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Titanium Alloy Tubes

Brand : Hagrien

Product origin : China


Titanium parts processing

1. Provide drawings: size specifications, material requirements, precision requirements, the number of processing, processing time.

2. Sample processing: reference size, reference material, design drawings, precision requirements, the number of processing, processing time.

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Titanium alloy tube description

Titanium alloy tube is made of titanium alloy tube, titanium alloy by the organization can be divided into three categories. (1 Titanium added aluminum and tin elements .2 Titanium joined aluminum chromium molybdenum vanadium and other alloying elements .3 Titanium joined by aluminum and vanadium and other elements.) They have high mechanical properties, excellent stamping properties, and can be done The kind of welding, welding joint strength up to 90% of the base metal strength, and cutting performance is good. Titanium corrosion resistance in seawater than aluminum, stainless steel, nickel-based alloys are also higher. Titanium water-resistant impact performance is also stronger.

National standard titanium tube grades: TA0, TA1, TA2, TA7, TA9, TA10

American Standard titanium tube grades: GR1, GR2, GR3, GR5, GR7, G

Russian standard titanium tube grades: BT1-00, BT1-0, BT1-2

Titanium tube production process: hot-rolled, cold-rolled, welded, welded - cold-rolled, spinning

Titanium tube Availability: Hot working condition (R) Cold working condition (Y) Annealing condition (M)

Titanium tube specifications: 5-110 * 1.0-4.5 * 2000-6000 (cold-rolled seamless)

110 above * 1.08 * 1000-2000 (welding);

150-2800 * 1.0-20 * 500-3000 (seamless)

Titanium is an important structural metal developed in the 1950s. Titanium is widely used in various fields due to its high strength, good corrosion resistance and high heat resistance. Many countries in the world recognize the importance of titanium alloy materials, have been carried out research and development, and has been the practical application.

Titanium is an allotrope, melting point of 1668 ℃, below 882 ℃ dense hexagonal lattice structure, known as α titanium; at 882 ℃ was above the body-centered cubic lattice structure, known as β titanium


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