CuCr1Zr | CW106C Material Datasheet
Unlock Exclusive Materials Data
Gain access to a wealth of materials data by joining our Materials Portal.
Register for Free or Upgrade for Full AccessMaterial Description
Material Number | Material Number (single) | Standard | Range of Application | Standard Status | Country | Predecessor | Successor | Remark |
---|---|---|---|---|---|---|---|---|
CW106C (DIN EN 12165 : 2011-08) | CW106C | DIN EN 12165 : 2011-08 | DIN EN 12165 : 2011-08 replaced by DIN EN 12165 : 2016-11 | Replaced | Germany | CuCr1Zr | CuCr1Zr | CuCr1Zr, mat. No CW106C, is an hardenable, low alloy copper alloy. The strength values of CuCrZr are more favorable than of CuCr especially at higher temperatures. CuCrZr shows the following properties: high strength at room temperature, high temperature for removal of workhardening, high creep strength, no notch sensitivity at increased temperatures. Temperature for removal of workhardening approximates 500°C. Favorable electrical and thermal conductivity. Processing properties: hot and cold forming: good machinability: moderately soft soldering: moderately hard soldering: moderately gas shielded welding: moderately burnishing: good Application: For live springs and contacts, electrodes for resistance welding. |
Chemical Composition
Cr [%] | Fe [%] | Si [%] | Zr [%] | Source | Remark |
---|---|---|---|---|---|
blur | blur | blur | blur | blur | blur |
Mechanical Properties
Semi-finished Product | Strength Abbrevation | Nominal Size [mm] | Temperature [°C] | Hardness HB | HBW | Source |
---|---|---|---|---|---|
blur | blur | blur | blur | blur | blur |
Physical Properties
Condition | Temperature [°C] | Density [g/cm³] | Young's Modulus [GPa] | Mean Coefficient of Thermal Expansion [10^-6*K^-1] | 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)] | Electric Conductivity [MS/m] | Specific Electric Conductivity [% IACS] | Source |
---|---|---|---|---|---|---|---|---|---|---|---|
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur | blur |
Young's Modulus [GPa] vs Temperature [°C]
Exclusive Insight Locked!
This premium diagram is currently blurred. Gain full access to detailed insights and stay ahead with exclusive content.
Unlock NowMean Coefficient of Thermal Expansion (reference 20°C) [10^-6*K^-1] vs Temperature [°C]
Exclusive Insight Locked!
This premium diagram is currently blurred. Gain full access to detailed insights and stay ahead with exclusive content.
Unlock NowHeat Treatment
Heat Treatment | Temperature [°C] | Source | Remark |
---|---|---|---|
blur | blur | blur | blur |
blur | blur | blur | blur |
blur | blur | blur | blur |
Cross Reference
Material Name | Country | Standard | Source |
---|---|---|---|
CuCr1Zr | Europe | EN 12165 | Deutsches Kupferinstitut Berufsverband e.V., Düsseldorf |
CuCr1Zr | International | ISO 1637 | Deutsches Kupferinstitut Berufsverband e.V., Düsseldorf |
CuCr1Zr | International | ISO 1640 | Deutsches Kupferinstitut Berufsverband e.V., Düsseldorf |
C18150 | USA | UNS | Deutsches Kupferinstitut Berufsverband e.V., Düsseldorf |
CuCrZr | Germany | DIN 1787 | DIN CEN/TS 13388 (DIN SPEC 9700) |
2.1293 | Germany | DIN 1787 | DIN CEN/TS 13388 (DIN SPEC 9700) |
Producer/Supplier/Trade names
Tradename | Supplier |
---|---|
CuCrZr | Auerhammer Vacuumgießerei GmbH, Aue |
CuCrZr | Wieland Prometa GmbH, Düsseldorf |
CuCrZr | CUMSAL GmbH, Wilnsdorf |
CuCrZr | CSN Carl Schreiber GmbH, Neunkirchen |
Elmedur X | Wieland Duro GmbH, Kornwestheim |
CuCrZr | G.Rau GmbH & Co. KG, Pforzheim |
CuCrZr | Manfred J.C. Niemann, Bremen |
CuCrZr | Schreier Metall GmbH, Erkrath |
ELMEDUR X | ThyssenKrupp Schulte GmbH, Essen |
4800 | VDM Metals GmbH, Frankfurt/Main |
Sigmadur | VDM Metals GmbH, Frankfurt/Main |
K60 | Wieland-Werke AG, Ulm |
CCZr | ZOLLERN GmbH & Co. KG, Sigmaringen |
Material Compliance
REACh | RoHS |
---|---|
blur | blur |
CuCr1Zr (CW106C; DIN EN 12165 : 2011-08)
Linear-elastic
Temperature [°C] | Young's modulus [GPa] | Poisson's ratio |
---|---|---|
blur | blur | blur |
blur | blur | blur |
Electrical resistivity
Temperature [°C] | Specific electrical resistance [µΩm] |
---|---|
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
Coefficient thermal expansion
Related Temperature [°C] | Temperature [°C] | Coefficient thermal expansion [10^-6*K^-1] |
---|---|---|
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
Specific heat
Temperature [°C] | Specific heat [kJ/(kg*K)] |
---|---|
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
Density
Temperature [°C] | Density [g/cm³] |
---|---|
blur | blur |
Thermal conductivity
Temperature [°C] | Thermal conductivity [W/(m*K)] |
---|---|
blur | blur |
Classification
WIAM Material | Source description |
---|---|
blur | blur |
Designation
Designation | Material number | Source |
---|---|---|
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
blur | blur | blur |
CuCr1Zr (artificially aged)
Linear-elastic
Temperature [°C] | Young's modulus [GPa] |
---|---|
blur | blur |
Electrical resistivity
Temperature [°C] | Specific electrical resistance [µΩm] |
---|---|
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
Specific heat
Temperature [°C] | Specific heat [kJ/(kg*K)] |
---|---|
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
Thermal conductivity
Temperature [°C] | Thermal conductivity [W/(m*K)] |
---|---|
blur | blur |
blur | blur |
blur | blur |
blur | blur |
blur | blur |
Classification
Treatment | Source description |
---|---|
blur | blur |
CuCr1Zr (solution annealed (+AT))
Linear-elastic
Temperature [°C] | Young's modulus [GPa] |
---|---|
blur | blur |
Electrical resistivity
Temperature [°C] | Specific electrical resistance [µΩm] |
---|---|
blur | blur |
Thermal conductivity
Temperature [°C] | Thermal conductivity [W/(m*K)] |
---|---|
blur | blur |
Classification
Treatment | Source description |
---|---|
blur | blur |