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DESCRIPTION
Manganese is possibly the most flexible element that can be added to copper alloys. Small
additions of manganese are used to deoxidize the alloy and enhance its mechanical strength
and castability. Manganese provides a favourable combination and balance of properties like
ductility, formability, strain hardening, and strength level parameters.
CHEMICAL COMPOSITION
Elements |
Min (%) |
Max (%) |
Cu |
57.00 |
59.00 |
Pb |
1.00 |
2.00 |
Al |
- |
0.20 |
Fe |
- |
0.30 |
Mn |
0.50 |
1.50 |
Ni |
- |
0.60 |
Si |
- |
0.10 |
Sn |
- |
0.30 |
Total others |
- |
0.30 |
Zn |
Remainder |
Mechanical Properties According To EN12164 CW720R (As Per Temper R440)
Range (mm)
|
From |
To |
UTS Min (N/mm²) |
PS Min (N/mm²) |
Elongation Min (%) |
Hardness Min |
Hardness Max |
Round (Dia) |
6 |
50 |
440 |
250 |
18 |
120 |
- |
Hex (A/F) |
5 |
40 |
440 |
250 |
18 |
120 |
- |
Square (A/F) |
5 |
40 |
440 |
250 |
18 |
120 |
- |
Rectangle (Thickness) |
6 |
50 |
440 |
250 |
18 |
120 |
- |
PHYSICAL
PROPERTIES |
Density |
8.40 g/cc |
0.303 lb/in3 |
CTE, linear |
26.0 ᶙm/m-˚C |
14.4 ᶙin/in-˚F |
Specific Heat Capacity |
0.380 J/g-˚C |
0.0908 BTU/lb-˚F |
Thermal Conductivity |
113 W/m-K |
784 BTU-in/hr-ft²-˚F |
Melting Point |
880-900 ˚C |
1620 – 1650 ˚F |
Solidus |
880 ˚C |
1620 ˚F |
Liquidus |
900 ˚C |
1650˚F |
FABRICATION
PROPERTIES |
Machinability (CuZn39Pb3 = 100 %) |
80% |
Capacity for being cold worked |
Poor |
Capacity for being hot worked |
excellent |
TYPICAL USES
- Hot Forming
- Hot Pressing
- Machining
- Industial
- Marine
- Fasteners
- Others