Anti-condensation metal radiant panel and manufacturing method thereof

A radiant panel and anti-condensation technology, applied in the field of air conditioning, can solve the problems of the system cannot operate normally, the system energy consumption is high, and the windows cannot be opened for ventilation.

Inactive Publication Date: 2014-08-13
BEIJING HENGTONG GREEN BUILDING ENERGY EFFICIENT TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to overcome the deficiencies of the prior art above, the present invention provides an anti-condensation metal radiant panel and its manufacturing method. The device realizes that the system does not need to be equipped with a special dehumidification system when the radiant air-conditioning system is used for cooling, and no Lower temperature can be use...

Method used

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  • Anti-condensation metal radiant panel and manufacturing method thereof
  • Anti-condensation metal radiant panel and manufacturing method thereof
  • Anti-condensation metal radiant panel and manufacturing method thereof

Examples

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Embodiment 1

[0039] like figure 1 Shown are a top view and an A-A cross-sectional view of a super-hydrophobic metal radiant panel according to a preferred embodiment of an anti-condensation metal radiant panel and a manufacturing method thereof according to the present invention. An anti-condensation metal radiant panel includes: a super-hydrophobic metal radiant panel. Metal plate (5): It is made by super-hydrophobic surface fabrication technology, and does not condense in humid air;

[0040] Aluminum foil (4): the pipe network (3) is tightly combined with the super-hydrophobic metal plate (5) to increase the heat dissipation of the pipe network (3) and make the heat dissipation more uniform;

[0041] Pipe network (3): hot and cold water is passed through the pipe, and the heat in the water is transferred to the super-hydrophobic metal plate (5) through the aluminum foil (4);

[0042] Insulation layer (2): isolates the pipe network (3) from the top cover plate to prevent heat energy loss...

Embodiment 2

[0048] A method for making a metal radiant panel with anti-condensation. The method for making a metal radiant panel with anti-condensation includes first performing electrochemical treatment on the metal panel, and then coating a low surface energy material to obtain a metal with super-amphiphobic properties. plate. The surface of the metal plate exhibits superphobic properties for various oil droplets except fluorine-containing liquids, and the rolling angle is generally less than 10°. The surface of the metal plate can also be placed in the air for a long time and still maintain its super-amphiphobic properties, the super-amphiphobic surface of the metal plate can be stable for a long time, and still has good super-amphiphobic properties after mechanical bending and deformation. The super-amphiphobic surface of the metal plate can include molten solution droplets of super-hydrophobic paraffin and polyethylene glycol under heating, and has anti-waxing properties. The thickn...

Embodiment 3

[0054] A connection and installation method of the present invention is given below.

[0055] like figure 2 Shown is a preferred embodiment of an anti-condensation metal radiant panel and a manufacturing method thereof according to the present invention figure 1 Schematic diagram of the connection between the anti-condensation metal radiant panels:

[0056] The radiant panel and the radiant panel can be connected by hard connection (usually by heat fusion welding), or can be connected by flexible hose.

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Abstract

The invention discloses an anti-condensation metal radiant panel device and a manufacturing method thereof. The method comprises the following steps: performing super-hydrophobic treatment on a metal panel by adopting a super-hydrophobic surface manufacturing technology, so as to enable the surface of the metal panel to be in a super-hydrophobic state; then installing a capillary network or a copper coil pipe on a super-hydrophobic metal radiant panel; paving an aluminum foil in the middle so as to ensure that the capillary network or the copper coil pipe is in close contact with the super-hydrophobic metal radiant panel; installing a thermal insulating layer on the upper surface of the capillary network or the copper coil pipe; then covering the thermal insulating layer by use of a cover plate; performing fastening combined installation by use of a fastener, thereby forming the metal radiant panel with a radiation function, a cold supply function and a heat supply function. The radiant panel is capable of preserving the super-hydrophobic characteristic of a lower radiant surface after being put in the air for a long time, so that when the metal radiant panel is used in a radiant cold-supply air-conditioning system, a condensation phenomenon can not occur to the surface in any wet air; the anti-condensation metal radiant panel can be used for thoroughly solving the problem that condensation occurs easily when the radiant panel is used for radiation and cold supply.

Description

technical field [0001] The invention relates to the technical field of air conditioners, in particular to a dew-proof metal radiant panel and a manufacturing method thereof. Background technique [0002] Patent No.: 201020275113 Chinese utility model patent discloses a metal cold suspended ceiling: The utility model relates to a metal cold suspended ceiling, comprising a metal frame (1), a capillary tube (2) and a capillary manifold (3), the capillary tube (2) ) communicates with the capillary header (3), and the capillary (2) and the capillary header (3) are both fixed on the metal frame (1). The gap between the capillary tubes (2) ranges from 10mm to 30mm. [0003] The beneficial effects of the metal cold ceiling provided by the utility model are: (1). High comfort; (2). The quietest air conditioning system; (3). There is no condensed water tray, and there is no bacterial breeding source; (4). Significant energy-saving effect; (5). Strong cold storage / heat storage ca...

Claims

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Application Information

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IPC IPC(8): E04F13/074E04F13/075F24F5/00
Inventor 宋波李艳杰
Owner BEIJING HENGTONG GREEN BUILDING ENERGY EFFICIENT TECH CO LTD
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