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ASTM B111 UNS C44300 / CuZn28Sn1 Admiralty Brass Tube Copper Heat Exchanger Tube

ASTM B111 UNS C44300 / CuZn28Sn1 Admiralty Brass Tube Copper Heat Exchanger Tube

Nombre De La Marca: YUHONG
Número De Modelo: Tubo de latón sin costura ASTM B111 UNS C44300
MOQ: 500kg
Precio: Negociable
Condiciones De Pago: LC, T/T
Información detallada
Lugar de origen:
Porcelana
Certificación:
ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Nombre de producción:
Tubo intercambiador de calor
Estándar:
ASTM B111, ASME SB111
material:
UNS C44300, CuZn28Sn1
sobredosis:
1/4", 3/8", 1/2", 5/8", 3/4", 1", 1,1/4", etc.
peso:
BWG 25, 22, 20, 18... 10
Longitud:
Longitud de corte aleatoria simple, aleatoria doble
Extremo del tubo:
Extremo liso, extremo biselado
Proceso:
Estirado en frío
solicitud:
Caldera, Intercambiador de Calor, Planta de Petróleo y Gas, Refrigeración, Condensador
Detalles de empaquetado:
Cuerpo de madera, paquete con tapa de plástico
Resaltar:
Tubo de latón del Almirantazgo de ASTM B111 UNS C44300, tubo de intercambiador de calor CuZn20Al2
Descripción de producto

ASTM B111 UNS C44300 / CuZn28Sn1 O61 Temper Admiralty Brass Seamless Tube

 

 

ASTM B111 C44300 is the standard specification for seamless Admiralty Brass tubes used in heat exchangers and condensers. Also known by the EN designation CuZn28Sn1, this alloy consists of approximately 70% copper, 28% zinc, and 1% tin, with a small addition of arsenic. The tin and arsenic act as inhibitors, providing excellent resistance to dezincification (selective zinc corrosion) in fresh and brackish water environments. These tubes offer a strong balance of good thermal conductivity, corrosion resistance, and ductility for easy fabrication. They are widely specified for surface condensers in power plants, marine heat exchangers, and freshwater generators, providing a cost-effective solution where resistance to general corrosion and erosion is required.

 

 

Comparison: C44300 vs. C44400 vs. C44500
ASTM B111 actually lists three types of Admiralty Brass with different inhibitors, though C44300 (Arsenical) is the most common globally.
C44300: Inhibited with Arsenic.
C44400: Inhibited with Antimony.
C44500: Inhibited with Phosphorus.

 

 

Equivalent Grades of Copper Alloys

Material Designation Corresponding Material Symbol
GB/T8890 ASTM B111 BS2871 JIS H3300 DIN1785
Copper-Nickel BFe10-1-1 C70600 CN102 C7060 CuNi10Fe1Mn
BFe30-1-1 C71500 CN107 C7150 CuNi30Mn1Fe
(BFe30-2-2) C71640 CN108 C7164 CuNi30Fe2Mn2
(BFe5-1.5-0.5) C70400
B7
Aluminums Brass HAL77-2 C68700 CZ110 C6870 CuZn20Al2
Admiralty Brass HSn70-1 C44300 CZ111 C4430 CuZn28Sn1
Boric Brass Hsn70-18
HSn70-1 AB
Arsenical Brass H68A CZ126
Brass Tube H65/H63 C28000/C27200 CZ108 C2800/C2700 CuZn36/CuZn37

 

 

Chemical Composition of Copper Alloys

Note: The "CuZn28Sn1" designation literally means Copper (Cu) 72%, Zinc (Zn) 28%, Tin (Sn) 1%.
Designation Chemical Composition %
Cu Sn Al As Ni Fe Mn Pb max. Zn
C44300 70.0-73.0 0.9-1.2 0.02-0.06 0.06 max 0.07 Rem
C68700 76.0-79.0 1.8-2.5 0.02-0.06 0.06 max 0.07 Rem
C70400 Rem 4.8-6.2 1.3-1.7 0.3-0.8 0.05 1.0max
C70600 Rem 9.0-11.0 1.0-1.8 1.0max 0.05 1.0max
C71500 Rem 29.0-33.0 0.4-1.0 1.0max 0.05 1.0max
C71640 Rem 29.0-32.0 1.7-2.3 1.5-2.5 0.05 1.0max
The "Admiralty" brasses were developed to combat dezincification corrosion in high-chloride environments (like seawater). The addition of tin (Sn) and Arsenic (As) acts as inhibitors.

 

Tensile Requirements:

Copper or Copper Alloy UNS NO. Temper Designation Tensile Strength Yield Strength
Standard Former min ksi min ksi
C44300 O61 annealed 45 15
C68700 O61 annealed 50 18
C70400 H55 light-drawn 38 30
C70600 H55 light-drawn 45 15
C71500 O61 annealed 52 18
C71640 O61 annealed 63 25

 

 

QUICK SELECTION GUIDE

Choose C68700 when:

Clean seawater or brackish water (open ocean quality)
Moderate velocities (1.5-2.5 m/s)
Temperatures < 60°C
Good filtration system exists
Budget is constrained but corrosion resistance needed
Maintenance team experienced with copper alloys
Can tolerate some fouling/cleaning cycles

 

Choose C70600 (90/10 CuNi) when:

Moderate water quality (some pollution risk)
Higher velocities (2.0-3.0 m/s)
Temperatures up to 80°C
Some sulfide risk exists but controlled
Budget allows 30-50% premium over C68700
Better long-term reliability needed

 

Choose C71500 (70/30 CuNi) when:

Poor to moderate water quality
High velocities (>3.0 m/s)
Temperatures up to 100°C
Sulfide contamination possible
Low maintenance accessibility
Critical system with high downtime costs

Choose Titanium when:

Severely polluted or sulfide-laden water
Maximum velocities required
Temperatures > 100°C
Zero corrosion tolerance (nuclear, critical)
Very long design life (>30 years)
Budget not primary constraint

 

 

Application

 

This specific alloy is almost exclusively used in heat transfer equipment where water is the cooling medium:
  • Heat Exchangers: General industrial and marine service.
  • Condensers: Surface condensers in power plants (both fossil and nuclear) and marine propulsion systems.
  • Distillation Plants: Freshwater generators and evaporators.
  • Feedwater Heaters: (Though higher grades like Stainless Steel or Cu-Ni are often used for higher temperatures now).

 

 
 
ASTM B111 UNS C44300 / CuZn28Sn1 Admiralty Brass Tube Copper Heat Exchanger Tube 0