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Elmet Technologies

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Titanium Transage 175 ST 815°C, Aged 480°C (900°F)
Categories: Metal; Nonferrous Metal; Titanium Alloy; Beta Titanium Alloy

Material Notes:

Characteristics:

  • Martensitic alloy
  • High hardenability
  • Heat treatable
  • Good fatigue properties
  • Good fracture properties
  • Suitable for hot-working and cold-forming
  • Good castability and weld repair

5 other heat treatments of this alloy are in MatWeb.

Key Words: Ti-13V-2.7Al-7Sn-2Zr
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Physical PropertiesOriginal ValueComments
Density 4.70 g/cc
 
Mechanical PropertiesOriginal ValueComments
Tensile Strength 1081 MPa
@Temperature 427 °C
 1136 MPa
@Temperature 260 °C
Tensile Strength, Ultimate 1300 MPa
Tensile Strength, Yield 1250 MPa
 926 MPa
@Temperature 427 °C
 992 MPa
@Temperature 260 °C
Elongation at Break 10 %
 10 %
@Temperature 260 °C
 10 %
@Temperature 427 °C
Reduction of Area 39 %
 50 %
@Temperature 260 °C
 56 %
@Temperature 427 °C
Modulus of Elasticity 100 GPaSample was ST 815ºC, Aged 510ºC
Poissons Ratio 0.33Typical for beta titanium alloy.
Shear Modulus 37.6 GPaCalculated from typical values.
 
Electrical PropertiesOriginal ValueComments
Electrical Resistivity 0.000150 ohm-cmEstimated from similar high-V-stabilized beta titanium alloys.
 
Thermal PropertiesOriginal ValueComments
CTE, linear 8.50 µm/m-°C
@Temperature 20.0 - 100 °C
Typical beta titanium alloy
Specific Heat Capacity 0.525 J/g-°CTypical value for titanium alloys.
Thermal Conductivity 7.80 W/m-KEstimated from similar high-V-stabilized beta titanium alloys.
Beta Transus 750 °C
 
Component Elements PropertiesOriginal ValueComments
Aluminum, Al 2.7 %
Boron, B <= 0.030 %
Carbon, C <= 0.080 %
Hydrogen, H <= 0.015 %
Iron, Fe <= 0.20 %
Nitrogen, N <= 0.050 %
Other, each <= 0.10 %
Other, total <= 0.40 %
Oxygen, O <= 0.15 %
Tin, Sn 7.0 %
Titanium, Ti 75 %
Vanadium, V 13 %
Yttrium, Y <= 0.0050 %
Zirconium, Zr 2.0 %

References for this datasheet.

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MTB331 / 14188

Ensinger PEI

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