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Ensinger PEI
TIMET TIMETAL® 6-4 Titanium Alloy (Ti-6Al-4V; ASTM Grade 5), >1.000-1.500 in, STD, Per Mil-T-9047G
Categories: Metal; Nonferrous Metal; Titanium Alloy; Alpha/Beta Titanium Alloy

Material Notes: Medium To High Strength General-Purpose Alloy. Minimum tensile property data below are specific to >1.000-1.500 in, STD, Per Mil-T-9047G; other specific form/thickness entries are also available in MatWeb.

Industry Specifications: USA Aerospace: AMS 4911, 4928, 4932, 4935, 4954, 4965, 4967. Germany Engineering: 3.7165. Germany Aerospace: 3.7164. France: T-A6V. UK Aerospace Specifications BS TA. 10,11, 12, 13, 28, 56 DTD 5363.

Features: A versatile medium strength alloy, the "workhorse" TIMETAL 6-4 exhibits good tensile properties at room temperature, creep resistance up to 325°C and excellent fatigue strength. It is often used in less critical applications up to 400°C. TIMETAL 6-4 is the alloy most commonly used in wrought and cast forms. Palladium or ruthenium can be added for increased corrosion resistance. Most properties are affected by the microstructure, which is determined by the thermomechanical history. It is highly resistant to general corrosion in sea water. This alloy is available in most common product forms including billet, bar, wire, plate, and sheet.

Data provided by TIMET.

Key Words: Ti-6-4; UNS R56400; ASTM Grade 5 titanium; Ti6Al4V, Ti64, Titanium 6-4
Vendors:
Available Properties
  • Density, Typical
  • Tensile Strength, Ultimate
  • Tensile Strength, Yield
  • Elongation at Break
  • Reduction of Area
  • Modulus of Elasticity, varies with heat treatment and texture
  • Modulus of Elasticity, varies with heat treatment and texture
  • Poissons Ratio
  • Shear Modulus
  • Bend Radius, Minimum, Typical; sheet
  • Electrical Resistivity
  • Electrical Resistivity
  • Electrical Resistivity
  • Electrical Resistivity
  • Magnetic Permeability, at 20 Oersted
  • CTE, linear
  • CTE, linear
  • CTE, linear
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Thermal Conductivity
  • Thermal Conductivity
  • Thermal Conductivity
  • Melting Point
  • Liquidus
  • Liquidus
  • Maximum Service Temperature, Air, Reasonable mechanical properties retained
  • Beta Transus
  • Aluminum, Al
  • Carbon, C
  • Hydrogen, H
  • Iron, Fe
  • Nitrogen, N
  • Other, each
  • Other, total
  • Oxygen, O
  • Titanium, Ti, Calculated as remainder
  • Vanadium, V
  
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