X1NiCrMoCu32-28-7 | 1.4562 Material Datasheet
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Material Number | Material Number (single) | Standard | Range of Application | Standard Status | Country | Remark | Application temperature [°C] |
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1.4562 (SEW 400 : 1997-02) | 1.4562 | SEW 400 : 1997-02 | Supersedes SEW 400 : 1991-02 | Valid | Germany | Material X 1 NiCrMoCu 32 28 7, material number 1.4562 is applicated acc. to VdTÜV-material specification 509 : 2002-09 (sheet) and VdTÜV-material specification 509-2 : 2002-03 (seamless pipes) for pressure vessels acc. to TRB 100 in corresponding interpretation of AD-data sheets W 2 and W 10 for temperatures from -196 °C. to 550 °C. The high alloyed steel is suitable for application in nuclear power engineering as far as nuclear rules or object-related specifications allow use from -196 °C. to 550 °C. The welding suitability of the material is examined allowing for general engineering rules for metal arc welding and gas-shielded welding. Suitability tested welding additives have to be used, such as covered rod electrodes (2.4621, 2.4609) and welding rods resp. wire electrodes (1.4562, 2.4831, 2.4607). Preheating is not allowed, a heat treatment after welding is normally not necessary. The intermediate layer temperature should not exceed 150 °C. The material is suitable for plasma cutting. To the material acc. to SEW 400 : 1997-02 applies: It shows very high resistance to many corrosive media also with impurities as well as to pitting and crevice corrosion. Resistance to intercrystalline corrosion both in delivery and welded condition. Its limit temperature amounts to 500 °C (operating time up to 100000 h, no intercrystalline corrosion). Application for phosphoric acid production plants, such as heat exchanger, for pipes and heat exchanger for sulphuric acid contaminated with chlorides, for seawater carrying pipes, cooler and condensators, as conveying pipes for acid gas, in paper and cellulose industry. | -196 - 550 |
Chemical Composition
C [%] | Cr [%] | Cu [%] | Mn [%] | Mo [%] | N [%] | Ni [%] | P [%] | S [%] | Si [%] | Source |
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Mechanical Properties
Semi-finished Product | Condition | Nominal Size [mm] | Temperature [°C] | Specimen Direction | Tensile Strength [MPa] | Yield Strength (0.2% offset) [MPa] | Yield Strength (1.0% offset) [MPa] | Elongation A [%] | Elongation A80 [%] | Source | Remark |
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Physical Properties
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)] | Mean Specific Heat Capacity [kJ/(kg*K)] | Magnetizeability | Source | Remark |
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Young's Modulus [GPa] vs Temperature [°C]
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Unlock NowWelding and Joining
Procedure | Welding and Joining - Evaluation | Source |
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Toughness Data (Impact)
Condition | Nominal Size [mm] | Temperature [°C] | Specimen Shape | Specimen Direction | Notch Impact Energy [J] | Source |
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Heat Treatment
Heat Treatment | Temperature [°C] | Medium | Source |
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Cross Reference
Material Name | Country | Standard |
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N08031 | USA | UNS |
A314 UNS N08031 | USA | ASTM A314 |
B366 UNS N08031 | USA | ASTM B366 |
B462 UNS N08031 | USA | ASTM B462 |
B564 UNS N08031 | USA | ASTM B564 |
B581 UNS N08031 | USA | ASTM B581 |
B619 UNS N08031 | USA | ASTM B619 |
B622 UNS N08031 | USA | ASTM B622 |
B625 UNS N08031 | USA | ASTM B625 |
B626 UNS N08031 | USA | ASTM B626 |
B649 UNS N08031 | USA | ASTM B649 |
B924 UNS N08031 | USA | ASTM B924 |
X 1 NiCrMoCu 32 28 7 | Germany | VdTÜV 509 |
Producer/Supplier/Trade names
Tradename | Supplier |
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1.4562 | Platestahl Umformtechnik GmbH, Lüdenscheid |
1.4562 | SCHMOLZ + BICKENBACH GUSS GmbH, Krefeld |
1.4562 | Schoellerwerk GmbH & Co. KG, Hellenthal/Eifel |
1.4562 | INOX SERVICE CENTER GmbH, Krefeld |
1.4562 | INTERSTAHL Service GmbH, Wetter |
Alloy 17-4 PH | ROPA STAHLVERTRIEB GMBH, Bad Bergzabern |
Alloy 31 | Chr. Höver & Sohn GmbH & Co KG, Lindlar |
Alloy 31 | F.W. Hempel & Co. Gesellschaft für Spezial-Rostfrei-Metalle mbH, Oberhausen |
Alloy 31 | Enpar Sonderwerkstoffe GmbH, Gummersbach |
BGH 4562 | BGH Edelstahl Siegen GmbH |
Coracid 31 | Chr. Höver & Sohn GmbH & Co. KG, Lindlar |
DMV 931 | Salzgitter Mannesmann Stainless Tubes GmbH, Mülheim an der Ruhr |
ERO 4562 NiBLMX | Hartmann Edelstahlrohre GmbH, Wilnsdorf |
Nicrofer 3127 hMo-alloy 31 | VDM Metals GmbH, Werdohl |
Nicrofer S 3127-FM 31 | VDM Metals GmbH, Werdohl |
Puro 1.4562 | Remystahl GmbH & Co. KG, Hagen |
X1NiCrMoCu32-28-7 | Hoesch Hohenlimburg GmbH, Hagen |
X1NiCrMoCu32-28-7 | F.W. Hempel & Co. Gesellschaft für Spezial-Rostfrei-Metalle mbH, Oberhausen |
X1NiCrMoCu32-28-7 | HEINE + BEISSWENGER Stiftung + Co.KG, Fellbach |
X1NiCrMoCu32-28-7 | pauly STAHLHANDEL, Essen |
Material Compliance
REACh | RoHS |
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X1NiCrMoCu32-28-7 (1.4562; SEW 400 : 1997-02)
Linear-elastic
Temperature [°C] | Young's modulus [GPa] | Poisson's ratio |
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Alternating stress
Temperature [°C] | Stress ratio | Alternating stress [MPa] | Cycles |
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Yield strength
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Coefficient thermal expansion
Related Temperature [°C] | Temperature [°C] | Coefficient thermal expansion [10^-6*K^-1] |
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Specific heat
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Density
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Tensile strength
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Thermal conductivity
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Classification
WIAM Material | Source description |
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Designation
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X1NiCrMoCu32-28-7 (quenched (+Q); flat product; 0.000-25.000mm)
Yield strength
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Tensile strength
Temperature [°C] | Tensile strength [MPa] |
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Classification
Treatment | Semi-finished product | Dimension [mm] | Source description |
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X1NiCrMoCu32-28-7 (quenched (+Q); forging; 0.000-300.000mm)
Yield strength
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Tensile strength
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Classification
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X1NiCrMoCu32-28-7 (quenched (+Q); tube; 2.000-20.000mm)
Yield strength
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Tensile strength
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X1NiCrMoCu32-28-7 (quenched (+Q))
Yield strength
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X1NiCrMoCu32-28-7 (quenched (+Q); wire; 0.010-12.700mm)
Tensile strength
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Classification
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