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Company blog about Study Explores CZ129CW611N Brass Properties and Industrial Uses

Study Explores CZ129CW611N Brass Properties and Industrial Uses

2026-03-05

Imagine a metal material that withstands high-temperature forging, undergoes precise cold working, and resists corrosion with equal proficiency. This shape-shifting material, known as CZ129/CW611N free-cutting brass, demonstrates remarkable adaptability across diverse industrial applications.

Understanding CZ129/CW611N Free-Cutting Brass

CZ129/CW611N represents a low-lead brass alloy composed primarily of copper (approximately 60%) and zinc (approximately 40%). While similar in composition to standard Muntz metal, its distinctive characteristic lies in the uniform dispersion of fine lead particles throughout the brass matrix, granting unique mechanical properties.

This material earns its "free-cutting" designation through exceptional thermal processability, superior cold-forming characteristics, and excellent machinability. Combined with notable strength, ductility, and corrosion resistance, these properties make it ideal for components requiring hot forging or upsetting followed by precision machining.

Material Specifications and Composition

The alloy conforms to multiple international standards, including:

  • CZ129
  • C37000
  • CW611N
  • CuZn39Pb1

Chemical composition analysis reveals:

  • Copper (Cu): 59.0-60.0%
  • Lead (Pb): 0.80-1.60%
  • Nickel (Ni): ≤0.30%
  • Iron (Fe): ≤0.20%
  • Aluminum (Al): ≤0.05%
  • Tin (Sn): ≤0.20%
  • Zinc (Zn): Balance
  • Other elements: ≤0.20% total
Key Material Properties

CZ129/CW611N demonstrates several critical performance characteristics:

  • Superior thermal and cold formability
  • Enhanced corrosion resistance
  • Excellent machinability (rated at 60% relative to standard free-cutting brass)
Physical Characteristics

Typical physical properties include:

  • Melting point: 920°C
  • Density: 8.41 g/cm³
  • Specific heat capacity: 377 J/kg·K
  • Thermal conductivity (room temperature): 121 W/m·K
  • Thermal expansion coefficient (20-200°C): 20.9 × 10⁻⁶
  • Electrical conductivity: 26% IACS
  • Young's modulus: 97 GPa
Manufacturing Parameters

Recommended processing conditions:

  • Hot working temperature range: 700-750°C
  • Annealing temperature range: 450-650°C
  • Stress relief temperature range: 250-350°C
Joining Methods

Recommended connection techniques:

  • Welding: Excellent
  • Brazing: Good
  • Oxy-acetylene welding: Not recommended
  • Gas-shielded arc welding: Not recommended
  • Resistance welding (spot, seam, butt): Not recommended
Industrial Applications

The alloy's versatility enables diverse implementations:

  • Architectural components (handles, window frames, railings)
  • Decorative items (jewelry, art pieces)
  • Industrial components (valves, piping systems, fittings)
Conclusion

CZ129/CW611N free-cutting brass represents a high-performance material combining exceptional formability, machinability, and corrosion resistance. Its balanced properties make it particularly suitable for components requiring sequential hot forming and precision machining operations. From architectural elements to industrial hardware, this alloy continues to demonstrate significant value across multiple sectors.