Leave Your Message

China Bronze CNC Machining Service - Reliable Suppliers and Factory for High-Precision Industrial Components

Bronze alloys are among the most ancient and respected alloys in the world, renowned for their superior wear resistance, exceptional strength, and remarkable corrosion resistance. Today, they are the material of choice for essential engineering components such as heavy-duty bearings, marine parts, corrosion-resistant valves, and high-performance gears. As a leading factory in China, we specialize in providing comprehensive bronze CNC machining services. Our expert team can transform your designs into reliable industrial components with quick turnaround times and high precision. Partner with us, your trusted suppliers for high-quality bronze products

    Common Bronze Alloy Grades and Characteristics

    Bronze generally refers to a group of copper‑based alloys, mainly alloyed with tin, aluminum, silicon, manganese, and other elements. Compared with brass (copper‑zinc alloys), bronze typically features higher strength, a lower friction coefficient, and better chemical corrosion resistance—especially in seawater environments. Thanks to its excellent wear resistance and self‑lubricating properties, it plays an irreplaceable role in bearings and bushings. Our machining centers are well‑equipped to process various bronze materials, supporting high‑quality production from complex prototypes to small‑batch manufacturing.

    C93200 / SAE 660 — High-Leaded Tin Bronze (Bearing Bronze)

    Characteristics: This is the most commonly used bearing bronze grade. Lead is added to form soft particles in the alloy structure, delivering exceptional self-lubrication and anti-galling performance. This makes it particularly suitable for applications with insufficient lubrication, or under high-load and low-speed operating conditions. It features good machinability and reliable wear resistance.

    Typical Applications: Suitable for general‑purpose bearings, bushings, thrust washers, pump components, and low‑load gears across various industrial applications.

    Property Value Notes
    Tensile Strength (MPa) 240 – 330 Good overall strength
    Yield Strength (0.5% Extension, MPa) 124
    Elongation at Break (%) 18 Good ductility
    Hardness (Brinell) 65
    Density (g/cm³) 8.93
    Key Composition Cu-83%, Sn-7%, Pb-7%, Zn-3% High lead content provides self-lubrication

    Note: Values are typical ranges, specific to casting and processing conditions.


    C95400 — Aluminum Bronze

    Characteristics: This is a high‑strength, high‑hardness aluminum bronze. It boasts some of the best corrosion resistance, wear resistance, and fatigue strength among all bronze alloys, with performance comparable to many steel materials. It maintains its strength at elevated temperatures and delivers excellent resistance to impact and cavitation.

    Typical Applications: Ideal for heavy-duty bearings, gears, valve seats, pump housings, marine propellers and seawater-resistant components, as well as various parts used in chemical processing equipment.

    Property Value Notes
    Tensile Strength (MPa) 620 – 760 Very high strength, comparable to low-alloy steels
    Yield Strength (0.2% Offset, MPa) 275
    Elongation at Break (%) 12 – 18
    Hardness (Brinell) 170 – 210 High hardness, very wear-resistant
    Density (g/cm³) 7.45 Lighter than tin bronze
    Key Composition Cu-85%, Al-11%, Fe-4% Tin-free, uses aluminum and iron as main alloying elements

    Note: Values are typical ranges, specific to heat treatment condition.


    C54400 — Phosphor Bronze

    Characteristics: This is a tin bronze with a small addition of phosphorus. Phosphorus enhances the alloy's elastic limit, fatigue strength, and wear resistance. The material exhibits excellent spring characteristics, good wear and corrosion resistance, and can be readily machined into precision components.

    Typical Applications: Perfect for electrical connectors, springs, diaphragms, bellows, wear plates, and high-precision gears across multiple industrial applications.

    Property Value Notes
    Tensile Strength (MPa) 520 – 690 High strength, especially suitable for elastic elements
    Yield Strength (0.2% Offset, MPa) 380 – 550 High yield strength
    Elongation at Break (%) 10 – 15
    Hardness (Rockwell B) 78 – 90
    Density (g/cm³) 8.8
    Key Composition Cu-88%, Sn-4%, Zn-4%, P-0.2–0.5% Phosphorus acts as a deoxidizer and enhances properties

    Note: Values are typical ranges, specific to the degree of cold work.


    C65500 — High-Silicon Bronze

    Characteristics: This bronze features exceptional corrosion resistance, especially in sulfuric acid and sulfate environments. It combines high strength, excellent corrosion resistance, good formability and weldability, making it widely applied in the chemical and marine industries.

    Typical Applications: Ideal for components in chemical processing equipment, heat exchanger tube sheets, marine hardware and fittings, pump and valve parts, fasteners, as well as welded structural parts.


    Frequently Asked Questions

    What is the difference between bronze and brass, and when should I choose bronze?
    Bronze is a copper-based alloy primarily alloyed with tin, aluminum, silicon, or other elements, while brass is a copper-zinc alloy. Bronze generally offers higher strength, a lower friction coefficient, and superior corrosion resistance—particularly in seawater or chemically aggressive environments. Choose bronze when your application demands excellent wear resistance, self-lubrication (as in bearings and bushings), or resistance to harsh chemical or marine conditions.
    Which bronze grade is best for bearing and bushing applications?
    C93200 / SAE 660 (High-Leaded Tin Bronze) is the most widely used grade for bearings and bushings. The high lead content creates soft particles within the alloy matrix, providing exceptional self-lubrication and anti-galling properties. It performs reliably even under high-load, low-speed, or poorly lubricated conditions.
    Is aluminum bronze (C95400) suitable for marine and seawater applications?
    Yes. C95400 Aluminum Bronze offers some of the best corrosion resistance among all bronze alloys, making it highly suitable for marine environments including seawater exposure. It is commonly used for marine propellers, pump housings, valve seats, and other seawater-resistant components, while also maintaining high strength at elevated temperatures.
    What makes phosphor bronze (C54400) ideal for electrical connectors and springs?
    The addition of phosphorus to C54400 significantly enhances the alloy's elastic limit, fatigue strength, and wear resistance. This gives the material excellent spring-back characteristics and the ability to maintain consistent mechanical performance under repeated stress cycles—making it the preferred choice for electrical connectors, springs, diaphragms, and precision elastic components.
    Can bronze alloys be used in chemical processing environments?
    Yes, several bronze grades are well-suited for chemical processing. C65500 High-Silicon Bronze is particularly notable for its exceptional resistance to sulfuric acid and sulfate environments. C95400 Aluminum Bronze also performs well in chemical processing equipment. Both grades combine corrosion resistance with sufficient mechanical strength for demanding industrial applications.
    Do you support custom machining of bronze parts from prototypes to small-batch production?
    Yes. Our machining centers are fully equipped to process a wide range of bronze alloy materials, including C93200, C95400, C54400, C65500, and more. We support the complete production spectrum—from complex prototypes requiring tight tolerances to small-batch and medium-volume manufacturing—ensuring consistent quality and material performance throughout.

    Finishes and Post-Processing Options

    The zinc alloy substrate is highly suitable for various surface treatments to enhance decoration, protection, or functionality:

    Electroplating: Such as chrome, nickel, gold, or silver plating, providing a highly decorative appearance, excellent wear and corrosion resistance. This is the most common choice.

    • Passivation or Chromate Conversion Coating:

    • Powder Coating:

    • Painting:

    • Physical Vapor Deposition (PVD):

    Design and Machining Considerations

    • Process Selection:

    • Design Considerations:

    • Material Selection:

      Zamak 3 and 5 are suitable for the vast majority of general-purpose parts requiring good appearance and strength; ZA-8 is better for wear and bearing applications; for making rapid tooling, choose specialized alloys like Kirksite.

    Ready to Start Your CNC Project?

    Send us your drawings to receive professional manufacturing solutions.