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titanium

TA7 titanium alloy rod
chemical composition
Al Sn Fe C N H Cr Other single Other total More
TA2 4.0~6.0 2.0~30 ≤0.05 ≤0.10 ≦0.05 O 18:00/20:00 ≤0.1 ≤0.4 Ti: margin

TA7 titanium alloy rods offer excellent mechanical properties, including high strength and toughness, allowing them to maintain stable performance in extreme environments. Furthermore, their light weight and high specific strength and stiffness significantly reduce structural weight and improve equipment performance.

TA7 titanium alloy rods offer excellent corrosion resistance, particularly in seawater and hot and humid environments, making them widely used in aerospace and other fields. They also offer excellent high-temperature resistance, maintaining stable performance at elevated temperatures, making them suitable for the manufacture of structural components in high-temperature environments.

TA2 titanium alloy rod
chemical composition
Fe C N H Y O Other single Other total More
TA2 ≤0.3 ≤0.08 ≤0.03 ≤0.015 ≤0.005 ≤0.05 ≤0.1 ≤0.4 Ti: margin

TA2 titanium alloy rod is a pure, unalloyed titanium material, primarily composed of pure titanium, with only trace amounts of oxygen, nitrogen, and carbon. As a titanium alloy with moderate strength yet excellent toughness, these favorable mechanical properties make TA2 titanium rods less susceptible to permanent deformation or damage when subjected to external forces. In addition to its excellent mechanical properties, TA2 titanium alloy rods also possess exceptional corrosion resistance, resisting corrosion from most inorganic and organic acids, alkalis, and saline solutions, and performing exceptionally well in harsh chemical and marine environments.

At the same time, TA2 titanium rods also have the characteristics of low density and good biocompatibility, which also makes them popular in aerospace, medical equipment and other fields. In general, TA2 titanium alloy rods are a titanium material with excellent performance. With its excellent comprehensive performance, it has been widely used in many industrial fields.

TC11 titanium alloy rod
chemical composition
Ai Mo Zr Si Fe C N H 0 Other single Other sums
TC11 5.8~7.0 2.8~38 0.8~2.0 0.2~0.35 ≤0.25 ≤0.1 ≤0.05 ≤0.012 ≤0.15 ≤0.1 ≤0.4

TC11 titanium rod is an α-β heat-resistant titanium alloy with a chemical composition of 6.5% aluminum, 3.5% molybdenum, 1.5% zirconium, and 0.3% silicon. TC11 titanium rod exhibits excellent thermal strength, maintaining high-temperature strength and creep resistance for extended periods below 500°C. This titanium rod not only offers good hot working properties but also exhibits excellent mechanical properties and corrosion resistance.

It is widely used in aerospace, oil extraction equipment, shipbuilding and automobile fields. Its high strength, light weight and high temperature resistance make it an ideal material for manufacturing high-demand parts.

Titanium alloy rod TA1
chemical composition
Fe C H N O Other single Other total More -
TA1 ≤0.25 ≤0.1 ≤0.015 ≤0.03 ≤0.2 ≤0.1 ≤0.4 Ti: margin -

TA1 titanium rod is an industrially pure titanium material favored for its high strength, low density, and excellent corrosion resistance. TA1 titanium rod has high formability and corrosion resistance, as well as excellent impact toughness and stable performance under high and low temperature conditions.

This type of titanium rod is widely used in aerospace, marine engineering, chemical equipment, medical equipment and other fields. TA1 titanium rod has low density and light texture, but has high strength and excellent acid and alkali corrosion resistance, making it perform well in extreme environments.

Titanium Alloy Rod T4C
chemical composition
Fe C N V Ai H O Other single Other total
TC4 ≥0.3 ≥0.08 ≥0.05 3.5~4.5 5.5~6.75 ≥0.015 ≥0.2 ≥0.1 ≥0.4

TC4 titanium alloy rod, also known as Ti-6Al-4V, is an α+β type titanium alloy containing 6% aluminum and 4% vanadium. It has high strength, low density, excellent corrosion resistance, good toughness and weldability. This titanium alloy is widely used in the aerospace field to manufacture aircraft parts and engine components; in the automotive industry, TC4 titanium alloy can significantly reduce the weight of parts, improve fuel efficiency and performance; in medical devices, due to its biocompatibility, it is often used to manufacture artificial joints. In addition, it is also used in some key components in the petrochemical, shipbuilding and power industries, such as gas turbine blades, etc.