NiCr15Fe | 2.4816 Material Datasheet

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Material Description

Material Number Material Name Material Number (single) Standard Scope Standard Status Country Successor VDA 231-106 classification Application temperature [°C]
2.4816 (DIN 17742 : 2002-09) NiCr15Fe 2.4816 DIN 17742 : 2002-09 DIN 17742 : 2002-09 replaced by DIN 17742 : 2020-12 Replaced Germany NiCr15Fe 3.4 -196 - 1150 1)
1) Remark: According to VdTÜV-Wbl 305 : 1999-03, the material NiCr15Fe with the material number 2.4816 is used for pressure vessels according to TRB 100 and, with interpreting the AD-Merkblatt W 2 faithfully to its meaning, for temperatures from -10 to 450 degrees as well as for ranges of applications in nuclear engineering as far as the rules of nuclear engineering or the object-related specifications permit the use of - 10 to 450 °C. The weldability is given for metal-arc welding with covered rod electrodes (2.4805, 2.4807, also 2.4668 and 2.4620) or gas-shielded welding with (wire) rods (2.4806, 2.4803). No preheating and no heat-treatment necessary. For construction purpose an heat-treatment could be necessary after after welding. It is cold and hot formable and above 400 deg. sensitive to S. The following is valid for the nickel-wrought material according to DIN 17742 : 2002-09 : the material is applied in the form of strips, sheets, tubes, bars, wires and forgings for heat-resistant and corrosion-resistant construction components. It is a non-hardenable alloy for the application in the wet-chemical field and at high temperaures. The versatility of this material leads to a large field of application from the low-temperature range up to approximately 1050 °C. The chromium content renders the material applicable for oxidizing conditions, and the high nickel content provides durability in reducing conditions. Additionally, the alloy shows outstanding properties in ammonia-containing gases as well as in nitriding or carbonizing atmospheres at high temperatures, too. The metal-removing machining of this material is to be performed preferably in the annealed condition. (Low cutting speed, since the Ni-alloy has a tendency towards strain hardening.) Owing to the great high-temperature tensile strength and the corrosion-resistance at elevated temperatures as well as the good processability, the material is the standard material for the furnace construction. NiCr15Fe possesses a good resistance to stress cracking corrosion in the presence of chloride ions. In the chemical engineering, the material proves worthwile being used in sodium hydroxide, formic acid, acetic acid and fatty acids. At temperatures of up to 550 °C, NiCr15Fe is suitable for dry gases like hydrogen chloride or chlorine gas. The good durability in high-purity water permits the application of this material in the nuclear engineering. Application for ammoina-splitting plants, gas carbonizing plants, nitriding furnaces, plants for the production of chlorinated and fluorinated hydrocarbons, ethylene-dichloride cracking tubes, production plants for alkalis, reactors and heat exchangers in plants for the production of vinyl chlorides, plant components for the production of sodium sulfide, steam generator tubes in the nuclear engineering. Processing properties: Formability: good Weldability: good Metal-removing machinability: good

Chemical Composition

Al [%] C [%] Cr [%] Cu [%] Fe [%] Mn [%] Ni [%] P [%] S [%] Si [%] Ti [%]
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Material Compliance

REACh RoHS
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Mechanical Properties

Semi-finished Product Condition Strength Abbrevation Nominal Size [mm] Temperature [°C] Tensile Strength [MPa] Yield Strength (0.2% offset) [MPa] Yield Strength (1.0% offset) [MPa] Elongation A100 [%] Elongation A [%] Hardness HB | HBW
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Physical Properties

Temperature [°C] Melting Temperature [°C] Density [g/cm³] Young's Modulus [GPa] Mean Coefficient of Thermal Expansion (reference 20°C) [10^-6*K^-1] Thermal Conductivity [W/(m*K)] Specific Electrical Resistance [µΩm] Mean Specific Heat Capacity [kJ/(kg*K)] Magnetizeability
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Welding and Joining

Procedure Welding and Joining - Evaluation Interpass Temperature [°C] Added Materials Information
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Creep Rupture Behaviour

Temperature [°C] Creep Tensile Strength at 10^4 h [MPa] Creep Tensile Strength at 10^5 h [MPa] 1% Creep Limit at 10^4 h [MPa] 1% Creep Limit at 10^5 h [MPa]
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Heat Treatment

Heat Treatment Nominal Size [mm] Temperature [°C] Medium
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Cross Reference

Material Name Country Standard
NS 312 China GB T 15007
NA 14 Great Britain BS 3072
NA 14 Great Britain BS 3073
NA 14 Great Britain BS 3074
NA 14 Great Britain BS 3075
NA 14 Great Britain BS 3076
NiCr15Fe8 International ISO 9722
Inconel 600 South Korea KS D 3750
N06600 USA UNS
N06600 USA AMS 5540
N06600 USA AMS 5580
N06600 USA AMS 5665
N06600 USA AMS 5687
N06600 USA AMS 5961
N06600 USA AMS AS7232
SB-163 UNS N06600 USA ASME SB-163
SB-166 UNS N06600 USA ASME SB-166
SB-167 UNS N06600 USA ASME SB-167
SB-168 UNS N06600 USA ASME SB-168
SB-564 UNS N06600 USA ASME SB-564
B163 UNS N06600 USA ASTM B163
B166 UNS N06600 USA ASTM B166
B167 UNS N06600 USA ASTM B167
B168 UNS N06600 USA ASTM B168
B366 UNS N06600 USA ASTM B366
B516 UNS N06600 USA ASTM B516
B517 UNS N06600 USA ASTM B517
B564 UNS N06600 USA ASTM B564
B751 UNS N06600 USA ASTM B751
B924 UNS N06600 USA ASTM B924
F2281 Alloy 600 USA ASTM F2281
G28 UNS N06600 USA ASTM G28
N06600 USA MIL SPEC MIL-N-23228
N06600 USA NACE MR-01-75
Inconel 600 USA SAE J467
NiCr15Fe Germany DIN 17750
NiCr15Fe Germany DIN 17751
NiCr15Fe Germany DIN 17752
NiCr15Fe Germany DIN 17753

Producer/Supplier/Trade names

Tradename Supplier
G 4816 Schmidt + Clemens GmbH + Co. KG, Edelstahlwerk Kaiserau, Lindlar
2.4816 Saarstahl AG, Völklingen
2.4816 SCHMOLZ + BICKENBACH GUSS GmbH, Krefeld
2.4816 Schoellerwerk GmbH & Co. KG, Hellenthal/Eifel
2.4816 Rolf Kind GmbH, Gummersbach
2.4816 Sprint Metal Edelstahlziehereien GmbH, Hemer
2.4816 NIRONIT Edelstahlhandel GmbH, Rosengarten
2.4816 INOX SERVICE CENTER GmbH, Krefeld
2.4816 INTERSTAHL Service GmbH, Wetter
2.4816 Rosswag GmbH, Pfinztal-Kleinsteinbach
2.4816 Imet Industriemetall Handelsgesellschaft mbH, Hamburg
2.4816 Quick Metall GmbH, Forst
A 1252 Otto Junker GmbH, Edelstahlgießerei, Simmerath
ADNIC 275 E AUBERT & DUVAL Deutschland GmbH, München
AL 600 ATI Flat Rolled Products GmbH, Remscheid
Alloy 600 Chr. Höver & Sohn GmbH & Co KG, Lindlar
Alloy 600 F.W. Hempel & Co. Gesellschaft für Spezial-Rostfrei-Metalle mbH, Oberhausen
Alloy 600 ROPA STAHLVERTRIEB GMBH, Bad Bergzabern
Alloy 600 Enpar Sonderwerkstoffe GmbH, Gummersbach
BGH 2.4816 BGH Edelstahl Siegen GmbH
BÖHLER L312 voestalpine BÖHLER Edelstahl GmbH & Co.KG, Kapfenberg
Caronit 16 N 75 SCHMOLZ + BICKENBACH GUSS GmbH, Krefeld
Coralloy 600 Chr. Höver & Sohn GmbH & Co. KG, Lindlar
DMV 600 H Salzgitter Mannesmann Stainless Tubes GmbH, Mülheim an der Ruhr
DUX G Ni 4816 SCHMOLZ + BICKENBACH GUSS GmbH, Krefeld
ERGILOY 2.4816 Zapp Precision Metals GmbH, Schwerte
Eternos 2.4816 Remystahl GmbH & Co. KG, Hagen
Ferrochronin 600 Deutsche Nickel GmbH, Schwerte
G 4816 Dörrenberg Edelstahl GmbH, Engelskirchen
HAFESTA 600 Hagener Feinstahl GmbH, Hagen
Inc. 600 pauly STAHLHANDEL, Essen
Inconel 600 Sprint Metal Edelstahlziehereien GmbH, Hemer
INCONEL alloy 600 Special Metals Deutschland Ltd., Düsseldorf
Inox 2.4816 INOX-Stahlgesellschaft mbH, Nürtingen
L312 Schoeller-Bleckmann Edelstahlrohr GmbH, Ternitz
Märker 4816 Schmidt + Clemens GmbH + Co. KG, Edelstahlwerk Kaiserau, Lindlar
Nickelvac 600 ATI Europe, Düsseldorf
NiCr15Fe Hoesch Hohenlimburg GmbH, Hagen
NiCr15Fe Haage Anagramm Technologien GmbH, Mülheim a. d. Ruhr
NiCr15Fe EZM Edelstahlzieherei Mark GmbH, Wetter
Nicrofer 7216 H-alloy 600 H VDM Metals GmbH, Werdohl
Nicrofer 7216-alloy 600 VDM Metals GmbH, Werdohl
Nicrofer 7615-alloy 831 VDM Metals GmbH, Werdohl
NY 600 AUBERT & DUVAL Deutschland GmbH, München
P 600 Platestahl Umformtechnik GmbH, Lüdenscheid
PHY HT600 Ugitech SA, Ugine
SANDVIK Sanicro 70 SANDVIK Materials TEchnology Deutschland GmbH, Düsseldorf
TECHALLOY 600 TPS-Technitube Röhrenwerke GmbH, Daun
UR 600 Imet Industriemetall Handelsgesellschaft mbH, Hamburg
Werkstoff 600 ZAPP AG, Ratingen
WR600 Gourd & Co. Valve, Tube & Alloy Supplies & Services, Schwalbach/Ts.
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