Fabricated dry type floor heating module

By designing a prefabricated dry floor heating module, using the combination of heat insulation board, PVC hard pipe body layout board and heat-hosing board, the problem of slow heating speed in the existing dry floor heating technology is solved, and a more efficient heating effect is achieved.

CN223020383UActive Publication Date: 2025-06-24RUILITE BAODING ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202422233913.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-06-24
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

In the existing dry floor heating technology, the thermal medium pipe body is fitted with the prefabricated groove, resulting in the problem of slow heating speed and slow heating speed.

Method used

A prefabricated dry floor heating module is designed, including heat insulation board, PVC hard tube body layout board and heat-hosing board. Through the PVC hard plate and column arrangement plate spliced ​​together, the flexible arrangement and limit of the thermal medium pipe body can be realized, the contact area with the thermal medium pipe body is reduced, and the heat dissipation efficiency is improved.

Benefits of technology

The heat dissipation efficiency of the thermal medium pipe body is improved, the heating speed is increased, and the problem of slow heating speed is improved.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223020383U_ABST
    Figure CN223020383U_ABST
Patent Text Reader

Abstract

The utility model discloses an assembly type dry floor heating module which comprises a heat insulation plate fixedly arranged on the leveling ground, and a plurality of PVC hard pipe body arrangement plates which are connected in a spliced mode and used for arranging heating medium pipe bodies are fixedly arranged on the upper surface of the heat insulation plate. A soaking plate located above the heating medium pipe body is fixedly arranged on the PVC hard pipe body arrangement plate in a supporting mode. By means of the heat insulation plate, heat can be prevented from being transferred downwards, and therefore the situation that heat is transferred to the ground, and indoor heat supply is not facilitated is avoided; by arranging the PVC hard pipe body arrangement plates which are mutually spliced and connected, the arrangement of the heating medium pipe bodies is facilitated, the heating medium pipe bodies can be randomly arranged according to requirements, the limiting effect on the heating medium pipe bodies is good, meanwhile, the contact area with the heating medium pipe bodies is reduced, the heat dissipation of the heating medium pipe bodies is effectively improved, and the service life of the heating medium pipe bodies is prolonged. Therefore, the heating speed is increased, and the problem of low heat supply speed is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of floor heating, and particularly relates to an assembled dry floor heating module. Background Art

[0002] Floor heating uses the entire floor as a radiator, and evenly heats the floor with a low-temperature heat medium not higher than 60°C. It supplies heat to the room through the floor in the heat transfer modes of radiation and convection to achieve the purpose of comfortable heating. It is divided into two categories: water floor heating and electric floor heating according to the heat medium, and is divided into wet floor heating and dry floor heating according to the paving structure.

[0003] Among them, dry floor heating is a thin floor heating that uses prefabricated grooved insulation modules for dry laying and does not require cement backfilling. Because of its thin thickness and fast heating up, it can be energy-saving, and is suitable for occasions with low entrance thresholds, high temperature requirements, and intermittent heating that requires energy-saving behavior. However, because the heat medium pipe body is placed in the prefabricated groove, a part of the heat medium pipe body fits with the prefabricated groove, which still affects the heating-up speed and results in slow heat supply speed. Content of the Utility Model

[0004] The technical problem to be solved by the utility model is to provide an assembled dry floor heating module to solve the problems raised in the background art.

[0005] To solve the above technical problems, the technical solutions adopted by the utility model are as follows.

[0006] An assembled dry floor heating module includes a heat insulation board fixedly arranged on a levelled floor. A plurality of PVC rigid pipe body arrangement boards which are spliced and connected to each other and used for arranging the heat medium pipe body are fixedly arranged on the upper surface of the heat insulation board. A heat equalizing plate located above the heat medium pipe body is fixedly supported on the PVC rigid pipe body arrangement board.

[0007] Preferably, the PVC rigid pipe body arrangement board includes a plurality of first PVC rigid pipe body arrangement boards and second PVC rigid pipe body arrangement boards which are spliced and connected to each other.

[0008] Preferably, the first PVC rigid pipe body arrangement board includes a first PVC rigid board fixedly arranged on the upper surface of the heat insulation board. A plurality of first PVC rigid columns are uniformly and integrally formed and erected on the upper surface of the first PVC rigid board. A space which is adapted to the heat medium pipe body and used for arranging the heat medium pipe body is formed between adjacent first PVC rigid columns; a PVC rigid side board is integrally formed along the circumferential direction on the edge of the first PVC rigid board. A plurality of isosceles trapezoidal notches which are narrow outside and wide inside and used for splicing with the second PVC rigid pipe body arrangement board are uniformly opened on the PVC rigid side board; notches used for splicing with an adjacent first PVC rigid board are respectively opened at both ends of one side edge of the first PVC rigid board.

[0009] Preferably, the second PVC hard pipe body layout board includes a second PVC hard board fixedly arranged on the upper surface of the heat insulation board. The upper surface of the second PVC hard board is evenly and integrally formed with second PVC hard columns that are arranged according to the arrangement rule of the first PVC hard columns on the first PVC hard board and are the same as the first PVC hard columns. Along the circumferential direction, the edge of the second PVC hard board is integrally formed with a PVC hard isosceles trapezoidal convex block that is adapted to the isosceles trapezoidal notch and is used to insert into the isosceles trapezoidal notch to realize the mutual splicing of the first PVC hard pipe body layout board and the second PVC hard pipe body layout board.

[0010] Preferably, rubber sleeves for directly contacting the heat medium medium pipe body and protecting the heat medium medium pipe body are sleeved on both the first PVC hard column and the second PVC hard column.

[0011] Preferably, the heat sink plate is fixedly arranged on the first PVC hard column and the second PVC hard column.

[0012] Preferably, the heights of the first PVC hard column and the second PVC hard column are greater than the diameter length of the heat medium medium pipe body.

[0013] Preferably, an adhesive layer for fixing the heat insulation board on the levelled ground is arranged on the lower surface of the heat insulation board.

[0014] Due to the adoption of the above technical solutions, the technical progress obtained by the present utility model is as follows.

[0015] By arranging the heat insulation board, the present utility model can block the downward transfer of heat, thereby avoiding the heat being transferred to the ground, which is not conducive to indoor heating. By arranging the mutually spliced first PVC hard board and the second PVC hard board, the first PVC hard column arranged on the first PVC hard board and the second PVC hard column arranged on the second PVC hard board, it is not only convenient for the layout of the heat medium medium pipe body, and the heat medium medium pipe body can be arranged arbitrarily according to requirements, but also has a good limiting effect on the heat medium medium pipe body. At the same time, the contact area with the heat medium medium pipe body is reduced, effectively improving the heat dissipation of the heat medium medium pipe body, thereby facilitating the improvement of the heating rate and improving the problem of slow heating rate. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the present utility model;

[0017] Figure 2 is a schematic structural diagram of the first PVC hard pipe body layout board of the present utility model;

[0018] Figure 3 is a schematic structural diagram of the second PVC hard pipe body layout board of the present utility model;

[0019] Figure 4 Schematic diagram of the splicing of four first PVC rigid pipe body arrangement plates and one second PVC rigid pipe body arrangement plate of the present utility model.

[0020] Wherein: 1. heat insulation board, 2. first PVC rigid pipe body arrangement plate, 21. first PVC rigid board, 22. first PVC rigid column, 23. PVC rigid side board, 24. isosceles trapezoidal notch, 25. notch, 3. second PVC rigid pipe body arrangement plate, 31. second PVC rigid board, 32. second PVC rigid column, 33. PVC rigid isosceles trapezoidal convex block, 4. heat sink plate, 5. rubber sleeve, 6. adhesive layer. Specific embodiments

[0021] The present utility model will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0022] An assembled dry floor heating module, in combination with Figure 1 As shown, it includes a heat insulation board 1, a PVC rigid pipe body arrangement plate and a heat sink plate 4. Among them, the heat insulation board 1 is fixedly arranged on the levelled ground; the PVC rigid pipe body arrangement plate is several pieces, and several PVC rigid pipe body arrangement plates are spliced and connected and fixedly arranged on the upper surface of the heat insulation board 1. The PVC rigid pipe body arrangement plate is used for arranging the heat medium pipe body and supporting the heat sink plate 4 above the heat medium pipe body; the lower surface of the heat sink plate 4 is fixedly connected to the PVC rigid pipe body arrangement plate, and the upper surface of the heat sink plate 4 is used for pasting the floor.

[0023] The lower surface of the heat insulation board 1 is provided with an adhesive layer 6, and the adhesive layer 6 is used for fixing the heat insulation board 1 on the levelled ground. The heat insulation board 1 is used to block the downward transfer of heat, so as to avoid the transfer of heat to the ground, which is not conducive to indoor heating.

[0024] The PVC rigid pipe body arrangement plate includes several first PVC rigid pipe body arrangement plates 2 and several second PVC rigid pipe body arrangement plates 3, and several first PVC rigid pipe body arrangement plates 2 and several second PVC rigid pipe body arrangement plates 3 are spliced and connected to each other.

[0025] As Figure 2As shown in the figure, the first PVC hard pipe body arrangement board 2 includes a first PVC hard board 21, and the first PVC hard board 21 is fixedly arranged on the upper surface of the heat insulation board 1. The specific fixing method is not limited, such as: by bonding; threaded counterbores are opened on the first PVC hard board 21, threaded holes are opened on the heat insulation board 1, and they are fixedly connected by bolts, etc. A number of first PVC hard columns 22 are fixedly erected on the upper surface of the first PVC hard board 21 evenly and integrally. Spaces are formed between adjacent first PVC hard columns 22. The spaces are adapted to the heat medium pipe body and are used to arrange the heat medium pipe body, realizing the installation of the heat medium pipe body. It not only has a good limiting effect on the heat medium pipe body, but also can arrange the heat medium pipe body arbitrarily according to requirements. At the same time, it also reduces the contact area with the heat medium pipe body, effectively improving the heat dissipation of the heat medium pipe body, thereby facilitating the improvement of the heating rate and solving the problem of slow heating speed.

[0026] The edge of the first PVC hard board 21 is integrally formed with a PVC hard edge board 23 along the circumferential direction. A number of isosceles trapezoidal notches 24 are evenly opened on the PVC hard edge board 23. The isosceles trapezoidal notches 24 are narrow outside and wide inside and are used for splicing with the second PVC hard pipe body arrangement board 3. At both ends of one side edge of the first PVC hard board 21, notches 25 are respectively opened, and the notches 25 are used for splicing with adjacent first PVC hard boards 21.

[0027] As Figure 3 shown in the figure, the second PVC hard pipe body arrangement board 3 includes a second PVC hard board 31, and the second PVC hard board 31 is fixedly arranged on the upper surface of the heat insulation board 1. The specific fixing method is the same as that of the first PVC hard board 21. A number of second PVC hard columns 32 are fixedly erected on the upper surface of the second PVC hard board 31 evenly and integrally. The second PVC hard columns 32 are the same as the first PVC hard columns 22, and the second PVC hard columns 32 are arranged according to the arrangement rule of the first PVC hard columns 22 on the first PVC hard board 21, which is convenient for the arrangement of the heat medium pipe body.

[0028] A number of spaced PVC hard isosceles trapezoidal protrusions 33 are integrally formed on the edge of the second PVC hard board 31 along the circumferential direction. The PVC hard isosceles trapezoidal protrusions 33 are adapted to the isosceles trapezoidal notches 24, and the PVC hard isosceles trapezoidal protrusions 33 are used to insert into the isosceles trapezoidal notches 24, thereby realizing the mutual splicing of the first PVC hard pipe body arrangement board 2 and the second PVC hard pipe body arrangement board 3, as Figure 4 shown in the figure. Rubber sleeves 5 are sleeved on both the first PVC hard columns 22 and the second PVC hard columns 32. The rubber sleeves 5 are used to directly contact the heat medium pipe body, thereby preventing the first PVC hard columns 22 and the second PVC hard columns 32 from making hard contact with the heat medium pipe body and protecting the heat medium pipe body.

[0029] The heights of the first PVC rigid column 22 and the second PVC rigid column 32 are greater than the diameter length of the heat medium pipe body. The heat sink plate 4 is fixedly arranged on the first PVC rigid column 22 and the second PVC rigid column 32. The specific fixing method is not limited. For example, it can be fixed by adhesion; threaded holes are opened on the first PVC rigid column 22 and the second PVC rigid column 32, and threaded counterbores are opened on the heat sink plate 4, and they are fixed by bolt connection. Since the first PVC rigid pipe body layout plate 2 and the second PVC rigid pipe body layout plate 3 have strong hardness, they can well support the heat sink plate 4 and have good load-bearing effect. The heat sink plate 4 can not only protect the heat medium pipe body, but also absorb the heat of the heat medium pipe body and drive the whole heat sink plate 4 to generate heat, so that the heat release is more uniform, and the heating efficiency and heating effect are improved.

[0030] When the utility model is in use, through the arranged heat insulation plate 1, the downward heat transfer can be blocked, so as to avoid the heat being transferred to the ground, which is not conducive to indoor heating; through the arranged first PVC rigid plate 21 and the second PVC rigid plate 31 that are spliced and connected to each other, the first PVC rigid column 22 arranged on the first PVC rigid plate 21 and the second PVC rigid column 32 arranged on the second PVC rigid plate 31, it is not only convenient for the layout of the heat medium pipe body, and the heat medium pipe body can be arranged arbitrarily according to needs, but also has a good limiting effect on the heat medium pipe body. At the same time, the contact area with the heat medium pipe body is reduced, the heat dissipation of the heat medium pipe body is effectively improved, and thus the heating speed is improved, and the problem of slow heating speed is solved.

Claims

1. An assembled dry floor heating module, characterized in that: It comprises a heat insulation board (1) fixedly arranged on a leveled ground, a plurality of PVC hard pipe arrangement boards which are spliced ​​and connected and used for arranging heat medium pipe bodies are fixedly arranged on the upper surface of the heat insulation board (1), and a heat spreader board (4) located above the heat medium pipe bodies is fixedly supported on the PVC hard pipe arrangement board.

2. The assembled dry floor heating module according to claim 1, characterized in that: The PVC hard pipe body arrangement plate comprises a plurality of first PVC hard pipe body arrangement plates (2) and second PVC hard pipe body arrangement plates (3) which are spliced ​​and connected to each other.

3. The assembled dry floor heating module according to claim 2 is characterized in that: The first PVC hard pipe body arrangement plate (2) comprises a first PVC hard plate (21) fixedly arranged on the upper surface of the heat insulation plate (1); a plurality of first PVC hard columns (22) are evenly and integrally formed and fixedly arranged on the upper surface of the first PVC hard plate (21); a space adapted to the heat medium pipe body and used for arranging the heat medium pipe body is formed between adjacent first PVC hard columns (22); a PVC hard side plate (23) is integrally formed along the circumferential direction at the edge of the first PVC hard plate (21); a plurality of isosceles trapezoidal notches (24) with narrow outer sides and wide inner sides for splicing with the second PVC hard pipe body arrangement plate (3) are evenly provided on the PVC hard side plate (23); and notches (25) for splicing with adjacent first PVC hard plates (21) are also respectively provided at both ends of one side edge of the first PVC hard plate (21).

4. The assembled dry floor heating module according to claim 3 is characterized in that: The second PVC hard pipe body arrangement plate (3) comprises a second PVC hard plate (31) fixedly arranged on the upper surface of the heat insulation plate (1); the upper surface of the second PVC hard plate (31) is evenly and integrally formed with second PVC hard columns (32) arranged in accordance with the arrangement regularity of the first PVC hard columns (22) on the first PVC hard plate (21) and identical to the first PVC hard columns (22); the edge of the second PVC hard plate (31) is integrally formed along the circumference with a PVC hard isosceles trapezoidal protrusion (33) adapted to the isosceles trapezoidal notch (24) and used for inserting the isosceles trapezoidal notch (24) to achieve mutual splicing of the first PVC hard pipe body arrangement plate (2) and the second PVC hard pipe body arrangement plate (3).

5. The assembled dry floor heating module according to claim 4 is characterized in that: The first PVC hard column (22) and the second PVC hard column (32) are both sleeved with a rubber sleeve (5) for directly contacting the heat medium pipe body and for protecting the heat medium pipe body.

6. The assembled dry floor heating module according to claim 4, characterized in that: The heat spreader (4) is fixedly arranged on the first PVC hard column (22) and the second PVC hard column (32).

7. The assembled dry floor heating module according to claim 4, characterized in that: The height of the first PVC hard column (22) and the second PVC hard column (32) is greater than the diameter length of the heat medium pipe body.

8. The assembled dry floor heating module according to claim 1, characterized in that: The lower surface of the heat insulation board (1) is provided with an adhesive layer (6) for fixing the heat insulation board (1) on the leveled ground.