- 1.6523, DIN 21NiCrMo2, AISI 8620 round bar
- 1.6523, DIN 21NiCrMo2, AISI 8620 forging
- 1.6523, DIN 21NiCrMo2, AISI 8620 sheet
- 1.6523, DIN 21NiCrMo2, AISI 8620 flat bar
- 1.6523, DIN 21NiCrMo2, AISI 8620 pipe
1.6523, DIN 21NiCrMo2, AISI 8620
Production specification
Square-shape steel: 1mm to 4000mm
Plate steel:0.1mm to 4000mm
Width: 10mm to 2500mm
Lenth: We can supply any lenth based on the customer's requirement.
Forging: Shafts with flanks/pipes/tubes/slugs/donuts/cubes/other shapes
Tubings: OD: φ6-1800mm, with wall thickness ranging from 1-35 mm.
Finished goods condition: hot forging/hot rolling + annealing/normalizing + tempering/quenching + tempering/any conditions based on the customer's requirement
Surface conditions: scaled (hot working finish)/ground/rough machining/fine machining/based on the customer's requirement
Furnaces for metallurgical processing: electrode arc + LF/VD/VOD/ESR/Vacuum consumable electrode.
Ultrasonic inspection: 100% ultrasonic inspection for any inperfections or based on the customer's requirementExcellent service for all kinds of industries,with advantages of technologies, equipment and price.
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1.6523, DIN 21NiCrMo2, AISI 8620
Designation by Standards
Brand Name | LH No. | Mat. No. | DIN | EN | AISI |
20NCD2 | 769 | 1.6523 | 21NiCrMo2 | 20NiCrMo2 | 8620 |
Chemical Composition (in weight %)
C | Si | Mn | Cr | Mo | Ni | V | W | Others |
0.20 | max. 0.40 | 0.80 | 0.53 | 0.20 | 0.55 | - | - | - |
Description
20NCD2 is a hardenable chromium, molybdenum, nickel low steel/" target="_blank" class="keylink">alloy steel often used for carburizing to develop a case-hardened part. This case-hardening will result in good wear characteristics.
Applications
Gears, shafts and other applications where a hard carborized case and a tough core are desired.
Physical properties (avarage values) at ambient temperature
Modulus of elasticity [103 x N/mm2]: 210
Density [g/cm3]: 7.86
Soft Annealing
Heat to 650-700oC, cool slowly. This will produce a maximum Brinell hardness of 212.
Heat Treatment
Treatment | Temperature | Cooling |
Case hardening | 880-980oC | Oil (water), hot bath 160-250oC |
Carburising | 880-980oC | Oil (water), hot bath 160-250oC |
Direct hardening | 880-980oC | Oil, hot bath 160-250oC |
Core refining | 860-900oC | Oil, hot bath 160-250oC |
Core refining | 780-820oC | Oil, hot bath 160-250oC |
Tempering | 150-200oC | Air |
Distance From Quenched End in mm
mm | 1.5 | 3 | 5 | 7 | 9 | 11 | 13 | 15 | 20 | 25 | 30 | 35 | 40 |
H max. | 49 | 48 | 45 | 42 | 36 | 33 | 31 | 30 | 27 | 25 | 24 | 24 | 23 |
H min. | 41 | 37 | 31 | 25 | 22 | 20 | - | - | - | - | - | - | - |
HH max. | 49 | 48 | 45 | 42 | 36 | 33 | 31 | 30 | 27 | 25 | 24 | 24 | 22 |
HH min. | 44 | 41 | 36 | 31 | 27 | 24 | 22 | 21 | - | - | - | - | - |
HL max. | 46 | 44 | 40 | 36 | 31 | 29 | 27 | 26 | 23 | 21 | 20 | 20 | - |
HL min. | 41 | 37 | 31 | 25 | 22 | 20 | - | - | - | - | - | - | - |
Forging
Hot forming temperature: 1150-850oC.
Machinability
Machining is done prior to carburizing to within as close a tolerance as possible. Finish machining, after heat treatment and/or carburizing, should be at a minimum so as not to impair the hardened case of the part. Machining may be done by conventional means prior to heat treatment - after carburizing machining is usually limited to grinding.
Welding
The alloy may be welded by conventional methods, usually gas or arc welding. Preheating at 200oC is beneficial and subsequent heating after welding is recommended - consult the approved weld procedure for the method used.
Cold Working
The alloy may be cold worked in the annealed condition by conventional methods. Cold working, as with machining, should be done to as close a tolerance as possible before heat treatment or carburizing.
Mechanical properties
Heat treatment
Machining
Welding performance
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