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Aluminium 6061 (SAE)

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Einsatzbeispiele
  • Approximately used for intricate parts that are more difficult to forge in the harder alloys. Alloy 6061 is the most resistant to corrosion of any of the aluminum forging alloys.
  • In sheet, plate, extrusion, forging, structural shape, tube, rod and bar product form and temper T4, T6, T651 used in automotive application (reinforcements, structural and weldable, general purpose, mechanical fasteners).
  • Intended for use where good strength and workability are required. The T4510 and T6510 tempers are intended primarily to provide material with low residual stresses and consequent minimum distortion during machining. The T4511 and T6511 tempers are straightened T4510 and T6510 material, respectively, and may have unknown residual stresses and may or may not distort during machining.
  • Most commonly used for structural applications where strength, weldability and corrosion resistance are needed.
  • Parts which will be welded or brazed to assemblies and then given further heat treatment to develop the full strength of which the alloy is capable, but usage is not limited to such applications.
  • These bars have been used typically for parts where moderate ductility, formability, and response to precipitation heat treatment are required and where distortion during machining must be minimized, but usage is not limited to such applications.
  • These extrusions have been used typically for parts requiring moderate strength and where distortion during machining must be minimized, but usage is not limited to such applications.
  • These products have been used typically for complex, shaped parts requiring moderate strength and good forgeability of the material, but usage is not limited to such applications. Corrosion resistance of this alloy is superior to that of alloys having copper as the principal alloying element.
  • These products have been used typically for parts requiring moderate strength, especially where such parts require brazing or welding and where distortion during machining must be minimized, but usage is not limited to such applications.
  • These products have been used typically for parts requiring moderate strength, especially where such parts require brazing or welding during fabrication, but usage is not limited to such applications.
  • These products have been used typically for parts requiring moderate strength, especially where such parts require brazing or welding during fabrication, but usage is not limited to such applications. Brazed or welded parts may require additional heat treating to restore properties depending on application.
  • These products have been used typically for parts where strength is required and limited formability is acceptable, but usage is not limited to such applications.
  • These rings have been used typically for structural applications requiring material with moderate strength and excellent resistance to stress-corrosion cracking and where good stability is required during machining, but usage is not limited to such applications.
  • This product has been used typically for fabrication of diffusion-bonded, fiber-reinforced-composite tape, sheet, plate, and other structural forms, but usage is not limited to such applications.
  • This tubing has been used typically for aircraft hydraulic systems and fuel and oil lines to be formed in the solution heat treated condition and subsequently precipitation heat treated, but usage is not limited to such applications.
  • This tubing has been used typically for ducts requiring small radius bends and moderate strength after solution and precipitation heat treatment, but usage is not limited to such applications.
  • This tubing has been used typically for parts operating under high pressure, such as hydraulic systems and fuel and oil lines, but usage is not limited to such applications.
  • This tubing has been used typically for parts, such as conduits and low-pressure fluid lines, where moderate strength, ductility, and good weldability are required, but usage is not limited to such applications.
  • Used typically for complex shaped parts requiring moderate strength and good forgeability of the alloy and where stability is required during machining, but usage is not limited to such applications. Corrosion resistance of this alloy is superior to that of aluminum alloys having copper as the principal alloying element.
  • Used typically for parts requiring moderate ductility, formability, and response to precipitation heat treatment, but usage is not limited to such applications.
  • Used typically for parts requiring moderate strength where limited formability is acceptable, but usage is not limited to such applications.
  • Used typically for parts requiring moderate strength, especially where such parts require brazing or welding during fabrication, and for parts which are to be subsequently solution and precipitation heat treated, but usage is not limited to such applications. Product may also be used as stock for flash welded rings.
  • Used typically for parts requiring moderate strength, especially where such parts require brazing or welding during fabrication, but usage is not limited to such applications.
  • Used typically for parts where formability and moderate strength are required, but usage is not limited to such applications.
  • Used typically for parts where moderate formability and response to solution and precipitation heat treatment are required, but usage is not limited to such applications.
  • Used typically for parts, such as brackets, conduits, and low-pressure liquid lines, requiring moderate strength at ambient temperatures, but usage is not limited to such applications.

Physikalische Eigenschaften

Name Wert Messverfahren und -bedingungen
Dichte 2.7 – 2.713 kg/dm³
Mechanische Eigenschaften
 
0,2-%-Streckgrenze bei Zugbeanspruchung 41 – 305.1 MPa
Schlagenergie 12.1 – 21.8 J
Schubmodul 26 GPa
Zug-Elastizitätsmodul 68 – 72.4 GPa
Zugdehnung beim Bruch > 3 %
Zugfestigkeit > 121.2 MPa
Elektrische und magnetische Eigenschaften
 
spezifischer elektrischer Widerstand 0.03 – 0.043 Ω∙mm²/m
Thermische Eigenschaften
 
spezifische Wärmekapazität 848.28 – 872.286 J/(kg∙°C)
Wärmeleitfähigkeit 147.916 – 217.784 W/(m∙°C)

Daten bereitgestellt von

Key to Metals AG

IBDT Ingenieurbüro Daniel Trost
+49 176 703 22 119
Anfrage per E-Mail

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Letzte Aktualisierung: 31.03.2022
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