Application
This welding material deposits nickel aluminum bronze and is well-suited for welding both wrought and cast parent materials with a similar composition. These alloys are recognized for their high strength and exceptional resistance to stress corrosion, cavitation erosion, corrosion fatigue, and attacks by acids and chlorides. Applications for this welding material encompass corrosion-resistant and spark-resistant pumps, ship propellers, and heat exchangers used in offshore, marine, and mining equipment. When working with aluminum bronze alloys, preheating is not required, and the maximum interpass temperature should be limited to 150°C. However, it's worth noting that the resistance to hot cracking in thick sections with high restraint may be inferior to plain aluminum bronze. An alternative approach is to fill with CuAl, a higher ductility aluminum bronze, and then cap with CuAlNi. This strategy helps enhance overall performance, particularly in challenging welding scenarios.
Alloy Type
Cu-9%Al-5%Ni bronze for welding similar nickel aluminum bronze alloys.
Microstructure
In the as-welded condition consists of a duplex α + β microstructure.
Materials
Joining aluminum bronze. Weld overlay on steels.
EN W.Nr.: 2.0966 (CuAl10Ni5Fe4), 2.0970 (CuAl10Ni3Fe2-C), 2.0978 (CuAl11Ni6Fe5), 2.0980 (CuAl11Fe6Ni6-C).
ASTM: C63200, C63000 (CA630), C95800 (cast), C95500 (cast), C95520 (cast).

Products of the line CuAlNi

Product name Process AWS specifications EN ISO specifications
DAIKOWM 407 GMAW
AWS A5.7
ERCuNiAI
-
DAIKOWM CuAl8Ni2 GMAW - -
DAIKOWM CuAl8Ni6 GMAW
AWS A5.7
ERCuNiAl
-
DAIKOWT 407 GTAW
AWS A5.7
ERCuNiAI
-
DAIKOWT CuAl8Ni2 GTAW - -
DAIKOWT CuAl8Ni6 GTAW
AWS A5.7
ERCuNiAl
-
DAIKOWM 406 GMAW -
EN ISO 24373
S Cu 6327
DAIKOWT 406 GTAW -
EN ISO 24373
S Cu 6327

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