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nitronic 60(tm) super alloy material property data sheet - product availability and request a quote

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Metal Suppliers Online: Material Property Data

Super Alloy Nitronic 60(tm)


Availability

Super Alloy Nitronic 60(tm) is stocked by 28 North American distributors and produced by 22 large mills. Distributors will offer small quantity buys while mills will generally only sell large quantities, with delivery times anywhere from 10 to 50 weeks depending on size and form required

This material is stocked primarily in Bar Products by 16 distributors but is also available to a lesser extent in Wire Products, Flat Rolled Products, Fasteners, Forging Products, Piping Components, Tubular Products, and Casting Products.

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Specifications

The following specifications cover Super Alloy Nitronic 60(tm)

  • AMS 5848
  • ASTM A193 (B8S, B8SA)
  • ASTM A194 (B8S, B8SA)
  • ASTM A240
  • ASTM A276
  • ASTM A479
  • ASTM A555
  • ASTM A580
  • UNS S21800

Property Results

Related Metals:


Chemistry Data : [top]

Carbon

0.1 max

Chromium

16 - 18

Iron

Balance

Manganese

7 - 9

Nickel

8 - 9

Nitrogen

0.08 - 0.18

Phosphorus

0.04 max

Silicon

3.5 - 4.5

Sulphur

0.03 max


Principal Design Features Designed to be the best non-galling stainless steel. Outperforms 304 in corrosion resistance and 316/ 316L in pitting resistance.

Applications Found in a variety of high wear applications where galling and seizing are a concern. Bridge spacers, internal combustion valves and seats, fasteners, pump components and pin and roller bearings.

Machinability Slow speeds, positive feeds and abundant resulphurized lubricant are essential to success in machining this alloy. Speeds and feeds similar to those employed with 316 or 317 stainless are appropriate here. All common machining practices can be used on this material. Chips will be tough and stringy and it is recommended that curlers or breakers are used.

Forming All common forming techniques can be used with this alloy. Springback will be greater than with standard austenitics and should be taken into consideration when choosing the appropriate forming forces. Process annealing is recommended to remove stresses resulting from this alloys' high work hardening rate. Heat to 1950 F(1065 C) for intermediate anneal.

Welding Pre-heating is not required with this material and all common welding methods including gas tungsten arc, gas metal arc and submerged arc are acceptable. Filler metal selection should be of similar chemistry for maximum strength and resistance to intergranular attack.

Forging Heat to 2000 F, soak to equalize, then heat to 2150 and equalize prior to forging.

Annealing Soak at 1900-2050 F, quench quickly in air or water.

Hardening Hardening this alloy requires cold working. It will not harden with exposure to thermal treatment.

Physical Data : [top]

Density (lb / cu. in.) 0.28
Specific Heat (Btu/lb/Deg F - [32-212 Deg F]) 0.11
Poissons Ratio 0.298
Modulus of Elasticity Tension 29


Mechanical Data : [top]

MSO currently has no data available for this grade.



Videos :

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