Stainless Steel 21-6-9 is stocked by 14 North American distributors and produced by 19 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 6 distributors but is also available to a lesser extent in Wire Products, Tubular Products, Flat Rolled Products, and Forging Products.
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Specifications
The following specifications cover Stainless Steel 21-6-9
- AMS 5561
- AMS 5562
- AMS 5656
- ASTM A269 (XM-10)
- ASTM A276 (XM-10)
- ASTM A312 (XM-10)
- ASTM A314 (XM-10)
- ASTM A412 (XM-10)
- ASTM A479 (XM-10)
- ASTM A580 (XM-10)
- ASTM A813 (XM-10)
- ASTM A814 (XM-10)
- UNS S21900
Property Results
Related Metals:
- 21Cr-6Ni-9Mn(tm)
- Nitronic 40(tm)
Chemistry Data : [top]
Carbon
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0.08 max |
Chromium
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19 - 21.5 |
Iron
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Balance |
Manganese
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8 - 10 |
Nickel
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5.5 - 7.5 |
Nitrogen
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0.15 - 0.4 |
Phosphorus
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0.06 max |
Silicon
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1 max |
Sulphur
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0.03 max |
Principal Design Features
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High manganese and nitrogen strengthening result in a combination of high temperature oxidation resistance, excellent toughness at cryogenic temperatures and above average corrosion properties. Maximum temperature for continuous service is less than 1600 F (871 C). This alloy retains excellent toughness down to -423 F(-230 C).
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Applications
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Aircraft components, steam and autoclave parts, chemical and pollution control equipment.
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Machinability
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Due to its relatively high work hardening rate, 21-6-9 is more difficult to machine than most of the austenitic/ 300 series stainless grades. It is quite similar to type 316 stainless. Slow speeds, positive feeds and ample cutting fluids are recommended to overcome work hardening.
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Forming
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The yield strength of this alloy is nearly double that of conventional 304 stainless. This should be taken into consideration when choosing techniques and required forming pressures.
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Welding
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TIG, MIG and SMAW methods have been successfully employed. To obtain optimum service performance, AWS E/ER219 filler metal is recommended. Post-weld annealing is required to maximize corrosion resistance.
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Heat Treatment
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Stress relieving should be performed to optimize performance in operating environments below 1300 F (705 C). Care should be taken in choosing the appropriate temperatures for this operation to protect the properties of cold reduced/ hardened parts. Stress relieving at a temperature between 900-1250 F should have little affect on mechanical properties.
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Forging
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Material can be forged at 1700-1800 F(927-982 C), followed by air or water quenching. {For heavy sections (over 4"), material should be charged at 1600 F(871 C), equalized at 2000 F(1093 C) and soaked at 2200 F(1204 C) for 1 minute for each inch of thickness.}
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Hot Working
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This alloy can be successfully forged, upset and headed at temperatures of 2100-2200 F (1149-1204 C).A post-work annealing is recommended to retain properties.
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Cold Working
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Although higher forces will be required when compared with other austenitic stainless steels, this alloy is readily formed employing most of the common methods.
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Annealing
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1800-2150 F (982-1177 C), air cool.
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Hardening
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This alloy does not respond to heat treatment. It can only be hardened through cold reduction.
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Physical Data : [top]
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Density (lb / cu. in.)
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0.282
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Specific Gravity
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7.84
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Specific Heat (Btu/lb/Deg F - [32-212 Deg F])
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0.12
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Poissons Ratio
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0.285
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Modulus of Elasticity Tension
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28.9
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Mechanical Data : [top]
MSO currently has no data available for this grade.
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Videos :
MSO currently has no videos available for this grade.
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Disclaimer
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