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Titanium-metal

Chemical composition of titanium rolled products.

Mark Others V Zr H Si Cr Sn Fe O Al N Mn C
BT1−00 0.1 0.008 0.08 0,15 0.1 0.04 0.05
VT1−2 0.3 0.01 0,15 1.5 0.3 0,15 0.1
VT1−0 0.3 0.01 0.1 0.3 0.2 0 0.1
VT3−1 0.3 0.5 0,015 0.15−0.40 0.8−2.0 0.2−0.7 0,15 5.5−7.0 0.05 0.1
OT4−0 0.3 0.3 0.012 0.12 0.3 0,15 0.4−1.4 0.05 0.5−1.3 0.1
OT4 0.3 0.3 0.012 0.12 0.3 0,15 3.5−5.0 0.05 0.8−2.0 0.1
OT4−1 0.3 0.3 0.012 0.12 0.3 0,15 1.5−2.5 0.05 0.7−2.0 0.1
VT5−1 0.3 1 0.3 0,015 0.12 2.0−3.0 0.3 0,15 4.3−6.0 0.05 0.1
VT5 0.3 1.2 0.3 0,015 0.12 0.3 0.2 4.5−6.2 0.05 0.1
VT6 0.3 3.5−5.3 0.3 0,015 0.1 0.6 0.2 5.3−6.8 0.05 0.1
VT8 0.3 0.5 0,015 0.20−0.40 0.3 0,15 5.8−7.0 0.05 0.1
VT6s 0.3 3.5−4.5 0.3 0,015 0,15 0.25 0,15 5.3−6.5 0.04 0.1
VT9 0.3 1.0−2.0 0,015 0.20−0.35 0.25 0,15 5.8−7.0 0.05 0.1
VT20 0.3 0.8−2.5 1.5−2.5 0,015 0,15 0.25 0,15 5.5−7.0 0.05 0.1
VT14 0.3 0.9−1.9 0 0.02 0.2 0.3 0.2 3.5−6.3 0.1 0.1
VT22 0.3 4.0−5.5 0.3 0,015 0,15 0.5−1.5 0.5−1.5 0.18 4.4−5.7 0.05 0.1
PT-7M 0.3 2.0−3.0 0.006 0.12 0.25 0,15 1.8−2.5 0.04 0.1
PT-3B 0.3 1.2−2.5 0.3 0.006 0.12 0.25 0,15 3.5−5.0 0.04 0.1
2B 0.3 1.0−2.0 0.1 0.2 0.12 1.5−2.5 0.04 0.7
5B 0.3 1.0−1.9 0.1 0.12 0.25 0.13 4.7−6.3 0.04 0.06−0.14
3M 0.3 3.5−5.0 0.3 0.1 0.2 0,15 0.2−0.7 0.04 0.1
14 0.3 0.5−2.5 0.3 0.12 0.25 0,15 3.5−5.6 0.04 0.1
AT3 0.3 0.008 0.20−0.40 0.2−0.5 0,15 2.0−3.5 0.05 0.1
40 0.3 0.5−2.5 0.3 0.12 0.25 0.14 1.5−3.5 0.04 0.07
JV 17 1.4 5.6 5.1

RELEVANCE

In its pure form, titanium is twice as lighter than steel with equal strength. It has a high melting point, poor thermal conductivity and poor antifriction properties. Good ductility makes it available to cold forming and pressing. Because of the laboriousness of obtaining titanium in its pure form, its cost is quite high. Titanium surpasses steel alloys for corrosion resistance. It is light, strong, durable. This metal is today by popularity and inferior only to aluminum and iron. The production of titanium is associated with a number of difficulties, but today, without any exceptional advantages of titanium, no industry can manage. Despite the considerable cost price, titanium in the long term pays off, t. Is almost an eternal metal. Such material is indispensable in shipbuilding, rocket and aircraft building. Advantages of it are significantly improved by doping. In metallurgy, titanium itself in the form of an alloying element increases the strength and corrosion resistance of steels. Due to high specific strength, chemical resistance, it is relevant in the production of chemical reactors, special pumps and pipelines. Possessing a biological inertness, it is indispensable as a material for prosthetic joints.

Titanium wire.

Titanium Make V Al Mo   Si C Zr Fe H O N Others
the basis VT-6 St. 2.5−3.5 3.5−4.5 0.1 0.05 0,15 0.003 0.12 0.04 0.3
the basis VT-2 St. 2.0−3.0 0.1 0.05 0,15 0.003 0.12 0.04 0.3
the basis VT20−1 st. 0.5−1.5 2.0−3.0 0.5−1.5 0.1 0.05 1.0−2.0 0,15 0.003 0.12 0.04 0.3
the basis SPT-2 St. 2.5−3.5 3.5−4.5 0.1 0.05 1.0−2.0 0,15 0.003 0.12 0.04 0.3
the basis VT20−2 St. 0.5−1.5 3.5−4.5 0.5−1.5 0.1 0.05 1.0−2.0 0,15 0.003 0.12 0.04 0.3

Titanium alloys foundry.

Titanium Make V Al Si O Fe H C N Others
the basis TL5 1.5−2.5 3.5−5.0 0,15 0,15 0.25 0.008 0.1 0.04 0.5
the basis TL3 0,15 3.0−4.5 0.12 0,15 0.25 0.006 0.1 0.04 0.5

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