| Brand Name: | YUHONG |
| Model Number: | A269 TP321 HFW Solid Fin Tube |
| MOQ: | 1 PC |
| Price: | Negotiable |
| Packaging Details: | Ply-Wooden Case + Iron Frame |
| Payment Terms: | T/T,L/C |
Overview
ASTM A269 TP321 HFW solid fin tube is a high-efficiency heat transfer element engineered for general heat exchange equipment. The solid helical fins are permanently bonded to the TP321 stainless steel base tube by high-frequency welding (HFW), delivering reliable thermal performance, long service life and low maintenance cost in heat exchangers, condensers, air coolers, economizers and waste heat recovery systems. Compared with bare tubes, this finned tube dramatically enlarges the heat transfer surface and improves overall efficiency, making it one of the most widely adopted heat transfer components in modern industrial heat exchange equipment.
In general heat exchange equipment, the finned tube significantly increases the external heat transfer area per meter of tube length. The helical solid fins also disturb the shell-side flow and create turbulence, which further enhances convective heat transfer. The metallurgical bond formed by HFW welding eliminates the air gap between fin and tube, keeping contact thermal resistance to a minimum. As a result, heat exchange equipment built with this finned tube achieves higher thermal duty with a smaller footprint, directly reducing both capital and operating costs. The comparison below illustrates the performance gain over bare tubes.
| Item | Bare Tube | TP321 HFW Solid Fin Tube |
|---|---|---|
| External heat transfer surface per meter | 1x | 5-10x |
| Overall heat exchange efficiency | Baseline | 2-5 times higher |
| Contact thermal resistance | N/A | Minimal, metallurgical bond without air gaps |
| Shell-side flow condition | Laminar | Turbulent, enhanced by helical fins |
| Compactness of heat exchange equipment | Large footprint | Reduced size and weight |
TP321 is a titanium-stabilized austenitic stainless steel, specifically formulated for service in the temperature range where standard 304/316 grades are prone to sensitization and intergranular corrosion. This makes it particularly suitable for heat exchange equipment handling high-temperature flue gas, steam and corrosive process fluids. The material also offers excellent oxidation resistance and good creep strength, ensuring the finned tube maintains structural integrity under cyclic thermal loading over a long service life. Key material evidence is summarized below.
| Property | Performance Evidence | Benefit in Heat Exchange Equipment |
|---|---|---|
| Intergranular corrosion resistance | Stabilized with titanium, safe at 430-900°C | Reliable under high-temperature continuous service |
| Oxidation resistance | Excellent in flue gas and hot process media | Long service life in boilers and fired heaters |
| Media compatibility | Steam, hot oil, seawater, chemical fluids | Versatile for diverse process fluids |
| Creep and thermal fatigue strength | Good at elevated temperatures | Withstands cyclic thermal loads |
The high-frequency welding process used to manufacture this finned tube produces a dense, continuous metallurgical bond between fin and base tube, with weld strength equivalent to the base metal. This guarantees stable heat conduction at every fin-to-tube joint over decades of operation. Each production batch can be supplied with full inspection records, and the tube is manufactured in full compliance with ASTM A269. The quality evidence is listed below.
| Inspection Item | Method | Result |
|---|---|---|
| Weld strength | Tensile test | Equal to base metal |
| Weld penetration | Metallographic examination | Consistent and full penetration |
| Tube integrity | Eddy current / hydrostatic test | 100% inspected on request |
| Standard compliance | ASTM A269 | Fully compliant |
Thanks to the combination of high heat transfer efficiency and excellent corrosion resistance, this finned tube has been widely proven in general heat exchange equipment across multiple industries. It is a standard choice wherever the shell-side medium is gas, flue gas or viscous fluid with low heat transfer coefficient, and wherever space or weight constraints call for compact heat exchange design. Typical equipment and industries are summarized in the table below.
| Equipment Type | Typical Duty | Industry |
|---|---|---|
| Shell and tube heat exchanger | Heating and cooling of process media | Petrochemical, chemical, pharmaceutical |
| Air cooler / fin-fan cooler | Condensation and cooling | Refining, natural gas processing |
| Condenser / evaporator | Phase change heat transfer | Power generation, refrigeration |
| Economizer / waste heat recovery boiler | Flue gas heat recovery | Power plants, industrial boilers |
| Fired heater / HRSG | High-temperature heat recovery | Refining, power generation |
| Oil cooler / gas cooler / intercooler | Cooling of oil and gas | General industrial plants |
Quality is assured through strict compliance with international standards and a complete traceability system. Every finned tube can be delivered with material test certificates and inspection reports, giving end users full confidence in both material quality and manufacturing consistency.
The standard configuration is shown below; other dimensions are available on request to match the design duty of your heat exchange equipment.
| Parameter | Value |
|---|---|
| Base Tube OD | 25.4mm |
| Wall Thickness | 0.8mm |
| Fin Height | 12mm |
| Fin Pitch | 5mm |
| Fin Thickness | 1.0mm |
| Length | 6m or customized |