Type: | Copper Bars |
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Application: | Electronics |
Material: | Bronze |
Shape: | Round |
Alloy: | Alloy |
Color: | Golden |
Samples: |
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Customization: |
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C17200 Beryllium bronze exceptional fatigue strength
Another notable advantage of C17200 beryllium copper is its exceptional corrosion resistance. Unlike pure copper, this alloy resists atmospheric corrosion, as well as many chemical agents, including seawater, various acids, and alkaline environments. This property is particularly crucial for applications exposed to harsh conditions, such as marine components and oil and gas equipment.
Furthermore, C17200 beryllium copper exhibits remarkable wear resistance and fatigue strength. This makes it suitable for applications that experience repetitive stress, friction, and wear, including springs, bearings, and gears. Its wear resistance, combined with its excellent dimensional stability, ensures prolonged operational life and reduced maintenance requirements.
C17200 Beryllium Copper:
Physical properties:
Density | Melting point | Thermal conductivity | Electric conductivity |
8.25 g/cm3 | 985°C | 155 W/(m*K) | 22% IACS |
Mechanical properties:
Tensile strength | Yield strength | Elongation | Hardness |
1400-1750 MPa | 1260-1560 MPa | 1-15% | 290-350 HV |
We are usually packed in export wooden cases and lined with pearl-cotton foam to prevent scratches on the surface. The modes of transport are usually rail transport, sea transport, air transport and express delivery.
C17300 copper alloy introduction:
The main application fields of beryllium copper include electronics, automobiles, aerospace, medical devices, and precision machinery. In the electronics field, beryllium copper is mainly used to manufacture high-precision and high-reliability parts such as lead frames for integrated circuits, packaging materials for microelectronic components, and electromagnetic shielding covers. In the automotive field, beryllium copper is mainly used to manufacture high-strength and high-wear-resistant components such as bearings, gears, and pistons. In the aerospace field, beryllium copper is mainly used to manufacture high-strength and high-corrosion-resistant components such as springs, bearings, and gears. In the medical device field, beryllium copper is mainly used to manufacture high-precision and high-reliability parts such as surgical instruments and implants. In the precision machinery field, beryllium copper is mainly used to manufacture high-precision and high-stability parts such as sensors and regulators.
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