Energy-storage constant-temperature phase-change energy-storage decorative plate

By introducing phase change energy storage technology into the decorative panels, using phase change materials to store and release heat, the indoor temperature reduction caused by the decorative panels in winter is solved, and the indoor temperature is controlled continuously.

CN223281595UActive Publication Date: 2025-08-29SHANDONG CARBON ERA ENERGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202421838501.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-08-29
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

After the existing decorative panels are installed indoors in winter, the indoor temperature will decrease, and the temperature of the metal layer will decrease accordingly, affecting the user's living experience.

Method used

The energy storage constant temperature phase change energy storage decorative panel design is adopted, including a decorative film layer, insulation assembly and phase change layer. Heat is generated by the heating layer, stored in the phase change layer, and heat is released after the heating is stopped to maintain the indoor constant temperature.

Benefits of technology

Effectively increase and maintain indoor temperature, improve user living experience, and solve the problem of indoor temperature reduction caused by decorative panels in winter.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223281595U_ABST
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Abstract

The utility model relates to the technical field of building materials, in particular to an energy-storage constant-temperature phase-change energy-storage decorative plate which comprises a decorative film layer and a heat preservation assembly, and the heat preservation assembly comprises a mounting frame, splicing blocks, a bottom layer, a heating layer, a frame layer, a phase-change layer and a heat preservation layer. When the heating layer is started, a heating piece arranged in the heating layer starts to operate, heat can be generated and transferred into the frame layer, so that the temperature of the phase change layer in the frame layer starts to rise, when the temperature of the phase change layer reaches a critical value, phase change of the material of the phase change layer starts, the phase change layer can store the heat generated by the heating layer, and when the heating layer stops heating and temperature rise, the phase change layer can store the heat generated by the heating layer. The phase change layer begins to solidify, then solidification heat is released, stored heat is released, the heat enters a room, and the indoor temperature is increased, so that the problems that after an existing decorative plate is installed in the room, in winter, the indoor temperature is lowered, the temperature of a metal layer is lowered accordingly, and the living experience of a user is lowered are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of building materials, in particular to an energy-storage constant-temperature phase-change energy-storage decorative board. Background Art

[0002] With the improvement of living standards, people's requirements for indoor temperature and comfort are gradually increasing. At present, the indoor environment is mostly regulated and improved by the operation of electrical equipment, and the energy consumption and energy saving indicators of electrical equipment are particularly important.

[0003] Currently, prior art (CN210941140U) discloses a decorative panel comprising a metal layer, a decorative film layer disposed on the surface of the metal layer, and a PE polymer adhesive film laminated between the decorative film layer and the metal layer to bond the two layers together. The decorative film layer is provided with a pattern. This provides the metal decorative panel with high strength and hardness, making it less susceptible to deformation or breakage. The decorative film layer is laminated to the metal layer via the PE polymer adhesive film, allowing for direct printing or embossing of patterns in various colors, designs, or text. This simple, convenient, and easy-to-implement process offers a wide range of options, increasing the diversity of decorative panels. This arrangement addresses the existing issues with plastic and wooden decorative panels, which are prone to deformation and breakage, wasteful of wood, and a monotonous surface pattern and texture.

[0004] However, when the decorative panels are installed indoors in the above manner, in winter, the indoor temperature drops and the temperature of the metal layer also drops, which reduces the user's living experience. Summary of the Invention

[0005] The purpose of this utility model is to provide an energy storage constant temperature phase change energy storage decorative panel, which aims to solve the problem that after the existing decorative panels are installed indoors, the indoor temperature drops in winter, and the temperature of the metal layer will drop accordingly, which reduces the user's living experience.

[0006] To achieve the above-mentioned purpose, the utility model provides an energy storage constant temperature phase change energy storage decorative panel, comprising a decorative film layer and a thermal insulation component, wherein the thermal insulation component comprises a mounting frame, a splicing block, a bottom layer, a heating layer, a frame layer, a phase change layer and a thermal insulation layer;

[0007] The mounting frame is fixedly connected to the decorative film layer and is located on the side of the decorative film layer. The mounting frame has a groove. The splicing block is fixedly connected to the mounting frame and is located on the side of the mounting frame away from the groove. The bottom layer is fixedly connected to the mounting frame and is located at the bottom of the mounting frame. The heating layer is fixedly connected to the mounting frame and is located on the side of the mounting frame close to the bottom layer. The frame layer is fixedly connected to the mounting frame and is located on the side of the mounting frame close to the heating layer. The phase change layer is fixedly connected to the frame layer and is located on one side of the frame layer. The thermal insulation layer is fixedly connected to the mounting frame and is located on the side of the mounting frame close to the frame layer.

[0008] The thermal insulation component further includes a mounting layer and a protective layer. The mounting layer is fixedly connected to the bottom layer and is located on one side of the bottom layer. The protective layer is fixedly connected to the mounting layer and is located on the side of the mounting layer.

[0009] Among them, the insulation component also includes a patterned layer and a fixed layer. The patterned layer is fixedly connected to the installation frame and is located on one side of the installation frame. The fixed layer is fixedly connected to the patterned layer and fixedly connected to the decorative film layer and is located on the side of the patterned layer.

[0010] Wherein, the heat preservation component further includes an auxiliary mechanism, and the auxiliary mechanism is arranged on one side of the installation frame.

[0011] The auxiliary mechanism includes a sound insulation layer and a reinforcement layer. The sound insulation layer is fixedly connected to the decorative film layer and is located at the bottom of the decorative film layer. The reinforcement layer is fixedly connected to the sound insulation layer and is located on one side of the sound insulation layer.

[0012] Wherein, the auxiliary mechanism further includes a positioning bolt and a rubber strip, the positioning bolt is threadedly connected to the mounting frame and passes through the mounting frame, the rubber strip is fixedly connected to the mounting frame and is located on a side of the mounting frame close to the pattern layer.

[0013] The utility model relates to an energy storage constant temperature phase change energy storage decorative panel. When installing the decorative panel indoors, first align the splicing block on the installation frame with the groove on the other installation frame, combine the two installation frames, complete the reference splicing, and repeat the above operation on the remaining decorative panels to complete the installation of the decorative panel. After the decorative panel is installed, the bottom layer is close to the wall, the heating layer on the bottom layer can be started, the built-in heating plate of the heating layer starts to operate, can generate heat, and transfer the heat to the frame layer, so that the phase change layer in the frame layer starts to heat up. When the temperature of the phase change layer reaches a critical value, the phase change layer material The material begins to change phase, and the phase change layer is a carbon-based composite phase change material, so that the phase change layer can store the heat generated by the heating layer. When the heating layer stops heating and heating, the phase change layer begins to solidify, and then releases the solidification heat, releasing the stored heat, allowing it to pass through the thermal insulation layer and the decorative film layer into the room, thereby increasing the indoor temperature. The material of the thermal insulation layer is an inorganic thermal insulation material, which can retain the temperature released by the phase change layer to the maximum extent, so that the indoor temperature is kept in a constant temperature state for a long time, thereby solving the problem that after the existing decorative panels are installed indoors, the indoor temperature drops in winter, and the temperature of the metal layer will drop accordingly, reducing the user's living experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.

[0015] Figure 1 It is a schematic diagram of the overall structure of the first embodiment of the present utility model.

[0016] Figure 2 It is a sectional view of the entire first embodiment of the present utility model.

[0017] Figure 3 It is a schematic diagram of the overall structure of the second embodiment of the present utility model.

[0018] Figure 4 It is a cross-sectional view of the entire second embodiment of the present utility model.

[0019] 101-decorative film layer, 102-insulation component, 103-installation frame, 104-joining block, 105-bottom layer, 106-heating layer, 107-frame layer, 108-phase change layer, 109-insulation layer, 110-groove, 111-installation layer, 112-protective layer, 113-patterned layer, 114-fixing layer, 201-auxiliary mechanism, 202-sound insulation layer, 203-reinforcement layer, 204-positioning bolts, 205-rubber strip. DETAILED DESCRIPTION

[0020] The first embodiment of this application is:

[0021] See also Figure 1~Figure 2 , Figure 1 This is a schematic diagram of the overall structure of the first embodiment of the present invention. Figure 2 It is a sectional view of the entire first embodiment of the present utility model.

[0022] The energy storage constant temperature phase change energy storage decorative panel of the present invention includes a decorative film layer 101 and an insulation component 102. The insulation component 102 includes an installation frame 103, a splicing block 104, a bottom layer 105, a heating layer 106, a frame layer 107, a phase change layer 108, an insulation layer 109, an installation layer 111, a protective layer 112, a patterned layer 113 and a fixing layer 114; the installation frame 103 has a groove 110. The above solution solves the problem that after the existing decorative panels are installed indoors, the indoor temperature drops in winter, and the temperature of the metal layer drops accordingly, which reduces the user's living experience.

[0023] According to this specific embodiment, the exterior of the decorative board is decorated by the decorative film layer 101 to improve the aesthetics of the decorative board.

[0024] The mounting frame 103 is fixedly connected to the decorative film layer 101 and is located on the side of the decorative film layer 101. The mounting frame 103 has a groove 110. The splicing block 104 is fixedly connected to the mounting frame 103 and is located on the side of the mounting frame 103 away from the groove 110. The bottom layer 105 is fixedly connected to the mounting frame 103 and is located at the bottom of the mounting frame 103. The heating layer 106 is fixedly connected to the mounting frame 103 and is located on the side of the mounting frame 103 close to the bottom layer 105. The frame layer 107 is fixedly connected to the mounting frame 103 and is located on the side of the mounting frame 103 close to the bottom layer 105. 3 is fixedly connected and located on the side of the installation frame 103 close to the heating layer 106, the phase change layer 108 is fixedly connected to the frame layer 107 and located on the side of the frame layer 107, and the insulation layer 109 is fixedly connected to the installation frame 103 and located on the side of the installation frame 103 close to the frame layer 107. When installing the decorative panels indoors, first align the splicing block 104 on the installation frame 103 with the groove 110 on the other installation frame 103, combine the two installation frames 103, complete the reference splicing, and then install the remaining decorative panels according to the above method. Repeat the operation to complete the installation of the decorative panel. After the decorative panel is installed, the bottom layer 105 is close to the wall, and the heating layer 106 on the bottom layer 105 can be started. The heating plate built into the heating layer 106 starts to operate, generating heat and transferring the heat to the frame layer 107, so that the phase change layer 108 in the frame layer 107 starts to heat up. When the temperature of the phase change layer 108 reaches a critical point, the phase change layer 108 material starts to change phase. The phase change layer 108 is a carbon-based composite phase change material, which enables the phase change layer 108 to generate the heating layer 106. The heat is stored in the phase change layer 108. When the heating layer 106 stops heating and heating, the phase change layer 108 begins to solidify, thereby releasing the solidification heat, releasing the stored heat, and allowing it to pass through the thermal insulation layer 109 and the decorative film layer 101 into the room, thereby increasing the indoor temperature. The thermal insulation layer 109 is made of inorganic thermal insulation material, which can retain the temperature released by the phase change layer 108 to the maximum extent, so that the indoor temperature is kept at a constant temperature for a long time, thereby solving the problem that after the existing decorative panels are installed indoors, the indoor temperature drops in winter, and the temperature of the metal layer will drop accordingly, reducing the user's living experience.

[0025] Secondly, the installation layer 111 is fixedly connected to the bottom layer 105 and is located on one side of the bottom layer 105. The protective layer 112 is fixedly connected to the installation layer 111 and is located on the side of the installation layer 111. The decorative panel is placed close to the wall panel through the installation layer 111, so that the protective layer 112 can protect the bottom layer 105 and prevent the bottom layer 105 from directly contacting the wall panel surface.

[0026] Again, the patterned layer 113 is fixedly connected to the mounting frame 103 and is located on one side of the mounting frame 103. The fixed layer 114 is fixedly connected to the patterned layer 113 and to the decorative film layer 101 and is located on the side of the patterned layer 113. The fixed layer 114 can fix the position of the patterned layer 113 on the side of the decorative film layer 101, and the cooperation between the patterned layer 113 and the decorative film layer 101 can improve the aesthetics of the decorative panel.

[0027] The energy storage constant temperature phase change energy storage decorative panel described in this embodiment, when installing the decorative panel indoors, first align the splicing block 104 on the installation frame 103 with the groove 110 on the other installation frame 103, combine the two installation frames 103, complete the reference splicing, and repeat the above operation on the remaining decorative panels to complete the installation of the decorative panel, and the position of the pattern layer 113 can be fixed to the side of the decorative film layer 101 through the fixing layer 114, and the aesthetics of the decorative panel can be improved by the cooperation of the pattern layer 113 and the decorative film layer 101. After the decorative panel is installed, the bottom layer 105 is close to the wall, and the heating layer 106 on the bottom layer 105 can be started, and the built-in heating plate of the heating layer 106 starts to operate, which can generate heat and transfer the heat to the frame layer 107, so that the frame The phase change layer 108 in layer 107 begins to heat up. When the temperature of the phase change layer 108 reaches a critical value, the phase change layer 108 material begins to change phase. The phase change layer is a carbon-based composite phase change material, so that the phase change layer 108 can store the heat generated by the heating layer 106. When the heating layer 106 stops heating and heating, the phase change layer 108 begins to solidify, and then releases the solidification heat, releasing the stored heat, allowing it to pass through the insulation layer 109 and the decorative film layer 101 into the room, thereby increasing the indoor temperature. The material of the insulation layer 109 is an inorganic insulation material, which can retain the temperature released by the phase change layer 108 to the maximum extent, so that the indoor temperature is kept in a constant temperature state for a long time, thereby solving the problem that after the existing decorative panels are installed indoors, the indoor temperature drops in winter, and the temperature of the metal layer will drop accordingly, reducing the user's living experience.

[0028] The second embodiment of this application is:

[0029] Based on the first embodiment, please refer to Figure 3~Figure 4 , Figure 3 This is a schematic diagram of the overall structure of the second embodiment of the present invention. Figure 4 It is a cross-sectional view of the entire second embodiment of the present utility model.

[0030] The thermal insulation component 102 of the energy storage constant temperature phase change energy storage decorative panel of this embodiment further includes an auxiliary mechanism 201 , which includes a sound insulation layer 202 , a reinforcement layer 203 , positioning bolts 204 and a rubber strip 205 .

[0031] Among them, the sound insulation layer 202 is fixedly connected to the decorative film layer 101 and is located at the bottom of the decorative film layer 101. The reinforcement layer 203 is fixedly connected to the sound insulation layer 202 and is located on one side of the sound insulation layer 202. The sound insulation layer 202 can improve the sound insulation effect of the decorative board, and the reinforcement layer 203 is arranged on the side of the decorative film layer 101, which can improve the strength of the surface layer of the decorative board and extend the service life of the decorative board.

[0032] Secondly, the positioning bolt 204 is threadedly connected to the mounting frame 103 and passes through the mounting frame 103. The rubber strip 205 is fixedly connected to the mounting frame 103 and is located on the side of the mounting frame 103 close to the patterned layer 113. By right-rotating the positioning bolt 204, the positioning bolt 204 passes through the mounting frame 103, fixing the position of the insulation layer 109 on the mounting frame 103, and the gap at the connection between the mounting frame 103 and the patterned layer 113 is blocked by the rubber strip 205.

[0033] The energy storage constant temperature phase change energy storage decorative panel described in this embodiment, the sound insulation layer 202 can improve the sound insulation effect of the decorative panel, and the reinforcement layer 203 is provided on the side of the decorative film layer 101, which can improve the strength of the surface layer of the decorative panel and extend the service life of the decorative panel. By right-turning the positioning bolt 204, the positioning bolt 204 passes through the mounting frame 103 to fix the position of the thermal insulation layer 109 on the mounting frame 103, and the gap at the connection between the mounting frame 103 and the patterned layer 113 is covered by the rubber strip 205.

[0034] The above disclosure is merely one or more preferred embodiments of the present application and is not intended to limit the scope of the present application. A person skilled in the art will understand that all or part of the processes of the above embodiments and equivalent changes made in accordance with the claims of the present application are still within the scope of the present application.

Claims

1. An energy storage constant temperature phase change energy storage decorative panel, comprising a decorative film layer, characterized in that: Also includes insulation components; The thermal insulation assembly includes a mounting frame, a splicing block, a bottom layer, a heating layer, a frame layer, a phase change layer and a thermal insulation layer; The mounting frame is fixedly connected to the decorative film layer and is located on the side of the decorative film layer. The mounting frame has a groove. The splicing block is fixedly connected to the mounting frame and is located on the side of the mounting frame away from the groove. The bottom layer is fixedly connected to the mounting frame and is located at the bottom of the mounting frame. The heating layer is fixedly connected to the mounting frame and is located on the side of the mounting frame close to the bottom layer. The frame layer is fixedly connected to the mounting frame and is located on the side of the mounting frame close to the heating layer. The phase change layer is fixedly connected to the frame layer and is located on one side of the frame layer. The thermal insulation layer is fixedly connected to the mounting frame and is located on the side of the mounting frame close to the frame layer.

2. The energy storage constant temperature phase change energy storage decorative panel according to claim 1, characterized in that: The thermal insulation component further includes a mounting layer and a protective layer. The mounting layer is fixedly connected to the bottom layer and is located on one side of the bottom layer. The protective layer is fixedly connected to the mounting layer and is located on the side of the mounting layer.

3. The energy storage constant temperature phase change energy storage decorative panel according to claim 2, characterized in that: The insulation component also includes a patterned layer and a fixed layer. The patterned layer is fixedly connected to the installation frame and is located on one side of the installation frame. The fixed layer is fixedly connected to the patterned layer and the decorative film layer and is located on the side of the patterned layer.

4. The energy storage constant temperature phase change energy storage decorative panel according to claim 3, characterized in that: The heat preservation assembly further includes an auxiliary mechanism, which is arranged on one side of the installation frame.

5. The energy storage constant temperature phase change energy storage decorative panel according to claim 4, characterized in that: The auxiliary mechanism includes a sound insulation layer and a reinforcement layer. The sound insulation layer is fixedly connected to the decorative film layer and is located at the bottom of the decorative film layer. The reinforcement layer is fixedly connected to the sound insulation layer and is located on one side of the sound insulation layer.

6. The energy storage constant temperature phase change energy storage decorative panel according to claim 5, characterized in that: The auxiliary mechanism further includes a positioning bolt and a rubber strip. The positioning bolt is threadedly connected to the mounting frame and passes through the mounting frame. The rubber strip is fixedly connected to the mounting frame and is located on a side of the mounting frame close to the pattern layer.

Citation Information

Patent Citations

  • Decorative plate

    CN210941140U