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ASME SB111 C44300 Seamless U Bend Tube For Coolers and Heat Exchangers

ASME SB111 C44300 Seamless U Bend Tube For Coolers and Heat Exchangers

Brand Name: Yuhong
Model Number: ASTM B444 Alloy 625 N06625 Seamless U Bend Tube
MOQ: Depend on Customers' Requirements
Price: Negotiable
Payment Terms: TT, LC
Supply Ability: According to Clients' Requirements
Detail Information
Place of Origin:
China
Certification:
ABS, BV, DNV, CCS, LR
Product Name:
ASME SB111 C44300 Seamless U Bend Tube
Tube Specification&Material:
ASME SB111 C44300
Tube's OD:
Customsized
Tube's Wall Thickness:
Customsized
Tube Shape:
U-Bend Tube
Tube's End:
Plain End
Tube's Length:
Depend On Customer
Application:
Surface Condensers; Shipboard Condensers & Coolers; Various Coolers And Heat Exchangers; Cooling Water Exchangers...
Packaging Details:
Ply-wooden Cases(with steel frames), Tube's Both Ends with Plastic Caps
Supply Ability:
According to Clients' Requirements
Product Description

ASME SB111 C44300 Seamless U Bend Tube For Coolers and Heat Exchangers

 

ASME SB111 C44300 U Bend tube is a U-shaped heat exchanger tube made from a specific copper-nickel alloy (C44300, also known as Admiralty Brass) designed for excellent corrosion resistance in marine and freshwater environments. The "ASME SB111" is the standard that governs its material and manufacture, and the "U Bend" is its formed shape for use in heat exchangers like condensers.

 

Here are some detailed breakdowns:

1. Chemical Composition of ASME SB111 C44300

The chemical composition of C44300 is defined by its limits for copper, zinc, tin, and other specific elements, with arsenic (As) being the critical addition to resist dezincification.

Element Composition (% by Weight) Note
Copper (Cu) 70.0 - 73.0 Base element, provides corrosion base.
Tin (Sn) 0.8 - 1.2 Key alloying element; improves general and corrosion resistance.
Zinc (Zn) Remainder Primary alloying element; provides strength and cost reduction.
Lead (Pb) 0.07 max Impurity; strictly limited to avoid hot shortness.
Iron (Fe) 0.06 max Impurity; limited to prevent detrimental effects on corrosion.
Antimony (Sb) Not Specified Typically minimal.
Phosphorus (P) Not Specified Typically minimal.
Manganese (Mn) Not Specified Typically minimal.
Nickel (Ni) Not Specified Typically minimal.
Silicon (Si) Not Specified Typically minimal.
Arsenic (As) 0.02 - 0.06 The critical element. Added specifically to inhibit dezincification.
Other Elements 0.30 max (each) Total other unnamed impurities are limited.

Key Takeaway: The defining feature of C44300 is the intentional addition of Arsenic (As) between 0.02% and 0.06%. This small amount is what classifies it as an "inhibited" Admiralty Brass, giving it superior resistance to dezincification compared to its non-arsenical counterpart (C44200).

 

2. Mechanical Properties of ASME SB111 C44300

ASME SB111 specifies mechanical properties for the material in the drawn (hard) temper. The temper is a result of the cold-working process used to manufacture the seamless tube, which increases its strength.

Property Requirement Note / Test Method
Tensile Strength ** min** 380 MPa (55,000 psi)
Yield Strength (at 0.5% Extension Under Load) ** min** 195 MPa (28,000 psi) This is the proof s

 

3. Additional Test Requirements per ASME SB111

  • Flattening Test
  • Reverse Flattening Test
  • Hydrostatic Test
  • Eddy-Current Test
  • Grain Size

4. Key Properties of C44300 (Admiralty Brass):

  • Excellent Corrosion Resistance: Particularly resistant to fresh water, seawater, and steam. Its primary advantage is its high resistance to dezincification.
  • Good Biofouling Resistance: It has reasonable antifouling properties, resisting the attachment of marine organisms like algae and barnacles better than many other copper alloys.
  • Good Thermal Conductivity: While not as high as pure copper, it still has very good heat transfer capabilities, making it an efficient choice for heat exchangers.
  • Moderate Strength and Good Ductility: It is strong enough for heat exchanger applications and can be easily formed into U-bends without cracking.

Typical Applications:

These tubes are almost exclusively used in heat exchangers that handle water, particularly where corrosion is a major concern:

  • Power Plants:
    • Surface Condensers: Their most common application. These large heat exchangers condense steam exiting a turbine back into water (feedwater). They use massive quantities of cooling water (often seawater or brackish water from rivers/estuaries) on the shell side and steam on the tube side. C44300's resistance to both corrosion and biofouling is essential here.
  • Marine and Offshore:
    • Shipboard Condensers & Coolers: Used in systems to cool the ship's engines and other equipment using seawater as the coolant.
  • Chemical and Process Industries:
    • Various Coolers and Heat Exchangers: For processes involving cooling with water where chlorides or other corrosive elements are present.
  • Refineries and LNG Plants:
    • Cooling Water Exchangers: In overhead condensers or other coolers that use water as the cooling medium.

 

 

Why This Specific Combination is Chosen?

  • Material (C44300): Chosen for its proven corrosion resistance in water services, which is the single most important factor for longevity and reliability in condensers.
  • Form (U-Bend): Chosen for its mechanical function in a shell and tube heat exchanger design, allowing for thermal expansion and simplifying bundle design (no need for a separate rear head).
  • Standard (ASME SB111): Chosen to ensure the material meets strict quality, performance, and safety requirements for use in coded pressure vessels and heat exchangers, which are often designed to the ASME Boiler and Pressure Vessel Code (BPVC), Section VIII.

 

In essence, an ASME SB111 C44300 U Bend tube is a critical, high-reliability component designed for long service life in the harsh, corrosive environment of a water-cooled heat exchanger.

ASME SB111 C44300 Seamless U Bend Tube For Coolers and Heat Exchangers 0