Composite inorganic hydrous salt phase-change material and preparation method of composite inorganic thermal storage panel

A technology of inorganic hydrated salts and phase change materials, applied in the field of composite building decoration materials, can solve the problems of poor temperature uniformity, high temperature on the heating body, low temperature between lines, etc. The effect of high energy storage density

Inactive Publication Date: 2016-03-16
上海唐盾材料科技有限公司
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  • Abstract
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  • Application Information

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Problems solved by technology

[0005] For example, in the field of electric floor heating, power supply is more popular than other heating sources. It is suitable for areas without central heating and renovation of old houses. Compared with air conditioners, it is more energy-saving, environmentally friendly and comfortable. Electric floor heating is divided into electric heating film electric floor heating and heating cable. Electric floor heating, heating cable floor heating heating element has high temperature on the line, low temperature between lines, and poor temperature uniformity; it is not good for the control of local overheating. Generally, there is only one circuit, which must be controlled by frequent opening and closing of temperature control to control the room temperature The heating area of ​​the electric heating film electric floor heating is large, the heating body temperature is low, the ground temperature uniformity is good, the floor height is less occupied, multiple circuits can be connected in parallel, and the temperature control actually required for heating is easier to achieve. The electric heating film has roughly four There are three types, printing ink type, ultra-thin metal sheet type, carbon fiber type and conductive polymer type. The disadvantages are: first, it will cause local overheating due to coverage during use, so an overheating protection system should be installed; second, effective use of peaks and valleys In terms of electricity, there is a lack of effective heat storage and energy storage systems, and the use of low-temperature phase change materials can improve and solve the above shortcomings
These shortcomings have largely restricted the application of solid-liquid phase change materials in actual production.
[0009] 3. In the process of cooling solid-liquid phase change materials from liquid to solid, there is always the problem of overcooling, which leads to the inability to crystallize in time within the required temperature range

Method used

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  • Composite inorganic hydrous salt phase-change material and preparation method of composite inorganic thermal storage panel
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  • Composite inorganic hydrous salt phase-change material and preparation method of composite inorganic thermal storage panel

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preparation example Construction

[0053] On the premise of the composite inorganic hydrated salt phase change material, the present invention also provides a preparation method of the inorganic composite heat storage panel, such as figure 2 As shown, it specifically includes: mixing the raw materials of the composite inorganic hydrated salt phase change material together, stirring until uniformly prepared into a mixed slurry, and then compounding the mixed slurry with glass fiber cloth to form the inorganic composite material. Heat storage panel. Because the composite inorganic hydrated salt phase change material of the present invention can produce solidified high-strength plates or shapes with arbitrary strength, the mixed slurry and glass fiber cloth can be composited by using the slurry rolling method, or manually composited Fiberglass cloth, made into other products of irregular shape or thickness.

[0054] Wherein, the specific steps of the slurry rolling method are as follows: when the mixed slurry is...

Embodiment 1

[0061] A composite inorganic hydrated salt phase change material, comprising the following raw materials in parts by weight: 100 parts of magnesium oxide powder, 20 parts of laterite powder, 5 parts of attapulgite, 15 parts of slag powder, 10 parts of kaolin, 60 parts of composite sulfate, 30 parts of sawdust, 0.5 parts of citric acid, 0.5 parts of calcium dihydrogen phosphate, 75 parts of water.

[0062] Mix the raw materials of the above-mentioned composite inorganic hydrated salt phase change materials together, and stir them until they are evenly mixed to form a mixed slurry. When stirring, the stirring time is controlled within 12 to 18 minutes according to the characteristics of the slurry, and the stirring temperature of the slurry is controlled. Between 10°C and 25°C. When the mixed slurry is formed, adjust the distance between the forming rollers to a suitable distance, and then mix the mixed slurry with a suitable thickness and three layers of 100-140g / m 2 The glass...

Embodiment 2

[0071] A composite inorganic hydrated salt phase change material, comprising the following raw materials in parts by weight: 100 parts of magnesium oxide powder, 20 parts of laterite powder, 5 parts of attapulgite, 10 parts of fly ash, 10 parts of bauxite, and 5 parts of kaolin , 60 parts of compound sulfate, 30 parts of wood chips, 0.5 parts of citric acid, 0.5 parts of calcium dihydrogen phosphate, 80 parts of water, and 0.6 parts of foaming agent.

[0072] According to the thick 15mm of the sheet material that embodiment 2 makes, density is 1.2g / cm 3 ;According to 7019-1997 "Test Method for Fiber Cement Products", referring to the standard GB25970-2010 "Non-combustible Inorganic Composite Board", the measured bending strength in dry state is 20.5MPa, and the bending strength in wet state is 19.1MPa.

[0073] In Example 2, after adding the foaming agent that has already been foamed stably, light fillers such as wood chips are added to make the board density low, but the stru...

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Abstract

The invention relates to the field of composite building decoration materials, in particular to a composite inorganic hydrous salt phase-change material and a preparation method of a composite inorganic thermal storage panel. The composite inorganic hydrous salt phase-change material comprises raw materials in parts by weight as follows: 100 parts of magnesia powder, 10-30 parts of clay powder, 15-25 parts of slag powder, 6-25 parts of Al2O3 filler, 45-60 parts of composite sulfate, 10-32 parts of saw dust, 0.2-1 part of citric acid, 0.5-1 part of composite phosphate and 75-85 parts of water. The raw materials of the composite inorganic hydrous salt phase-change material are mixed together and stirred until uniform stirring is realized, mixed slurry is prepared, then the mixed slurry is composited with glass fiber cloth, and the composite inorganic thermal storage panel is prepared. According to the technical scheme, the material not only has proper phase-change temperature, high energy storage density, low degree of supercooling and avoidance of layering, but also has the effects of good stability, high thermal conduction coefficient, avoidance of metal corrosion, water resistance and the like.

Description

technical field [0001] The invention relates to the field of composite building decoration materials, in particular to a preparation method of a composite inorganic hydrated salt phase change material and an inorganic composite heat storage panel. Background technique [0002] At present, a large part of the total energy consumption of society is used in the construction field. There are problems in different situations in the building decoration materials widely used at present, such as exterior wall panels, interior wall panels, floors, suspended ceilings, heating (cold) equipment such as air conditioners, floor heating, ground source heat, boiler water heaters, etc. [0003] The purpose of people using heating or air conditioning is to balance the indoor air temperature and increase the indoor comfort. And if the phase change material is used for building materials, it will play a good role or increase this effect. In terms of cold storage, cold storage is carried out w...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/10C04B38/10C04B38/00
CPCC04B28/105C04B38/0025C04B38/106C04B2111/92C04B2201/20C04B2201/30C04B2201/50C04B14/10C04B14/102C04B18/141C04B14/106C04B22/143C04B22/148C04B22/142C04B22/149C04B18/26C04B24/06C04B22/16C04B14/42C04B38/0054C04B18/08C04B14/303C04B2103/42
Inventor 沃成昌
Owner 上海唐盾材料科技有限公司
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