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Finned tube mounting bracket

The finned tube mounting bracket can play a role in earthquake resistance. We have manual installation brackets and machine installation brackets, the material can be aluminum and galvanized iron.


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Finned tube mounting bracket

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Telephone: 0514-83454345    
Mobile phone: 13852163538
Email: 13852773986@139.com    

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  • Product Description
    • Commodity name: Finned tube mounting bracket

    The finned tube mounting bracket can play a role in earthquake resistance. We have manual installation brackets and machine installation brackets, the material can be aluminum and galvanized iron.

    Fin-tube mounting brackets can provide seismic resistance.

    We offer both manually installed brackets and machine‑mounted brackets, available in aluminum or galvanized steel.

    Finned tubes are typically devices that transfer heat and increase the heat‑transfer surface area. They are widely used in various applications, contributing to environmental sustainability in everyday life.

    The finned-tube heat exchanger is a fundamental component. Most of the heat transfer between the hot and cold fluids occurs through the finned tubes, with only a small portion taking place directly across the baffles. In typical designs, the finned tubes account for approximately 67% to 88% of the total heat-transfer surface area of the exchanger. The connection between the finned tubes and the baffles is highly effective, ensuring that the majority of heat is transferred to the finned tubes and then conveyed to the cold fluid via the baffles. Unlike direct heat transfer through partitions, finned tubes exhibit secondary heat-transfer surfaces; these secondary surfaces generally have lower thermal efficiency than the primary surfaces. However, compared with simple plate‑type heat exchangers lacking fins, finned tubes can reduce the overall volume of the heat exchanger by more than 18%. When designed with a 70% reduction in thermal efficiency, such finned tubes can also cut the unit’s weight by about 10%. In addition to performing the primary heat-transfer function, finned tubes serve as structural reinforcements between adjacent partitions. Despite the thinness of both the finned tubes and the baffles, the resulting modular units possess high mechanical strength and are capable of withstanding elevated pressures.

    Finned tubes exhibit excellent corrosion resistance during operation. In everyday use, they offer environmental benefits and a host of additional features, enhancing the functionality of existing systems and making our daily lives more convenient.

    Wear resistance is also a key feature of finned heat‑dissipation tubes. During assembly, the wear resistance of these tubes enhances the durability of the equipment, and their installation ensures no volatilization during operation. Moreover, finned heat‑dissipation tubes improve the equipment’s overall performance and offer greater practical advantages in an environmentally friendly context.

    The capabilities of finned tubes are widely recognized; the use of finned heat‑dissipating tubes represents a harmonious integration, effectively showcasing numerous practical applications and serving as an efficient method of operation.

    Key words:
    • 散热管

Product Description

  • Product Description
  • Fin-tube mounting brackets can provide seismic resistance.

    We offer both manually installed brackets and machine‑mounted brackets, available in aluminum or galvanized steel.

    Finned tubes are typically devices that transfer heat and increase the heat‑transfer surface area. They are widely used in various applications, contributing to environmental sustainability in everyday life.

    The finned-tube heat exchanger is a fundamental component. Most of the heat transfer between the hot and cold fluids occurs through the finned tubes, with only a small portion taking place directly across the baffles. In typical designs, the finned tubes account for approximately 67% to 88% of the total heat-transfer surface area of the exchanger. The connection between the finned tubes and the baffles is highly effective, ensuring that the majority of heat is transferred to the finned tubes and then conveyed to the cold fluid via the baffles. Unlike direct heat transfer through partitions, finned tubes exhibit secondary heat-transfer surfaces; these secondary surfaces generally have lower thermal efficiency than the primary surfaces. However, compared with simple plate‑type heat exchangers lacking fins, finned tubes can reduce the overall volume of the heat exchanger by more than 18%. When designed with a 70% reduction in thermal efficiency, such finned tubes can also cut the unit’s weight by about 10%. In addition to performing the primary heat-transfer function, finned tubes serve as structural reinforcements between adjacent partitions. Despite the thinness of both the finned tubes and the baffles, the resulting modular units possess high mechanical strength and are capable of withstanding elevated pressures.

    Finned tubes exhibit excellent corrosion resistance during operation. In everyday use, they offer environmental benefits and a host of additional features, enhancing the functionality of existing systems and making our daily lives more convenient.

    Wear resistance is also a key feature of finned heat‑dissipation tubes. During assembly, the wear resistance of these tubes enhances the durability of the equipment, and their installation ensures no volatilization during operation. Moreover, finned heat‑dissipation tubes improve the equipment’s overall performance and offer greater practical advantages in an environmentally friendly context.

    The capabilities of finned tubes are widely recognized; the use of finned heat‑dissipating tubes represents a harmonious integration, effectively showcasing numerous practical applications and serving as an efficient method of operation.

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