Waterproof and anti-electric shock floor heating system

By introducing a waterproof backing, a leakage detection mechanism, and a wireless transmission module into the underfloor heating system, the problems of water pipe leakage monitoring and electric shock prevention have been solved, thus realizing the waterproof and electric shock prevention functions of the underfloor heating system.

CN223596027UActive Publication Date: 2025-11-25ZHEJIANG LINGGE WOOD
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Patent Information

Application Number
CN202422898092.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-11-25
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

Existing underfloor heating systems are not convenient for monitoring and timely warning of water pipe leaks during radiant heating, and can easily cause electric shock in the event of water seepage.

Method used

It adopts a waterproof base, a leakage detection mechanism and a wireless transmission module. The temperature and humidity sensor monitors the temperature and humidity of the water pipe surface, and the thermoelectric battery generates power to realize wireless data transmission. Combined with the crack-resistant mesh layer and the heat-insulating conductive layer for protection, it avoids water pipe leakage and electric shock to people.

Benefits of technology

It enables timely monitoring and early warning of water pipe leaks, avoiding the risk of electric shock caused by water seepage and ensuring the system's waterproof and electric shock-proof performance.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a waterproof and anti-electric shock floor heating system which comprises a floor slab main plate, a waterproof supporting bottom is installed on the upper end face of the floor slab main plate, a backfilling layer is installed on the upper end face of the waterproof supporting bottom, a water pipe is installed between the waterproof supporting bottom and the backfilling layer, and a plurality of leakage detection mechanisms are installed on the inner side of the water pipe. An anti-cracking grid layer is installed on the upper end face of the backfill layer, and a floor layer is installed on the upper end face of the anti-cracking grid layer. The leakage detection mechanism comprises a one-way shielding box, a sealing cover is installed at the upper end of the one-way shielding box, four contact pins are fixedly installed on the outer side of the one-way shielding box, and a temperature and humidity sensor is fixedly arranged at one end of each contact pin. According to the utility model, the floor heating is protected in a layered manner, waterproof grounding treatment can be carried out under the condition of water seepage, electric shock of a human body caused by water seepage of a floor slab of a house is avoided, multi-point water seepage monitoring is realized, and timely early warning can be carried out when leakage occurs.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a floor heating system of waterproof and anti-electric shock, and belongs to the technical field of floor heating. BACKGROUND

[0002] Floor heating system is the system abbreviation of floor radiant heating, and it is called floor heating system because floor heating itself is not a single product, and floor heating generally appears in the form of system. The floor heating system includes heat source, pipeline and corresponding auxiliary materials, and is one of the most comfortable and healthy independent heating methods for family, and its working principle is to circulate hot water into the heating pipe loop under the laid floor or floor tile or directly lay heating cable, so as to heat the floor, and the heat is evenly radiated to the space above the floor through the large-area ground, so that the human body feels the double heat effects of heat radiation and air temperature.

[0003] The existing floor heating system is not convenient for monitoring and timely warning of water pipe leakage when carrying out heat radiation heating, and is easy to cause human body electric shock in the case of water seepage, therefore, it does not meet the existing demand, and for this, the utility model provides a floor heating system of waterproof and anti-electric shock. UTILITY MODEL CONTENT

[0004] The utility model discloses a floor heating system of waterproof and anti-electric shock, and belongs to the technical field of floor heating.

[0005] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: a floor heating system of waterproof and anti-electric shock, including floor mainboard, the upper end surface of floor mainboard installs waterproof bottom support, the upper end surface of waterproof bottom support installs backfill layer, waterproof bottom support and backfill layer between install water pipe, the inside of water pipe installs a plurality of leakage detection mechanism, the upper end surface of backfill layer installs anti-cracking grid layer, the upper end surface of anti-cracking grid layer installs floor layer.

[0006] The leakage detection mechanism includes a one-way shielding box, a sealing cover is installed on the upper end of the one-way shielding box, four contact feet are fixedly installed on the outer side of the one-way shielding box, a temperature and humidity sensor is fixedly arranged at one end of the contact foot, two thermocouples are installed on the inner side of the one-way shielding box, and a wireless transmission module is installed between the two thermocouples.

[0007] Preferably, the waterproof bottom support includes a heat preservation bottom plate, a heat preservation conductive layer is installed on the upper end surface of the heat preservation bottom plate, a shielding layer is installed on the upper end surface of the heat preservation conductive layer, and an elastic supporting layer is installed on the upper end surface of the shielding layer.

[0008] Preferably, the heat preservation conductive layer is fixedly connected with the heat preservation bottom plate, the upper surface of the heat preservation conductive layer is provided with a conductive coating layer, and the heat preservation bottom plate is connected with the elastic supporting layer through the shielding layer and the heat preservation conductive layer.

[0009] Preferably, the backfill layer is made of foam glass, the upper surface of the backfill layer is provided with a self-leveling layer, the anti-cracking grid layer is arranged on the surface of the self-leveling layer, and the anti-cracking grid layer is fixedly connected with the self-leveling layer.

[0010] Preferably, the backfill layer is connected with the floor layer through the anti-cracking grid layer, the anti-cracking grid layer is internally provided with elastic wires, and the elastic wires are made of rubber and nylon winding.

[0011] Preferably, the one-way shielding box is connected with the sealing cover through threads, the temperature and humidity sensor, the wireless transmission module and the thermocouple are electrically connected, the contact foot is connected with the water pipe through the temperature and humidity sensor, and the inner wall of the one-way shielding box is provided with a one-way shielding film.

[0012] Compared with the prior art, the utility model has the advantages that:

[0013] 1、 the utility model discloses a heat preservation bottom plate and elastic supporting layer are connected through heat preservation conductive layer and shielding layer, use self -leveling to carry out horizontal adjustment and anti -cracking treatment to the surface of backfill layer, and can further protect backfill layer through anti -cracking grid layer, avoid the influence of the cracking of backfill layer to the use of floor layer, can effectively protect shielding layer and heat preservation conductive layer through elastic supporting layer, avoid the breakage of shielding layer and heat preservation conductive layer under pressure, can carry out heat preservation operation while shielding through shielding layer and heat preservation conductive layer, the surface of heat preservation conductive layer is equipped with conductive coating layer, so that the ground operation of floor heating can be carried out through heat preservation conductive layer, effectively avoid the situation of electric shock of human body;

[0014] 2、 the utility model discloses when the water pipe leaks, can be monitored through leakage detection mechanism, and the inside of one -way shielding box is installed with wireless transmission module, and the surface of contact foot and water pipe is connected and contacted through temperature and humidity sensor, and then the surface of water pipe can be monitored in temperature and humidity through temperature and humidity sensor, and the monitoring data is wirelessly transmitted through wireless transmission module, so that the water seepage monitoring operation of multiple points of floor heating can be carried out, and the thermocouple can generate electricity and continuously supply power to the wireless transmission module when there is temperature difference on the floor, so that the operation of replacing the battery of the one-way shielding box is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the overall structure schematic view of the utility model;

[0016] Figure 2 It is the utility model Figure 1A cross-sectional structure schematic view of the middle A region;

[0017] Figure 3 A schematic view of the installation structure of the water pipe of the utility model;

[0018] Figure 4 A schematic view of the explosion structure of the waterproof bottom support of the utility model;

[0019] Figure 5 A schematic view of the structure of the leakage detection mechanism of the utility model.

[0020] In the figure: 1, floor main plate; 2, waterproof bottom support; 3, backfill layer; 4, floor layer; 5, anti-cracking grid layer; 6, water pipe; 7, leakage detection mechanism; 8, elastic support layer; 9, shielding layer; 10, heat preservation conductive layer; 11, heat preservation bottom plate; 12, one-way shielding box; 13, sealing cover; 14, contact foot; 15, temperature and humidity sensor; 16, wireless transmission module; 17, thermoelectric cell. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0022] Please refer to Figures 1 to 5 The utility model provides an embodiment: a waterproof, anti-electric shock ground heating system, including floor main plate 1, the upper end surface of floor main plate 1 is installed with waterproof bottom support 2, the upper end surface of waterproof bottom support 2 is installed with backfill layer 3, waterproof bottom support 2 is installed with water pipe 6 between backfill layer 3, the inside of water pipe 6 is installed with multiple leakage detection mechanisms 7, leakage detection mechanism 7 includes one-way shielding box 12, the upper end of one-way shielding box 12 is installed with sealing cover 13, the outside of one-way shielding box 12 is fixedly installed with four contact feet 14, one end of contact foot 14 is fixedly provided with temperature and humidity sensor 15, the inside of one-way shielding box 12 is installed with two thermoelectric cells 17, one wireless transmission module 16 is installed between two thermoelectric cells 17, the surface of water pipe 6 can be monitored by temperature and humidity sensor 15, and the monitoring data is wirelessly transmitted by wireless transmission module 16, which is convenient for multi-point water seepage monitoring operation of ground heating;

[0023] One-way shielding box 12 and sealing cover 13 are connected by screw thread, temperature and humidity sensor 15, wireless transmission module 16 and thermoelectric cell 17 are connected by electric property, contact foot 14 and water pipe 6 are connected by temperature and humidity sensor 15, the inner wall of one-way shielding box 12 is provided with one-way shielding film, thermoelectric cell 17 can generate electricity and continuously supply power to wireless transmission module 16 in the case that there is temperature difference in the floor, and then the operation of replacing the battery of one-way shielding box 12 is avoided.

[0024] Please refer to Figures 1 to 3 , the upper end face of the backfill layer 3 is provided with a crack prevention grid layer 5, the upper end face of the crack prevention grid layer 5 is provided with a floor layer 4, the material of the backfill layer 3 is foam glass, the upper surface of the backfill layer 3 is provided with a self-leveling layer, the crack prevention grid layer 5 is arranged on the surface of the self-leveling layer, the crack prevention grid layer 5 is adhesively fixed with the self-leveling layer, the backfill layer 3 is connected with the floor layer 4 through the crack prevention grid layer 5, the inside of the crack prevention grid layer 5 is provided with elastic wires, the material of the elastic wires is rubber and nylon winding, the backfill layer 3 can be further protected through the crack prevention grid layer 5, so as to avoid the influence of the cracking of the backfill layer 3 on the use of the floor layer 4.

[0025] Please refer to Figure 1 and Figure 4 , the waterproof bottom support 2 comprises a heat preservation bottom plate 11, the upper end face of the heat preservation bottom plate 11 is provided with a heat preservation conductive layer 10, the upper end face of the heat preservation conductive layer 10 is provided with a shielding layer 9, the upper end face of the shielding layer 9 is provided with an elastic support layer 8, the heat preservation conductive layer 10 is adhesively fixed with the heat preservation bottom plate 11, the upper surface of the heat preservation conductive layer 10 is provided with a conductive coating, the heat preservation bottom plate 11 is connected with the elastic support layer 8 through the shielding layer 9 and the heat preservation conductive layer 10, the heat preservation conductive layer 10 can be used for grounding operation of the floor heating, so as to effectively avoid the situation of human body electric shock.

[0026] In use, the heat preservation bottom plate 11, the heat preservation conductive layer 10, the shielding layer 9 and the elastic support layer 8 constituting the waterproof bottom support 2 are sequentially laid on the upper end face of the floor main plate 1 from bottom to top, so that the heat preservation bottom plate 11 is connected with the elastic support layer 8 through the heat preservation conductive layer 10 and the shielding layer 9, then the water pipe 6 is installed and fixed through backfilling of the backfill layer 3, the surface of the backfill layer 3 is horizontally adjusted and crack treated by using self-leveling, the backfill layer 3 can be further protected through the crack prevention grid layer 5, so as to avoid the influence of the cracking of the backfill layer 3 on the use of the floor layer 4, hot water is input into the water pipe 6, so that the water pipe 6 can realize the floor heating effect through the backfill layer 3, the crack prevention grid layer 5 and the floor layer 4;

[0027] The elastic support layer 8 can effectively protect the shielding layer 9 and the heat preservation conductive layer 10, so as to avoid damage of the shielding layer 9 and the heat preservation conductive layer 10 caused by pressure, the shielding layer 9 and the heat preservation conductive layer 10 can be shielded and heat preserved at the same time, the conductive coating is arranged on the surface of the heat preservation conductive layer 10, so that the heat preservation conductive layer 10 can be used for grounding operation of the floor heating, so as to effectively avoid the situation of human body electric shock, when the water pipe 6 leaks;

[0028] The monitoring can be realized through the leakage detection mechanism 7, specifically, the wireless transmission module 16 is installed on the inner side of the one-way shielding box 12, and the contact foot 14 is connected and contacted with the surface of the water pipe 6 through the temperature and humidity sensor 15, then the temperature and humidity of the surface of the water pipe 6 can be monitored through the temperature and humidity sensor 15, and the monitoring data can be wirelessly transmitted through the wireless transmission module 16, so as to facilitate the multi-point water leakage monitoring operation of the floor heating, and the thermocouple 17 can generate electricity and continuously supply power to the wireless transmission module 16 when there is a temperature difference on the floor, thereby avoiding the operation of replacing the battery of the one-way shielding box 12.

[0029] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A waterproof and electric shock-proof floor heating system comprising a floor main plate (1), characterized in that: The upper end face of the floor main plate (1) is provided with a waterproof bottom support (2), the upper end face of the waterproof bottom support (2) is provided with a backfill layer (3), the waterproof bottom support (2) and the backfill layer (3) are provided with a water pipe (6), the inner side of the water pipe (6) is provided with a plurality of leakage detection mechanisms (7), the upper end face of the backfill layer (3) is provided with a crack prevention grid layer (5), and the upper end face of the crack prevention grid layer (5) is provided with a floor layer (4). The leakage detection mechanism (7) comprises a one-way shielding box (12), the upper end of the one-way shielding box (12) is provided with a sealing cover (13), the outer side of the one-way shielding box (12) is fixedly provided with four contact feet (14), one end of the contact foot (14) is fixedly provided with a temperature and humidity sensor (15), the inner side of the one-way shielding box (12) is provided with two thermocouples (17), and one wireless transmission module (16) is arranged between the two thermocouples (17).

2. A water and electric shock proof floor heating system according to claim 1, characterized in that: The waterproof bottom support (2) comprises a heat preservation bottom plate (11), the upper end face of the heat preservation bottom plate (11) is provided with a heat preservation conductive layer (10), the upper end face of the heat preservation conductive layer (10) is provided with a shielding layer (9), and the upper end face of the shielding layer (9) is provided with an elastic support layer (8).

3. A water and electric shock proof floor heating system according to claim 2, characterized in that: The heat preservation conductive layer (10) and the heat preservation bottom plate (11) are adhesively fixed, the upper surface of the heat preservation conductive layer (10) is provided with a conductive coating, and the heat preservation bottom plate (11) and the elastic support layer (8) are connected through the shielding layer (9) and the heat preservation conductive layer (10).

4. A water and electric shock proof geothermal heating system according to claim 1, characterized in that: The material of the backfill layer (3) is foam glass, the upper surface of the backfill layer (3) is provided with a self-leveling layer, the crack prevention grid layer (5) is arranged on the surface of the self-leveling layer, and the crack prevention grid layer (5) and the self-leveling layer are adhesively fixed.

5. A water and electric shock proof geothermal heating system according to claim 1, characterized in that: The backfill layer (3) and the floor layer (4) are connected through the crack prevention grid layer (5), the inside of the crack prevention grid layer (5) is provided with an elastic wire, and the material of the elastic wire is composed of rubber and nylon winding.

6. A water and electric shock resistant geothermal heating system according to claim 1, characterized in that: The one-way shielding box (12) and the sealing cover (13) are connected through threads, the temperature and humidity sensor (15), the wireless transmission module (16) and the thermocouple (17) are connected through electricity, the contact foot (14) and the water pipe (6) are connected through the temperature and humidity sensor (15), and the inner wall of the one-way shielding box (12) is provided with a one-way shielding film.