite and wolframite. The beneficiation and hydrometallurgy are described, together with the principal intermediate compounds used to make the metal powder by hydrogen reduction. Technically it is possible to process compacted powder by arc or electron‐beam melting, but commercially the power metallurgy process of compaction, sintering, and working is used exclusively.The largest reserves of ores occur in China, which has, in more recent years, become the principal source of supply not only for ores but for metal powder and intermediates at prices that have caused most U.S. mines to be closed. About 65% of tungsten usage is as tungsten carbide in cutting and mining tools. The instability of the market as well as economic and environmental factors have favored development of recycling processes. Used cutting tools can be treated with molten zinc and both are recovered tungsten carbide and cobalt binder as mixed powders after vacuum‐distilling off the zinc. It is estimated that 25% of cutting tools are recycled in this way in the United States.Tungsten alloyed with nickel and iron is used for a range of high density compositions that find applications as counterweights in aircraft, as armor‐piercing penetrators, and for collimators and shielding in x‐ray machines. These alloys are characterized by high density and high modulus, which make them suitable for use in critical dynamic structures. Tungsten forms only a few alloys; tungsten–rhenium is important for thermocouples and as a tough lamp filament alloy. Insoluble tungsten has relatively low toxicity, but aerosols with cobalt and with impurities found in mining can have some effect and require controls of exposure level.
Title: Tungsten and Tungsten Alloys
Description:
AbstractTungsten, discovered in 1755 and produced as a metal in 1783, is notable for having a very low vapor pressure, the highest melting point of any metal, and the highest tensile strength of any metal above 1650°C.
It has been used formerly in the manufacture of high speed steels and as a metal filament in electric lamps, where it was fabricated by powder metallurgy using the Coolidge process.
The largest modern application is in the manufacture of cemented carbide cutting tools.
Tungsten is rated as a strategic material in the U.
S.
economy.
Tungsten occurs in a number of mineral forms, the most important being scheelite and wolframite.
The beneficiation and hydrometallurgy are described, together with the principal intermediate compounds used to make the metal powder by hydrogen reduction.
Technically it is possible to process compacted powder by arc or electron‐beam melting, but commercially the power metallurgy process of compaction, sintering, and working is used exclusively.
The largest reserves of ores occur in China, which has, in more recent years, become the principal source of supply not only for ores but for metal powder and intermediates at prices that have caused most U.
S.
mines to be closed.
About 65% of tungsten usage is as tungsten carbide in cutting and mining tools.
The instability of the market as well as economic and environmental factors have favored development of recycling processes.
Used cutting tools can be treated with molten zinc and both are recovered tungsten carbide and cobalt binder as mixed powders after vacuum‐distilling off the zinc.
It is estimated that 25% of cutting tools are recycled in this way in the United States.
Tungsten alloyed with nickel and iron is used for a range of high density compositions that find applications as counterweights in aircraft, as armor‐piercing penetrators, and for collimators and shielding in x‐ray machines.
These alloys are characterized by high density and high modulus, which make them suitable for use in critical dynamic structures.
Tungsten forms only a few alloys; tungsten–rhenium is important for thermocouples and as a tough lamp filament alloy.
Insoluble tungsten has relatively low toxicity, but aerosols with cobalt and with impurities found in mining can have some effect and require controls of exposure level.
Related Results
Tungsten, Tungsten Alloys, and Tungsten Compounds
Tungsten, Tungsten Alloys, and Tungsten Compounds
AbstractThe article contains sections titled:1.Introduction2.Properties2.1.Physical Properties2.2.Chemical Properties3.Raw Materials3.1.Natural Resources3.2.Tungsten Scrap4.Product...
A Review of Tungsten Resources and Potential Extraction from Mine Waste
A Review of Tungsten Resources and Potential Extraction from Mine Waste
Tungsten is recognized as a critical metal due to its unique properties, economic importance, and limited sources of supply. It has wide applications where hardness, high density, ...
Chromium, Molybdenum, and Tungsten
Chromium, Molybdenum, and Tungsten
AbstractThe physical and chemical characteristics of chromium and some of its compounds are summarized.The termchromiumis derived from the Greek word for color, because most chromi...
Tungsten and Tungsten Alloys
Tungsten and Tungsten Alloys
AbstractTungsten, discovered in 1755 and produced as a metal in 1783, is notable for having a very low vapor pressure, the highest melting point of any metal, and the highest tensi...
Diffusion and its Application in NiMnGa Alloys
Diffusion and its Application in NiMnGa Alloys
Heusler NiMnGa alloys are often categorized as ferromagnetic shape memory alloys or magnetocaloric materials, which are important for both practical applications and fundamental re...
A Preliminary Review of Metallogenic Regularity of Tungsten Deposits in China
A Preliminary Review of Metallogenic Regularity of Tungsten Deposits in China
AbstractTungsten ore resources are abundant in China with relatively complete types of deposits. Skarn type and quartz vein type deposits are dominated in the tungsten resources, w...
Bioresorbable Zn-based alloys for biomedical applications
Bioresorbable Zn-based alloys for biomedical applications
(English) Biodegradable metals emerged as promising materials for bioresorbable devices avoiding the potential side effects of permanent implants. Among them, zinc (Zn) arose dueto...

