CuAl10Ni5Fe4 | CW307G Material Datasheet

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Material Description

Material Number Material Number (single) Standard Scope Standard Status Country Predecessor Successor VDA 231-106 classification
CW307G (DIN EN 12167 : 2011-08) CW307G DIN EN 12167 : 2011-08 DIN EN 12167 : 2011-08 replaced by DIN EN 12167 : 2016-11 Replaced Germany CuAl10Ni5Fe4 CuAl10Ni5Fe4 3.2 1)
1) Remark: CuAl10Ni5Fe4 (CW307G) is a wrought alloy of high strength, also at increased temperatures. The strength properties of cold formable wrought alloys are primarily dependent on the deformation grade. Tensile strength, yield strength and hardness rise according to the increasing cold forming grade. Elongation after fracture and contraction at fracture are decreasing. Thermal conductivity is reduced by the Al-content, electrical conductivity decreases according to the increasing AL-content. CuAl10Ni5Fe4 has a high strength at high temperatures up to approx. 300°C and a high endurance strength also at corrosion strain. The alloy is particularly resistant to cavitation , shows a high wear resistance, and a high corrosion resistance to saltwater, sulfite bases and mineral acids. Processing properties: warm forming: good cold forming: unfavorable machinability: moderately soft soldering: unfavorable hard soldering: moderately gas-shielded welding: very good burnishing: good The material is used for plates for condenser and heat transfer bottoms, for shafts, screws, wear parts as well as for controlling parts for hydraulic appliances, hot steam instruments, high voltage switchers, suction rolls in paper industry, cylinder corebushings for combustion engines, mechanically and chemically loaded parts in machine and shipbuilding and mining.

Chemical Composition

Al [%] Fe [%] Mn [%] Ni [%] Pb [%] Si [%] Sn [%] Zn [%]
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Mechanical Properties

Semi-finished Product Condition Strength Abbrevation Temperature [°C] Tensile Strength [MPa] Yield Strength (0.2% offset) [MPa] Yield Strength (1.0% offset) [MPa] Elongation A11,3 [%] Elongation A [%] Reduction of Area [%] Hardness HB | HBW
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Physical Properties

Temperature [°C] Melting Temperature [°C] Density [g/cm³] Young's Modulus [GPa] Shear Modulus [GPa] Thermal Conductivity [W/(m*K)] Mean Specific Heat Capacity [kJ/(kg*K)] Electric Conductivity [MS/m] Specific Electric Conductivity [% IACS]
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Creep Rupture Behaviour

Condition Temperature [°C] Creep Tensile Strength at 10³ h [MPa] Creep Tensile Strength at 10^4 h [MPa] Creep Tensile Strength at 10^5 h [MPa] 1% Creep Limit at 10³ h [MPa] 1% Creep Limit at 10^4 h [MPa] 1% Creep Limit at 10^5 h [MPa]
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Cross Reference

Material Name Country Standard
627 Australia AS/NZS 1567 1)
632 Australia AS 2738-2 1)
QAl10-4-4 China GB/T 5233 1)
QAl10-4-4 China GB/T 4429 1)
CuAl10Ni5Fe4 Europe EN 12167
BrAZN10-4-4 Russia GOST 18175 1)
BrAZN10-4-4 Russia GOST 1628 1)
BrAZNMc9-4-4-1 Russia GOST 18175 1)
BrAZNMc9-4-4-1 Russia GOST 1628 1)
CuAl10Ni5Fe4 International ISO 1637 1)
CuAl10Ni5Fe4 International ISO 1639 1)
C63000 USA UNS 1)
C63020 USA UNS 1)
C63000 USA AMS 4640 1)
C63020 USA AMS 4590 1)
C63000 USA ASME SB-150 1)
B124 UNS C63000 USA ASTM B124 1)
B150 UNS C63000 USA ASTM B150 1)
C63000 USA FED QQ-C-450 1)
J461 C63000 USA SAE J461 1)
J463 C63000 USA SAE J463 1)
CuAl10Ni5Fe4 Germany DIN 17665 2)
2.0966 Germany DIN 17665 2)
AlBz10Ni5 Germany
CuAl10Ni Germany
1) Source: Deutsches Kupferinstitut Berufsverband e.V., Düsseldorf
2) Source: DIN CEN/TS 13388 (DIN SPEC 9700)

Producer/Supplier/Trade names

Tradename Supplier
OF2232 OTTO FUCHS KG, Meinerzhagen
4510 VDM Metals GmbH, Frankfurt/Main
AB 4 S Wieland Metal Services Germany GmbH, Düsseldorf
Aeterna W II A VDM Metals GmbH, Frankfurt/Main
Al-Caro 1 Wieland Metal Services Germany GmbH, Düsseldorf
CuAl10Ni5Fe4 CSN Carl Schreiber GmbH, Neunkirchen
CuAl10Ni5Fe4 Schreier Metall GmbH, Erkrath
CuAl10Ni5Fe4 Wieland Metal Services Germany GmbH, Düsseldorf
EBz ZOLLERN GmbH & Co. KG, Sigmaringen

Material Compliance

REACh RoHS
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Linear-elastic

Temperature [°C] Young's modulus [GPa] Bulk modulus [GPa] Shear modulus [GPa] Poisson's ratio
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Yield strength

Temperature [°C] 0.1% Proof strength [MPa] 0.2% Proof strength [MPa] Yield strength [MPa]
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Specific heat

Temperature [°C] Specific heat [kJ/(kg*K)]
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Density

Temperature [°C] Density [g/cm³]
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Tensile strength

Temperature [°C] Tensile strength [MPa]
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Thermal conductivity

Temperature [°C] Thermal conductivity [W/(m*K)]
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Classification

WIAM Material Treatment Semi-finished product Dimension [mm] Load type Failure criteria Rolling direction Maximum stress [MPa] Strain at maximum stress [%] Source description
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Designation

Designation Material number Source
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Yield strength

Temperature [°C] 0.1% Proof strength [MPa] 0.2% Proof strength [MPa] Yield strength [MPa]
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Tensile strength

Temperature [°C] Tensile strength [MPa]
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Classification

WIAM Material Treatment Semi-finished product Dimension [mm] Load type Failure criteria Rolling direction Maximum stress [MPa] Strain at maximum stress [%] Source description
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Yield strength

Temperature [°C] 0.1% Proof strength [MPa] 0.2% Proof strength [MPa] Yield strength [MPa]
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Tensile strength

Temperature [°C] Tensile strength [MPa]
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Classification

WIAM Material Treatment Semi-finished product Dimension [mm] Load type Failure criteria Rolling direction Maximum stress [MPa] Strain at maximum stress [%] Source description
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Yield strength

Temperature [°C] 0.1% Proof strength [MPa] 0.2% Proof strength [MPa] Yield strength [MPa]
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Tensile strength

Temperature [°C] Tensile strength [MPa]
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Classification

WIAM Material Treatment Semi-finished product Dimension [mm] Load type Failure criteria Rolling direction Maximum stress [MPa] Strain at maximum stress [%] Source description
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