An electric heating ground membrane installation construction structure
Patent Information
- Application Number
- CN202521320531.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-06-26
AI Technical Summary
[0004]现有技术存在以下不足:现有的电热地膜安装结构在对电热地膜进行安装时,电热地膜与地面和外墙之间的位置缺乏保护结构,使得电热地膜在安装使用过程中容易出现损坏,进而会影响电热地膜的使用寿命,同时会影响电热地膜的供暖效果
通过防潮层可以对电热地膜与地面和外墙之间的接触位置起到很好地防潮效果,同时保护层和防护层可以对电热地膜进行保护,可以避免电热地膜在安装使用过程中出现损坏,通过隔离层和保温层可以对起到良好的防水和保温效果,进而使得电热地膜在安装和使用过程中能够得到很好地保护,使得电热地膜能够稳定的进行供暖,同时通过边界保温带可以对外墙与地面之间的边界位置进行良好的保温。
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Figure CN224648057U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of heating system installation technology, specifically to an electric heating film installation construction structure. Background Technology
[0002] Electric heating floor film is a semi-transparent polyester film that generates heat when electricity is applied; its full name is "low-temperature radiative electric heating floor film." It is made by attaching conductive special inks and metal current-carrying strips to an insulating polyester film using specialized equipment. It features good flexibility, waterproofing, tensile strength, and high thermal efficiency. The heating of the electric heating floor film primarily occurs through radiation, specifically low-temperature radiation, which transfers heat into the room in the form of infrared rays.
[0003] A heating film installation system, disclosed in CN209026930U, comprises a leveling layer, an isolation layer one, an insulation layer, a protective layer, a filling layer, an isolation layer two, a surface layer, a side insulation layer, a conduit, a controller, and an encapsulating heating film. This system, by using an encapsulating heating film, effectively protects the heating film externally through upper and lower sheaths. The upper and lower electromagnetic shielding layers also effectively reduce external electromagnetic interference, improving performance and solving the problem of poor protection during installation.
[0004] The existing technology has the following shortcomings: When installing electric heating film, the existing installation structure lacks a protective structure between the electric heating film and the ground and the exterior wall, which makes the electric heating film easy to be damaged during installation and use, thus affecting the service life of the electric heating film and its heating effect. Utility Model Content
[0005] The purpose of this utility model is to provide an electric heating ground film installation structure. The waterproof mechanism can protect the electric heating ground film, making it stable during installation. The protective layer and the protective layer can protect the electric heating ground film and prevent damage during installation and use. At the same time, the isolation layer can play a good waterproof role, thus solving the above-mentioned shortcomings in the technology.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an electric heating film installation structure, including a floor in contact with the soil, and further comprising: The protective mechanism installed on top of the floor and the electric heating film installed inside the protective mechanism; The protective mechanism includes a moisture-proof layer disposed on the top of the floor and located outside the electric heating film. An insulation layer is disposed on the bottom inner side of the moisture-proof layer. A protective layer is disposed between the top of the insulation layer and the electric heating film. A protective layer is disposed on the top of the electric heating film. A filling layer is disposed between the top of the protective layer and the top inner side of the moisture-proof layer. An isolation layer is disposed on the top of the moisture-proof layer. A finishing layer is disposed on the top of the isolation layer.
[0007] Preferably, a plaster layer is provided on one end of the outer wall of the moisture-proof layer near the outer wall, and a boundary insulation strip is provided on one end of the inner side of the moisture-proof layer near the plaster layer.
[0008] Preferably, the bottom of the boundary insulation strip away from the moisture-proof layer is in contact with the insulation layer, and the top of the boundary insulation strip away from the moisture-proof layer is in contact with the filling layer.
[0009] Preferably, the top moisture-proof layer is provided with an equipotential bonding network, and the moisture-proof layer is made of waterproof mortar.
[0010] Preferably, the insulation layer is made of polystyrene foam board, the protective layer is made of cement mortar, and the protective layer is made of extruded polystyrene board.
[0011] Preferably, the filling layer is made of pebbly concrete, the isolation layer is made of polyethylene polypropylene waterproof membrane, and the finishing layer is made of geothermal-resistant synthetic fiber carpet.
[0012] The technical effects and advantages provided by this utility model in the above technical solution are as follows: The moisture-proof layer effectively prevents moisture from seeping into the contact points between the electric heating floor film and the ground and exterior walls. The protective and shielding layers protect the electric heating floor film from damage during installation and use. The isolation and insulation layers provide excellent waterproofing and insulation, ensuring the electric heating floor film is well protected during installation and use, allowing for stable heating. Additionally, the boundary insulation strip provides good insulation at the boundary between the exterior wall and the ground. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0015] Figure 2This is a front vertical sectional view of the present invention.
[0016] Figure 3 This is a partial exploded view of the three-dimensional structure of this utility model.
[0017] Figure 4 This is an exploded three-dimensional view of the protective mechanism of this utility model.
[0018] Explanation of reference numerals in the attached figures: 1. Flooring; 2. Plaster layer; 3. Protective structure; 301. Moisture-proof layer; 302. Thermal insulation layer; 303. Protective layer; 304. Protective layer; 305. Filling layer; 306. Isolation layer; 307. Finishing layer; 4. Boundary insulation strip; 5. Electric heating mulch film. Detailed Implementation
[0019] This utility model provides, for example Figure 1 The electric heating mulch film installation construction structure shown includes a floor 1 in contact with the soil, a protective mechanism 3 set on top of the floor 1, and an electric heating mulch film 5 set inside the protective mechanism 3.
[0020] To facilitate the protection of the electric heating film 5, such as Figure 1-4 As shown, the protective mechanism 3 includes a moisture-proof layer 301 disposed on top of the floor 1 and located outside the electric heating film 5. An insulation layer 302 is disposed at the bottom inner side of the moisture-proof layer 301. A protective layer 303 is disposed between the top of the insulation layer 302 and the electric heating film 5. A protective layer 304 is disposed on top of the electric heating film 5. A filling layer 305 is disposed between the top of the protective layer 304 and the top inner side of the moisture-proof layer 301. An isolation layer 306 is disposed on top of the moisture-proof layer 301. A finishing layer 3 is disposed on top of the isolation layer 306. 07. The moisture-proof layer 301 can prevent moisture from entering the exterior walls and the ground. The heat insulation layer 302 can keep out the heat generated by the electric heating film 5. The protective layer 303 and the protective layer 304 can protect the electric heating film 5. At the same time, the filling layer 305 can fill the installation position of the electric heating film 5, making the connection between the protective mechanism 3 and the electric heating film 5 tighter. The isolation layer 306 can achieve a good waterproof effect. At the same time, the finishing layer 307 can decorate the surface.
[0021] To ensure thermal insulation at the point where the exterior wall meets the ground, such as Figure 1-3As shown, a plaster layer 2 is provided on one end of the outer wall of the moisture-proof layer 301 near the outer wall. A boundary insulation strip 4 is provided on one end of the inner side of the moisture-proof layer 301 near the plaster layer 2. The bottom of the boundary insulation strip 4 away from the moisture-proof layer 301 contacts the insulation layer 302, and the top of the boundary insulation strip 4 away from the moisture-proof layer 301 contacts the filling layer 305. By applying the plaster layer 2 to the surface of the outer wall, the moisture-proof layer 301 can be fixed to the surface of the outer wall. The boundary insulation strip 4 can insulate the contact area between the outer wall and the ground, which can prevent the loss of heat generated by the electric heating film 5.
[0022] In order to ensure that the protective mechanism 3 can tightly protect the electric heating film 5, such as Figure 2-4 As shown, the top moisture-proof layer 301 has an equipotential bonding network inside. The moisture-proof layer 301 is made of waterproof mortar, the insulation layer 302 is made of polystyrene foam board, the protective layer 303 is made of cement mortar, the protective layer 304 is made of extruded polystyrene board, the filling layer 305 is made of pebbles concrete, the isolation layer 306 is made of polyethylene polypropylene waterproof membrane, and the finishing layer 307 is made of geothermal resistance fiber carpet. The moisture-proof layer 301, made of waterproof mortar, provides good moisture protection. The insulation layer 302, supported by polystyrene foam board, provides good insulation. The protective layer 303, made of cement mortar, and the protective layer 304, made of extruded polystyrene board, provide stable protection for the electric heating film 5. The filling layer 305, made of pebbles concrete, fills and reinforces each structural layer, making the connection between the structural layers tighter. At the same time, the isolation layer 306, made of polyethylene polypropylene waterproof membrane, provides good waterproofing. The finishing layer 307, made of geothermal resistance fiber carpet, decorates the ground.
[0023] During the construction and installation of the electric heating floor film 5, the floor 1 is installed on the ground, then a layer of plaster 2 is applied to the exterior wall surface. A moisture-proof layer 301 made of waterproof mortar is then applied to the outside of the plaster layer 2 and the top of the floor 1. A boundary insulation strip 4 is then laid at the bottom of the vertical portion of the moisture-proof layer 301 near the floor 1. A layer of insulation 302 is then laid on top of the horizontal moisture-proof layer 301 using polystyrene foam board. A protective layer 303 made of cement mortar is then laid on top of the insulation layer 302. The electric heating floor film 5 is then installed on top of the protective layer 303. A protective layer 304 made of extruded polystyrene board is then laid on top of the electric heating floor film 5. Finally, a filling layer 305 is laid on top of the protective layer 304 using pebbly concrete. The bottom structural layers are filled and reinforced to make the connection between the structural layers tighter. Then, a moisture-proof layer 301 made of waterproof mortar is laid on top of the filling layer 305. Then, an isolation layer 306 made of polyethylene polypropylene waterproof membrane is laid on top of the moisture-proof layer 301. Then, a decorative layer 307 made of geothermal resistance chemical fiber carpet is laid on the surface of the isolation layer 306. This makes the electric heating film 5 stable during installation and use, and can avoid damage to the electric heating film 5 during installation and use. This allows the electric heating film 5 to stably play a heating role. This embodiment specifically solves the problem in the prior art that the electric heating film 5 cannot be well protected during installation and use, resulting in poor heating effect and easy damage.
[0024] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A construction structure for installing an electric heating film, comprising a floor (1) in contact with the soil, characterized in that, Also includes: The protective mechanism (3) is installed on the top of the floor (1) and the electric heating film (5) is installed inside the protective mechanism (3). The protective mechanism (3) includes a moisture-proof layer (301) disposed on the top of the floor (1) and located on the outside of the electric heating film (5). An insulation layer (302) is disposed on the bottom inner side of the moisture-proof layer (301). A protective layer (303) is disposed between the top of the insulation layer (302) and the electric heating film (5). A protective layer (304) is disposed on the top of the electric heating film (5). A filling layer (305) is disposed between the top of the protective layer (304) and the top inner side of the moisture-proof layer (301). An isolation layer (306) is disposed on the top of the moisture-proof layer (301). A decorative layer (307) is disposed on the top of the isolation layer (306).
2. The electric heating film installation construction structure according to claim 1, characterized in that: A plaster layer (2) is provided on one end of the outer wall of the moisture-proof layer (301) near the outer wall, and a boundary insulation strip (4) is provided on one end of the inner side of the moisture-proof layer (301) near the plaster layer (2).
3. The electric heating film installation construction structure according to claim 2, characterized in that: The bottom of the boundary insulation strip (4) away from the moisture-proof layer (301) is in contact with the insulation layer (302), and the top of the boundary insulation strip (4) away from the moisture-proof layer (301) is in contact with the filling layer (305).
4. The electric heating film installation construction structure according to claim 1, characterized in that: An equipotential mesh is provided inside the top moisture-proof layer (301), and the moisture-proof layer (301) is made of waterproof mortar.
5. The electric heating film installation construction structure according to claim 1, characterized in that: The insulation layer (302) is made of polystyrene foam board, the protective layer (303) is made of cement mortar, and the protective layer (304) is made of extruded polystyrene board.
6. The electric heating film installation construction structure according to claim 1, characterized in that: The filling layer (305) is made of pebbly concrete, the isolation layer (306) is made of polyethylene polypropylene waterproof membrane, and the finishing layer (307) is made of geothermal resistance chemical fiber carpet.
Citation Information
Patent Citations
Electric heating mulching film mounting system
CN209026930U