CuZn33Pb2Si-C Leaded Brass Bushings
CuZn33Pb2Si-C Leaded Brass Bushings
CuZn33Pb2Si-C Leaded Brass Bushings casting bronze bearings

Graphite brass sleeve bushing CuZn33Pb2Si-C Leaded Brass EN CC751S Standard
Versatile Applications of CuZn33Pb2Si-C Leaded Brass Bushings Across Industries
CuZn33Pb2Si-C Leaded Brass Bushings, with their exceptional properties, have become a staple in a variety of industries where durability, strength, and corrosion resistance are paramount. These bushings are designed to meet the rigorous demands of high-load bearing and wear, making them ideal for a range of applications:
- Mechanical Manufacturing: In this sector, CuZn33Pb2Si-C bushings are instrumental in creating components that must withstand significant mechanical stress and wear. Their high tensile strength and hardness make them perfect for applications such as bearings and other load-bearing parts in machinery.
- Marine Industry: The marine environment is notoriously harsh on materials due to saltwater corrosion. CuZn33Pb2Si-C bushings offer superior corrosion resistance, making them ideal for pipe systems, valves, and other components that are in constant contact with water and need to maintain their integrity over time.
- Automotive Sector: The automotive industry relies on materials that can withstand high temperatures and pressures. CuZn33Pb2Si-C bushings are used in radiators, water pumps, and oil pipes, where they provide efficient heat transfer and resistance to the wear and tear of constant use.
- Construction: In construction, aesthetics and durability are key. CuZn33Pb2Si-C bushings are used for decorative pieces and pipe fittings, offering both the strength needed for structural integrity and the corrosion resistance required for longevity in outdoor applications.
- Copper Alloy Products: For custom applications, CuZn33Pb2Si-C can be fashioned into a variety of forms, including plates, rods, forgings, tubes, sleeves, flanges, rings, profiles, and parts. This versatility allows for the creation of specialized components tailored to specific needs, from industrial machinery to architectural features.
The CuZn33Pb2Si-C Leaded Brass Bushings‘ combination of mechanical strength, wear resistance, and corrosion resistance makes them a top choice for industries where performance and reliability are critical. Their widespread use is a testament to their ability to meet the diverse challenges of modern engineering and design.
CuZn33Pb2Si-C Leaded Brass Bushings: Engineered for Bearing Excellence
CuZn33Pb2Si-C Leaded Brass Bushings are the epitome of precision engineering in the manufacturing of bearings, offering a range of advantages that make them a preferred choice for high-performance applications. Here’s an in-depth look at the benefits these bushings provide:
- Superior Mechanical Performance: CuZn33Pb2Si-C bushings boast exceptional mechanical strength, with high tensile and yield strengths that ensure reliability under load. This makes them ideal for applications where the bearing must support heavy machinery and resist deformation.
- Outstanding Wear Resistance: The addition of lead and silicon to the alloy composition significantly improves the self-lubrication properties and wear resistance of CuZn33Pb2Si-C bushings. This characteristic is crucial for reducing friction, minimizing wear, and extending the service life of bearings in operation.
- Excellent Casting Properties: The alloy’s narrow freezing range and good mobility contribute to the production of high-quality castings. This ensures that the bushings have a uniform structure, reducing the likelihood of defects such as porosity and inclusions, which can compromise the integrity of the bearing.
- Anti-Dezincification: CuZn33Pb2Si-C bushings are designed to resist dezincification, a common form of corrosion that affects brass alloys. This property is essential for components that come into contact with lubricants and operate at high temperatures, ensuring the longevity and stability of the bearing.
- Corrosion Resistance: The ability of CuZn33Pb2Si-C bushings to withstand a variety of environmental conditions is vital for the stability and reliability of bearings in diverse settings. This resistance protects the bearing from the detrimental effects of moisture, chemicals, and other corrosive elements.
- High Hardness: With a hardness of HBW ≥150, CuZn33Pb2Si-C bushings provide excellent protection against abrasion and scratch damage. This hardness is crucial for maintaining the dimensional accuracy and surface finish of the bearing, even under harsh operating conditions.
- Heat Treatment Capabilities: CuZn33Pb2Si-C bushings can be heat treated to further enhance their mechanical properties. This controlled heating process allows for the optimization of hardness, strength, and other critical attributes, tailoring the bushing to the specific demands of its application.
CuZn33Pb2Si-C Leaded Brass Bushings are a superior choice for bearing manufacturing due to their comprehensive set of advantages. They offer a winning combination of mechanical strength, wear resistance, casting quality, corrosion protection, and heat treatment adaptability, making them a reliable solution for demanding industrial applications.
Mechanical Processing Considerations: When machining CuZn33Pb2Si-C leaded brass bushings, consider the material’s hardness, alloy composition, heat treatment requirements, and the selection of appropriate cutting fluids. Adjust cutting speeds and feed rates to prevent tool wear and maintain surface integrity. Post-processing may be necessary for achieving the desired surface finish.
Safety Precautions: Due to the presence of lead and other heavy metals, appropriate safety measures should be taken during processing to protect the health of operators.
Experience Unmatched Durability with CuZn33Pb2Si-C Bushings
Elevate your precision components with CuZn33Pb2Si-C Leaded Brass Bushings, a beacon of advanced materials engineering. Designed for high-performance applications, these bushings deliver exceptional durability and reliability. Choose CuZn33Pb2Si-C for a quantum leap in component quality and lifespan.
