UNS N07001 AMS 5586 Welded Tube Nickel Alloys

UNS N07001 AMS 5586 Welded Tube Nickel Alloys Manufacturer

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Waspaloy (also known as Alloy 685) is a nickel base, age hardenable superalloy with excellent high-temperature strength and good corrosion resistance by combustion products, notably to oxidation, at service temperatures of up to 1200°F (650°C) for critical rotating applications, and up to 1600°F (870°C) for less demanding applications. At temperatures over 1600°F (870°C), intergranular oxidation can occur. 

The corrosion resistance is very good even after numerous cycles of elevated temperature exposure, or constant exposure to temperatures of up to 1900°F (1038°C). For the best possible corrosion resistance, solution-treated material is recommended. Waspaloy is also known to behave well in atmospheres in gas turbine engine service and salt spray environments.

Due to these properties, Nickel Waspaloy finds use in gas turbine engine components and aircraft jet engines, such as compressor disks, rotor disks, shafts, spacers, seals, rings, and casings.

Tech Steel & Materials offers Nickel Waspaloy in 8 sub-type specifications and in multiple shapes/forms:

  • AMS 5544 (Plate, Sheet, and Strip)
  • AMS 5586 (Tubing)
  • AMS 5704 (Forging)
  • AMS 5706 (Bar, Forging, and Ring)
  • AMS 5707 (Bar, Forging, and Ring)
  • AMS 5708 (Bar, Forging, and Ring)
  • AMS 5709 (Bar and Forging)
  • AMS 5828 (Wire)

 

Chemical Composition of Nickel Waspaloy

 

Chemical Composition of Nickel Waspaloy (Nominal Composition Alloy 685)

Element

minmax
Carbon0.020.10
Manganese0.10
Silicon0.15
Phosphorus0.015
Sulfur0.015
Chromium18.0021.00
Cobalt12.0015.00
Molybdenum3.505.00
Titanium2.753.25
Aluminum1.201.60
Zirconium0.020.08
Boron0.0030.010
Iron2.00
Copper0.10
Lead0.0005 (5 ppm)
Bismuth0.00003 (0.3 ppm)
Selenium0.0003 (3 ppm)
Silver0.0005 (5 ppm)
Nickel*remainder

 

*Not exclusively to the element mentioned, but that one predominates other elements that are used only in minimal quantities.

 

Fabrication and Working Instructions for Waspaloy

 

Waspaloy can be hot-worked in the temperature range of 2140-1800°F (1170-980°C), and cold-worked by hydroforming, drawing, spinning, bending, and rolling. That said, this nickel base alloy is difficult to machine and special instructions must be followed.

 

Physical Constants of Waspaloy (Alloy 685)

UNS N07001 AMS 5586 Welded Tube Nickel Alloys
Density0.296 lb/in3
8.19 g/cm3
Melting Range2425-2475°F (1330-1360°C)
Coefficient of Thermal Expansionat 70-200°F (21-93°C) – 6.8 x 10-6 in/in/°F
at 70-1000°F (21-583°C) – 7.7 x 10-6 in/in/°F
at 70-2000°F (21-1093°C) – 10.4 x 10-6 in/in/°F
Electrical ResistivitySolution treated at 1975°F (1080°C) and cooled for 4 hours – 1.24 microhm•m (0.38 microhm•ft)
Fully age hardened at 1550°F (845°C), and cooled for 24 hours + reheat to 760°C (1400°F), and cooled for 16 hours – 1.20 microhm•m (0.37 microhm•ft)
Modulus of Elasticity (Dynamic)at 70°F (21°C) – 30.3 x 103 ksi (211 GPa)
at 1000°F (538°C) – 26.7 x 103 ksi (184 GPa)
at 1600°F (871°C) – 22.7 x 103 ksi (157 GPa)
Magnetic Permeability (200 oersteds)Solution treated + aged – 1.004
  

 

Minimum Tensile Properties (Room Temp)

 

PropertyValue
Tensile Strength175 ksi
Yield Strength at 0.2% Offset120 ksi
Elongation in 4D15%
Reduction of Area18%

 

Heat Treating Nickel Waspaloy

 

Nickel Waspaloy is heat treated in a three-step sequence. There are two different treatments available, both giving different properties to the alloy:

For parts that require optimum tensile properties at room temperature and high-temperature environments: 

  • Solution treatment – heat at 1825-1895°F (995-1035°C), and then oil quench for 4 hours;
  • Stabilization – reheat to 1550°F (845°C), and air cool for 4 hours;
  • Age harden – reheat to 1400°F (760°C), and air cool for 16 hours to produce hardness of 33-44 Rockwell C;

Scale may be formed on the alloy during heat treatment in oxidizing atmospheres. However, this doesn’t affect the properties of the alloy and can be removed by acid pickling or mechanically.

temperature strength and good corrosion resistance by combustion products. This superalloy that can be used at temperatures up to 1200°F (650°C) for critical rotating applications, such as rotating parts, and up to 1600°F (870°C) for less demanding applications. 

This specification is available as welded and drawn tubing and commonly vacuum-induction and consumable electrode remelted. AMS 5586 is intended for parts that require high-temperature creep and stress rupture properties. The heat treatment is as follows:

  • Solution treatment – heat at 1975°F (1080°C), and air cool for 4 hours to produce hardness of 20-25 Rockwell C;
  • Stabilization – reheat to 1550°F (845°C), and air cool for 24 hours;
  • Age harden – reheat to 1400°F (760°C), and air cool for 16 hours to achieve a hardness of 34-40 Rockwell C;

Please note that scale may be formed on the alloy during heat treatment in oxidizing atmospheres. However, this doesn’t affect the properties of the alloy and can be removed by acid pickling or mechanically.

AMS 5586 can be readily welded only in carefully controlled circumstances, using argon-arc methods and the Waspaloy AMS 5828 filler metal. Welds should be avoided in high-stress environments.

Hot working of AMS 5586 is done at 2140-1800°F (1170-980°C), while hydroforming, drawing, spinning, bending, and rolling can be used for cold working.

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