Titanium 5Al-2.5V

Annealing Procedure

For full anneal, heat to 718-843 C(1325-1550 F) 4 hours, air cool. For intermediate stress relieving, heat to 538-650 C(1000-1200 F) for 1 hour, air cool.

Applications

Primarily employed in aircraft engine and airframe applications.

Cold Workability

The cold work characteristics of this material is similar to that of a moderately tempered austenitic stainless steel. In multiple cold forming operations, intermediate stress relief is recommended to prevent tearing or other material damage. Post-work annealing is required to reattain optimum performance characteristics.

Forgeability

Rough work at 1010-1038 C(1850-1900 F) and finish at 954-1010 C(1750-1850 F).

Formability

May be hot or cold formed using hydropress, power brake, stretch or drop hammer methods. Similar in characteristics to 300 series stainless steels.

Heat Treatability

This alloy is not hardenable by heat treatment.

Hot Workability

Hot forming will reduce both the springback and required forming forces, and will increase the overall ductility of the material.

Machinability

As a family, titanium and its alloys have developed a mystique as a nightmare to machine. This is simply not the case. Experienced operators have compared its characteristics to those found in 316 stainless steel. Recommended practice includes high coolant flow(to offset the material's low thermal conductivity), slow speeds and relatively high feed rates. Tooling should be tungsten carbide designations C1-C4 or cobalt type high speed tools.

Other Physical Properties

Beta Transus (F +/- 25) 1900

Principle Design Features

This non-heat treatable, alpha alloy combines good weldability with stability and excellent strength from cryogenic through elevated temperatures. It is available at the mill level in sheet, strip, plate, bar, billet, extrusions and wire. Beta Transus (F +/- 25) 1900.

Weldability

Rated as "good" in terms of weldability.

Known Forms

Billet

Billet

Coil

Coil

Disc

Disc

Flat Bar

Flat Bar

Foil

Foil

Hollow Bar

Hollow Bar

Ingot

Ingot

Pipe

Pipe

Plate

Plate

Ring

Ring

Rod

Rod

Round Bar

Round Bar

Round Tube

Round Tube

Sheet

Sheet

Square Bar

Square Bar

Strip

Strip

Additional Data

Specifications

4910,4926,4966,B265,B348,B381,F-83142,T-81556,T-81915,T-9046,T-9047,R54520

Chemical Elements

Aluminum4 - 6
Carbon0.08 max
Hydrogen 20.02 max
Iron0.5 max
Nitrogen0.05 max
Oxygen 20.2 max
Tin2 - 3
TitaniumBalance

Physical Properties

Density: 0.162lb/in³Density

Electrical Resistivity: 157µΩ·cmElectrical Resistivity

Melting Point: 2910°FMelting Point

Specific Heat: 0.125BTU/lb·°FSpecific Heat

Mechanical Properties

Modulus of Elasticity – Tension: 16MSIModulus of Elasticity – Tension

Reduction of Area: 25%Reduction of Area

Thermal Conductivity: 0.375BTU/hr·ft·°FThermal Conductivity

Thermal Expansion

ConditionMinMaxExpansion Coefficient
Annealed32 °F212 °F5.2 μin/in·°F
Annealed32 °F600 °F5.3 μin/in·°F
Annealed32 °F1000 °F5.3 μin/in·°F
Annealed32 °F1200 °F5.4 μin/in·°F
Annealed32 °F1500 °F5.6 μin/in·°F