Application of hydrophobic heat insulating and cooling film

A thermal insulation and cooling, hydrophobic technology, applied in the device, coating, special surface and other directions of coating liquid on the surface, can solve the problem of limiting the service life and thermal insulation effect of thermal insulation film products, efficiently dissipating and blocking sunlight and other problems, to achieve the effect of excellent sunlight reflection ability, strong absorption ability, and excellent cooling performance.

Active Publication Date: 2020-10-30
NAT UNIV OF DEFENSE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, almost all similar products on the market can only partially block the entry of sunlight energy, but cannot achieve efficient internal heat dissipation, such as aluminum foil
Existing heat insulation film products often use aluminum foil to reflect sunlight. Although aluminum foil can reflect infrared heat, it cannot radiate infrared heat. The heat enters the interior; the bonding strength between the aluminum foil and the substrate is poor, and the corrosion resistance and weather resistance are poor. The existence of the above defects limits the service life and heat insulation effect of existing heat insulation film products
However, there have been no reports on the large-scale application of polymer porous membranes in the field of heat insulation and cooling.
In addition, the existing polymer porous membrane and its preparation method still have the following problems: the pore size of the existing polymer porous membrane is usually smaller than the submicron level. Although this kind of porous membrane has a strong infrared radiation function due to its composition, it cannot Efficiently prevent the incidence of sunlight, and the contribution of this part of energy to the temperature rise of the substrate is not negligible, so it is difficult to achieve the function of heat insulation and cooling; the existing methods of preparing polymer porous membranes are mainly scrape coating and spraying methods, of which scrape The film area obtained by the coating method is limited and has high requirements on the flatness of the substrate. It is difficult to prepare a film material with a large area and high flatness. Therefore, the scraping method is not suitable for large-area and fast preparation of films with specific holes; When the polymer porous membrane is prepared by the method, the pore morphology of the film is easily affected by the preparation parameters, such as the concentration of the precursor solution, the spraying rate, the spraying height and other parameters are the key factors affecting the membrane pore structure, which makes the existing spraying method It is difficult to prepare a polymer porous membrane that can efficiently reflect full-band sunlight (330nm-2.5μm)
In fact, the existing spraying method for preparing polymer porous membranes still has problems such as low efficiency, high energy consumption, and difficult operation, which also greatly limits the wide application of spraying methods in preparing polymer porous membranes.

Method used

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  • Application of hydrophobic heat insulating and cooling film
  • Application of hydrophobic heat insulating and cooling film
  • Application of hydrophobic heat insulating and cooling film

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0055] An application of a hydrophobic heat insulation and cooling film, specifically covering the surface of a substrate (a sunshade, specifically pongee fabric without a waterproof coating) with a hydrophobic heat insulation and cooling film, for reducing temperature, wherein the hydrophobic heat insulation and cooling membrane is a polymer porous membrane, which is formed by stacking polymer porous membranes.

[0056] In this example, the interior of the hydrophobic heat-insulating and cooling membrane is a sponge-like structure, and the pore diameters of the pores are distributed in a bimodal manner, with a wide distribution of 0.2 μm to 0.6 μm and 2 μm to 4.2 μm, respectively, and the holes pass through the holes on the walls of the holes. The nano-holes are connected.

[0057] In this embodiment, the porosity of the hydrophobic heat insulating and cooling film is 72.03%.

[0058] In this embodiment, the thickness of the hydrophobic heat insulating and cooling film is 11...

Embodiment 2

[0073]The application of a hydrophobic heat-insulating and cooling film is basically the same as in Example 1, except that the hydrophobic heat-insulating and cooling film used in Example 2 is a polymer porous film, which is formed by stacking polymer porous films.

[0074] In this example, the interior of the hydrophobic heat-insulating and cooling membrane is a sponge-like structure, and the pore size of the pores is distributed in a bimodal manner. The nano-holes are connected.

[0075] In this embodiment, the porosity of the hydrophobic heat insulating and cooling film is 73.36%.

[0076] In this embodiment, the thickness of the hydrophobic heat insulating and cooling film is 1145 μm.

[0077] In this embodiment, the surface of the hydrophobic heat-insulating and cooling film has cell-shaped holes, and the cell-shaped holes are connected to each other through nanometer holes on the walls of the holes, and the diameter of the cell-shaped holes is 1 μm to 10 μm.

[0078] I...

Embodiment 3

[0085] The application of a hydrophobic heat-insulating and cooling film is basically the same as in Example 1, except that the hydrophobic heat-insulating and cooling film used in Example 3 is a polymer porous film, which is formed by stacking polymer porous films.

[0086] In this example, the interior of the hydrophobic heat-insulating and cooling membrane is a sponge-like structure, and the pore diameters of the pores are distributed in a bimodal manner. The holes are connected.

[0087] In this embodiment, the porosity of the hydrophobic heat insulating and cooling film is 71.93%.

[0088] In this embodiment, the thickness of the hydrophobic heat insulating and cooling film is 1145 μm.

[0089] In this embodiment, the surface of the hydrophobic heat insulation and cooling film has cell-shaped holes, and the cell-shaped holes are connected to each other through nanometer holes on the walls of the holes, and the diameter of the cell-shaped holes is 5 μm to 10 μm.

[0090]...

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Abstract

The invention provides application of a hydrophobic heat insulating and cooling film. The hydrophobic heat insulating and cooling film covers the surface of a matrix or is arranged above the surface of the matrix or is hung on the side, facing the light, of the interior of the matrix to lower the temperature of the side of the shady face of the matrix or the interior of the matrix; and the hydrophobic heat insulating and cooling film is a polymer porous film, the porosity is 30-90%, a spongy structure is arranged in the hydrophobic heat insulating and cooling film, holes and hole diameters arein bimodal distribution, and the width distributions are 0.2-0.6 microns and 1-5 microns. The hydrophobic heat insulating and cooling film is a flexible thin film material with excellent hydrophobicity, thermal insulating effect and cooling effect, shows excellent flexibility, can be bent and curled at will, can effectively lower the temperature of the side of the shady face of the matrix or theinterior of the matrix when being used as a thermal insulating and cooling film on the surface of the matrix with different characters and shapes and has extremely high using value and excellent application prospect.

Description

technical field [0001] The invention belongs to the technical field of heat insulation materials and relates to the application of a hydrophobic heat insulation and cooling film. Background technique [0002] Under the sun exposure, in order to achieve the purpose of heat insulation and cooling without energy consumption, the surface of the substrate (house, car, tent, pipe, box, sunshade or other equipment) can be covered with heat insulation and cooling film, or heat insulation and cooling can be set above the surface of the substrate. film, or hang a heat-insulating and cooling film on the inner side of the substrate, where houses include residences / office buildings / shopping malls / libraries, factories / warehouses, oil depots / grain depots, glass houses, pet houses, iron houses, mobile board houses Vehicles include rail trains, automobiles (passenger cars, passenger cars, semi-trailer tractors, trains, cold chain vehicles), etc. Tents include camping tents, temporary command...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B05D5/00B05D7/24B05D1/02D06N3/00D06N3/04D06N3/06D06N3/12
CPCB05D5/00B05D7/24B05D1/02D06N3/123D06N3/125D06N3/047D06N3/045D06N3/06D06N3/0011D06N3/0002
Inventor 王璟杨玲妮楚增勇郭涛涛王清华张冶孙骏宇周浒林
Owner NAT UNIV OF DEFENSE TECH
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