Yuhong Holding Group Co., LTD
| Tempat asal: | Cina |
| Nama merek: | YUHONG |
| Sertifikasi: | ISO9001:2015; ISO14001:2015; ISO45001:2018; PED 2014/68/EU; WPS/PQR/WPQ; ISO 3834 |
| Nomor model: | T/A |
| Kuantitas min Order: | 500kg |
|---|---|
| Harga: | To be discussed |
| Kemasan rincian: | Kotak kayu lapis atau kotak kayu rangka besi |
| Waktu pengiriman: | 50-120 Hari |
| Syarat-syarat pembayaran: | L/C,T/T |
| Menyediakan kemampuan: | 5000 Meter/Hari |
| Produk: | Tabung Fined Tertanam | Bahan: | ASME SB111 C68700 |
|---|---|---|---|
| Aplikasi: | Penukar Panas Shell-dan-Tabung | Kemasan: | Kotak kayu lapis atau kotak kayu rangka besi |
| Menyoroti: | ASME SB111 C68700 low fin tubes,shell-and-tube heat exchanger fin tubes,C68700 heat exchanger tubes with warranty |
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ASME SB111 C68700 Low Finned Tubes for Shell-and-Tube Heat Exchangers
Product Overview
ASME SB111 C68700 Low Finned Tubes are premium enhanced-surface heat transfer tubes manufactured from Aluminum Brass (UNS C68700) seamless tubing and engineered specifically for high-efficiency shell-and-tube heat exchangers. The low-fin geometry is mechanically formed from the base tube wall, creating an integral fin structure that significantly increases the external heat transfer area while maintaining excellent thermal conductivity and mechanical integrity.
C68700 Aluminum Brass is widely recognized for its exceptional resistance to seawater corrosion, erosion, impingement attack, and biofouling, making it one of the most widely specified materials for condensers, marine coolers, desalination plants, power stations, and petrochemical heat exchangers.
The combination of Aluminum Brass metallurgy and low-fin enhancement enables designers to achieve higher thermal performance, reduced exchanger size, and lower operating costs compared to conventional plain tubes.
Key Features
Typical Applications
Power Generation
Marine Industry
Desalination Plants
Petrochemical & Refining
HVAC & Refrigeration
Manufacturing Process
The low fins are formed through a precision cold-working process that displaces material from the tube wall to create continuous helical fins. Since the fins are integral with the tube, there is no metallurgical discontinuity between the fin and the base material.
This manufacturing method provides:
Standard Size Range
| Parameter | Standard Range |
|---|---|
| Base Tube Outside Diameter | 15.88 mm – 31.75 mm |
| Tube Wall Thickness | 0.70 mm – 3.00 mm |
| Tube Length | Up to 18,000 mm |
| Fin Height | 0.8 mm – 2.5 mm |
| Fin Pitch | 8 – 26 Fins Per Inch (FPI) |
| Fin Thickness | 0.25 mm – 0.50 mm |
| Finned Length | As per customer requirements |
| Bare End Length | 50 mm – 300 mm |
| Surface Area Enhancement Ratio | 2 – 4 Times Plain Tube |
Custom dimensions and fin configurations can be produced according to project specifications and thermal design calculations.
Chemical Composition of ASME SB111 C68700 (Aluminum Brass)
| Element | Composition (%) |
|---|---|
| Copper (Cu) | 76.0 – 79.0 |
| Zinc (Zn) | Balance |
| Aluminum (Al) | 1.8 – 2.5 |
| Arsenic (As) | 0.02 – 0.06 |
| Iron (Fe) | 0.06 Max |
| Manganese (Mn) | 0.01 Max |
| Nickel (Ni) | 0.50 Max |
| Lead (Pb) | 0.07 Max |
The controlled aluminum addition forms a protective surface film that significantly enhances resistance to seawater corrosion and erosion.
Mechanical Properties
Typical Mechanical Properties (Annealed Condition)
| Property | Value |
|---|---|
| Tensile Strength | ≥ 360 MPa |
| Yield Strength (0.5% Extension Under Load) | ≥ 125 MPa |
| Elongation | ≥ 30% |
| Hardness | Typical 70–100 HRB |
| Thermal Conductivity | Approximately 115–125 W/m·K |
| Density | Approximately 8.33 g/cm³ |
Values may vary depending on tube dimensions, manufacturing condition, and customer specifications.
Inspection and Testing
Raw Material Verification
Dimensional Inspection
Mechanical Testing
Non-Destructive Testing (NDT)
Surface Examination
Documentation Supplied
Advantages of C68700 Low Finned Tubes
The low-fin profile increases external surface area, resulting in significantly improved thermal efficiency compared to plain tubes.
Aluminum Brass offers excellent protection against seawater corrosion, making it ideal for marine and desalination applications.
Improved heat transfer coefficients allow more compact exchanger designs and reduced material usage.
Excellent resistance to erosion-corrosion and biofouling contributes to lower maintenance costs and extended operational life.
Combines strong thermal performance with durability, reducing total lifecycle costs.
Applicable Standards
Manufacturing and inspection can be performed according to:
Why Choose ASME SB111 C68700 Low Finned Tubes?
ASME SB111 C68700 Aluminum Brass Low Finned Tubes provide an ideal combination of heat transfer efficiency, seawater corrosion resistance, mechanical reliability, and long-term durability. Their enhanced surface design enables higher thermal performance while maintaining the proven corrosion resistance of Aluminum Brass, making them a preferred choice for shell-and-tube heat exchangers operating in marine, power generation, desalination, HVAC, and petrochemical environments.
Kontak Person: Vantin
Tel: 19537363734
Faks: 0086-574-88017980