AA 6262 Aluminium Alloys

Material group: Nonferrous Alloys / Aluminium Alloys
Country / Standard: United States / AA
Indicative price:

Data updates

Latest Update: 2021-02
Total number of updates: 4
Update History
2020-07 2019-05 2016-02

This material has 478 properties — only a subset is shown here.

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AA 6262 Chemical Composition

CRITERIA
VALUE
UNIT
CAS NUMBER
CRITERIA
Al
VALUE
Remainder
UNIT
%
CAS NUMBER
7429-90-5
CRITERIA
Bi
VALUE
0.40 – 0.7
UNIT
%
CAS NUMBER
7440-69-9
CRITERIA
Cr
VALUE
0.04 – 0.14
UNIT
%
CAS NUMBER
7440-47-3
CRITERIA
Cu
VALUE
val1
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UNIT
%
CAS NUMBER
7440-50-8
CRITERIA
Fe
VALUE
val1
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UNIT
%
CAS NUMBER
7439-89-6
CRITERIA
Mg
VALUE
val1
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UNIT
%
CAS NUMBER
7439-95-4
CRITERIA
Mn
VALUE
val1
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UNIT
%
CAS NUMBER
7439-96-5
CRITERIA
Other each
VALUE
val1
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UNIT
%
CAS NUMBER
CRITERIA
Other total
VALUE
val1
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UNIT
%
CAS NUMBER
CRITERIA
Pb
VALUE
val1
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UNIT
%
CAS NUMBER
7439-92-1
CRITERIA
Si
VALUE
val1
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UNIT
%
CAS NUMBER
7440-21-3
CRITERIA
Ti
VALUE
val1
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UNIT
%
CAS NUMBER
7440-32-6
CRITERIA
Zn
VALUE
val1
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UNIT
%
CAS NUMBER
7440-66-6

International alloy designations and chemical composition limits for wrought aluminum and wrought aluminum alloys - Teal Sheets (2025), 2025

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AA 6262 Physical Properties


Temperature

PROPERTY / VALUE
Modulus of Elasticity
68 — 79 GPa
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Electrical Resistivity
0.038 — 0.0392 Ω∙mm²/m
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Density
val1
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kg/dm³
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Electrical Conductivity
val1
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S/m
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Melting Temperature
val1
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°C
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Thermal Conductivity
171.544 — 172 W/(m∙°C)
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Poisson Coefficient
val1
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AA 6262 Heat Treatments


  • The times and temperatures are typical for various forms, sizes and methods of manufacture and may not exactly describe the optimum treatment for a specific item.

    The nominal temperatures at which metal is heated (applies both for solution and precipitation heat treatment) should be attained as rapidly as possible and maintained ± 5°C of nominal during the time at temperature.

    The time at precipitation heat treatment temperature will depend on time required for load to reach temperature. The times shown are based on rapid heating, with soaking time measured from the time the load reached within 5°C of the applicable temperature.

    Material should be quenched from the solution heat-treating temperature as rapidly as possible and with minimum delay after removal from the furnace. Quenching is typically performed by immersion of wrought products in a cold water bath, although some forgings are quenched in hot-water. Quenching may be performed by alternative means such as total immersion in an aqueous polymer solution, liquefied gas, hot water, or boiling water, or by air blast or fog to minimize distortion provided samples from the material. The use of high-velocity high-volume jets of cold water is also effective for some materials.

    For rolled or cold finished wire, rod and bar

    Temper T4: Solution heat treated at 540°C, quenched, naturally aged. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T451: Solution heat treated at 540°C, quenched, naturally aged. Stress-relieved by stretching is required to produce a specified amount of permanent set subsequent to solution heat treatment. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T42: Solution heat treated at 540°C, quenched, naturally aged. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T6: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 8 hours.

    Temper T9: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 12 hours. Cold work subsequent to precipitation heat treatment is required to attain the specified mechanical properties for this temper.

    Temper T651: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 8 hours. Stress-relieved by stretching is required to produce a specified amount of permanent set prior to any precipitation heat treatment.

    Temper T62: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 8 hours.

    For extruded rod, bar, profiles and tube

    Temper T4: Solution heat treated at 540°C, quenched, naturally aged. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T4510: Solution heat treated at 540°C, quenched, naturally aged. Stress-relieved by stretching is required to produce a specified amount of permanent set subsequent to solution heat treatment. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T4511: Solution heat treated at 540°C, quenched, naturally aged. Stress-relieved by stretching is required to produce a specified amount of permanent set subsequent to solution heat treatment. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T42: Solution heat treated at 540°C, quenched, naturally aged. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T6: Solution heat treated at 540°C, quenched, precipitation heat treated at 175° for 12 hours.

    Temper T6510: Solution heat treated at 540°C, quenched, precipitation heat treated at 175° for 12 hours. Stress-relieved by stretching is required to produce a specified amount of permanent set prior to any precipitation heat treatment.

    Temper T6511: Solution heat treated at 540°C, quenched, precipitation heat treated at 175° for 12 hours. Stress-relieved by stretching is required to produce a specified amount of permanent set prior to any precipitation heat treatment.

    Temper T62: Solution heat treated at 540°C, quenched, precipitation heat treated at 175° for 12 hours.

    For drawn tube

    Temper T4: Solution heat treated at 540°C, quenched, naturally aged. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T42: Solution heat treated at 540°C, quenched, naturally aged. By definition, this temper designation is that which would apply after natural aging even though mechanical properties for this alloy-temper product have not been registered.

    Temper T6: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 8 hours.

    Temper T9: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 8 hours. Cold work subsequent to precipitation heat treatment is required to attain the specified mechanical properties for this temper.

    Temper T62: Solution heat treated at 540°C, quenched, precipitation heat treated at 170° for 8 hours.

AA 6262 Mechanical Properties


Temperature

PROPERTY / VALUE
Tensile Strength
≥ 260 MPa
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Elongation, A
val1
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%
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Yield Strength, Rp0.2
val1
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MPa
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AA 6262 International Equivalent Materials


Showing 15 of 162 results.

MATERIAL
STANDARD
COUNTRY / PRODUCER
EQUIVALENCE CATEGORY
MATERIAL
STANDARD
UNS
COUNTRY / PRODUCER
United States
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
EN
COUNTRY / PRODUCER
European Union
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
EN
COUNTRY / PRODUCER
European Union
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
AFNOR NF
COUNTRY / PRODUCER
France
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
AFNOR NF
COUNTRY / PRODUCER
France
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
ASRO
COUNTRY / PRODUCER
Romania
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
ASRO
COUNTRY / PRODUCER
Romania
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
B.S.
COUNTRY / PRODUCER
United Kingdom
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
B.S.
COUNTRY / PRODUCER
United Kingdom
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
BDS
COUNTRY / PRODUCER
Bulgaria
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
ISO
COUNTRY / PRODUCER
International
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
ISO
COUNTRY / PRODUCER
International
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
BDS
COUNTRY / PRODUCER
Bulgaria
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
CSN
COUNTRY / PRODUCER
Czech Republic
EQUIVALENCE CATEGORY
Official
MATERIAL
STANDARD
CSN
COUNTRY / PRODUCER
Czech Republic
EQUIVALENCE CATEGORY
Official

Equivalence categories reflect chemical-composition and mechanical-property comparison — always verify suitability against the governing specification for your application.

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  • 162Cross References

  • 26Composition
  • 108Mechanical Properties
  • 22Physical Properties
  • 1Heat Treatment
  • 1Metallography
  • 1Machinability

  • 19Stress-Strain
  • -Formability
  • 5Fatigue
  • -Fracture
  • 1Creep

  • -Joints
  • -Coatings
  • -Dimensions
  • -Tribology

  • -Corrosion
  • 40Ageing
  • -Weatherability
  • -Irradiation

  • 92Total Suppliers