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CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments

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    Buy cheap CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments from wholesalers
     
    Buy cheap CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments from wholesalers
    • Buy cheap CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments from wholesalers
    • Buy cheap CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments from wholesalers
    • Buy cheap CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments from wholesalers

    CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments

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    Brand Name : Senphus
    Model Number : CuNi23/NC030
    Certification : ISO9001
    Payment Terms : T/T, D/P
    Supply Ability : 30 Tons per day
    Delivery Time : 3 days
    • Product Details
    • Company Profile

    CuNi23 NC030 Alloy Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments

    CuNi23 NC030 Alloy The Perfect Combination of Strength Durability and Corrosion Resistance for Industrial Environments


    CuNi23 NC030 Alloy Wire is a copper-nickel alloy composed of approximately 23% nickel and 77% copper. This alloy offers a unique combination of strength, corrosion resistance, and thermal conductivity, which makes it suitable for a wide variety of applications, particularly in environments that require excellent resistance to seawater, chemicals, and high temperatures.


    CuNi23 NC030 Alloy Wire is a highly versatile copper-nickel alloy with excellent corrosion resistance and mechanical properties, especially in marine, chemical, and high-temperature environments. Its strength, corrosion resistance, and thermal conductivity make it suitable for applications in heat exchangers, marine hardware, chemical processing, and electrical components. Though more expensive than pure copper, its performance in harsh environments justifies the cost for critical applications. CuNi23 is ideal for industries requiring a durable material that can withstand both chemical exposure and mechanical stress, offering long-term reliability in demanding conditions.


    Chemical Composition Wt.%%NiCuMn
    Min
    Max23Rest0.5

    Main physical properties:


    Max continuous operating temperature ℃300
    Resistance temperature coefficient x10-5/℃(20℃-600℃)<16
    Thermovoltage to copper at 20℃ in μV/K-34
    Thermal expansion coefficient×10-6/K(20℃-400℃)17.5
    Thermal conductance at 20℃ W/mK33
    Specific heat capacity at 20℃ J/gK0.38

    Main technical data

    Type

    CuNi1

    NC003

    CuNi2

    NC005

    CuNi4

    NC007

    CuNi6

    NC010

    CuNi8

    NC012

    CuMn3

    NC012

    CuNi10

    NC015

    CuNi14

    NC020

    CuNi19

    NC025

    CuNi23

    NC030

    CuNi30

    NC035

    CuNi34

    NC040

    CuNi44

    NC050

    Composition(%)CuRestRestRestRestRestRestRestRestRestRestRestRestRest
    Mn/////3/0.30.50.51.01.01.0
    Ni12468 1014.21923303444
    Max.continuous operating temperature(℃)200200·200220250200250300300300350350400
    Resistivity at 20℃(μ m)0.03
    ±10%
    0.05
    ±10%
    0.07
    ±10%
    0.10
    ±10%
    0.12
    ±10%
    0.12
    ±10%
    0.15
    ±10%
    0.20
    ±5%
    0.25
    ±5%
    0.30
    ±5%
    0.35
    ±5%
    0.40
    ±5%
    0.49
    ±5%
    Resisitance-temperature coefficient 20-600℃ (×10-5/℃)< 100< 120< 50< 60< 57< 38< 50< 38< 25< 16< 10< -0< -6
    Thermovoltage to
    copper at 20℃ in (μV/K)
    -8-12-12-18-221-25-28-32-34-37-39-43
    Mean coefficient of linear thermal expansion, in (10-6/K) , at a temperature between 20 ℃ and 400 ℃17.517.517.517.517.51817.517.517.517.517.016.015.0
    Thermal conductance
    at 20℃ (W/mK)
    14513013092758459483833272523
    Specific heat capacity at 20℃ in (20℃ J/gK)0.380.380.380.380.380.390.380.380.380.380.390.400.41
    Density at 20 ℃(g/cm3)8.98.98.98.98.98.88.98.98.98.98.98.98.9
    Melting temperature in (℃)1085109010901095109710501100111511351150117011801280
    Min.tensile strength in (N/mm2)210220220250270290290310340350400400420
    Elongation(%)25252525252525252525252525

    Technical data table

    Diameter(mm)NC003 CuNi1NC005 CuNi2NC007 CuNi4NC010 CuNi6NC012 CuNi8NC015 CuNi10NC020 CuNi14NC025 CuNi19NC030 CuNi23NC035 CuNi30NC040 CuNi34NC050 CuNi44
    0.103.826.368.9112.7315.2819.0925.4631.8338.1944.5650.9362.39
    0.113.165.267.3710.5212.6315.7821.0426.3031.5636.8242.0951.56
    0.122.654.426.198.8410.6113.2617.6822.1026.5230.9435.3743.33
    0.132.263.765.277.539.0411.3015.0718.8322.6026.3630.1436.92
    0.141.953.244.556.497.809.7412.9916.2419.4822.7325.9831.83
    0.151.702.823.965.656.798.4811.3114.1416.9719.8022.6427.73
    0.161.492.483.484.975.977.469.9512.4314.9217.4019.8924.37
    0.171.322.203.084.405.296.608.8111.0113.2115.4117.6221.59
    0.181.181.962.753.924.725.897.869.8211.7813.7515.7219.26
    0.191.061.762.473.524.235.297.058.8110.5812.3414.1117.28
    0.200.951.592.233.183.824.776.367.959.5411.1412.7315.60
    0.210.871.442.022.883.464.335.777.218.6610.1011.5514.15
    0.220.791.311.842.633.163.945.266.577.899.2010.5212.89
    0.230.721.201.682.402.893.614.816.017.228.429.6311.79
    0.240.661.101.552.212.653.314.425.526.637.738.8410.83
    0.250.611.011.432.032.443.054.075.096.117.138.159.98
    0.260.570.941.321.882.262.823.774.705.656.597.539.23
    0.270.520.871.221.742.102.613.494.365.236.116.998.56
    0.280.490.811.141.621.952.433.254.064.875.686.507.96
    0.290.450.751.061.511.822.273.033.784.545.296.067.42
    0.300.420.700.991.411.702.122.833.534.244.955.666.93
    0.310.400.660.931.321.591.982.653.313.974.635.306.49
    0.320.370.620.871.241.491.862.493.113.734.354.976.09
    0.330.350.580.821.171.401.752.342.923.514.094.685.73
    0.340.330.550.771.101.321.652.202.753.303.854.415.40
    0.350.310.510.731.031.251.552.082.603.113.634.165.09
    0.360.290.490.690.981.181.471.962.462.943.433.934.81
    0.370.280.460.650.931.121.391.862.332.793.253.724.56
    0.380.260.440.620.881.061.321.762.202.643.083.534.32
    0.400.240.390.560.790.951.191.591.992.382.783.183.90
    0.410.230.370.530.760.911.131.511.892.272.653.033.71
    0.420.220.360.510.720.871.081.441.802.162.522.893.54
    0.430.210.340.480.690.831.031.381.722.062.412.753.37
    0.440.200.320.460.660.790.981.311.641.972.302.633.22
    0.450.190.310.440.630.750.941.261.571.882.202.523.08
    0.460.180.300.420.600.720.901.201.501.802.102.412.95
    0.470.170.280.400.580.690.861.151.441.722.012.312.82
    0.480.170.270.390.550.660.821.101.381.651.932.212.71
    0.490.160.260.370.530.640.791.061.331.591.852.122.60
    0.500.150.250.360.510.610.761.011.271.521.782.042.50
    0.510.150.240.340.490.590.730.981.221.461.711.962.40
    0.520.140.230.330.470.570.700.941.181.411.651.882.31
    0.530.140.220.320.450.540.670.911.131.351.591.812.22
    0.540.130.220.310.440.520.650.871.091.301.531.752.14
    0.550.130.210.290.420.510.630.841.051.261.471.682.06
    0.560.120.200.280.410.490.600.811.021.211.421.621.99
    0.570.120.190.270.390.470.580.780.981.171.371.571.92
    0.580.110.190.270.380.450.560.760.951.131.321.511.85
    0.590.110.180.260.370.440.540.730.911.091.281.461.79
    0.600.110.180.250.350.420.530.710.881.061.241.411.73
    • Tolerance of ohm/m: ±5%
    • Round wire: range from 0.04mm (0.0016″) to 12mm (0.4724″)
    • Ribbon: range from 0.05mm (0.002″) to 6mm (0.2362″), Max ratio width : thickness = 10:1

    Key Features of CuNi23 NC030 Alloy Wire:

    • Composition:

    Copper (Cu): Approximately 77%.

    Nickel (Ni): Approximately 23%, which significantly improves the alloy's resistance to corrosion, especially in marine environments.

    • Corrosion Resistance:

    Excellent Seawater Resistance: CuNi23 is highly resistant to corrosion in seawater, making it ideal for marine environments and offshore applications.

    Chemical Resistance: This alloy exhibits good resistance to mild acids, alkalis, and chemical solutions, and is often used in chemical processing equipment exposed to aggressive environments.

    Stress Corrosion Cracking Resistance: CuNi23 performs well in environments where stress corrosion cracking is a concern, especially in chloride-rich environments like seawater.

    • Mechanical Properties:

    Good Strength and Toughness: CuNi23 offers a high yield strength and good toughness, ensuring the alloy can withstand mechanical stress and pressure without failure.

    Work Hardening: The alloy can be strengthened by cold working, making it suitable for applications requiring strong, durable materials.

    Formability: It is relatively easy to form and weld, making it versatile for various manufacturing processes.

    • Thermal and Electrical Conductivity:

    Moderate Electrical Conductivity: While not as conductive as pure copper, CuNi23 maintains a good level of electrical conductivity, which is suitable for many applications that require reliable electrical performance.

    Thermal Conductivity: Offers good thermal conductivity and can maintain stable thermal performance in both high- and low-temperature environments.

    • Non-Magnetic Properties:

    CuNi23 is non-magnetic, making it ideal for use in environments or applications where magnetic interference is a concern.

    • Weldability and Fabrication:

    The alloy is easily weldable and can be fabricated into a wide variety of shapes, such as wire, sheet, and tubes.

    Machinability: It has good machinability and is often used in industries where components need to be formed into precise shapes.


    Applications:

    • Marine and Offshore: CuNi23 is extensively used in marine environments, including heat exchangers, shipbuilding, desalination plants, and offshore oil rigs due to its resistance to seawater corrosion.
    • Chemical and Petrochemical Industries: Common in heat exchangers, piping systems, and other components exposed to aggressive chemicals.
    • Electrical Applications: Suitable for electrical contacts, terminals, and other components requiring good electrical conductivity but also needing strength and corrosion resistance.
    • Automotive Components: Used in components that require high strength and resistance to corrosion, such as radiators and cooling systems.
    • Industrial Heat Exchangers: CuNi23 is often found in industrial equipment such as cooling systems and radiators due to its combination of thermal conductivity and corrosion resistance.

    Resilience in Extreme Environments:

    • This alloy performs well in both high- and low-temperature environments, withstanding temperature fluctuations without losing its integrity. It can operate efficiently in temperatures up to approximately 300°C (572°F).

    Advantages of CuNi23 NC030 Alloy Wire:

    • Corrosion Resistance: Excellent resistance to corrosion in seawater, chemical environments, and high temperatures.
    • High Strength and Durability: Good mechanical properties, including strength, toughness, and the ability to withstand stress corrosion.
    • Non-Magnetic: Useful in sensitive applications where magnetic properties could interfere.
    • Good Thermal Conductivity: Performs well in heat exchangers and thermal applications.
    • Weldability and Machinability: Easy to work with, making it versatile in a variety of industrial applications.
    • Long-Term Performance: CuNi23 offers a long service life, especially in harsh marine and industrial conditions.

    Limitations of CuNi23 NC030 Alloy Wire:

    • Lower Electrical Conductivity: While suitable for many electrical applications, CuNi23 does not offer the same level of conductivity as pure copper.
    • Cost: Copper-nickel alloys like CuNi23 can be more expensive than pure copper or other alloys, which may limit their use in cost-sensitive applications.
    • Limited High-Temperature Capability: Though it has good thermal properties, CuNi23 may not perform as well in very high-temperature applications (above 300°C) compared to some other specialized alloys.


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