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ASTM A106 Gr B Studded Tubes For Furnaces In Corrosive Environment
Detailes of Base Tubes
ASTM A106 This specification covers seamless carbon steel pipe for high-temperature service in NPS 1 ⁄ 8 to NPS 48 [DN 6 to DN 1200] inclusive, with nominal (average) wall thickness as given in ASME B36.10M.
Chemical Composition (%)
Grade | C | Mn | P | S | Si | Cr | Cu | Mo | Ni | V |
Gr.B | 0.30 | 0.29-1.06 | 0.035 | 0.035 | 0.10 | 0.40 | 0.40 | 0.15 | 0.40 | 0.08 |
Mechanical Properties
Grade | Tensile Strength,min | Yield Strength (0.2%Offset,min) |
Gr. B | 60ksi (415 MPa) | 35ksi (240 MPa) |
Studded Tubes
The nail head tube ( studded fin tube) is also called nail like ribbed tube. In petrochemical industry, nail head pipe is widely used. Especially in the convection chamber of the tubular furnace, in order to enhance the heat transfer effect outside the tube, the heat transfer element often adopts the nail head tube.
Material: Typically constructed from materials such as carbon steel, stainless steel, alloy or copper, providing durability and resistance to corrosion.
Advantages of Studded Tubes
*Corrosion resistance, wear resistance, low contact thermal resistance, high stability.
*The studs disrupt fluid flow, leading to better mixing and improved thermal performance.
*The studded design significantly improves heat exchange efficiency compared to smooth tubes.
*The robust construction makes them suitable for harsh operating conditions, including high temperatures and pressures.
*With a versatile application, suitable for a wide range of industries, including oil and gas, chemical processing, and power generation.
Application
Cooling systems
Common in cooling towers, condensers, and evaporators, where efficient heat dissipation is essential.
Fired Heaters
Employed in fired heaters and other thermal process equipment to enhance heat transfer efficiency.
Marine Applications
Used in ship cooling systems and other marine heat exchangers where robust performance is required.
Heat exchangers, boilers, furnaces and refineries
Widely used in industrial heat exchangers for power generation, petrochemical processes, and HVAC systems.
Specifications
Type | Description | Base tube | Fin specification (mm) | ||
O.D. (mm) | Fin pitch | Fin height | Fin thick | ||
Embedded | G-type fin tube | 16-63 | 2.1~5 | <17 | ~0.4 |
Extruded | Single metal / Combined metal | 8-51 | 1.6~10 | <17 | 0.2-0.4 |
Low fin tube / T-type fin tube | 10-38 | 0.6~2 | <1.6 | ~0.3 | |
Bamboo tube / corrugated tube | 16-51 | 8.0~30 | <2.5 | ~0.3 | |
Wound | L / KL / LL type fin tube | 16-63 | 2.1~5 | <17 | ~0.4 |
String | String fin tube | 25-38 | 2.1-3.5 | <20 | 0.2-0.5 |
U-type | U-type fin tube | 16-38 | / | / | / |
Welding | HF-welding fin tube | 16-219 | 3~25 | 5~30 | 0.8-3 |
H/HH type fin tube | 25-63 | 8~30 | <200 | 1.5-3.5 | |
Studed fin tube | 25-219 | 8~30 | 5~35 | φ5-20 |