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Embedded Finned Tube A179 Base Tube With Aluminum Fins for Cooling Systems

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Embedded Finned Tube A179 Base Tube With Aluminum Fins for Cooling Systems

Brand Name : YUHONG

Model Number : Embedded Finned

Certification : ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008

Place of Origin : CHINA

MOQ : 500KGS

Price : Negotiable

Payment Terms : T/T, L/C at sight

Supply Ability : 50000pcs Per Month

Delivery Time : Depends on quantity

Packaging Details : Ply-wooden Case /Iron Case/ Bundle With Plastic Cap

Type : Embedded Finned G Type

Base Tube : ASTM A179 / ASME SA179

Fin material : Aluminum

Fin Height : <17mm

Fin Thickness : ~0.4mm

Fin pitch : 2.1~5mm

Package : Steel frame wooden case

Application : Heater Parts,heat exchanger,Cooler,Fluid Cooling

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Embedded Finned Tube A179 Base Tube With Aluminum Fins for Cooling Systems

 

 

Overview

 

Embedded Finned Tube refers to a type of heat exchanger tube that integrates (or "embeds") fins into its surface to enhance heat transfer. This design is used to maximize the surface area for heat exchange between the fluid inside the tube (such as air, steam, oil, or water) and the external environment (another fluid or gas). The fins are typically made of metal and can either be welded, mechanically bonded, or pressed into the surface of the tube.

Embedded finned tubes are highly effective for enhancing heat transfer in many different industrial and commercial applications. By integrating fins into the tube surface, they offer greater surface area, improved heat dissipation, and more compact designs. However, care must be taken in material selection and system design to avoid challenges like corrosion, clogging, and high manufacturing costs.

 

Advantages of Embedded Finned Tubes:

  1. Increased Heat Transfer Efficiency: The primary benefit is the large increase in surface area for heat exchange, which leads to higher efficiency in transferring heat.

  2. Compact Design: By increasing the surface area in a relatively small volume, embedded finned tubes allow for more compact heat exchangers and cooling systems.

  3. Higher Heat Dissipation: These tubes can dissipate more heat than a smooth tube of the same size, making them ideal for high-heat-density applications.

  4. Cost-Effective in Some Cases: In applications where space is limited, embedded finned tubes allow for a smaller heat exchanger, reducing both size and cost of the equipment.

 

Manufacturing Processes for Embedded Finned Tubes:

  1. Extrusion: The fins are extruded directly from the material of the tube, which provides a seamless integration of fins into the tube’s surface.

  2. Swaging: A process where the tube is mechanically deformed to create the fins. This can be done either by a rotary swaging machine or a stamping process.

  3. Welding or Bonding: Fins can be welded or bonded to the surface of the tube using high-precision techniques.

  4. Fin Pressing: In some designs, the fins are pressed into the tube by force. This is a simpler manufacturing technique that can be used to create cost-effective embedded finned tubes.

  5. Coiling or Winding: In some cases, fins are wound around the tube, although this is less common in embedded fin tubes where the fins are usually integrated into the tube surface.

 

 

Applications

  • Heat Exchangers
  • Air Cooling or Heating

  • Gas-to-liquid Heat Transfer

  • Cooling Systems in Engines and Boilers

  • Engine Radiators

  • Boiler Systems

  • Cryogenic Systems
  • Air Conditioning Systems
  • Oil Coolers and Heat Recovery Systems
  • Heat Recovery Systems

  • Solar Thermal Collectors

  • Process Heat Transfer in Chemical and Petrochemical Industries

  • Desalination Plants

 

 

Embedded Finned Tube A179 Base Tube With Aluminum Fins for Cooling Systems


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A1060 Carbon Steel Finned Tube

      

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