Feb 23, 2024 Leave a message

Classification And Properties Of Titanium Rods

Titanium is a general statement, titanium is divided into many types such as: titanium bar, titanium plate, titanium tube and so on.

Pure titanium rods

TA1, TA2, and TA3 are industrially pure titanium, and these three different materials differ only in their oxygen and iron content, so TA2 titanium rods are known as the commercially pure "workhorse", providing useful strength for a wide range of applications.

Comparing TA2 titanium to TA1 titanium, TA2 titanium is slightly stronger and has excellent weldability, strength and ductility, ultimately making it the industry's regular choice.

Titanium Alloy Bar

Titanium is alloyed with interstitial metals by forming alloys for greater strength. Combining the properties of titanium with other metals will provide a reliable metal with excellent quality.

TC4/Gr5 (Ti-6Al-4V) Titanium Alloy Bar

As the "workhorse" titanium alloy, TC4 has a myriad of benefits, which is why it is so popular. While TC4 titanium is known for its high strength and low weight, it can be heat treated to increase its strength. Like any other titanium bar or sheet, TC4 titanium is also corrosion resistant.

TC4 titanium is used in the following industries; aerospace, marine and medical, and also for chemical processing. In addition to this, these titanium rods are also used in the manufacture of aircraft turbines, engine components and automated parts.

TC11 Titanium Alloy Rods

TC11 titanium alloy has a nominal composition of Ti-6.5Al-3.5Mo-1.5Zr-0.3Si and is an alpha-beta type titanium alloy heat resistant titanium alloy with an aluminium equivalent of 3.5 and a molybdenum equivalent of 7.3.

TC11 titanium alloy is a high-temperature titanium alloy with wider aviation applications and a service temperature of 500°C. It is mainly used in the parts and components of aero-engine compressors, such as blades, discs, drums and shafts. Can also be made into shaped castings, the use of the working conditions of the parts for the annealed state can be used for 500 ℃ below 500 hours and 550 ℃ below 100 hours as well as 450 ℃ below 1,000 hours, in the strengthened state can be used for 500 ℃ below 100 hours of work in the parts and in the 700 ℃ below the disposable work of the parts.

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