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Product Introduction
Powder Introduction
CuSn12Ni2 is a high-performance tin–nickel bronze alloy widely used in the marine industry, mechanical engineering, chemical equipment, and the energy and power sectors. The emergence of additive manufacturing technologies, such as SLM and LC, has further expanded the alloy’s range of applications.
| Chemical composition |
Cu |
Sn |
Ni |
Pb |
Zn |
Mn |
Fe |
Sb |
Al |
S |
Yes |
P |
O |
| Bal. |
11.0-13.0 |
1.5-2.5 |
<0.3 |
<0.4 |
<0.2 |
<0.2 |
<0.1 |
<0.01 |
<0.05 |
<0.01 |
<0.4 |
<0.05 |
|
| Physical properties |
|
Particle size distribution |
Color difference value |
Loose packing density |
Tap density |
Liquidity |
|
|
|
||||
|
|
D10 |
D50 |
D90 |
L |
a |
b |
|
|
|
||||
| SLM |
12.43 |
30.92 |
52.37 |
63.4 |
4.54 |
12.91 |
5.10 |
6.06 |
20.5 |
|
|
|
|
| Laser cladding |
52.81 |
87.47 |
136.0 |
59.1 |
4.62 |
11.59 |
4.69 |
5.46 |
15.0 |
|
|
|
|
Table 3 Typical Forming Properties
| Craftsmanship Scene |
Tensile strength UTS/MPa |
Yield Strength YS/MPa |
Elongation E/% |
Percentage of reduction in area A/% |
Porosity |
Hardness/HV |
Bonding strength |
| SLM process [1] |
692 |
498 |
22.0 |
23.0 |
0.1% |
/ |
/ |
| (High-speed) Laser Cladding Process [2] |
438 |
/ |
/ |
/ |
0.03% |
175 |
338 |


[1] The following data are based on results from red laser printing.
[2] The cladding substrate is 42CrMo steel.
CuSn12Ni2
Category:
Brand: Asia Materials
Category: Copper Alloy Powder
Product Name: CuSn12Ni2
European and American grades: /
Specifications and model numbers: 0–20 µm, 15–53 µm, 45–105 µm, 53–150 µm
Reference Standard: GB/T 5231-2022
Appearance: Nearly spherical
Oxygen content: ≤500 ppm
For more product details, please contact our product experts. We look forward to your call.
Product Introduction
Powder Introduction
CuSn12Ni2 is a high-performance tin–nickel bronze alloy widely used in the marine industry, mechanical engineering, chemical equipment, and the energy and power sectors. The emergence of additive manufacturing technologies, such as SLM and LC, has further expanded the alloy’s range of applications.
| Chemical composition |
Cu |
Sn |
Ni |
Pb |
Zn |
Mn |
Fe |
Sb |
Al |
S |
Yes |
P |
O |
| Bal. |
11.0-13.0 |
1.5-2.5 |
<0.3 |
<0.4 |
<0.2 |
<0.2 |
<0.1 |
<0.01 |
<0.05 |
<0.01 |
<0.4 |
<0.05 |
|
| Physical properties |
|
Particle size distribution |
Color difference value |
Loose packing density |
Tap density |
Liquidity |
|
|
|
||||
|
|
D10 |
D50 |
D90 |
L |
a |
b |
|
|
|
||||
| SLM |
12.43 |
30.92 |
52.37 |
63.4 |
4.54 |
12.91 |
5.10 |
6.06 |
20.5 |
|
|
|
|
| Laser cladding |
52.81 |
87.47 |
136.0 |
59.1 |
4.62 |
11.59 |
4.69 |
5.46 |
15.0 |
|
|
|
|
Table 3 Typical Forming Properties
| Craftsmanship Scene |
Tensile strength UTS/MPa |
Yield Strength YS/MPa |
Elongation E/% |
Percentage of reduction in area A/% |
Porosity |
Hardness/HV |
Bonding strength |
| SLM process [1] |
692 |
498 |
22.0 |
23.0 |
0.1% |
/ |
/ |
| (High-speed) Laser Cladding Process [2] |
438 |
/ |
/ |
/ |
0.03% |
175 |
338 |


[1] The following data are based on results from red laser printing.
[2] The cladding substrate is 42CrMo steel.
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