Titanium 13V-11Cr-3Al

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Annealing Procedure

Full annealing can be obtained by heating to 1450 F for 15 minutes, followed by air cooling. For STA condition, hold at 900 F for 4 hours and air cool.

Applications

High strength airframe components including wire springs.

Cold Workability

The cold working characteristics of this alloy are similar to those found in austenitic stainless steels. In multiple forming operations, intermediate stress relieving is recommended to offset the alloy's tendency to work harden. Post-work annealing is recommended to reattain maximum performance characteristics.

Forgeability

Recommended forging temperatures are between 1950 and 2150 F.

Formability

This alloy can be hot or cold formed and will exhibit characteristics equivalent to those found in a 1/8 to 1/4 hard austenitic stainless steel.

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) 1325

Principle Design Features

This is a heat treatable, beta alloy titanium generally considered for high strength applications. It combines good fabricability with excellent corrosion resistance and mechanical properties. It is not generally available at the distributor level, but is widely available from producers in sheet, strip, plate, forgings and wire. Beta Transus (F +/- 25) 1325.

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

4917,4959,F-83142,T-9046,T-9047,R58010

Chemical Elements

Aluminum2.5 - 3.5
Carbon0.05 max
Chromium10 - 12
Hydrogen 20.025 max
Iron0.35 max
Nitrogen0.05 max
Oxygen 20.17 max
TitaniumBalance
Vanadium12.5 - 14.5

Physical Properties

Density: 0.175lb/in³Density

Electrical Resistivity: 140µΩ·cmElectrical Resistivity

Mechanical Properties

Modulus of Elasticity – Tension: 15MSIModulus of Elasticity – Tension

Thermal Conductivity: 0.3333BTU/hr·ft·°FThermal Conductivity

Thermal Expansion

ConditionMinMaxExpansion Coefficient
Annealed32 °F400 °F5.4 μin/in·°F
Annealed32 °F1000 °F5.9 μin/in·°F

Mechanical Test Data

FormSheet
ConditionSolution Annealed & Aged
Temperature70°F
Elongation4%
Tensile Strength170 KSI
Yield Strength160 KSI
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