Aluminium Extruded Bimetallic Fin Tube for Heat Exchanger - Échangeur de chaleur à tube à ailettes DATANG: Des solutions de transfert de chaleur efficaces pour vos besoins.

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Aluminium Extruded Bimetallic Fin Tube for Heat Exchanger

Parameters Spécification
Base Tube O.D (mm) 10-51mm
Base Tube Thickness (mm) 1.65-3.0mm
Fin Height (mm) 5.0-12.0 mm
Épaisseur de l’aileron (mm) 0.3 mm ~ 1.2 mm
Fin Pitch (mm) 2 mm ~ 15 mm
Base Tube Material Acier au carbone,Inox,Acier allié, Aluminium,Cuivre
Fin Material Aluminium, Cuivre
Tube Length (Mtr) 30 Mtrs

  • Détails du produit
  • Attributs du produit

Aluminum Extruded Integral Fin Tubes: Advanced Manufacturing, Versatility, and Applications

In the realm of heat exchange and thermal management solutions, aluminum extruded integral fin tubes‌ stand out as a pinnacle of engineering efficiency. Combining innovative manufacturing processes, material adaptability, and superior performance, these tubes are revolutionizing industries ranging from HVAC to renewable energy. This article explores the ‌extrusion process, material options, specifications, real-world applications, and ‌advantages‌ of aluminum integral fin tubes, offering insights into why they are a top choice for modern thermal systems.


1. Extruded Fin Tube The Extrusion Process: Precision Meets Performance

The production of aluminum extruded integral fin tubes relies on a ‌high-precision extrusion process‌ that ensures structural integrity and optimized heat transfer. Here’s a step-by-step breakdown:

  • Billet Preparation: High-purity aluminum alloys are heated to a pliable temperature (400–500°C).
  • Extrusion Through Dies: The softened aluminum is forced through a custom-designed die, forming a seamless tube with integrated fins in a single step.
  • Cooling and Cutting: The extruded profile is rapidly cooled to lock in mechanical properties, then cut to specified lengths.
  • Surface Treatment: Optional anodizing or coating enhances corrosion resistance and aesthetics.

Why extrusion?‌ This method eliminates weak joints between fins and the base tube, ensuring superior thermal conductivity, durabilité, and leak resistance compared to bonded or welded fins.


2. Aluminum Extruded Fin Tubes Material Options: Tailored for Diverse Needs

Aluminum extruded fin tubes are primarily made from ‌6000-series alloys, prized for their balance of strength, résistance à la corrosion, and thermal conductivity:

  • 6063 Aluminium: Ideal for HVAC and electronics cooling (excellent surface finish, moderate strength).
  • 6061 Aluminium: Preferred for heavy-duty industrial applications (higher tensile strength, marine-grade durability).
  • Custom Alloys: For extreme environments, alloys like 7075 or 2024 can be extruded for enhanced thermal/mechanical performance.

3. ExtrudedFin Pipes Specifications: Flexibility in Design

These tubes cater to a wide range of dimensional and functional requirements:

  • Tube Diameter: 8mm to 150mm (standard), with custom sizes available.
  • Fin Height: 5mm to 50mm.
  • Épaisseur de l’aileron: 0.5mm to 3mm.
  • Length: Up to 6 Mètres (longer lengths achievable via specialized equipment).
  • Fin Density: 5–30 fins per inch (FPI), adjustable based on airflow/heat load needs.

4. Aluminum Extruded Fin Pipes Applications: Solving Real-World Thermal Challenges

Aluminum extruded bimetallic fin tubes shine in demanding scenarios:

  • HVAC Systems: Condensers and evaporators in commercial chillers (e.g., 25mm tubes with 15 FPI reduce energy use by 18% in a Dubai skyscraper project).
  • Automotive: Lightweight radiators for EVs (6061 tubes cut weight by 30% vs. copper in a Tesla battery cooling system).
  • Industrial Heat Exchangers: Petrochemical processing units using 100mm anodized tubes to withstand corrosive gases.
  • Renewable Energy: Solar thermal collectors with black-anodized 6063 tubes achieving 92% absorption efficiency.
  • Data Centers: Server cooling loops with micro-fin designs (0.8mm fin height) enabling 40% higher heat dissipation.

5. Key Advantages: Why Choose Aluminum Extruded Fin Tubes?

  1. Unmatched Thermal Efficiency: Seamless fin-tube interface ensures 15–25% better heat transfer vs. wrapped fins.
  2. Lightweight Durability: Aluminum’s 2.7g/cm³ density reduces system weight by up to 60% compared to copper.
  3. Corrosion Resistance: Natural oxide layer + optional coatings guarantee 20+ years of service in harsh environments.
  4. Cost-Effective Production: Extrusion allows high-volume manufacturing at 30% lower costs than CNC-machined alternatives.
  5. Design Freedom: Custom fin geometries (serrated, helical, or staggered patterns) for optimized airflow.

Conclusion

Aluminum extruded bimetallic fin tubes represent the future of thermal management, blending cutting-edge extrusion technology with aluminum’s inherent benefits. From compact electronics cooling to massive industrial heat recovery systems, their adaptability and performance make them indispensable. Manufacturers and engineers seeking to ‌enhance efficiency, reduce costs, and ‌meet sustainability goals‌ will find these tubes an ideal solution.

Optimize your thermal systems today‌ – explore our range of certified aluminum extruded fin tubes tailored to your industry’s needs. [Contact us:Whatsapp:+86 15690122018 Email:[email protected]] for custom quotes or technical support.

Modèle NO. Tube-1
Application Économiseur,Échangeur,Radiateur,Air cooler
Principe Échangeur de chaleur régénératif
Style Type d’acier
Matériel Acier au carbone,Inox,Acier allié, Aluminium,Cuivre
Matériel 1 Aluminium, Cuivre
Modèle Sgg-Ø25x2mm/3x0.3x12.5mm
Technique de fabrication Aluminium Extruded Bimetallic Fin Tube for Heat Exchanger
Technique de fabrication 1 Tube à ailettes
Forfait de transport Boîtier en contreplaqué
Spécification Sgg-Ø25x2mm/3x0.3x12.5mm
Marque aucun
Origine Chine
Code SH 84199090
Capacité de production 10000

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