Titanium Master Alloy
Commercially pure titanium alloys contain small amounts of oxygen and iron that influence mechanical properties. Each commercial grade is produced to provide properties suited for different applications.
Grade 2 Unalloyed Ti ("Pure") 50A alloy is the most commonly used and widely available grade of unalloyed titanium. It is non-magnetic.
Ti 6Al-4V is the most widely used of all Titanium grades. It is typically available in the annealed condition and is readily heat treatable to increase strength, for a wide range of applications. As a general-purpose alloy, Ti 6Al-4V has a broad spectrum of desirable properties at temperatures around -210°C – 400°C.
Titanium grade 5 or Ti 6Al-4V is an alpha-beta (α-β) alloy. Therefore, it may be heat treated to give medium-high strength in sections under 100 mm thick. However, hardenability is limited and sections over 25 mm may not fully develop desired properties.
Titanium grade 1 is the most ductile of the commercially pure Titanium grades. As a result, the alloy is widely specified for the manufacture of plate heat exchangers.
Titanium Grade 2 or Titanium CP3 is a commercially pure alpha (α) alloy. Although not as strong as Ti 6Al-4V, Titanium grade 2 has outstanding corrosion resistance against variety of aggressive media.
Often cheaper and stronger steels are used as outer assemblies. One key application is lining of chimney stacks on coal fired power stations which have been retrofitted with FGD Systems ( Flue Gas Desulphurisation plants).
Titanium master alloy is applied in enhancing properties and used in copper and zinc alloys, civil aviation, marine application
Marine Application
Copper
Zinc Alloy
Civil Aviation
The nickel-niobium or nickel-columbium is used in the production of special steels, stainless steels and superalloys for solid solution strengthening, precipitation hardening, deoxidation, desulphurization and many other processes.
Know MoreNickel Magnesium Alloys are master alloys of Magnesium with Nickel. They facilitate small additions of Magnesium to Iron, which transforms graphite flakes to spheroids.
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