Type: | Extruded Finned Tube | Standard: | ASTM A249 |
---|---|---|---|
Material Grade: | TP304L | Application: | Heater Parts, Refrigeration Parts, Heat Exchanger, Cooler, Fluid Cooling |
Tube Material: | Carbon Steel, Stainless Steel, Copper Etc. | Fin Material: | Aluminum, Copper And Steel Etc, Copper, Carbon Steel, Stainless Steel |
ASTM A249 TP304L Extruded Stainless Steel Finned Tube For Boiler
TONG CHUANG supply customised finned tubes to meet specific requirements. We are manufacturer, own complete line of finned tubes includes Extruded Fin Tubes, Spiral Welded Fin Tubes, Embedded Fin Tubes (G-Fin Tubes), L Fin Tubes, LL Fin Tubes, KL Fin Tubes (Knurled Fin Tubes), Square Fin Tubes (H Fin Tubes), Square Fin Tubes (H Fin Tubes), and Square Fin Tubes (H Fin Tubes). Tubes, Square Fin Tubes (H-Fin Tubes), Rectangular Fin Tubes (Double H-Fin Tubes), Longitudinal Fins High-frequency welded serrated finned tubes and high-frequency welded solid finned tubes.
The significant advantage of finned tubes is improved heat transfer efficiency. By expanding the available surface area for heat transfer, finned tubes promote more efficient heat exchange between two fluids than regular tubes. The fins on the base tube accelerate heat transfer, resulting in a more optimised heat exchange process and enhanced system performance. In addition, stainless steel finned tubes help save energy and reduce costs. Increased heat transfer efficiency requires less energy to achieve the desired level of heat exchange.
Specification: | ASME SA249 | Grade: | TP304L |
Application: | Oil Cooler, Pre Heater, Radiator, Air Conditioner Evaporator | Type: | Extruded |
Fin Material: | Aluminum | Shape: | Round |
Chemical Composition
Grade | Density (kg/m3) | Elastic Modulus (GPa) | Mean Coefficient of Thermal Expansion (μm/m/°C) | Thermal Conductivity (W/m.K) | Specific Heat 0-100°C (J/kg.K) | Electrical Resistivity (nΩ.m) | |||
0-100°C | 0-315°C | 0-538°C | at 100°C | at 500°C | |||||
304 | 8000 | 193 | 17.2 | 17.8 | 18.4 | 16.2 | 21.5 | 500 | 720 |
What is ASTM A213 TP304L Extruded Finned Tubing?
ASTM A213 TP304L Extruded Finned Tubes consist of two parts, the bare ASTM A213 TP304L tube and the extruded aluminium fins on the tube.ASTM A213 TP304L
Extruded finned tubes are finned tubes with a base tube material of ASTM A213 TP304L. The finning process consists of extruding fins on the surface of the base tube.
The use of ASTM A213 TP304L as the base tube material in extruded finned tubes has several advantages:
1. corrosion resistance: TP304L stainless steel has excellent corrosion resistance, making it suitable for applications in a variety of environments, including those exposed to corrosive liquids or substances.
2. High Temperature Strength: ASTM A213 TP304L has good strength and excellent high temperature resistance, making it suitable for applications involving high temperatures or thermal cycling.
3. Durability: The use of TP304L stainless steel as the base tube material ensures that the finned tubes will be durable and able to withstand the rigours of operation in demanding environments.
4. Compatibility: TP304L stainless steel is compatible with a wide range of fluids and gases, making it suitable for use in a variety of industries, including petrochemical, power generation, HVAC and process industries. Power generation, HVAC and process industries.
ASTM A213 TP304L Extruded Finned Tubing Applications
ASTM A213 TP304L Extruded Finned Tubes are used in heat exchangers, air coolers, condensers, boilers and refrigeration systems to promote efficient heat transfer and improve overall system performance. They facilitate efficient heat transfer and improve overall system performance.
ASTM A213 TP304L Extruded Finned Tubes Summary
ASTM. A213 TP304L extruded finned tubes are finned tubes where the base tube material is ASTM A213 TP304L stainless steel.TP304L stainless steel's corrosion resistance, high toughness, high strength steel's corrosion resistance, high temperature strength, and compatibility make it ideal for applications requiring good heat transfer and durability.
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