Aerospace Titanium Plate
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Aerospace Titanium Plate

Aerospace Titanium disc (GR23、GR5)
Stress relief state (m): hot working state (R)
Diameter: 150-260mm Height: 30 ~ 135mm
The stress relief temperature of cake material is 650 ℃± 10 ℃, holding for 60min and air cooling. The ingot for cake material shall be melted in vacuum consumable electric arc furnace for at least two times.
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Product Introduction
Products Description

 

Aerospace Titanium Plate (titanium disks )14.75 mm diameter;0.8 mm thick) were fabricated from sheets of either commercially pure titanium (Ti: medical grade 2, ASTM F67, 'unalloyed Ti for medical applications') or titanium-6 wt% aluminum-4 wt% vanadium alloy (Ti–6Al–4 V; Ti-A) obtained from Timet, Inc. (O'Fallon, MO).

Aerospace Titanium Plate (GR23,GR5)

Stress relief state (m): hot working state (R)

Diameter: 150-260mm

Height: 30 ~ 135mm

 

Titanium Aerospace Forging Plate

The stress relief temperature of cake material is 650 ℃± 10 ℃, holding for 60min and air cooling.

The ingot for cake material shall be melted in vacuum consumable electric arc furnace for at least two times.

Ti Standard: ASTM B381, ASME SB381

Ti Grade: Grade 1, Grade 2, Grade 3, Grade 5, Grade 6, Grade 7, Grade 9, Grade 12

Ti Plate Dimensions: Diameter < 1800mm

Rating: 4.8 / 5 based on 22 customer reviews

Titanium Ring

Titanium Forgings and Castings

 

Forged titanium has anti-corrosive properties and hence it can be used in marine, saltwater environments and off-shore requirements. Titanium forging is heavily used in applications that are required in aerospace, industrial units, naval etc. This is because it is capable of withstanding any kind of intense conditions or harsh environments. It has the highest strength to density ratio within the metallic elements range.

 

Titanium Forging Products

Some of the products that can be assembled using titanium forging include submarines, ships, heat exchangers, aircraft, rockets, helicopters, pressure vessels etc. There are three types of titanium forging alloys, mainly alpha alloys, beta alloys and alpha-beta alloys. The alpha alloys are designed to be resistant even at elevated temperatures, which can sometimes exceed 535°C (1000°F). The alpha-beta alloys include a combination of alpha and transformed beta microstructures, which are at room temperature. The beta alloys contain sufficient alloy content that helps to retain the beta phase at room temperature.

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