Concave sound insulation groove floor heating module
By designing a concave sound insulation groove floor heating module, the problems of excessively high ground temperature, ground damage, and loose floor heating pipes during the installation process are solved. This achieves efficient heat conduction, superior sound insulation and heat preservation, convenient installation, and reliable anti-detachment, thereby improving the performance and reliability of the floor heating system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 河南欧菲克新材料有限公司
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-05
AI Technical Summary
Traditional underfloor heating modules have problems such as excessively high ground temperature, ground damage, and loose or displaced underfloor heating pipes during the installation process. In addition, the installation steps are complicated and cannot be installed in the later stages of home renovation.
A concave sound insulation groove floor heating module was designed, which includes a heat-conducting layer, a sound insulation and heat preservation layer, a groove and an inner groove structure. The inner groove is equipped with a stop block and a stop spring. Combined with the cover plate and locking pin design, the positioning module includes a base and a cap to ensure that the floor heating pipe is fixed and connected firmly.
It improves the heating efficiency and insulation performance of the underfloor heating module, avoids loosening or displacement of the underfloor heating pipes, facilitates installation and maintenance, and enhances the reliability and installation efficiency of the system.
Smart Images

Figure CN224200207U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of underfloor heating modules, specifically relating to a concave sound insulation groove underfloor heating module. Background Technology
[0002] Underfloor heating uses the entire floor as a radiator, heating the entire floor evenly through a heat transfer medium in the floor's radiant layer. It then utilizes the floor's own heat storage and the upward radiation of heat to conduct heat upwards, achieving the purpose of heating. However, traditional underfloor heating systems need to be installed during building construction or before home renovation, which is cumbersome and has significant limitations.
[0003] With the development of technology, integrated underfloor heating modules are gradually gaining popularity as an alternative to traditional underfloor heating. These modules, which use grooved insulation boards to fix and protect the heating pipes while ensuring even heat distribution, are crucial heat-radiating terminals in an underfloor heating system. They replace traditional underfloor heating systems, eliminating the need for cement backfilling and allowing direct installation of floor tiles or wood flooring. Furthermore, installation can be performed even after the house has been renovated. However, using underfloor heating modules can lead to excessively high floor temperatures and damage to the floor surface. Additionally, the heating pipes may loosen or shift during installation, affecting the heating efficiency. Summary of the Invention
[0004] The purpose of this utility model is to provide a concave sound insulation groove floor heating module to solve the problems mentioned in the background art.
[0005] The purpose of this utility model is achieved as follows: a concave sound insulation groove floor heating module, which includes a base, a heat-conducting layer on the upper side of the base, a sound insulation and heat preservation layer at the bottom of the heat-conducting layer, grooves spaced apart inside the heat-conducting layer, a floor heating pipe in the middle of the groove, inner grooves symmetrically arranged inside the groove, a stop block movably arranged inside the inner groove, and a stop spring connecting the end of the stop block away from the floor heating pipe to the inner groove.
[0006] The upper and lower surfaces of the end of the block near the underfloor heating pipe are provided with arc-shaped grooves.
[0007] A cover plate is provided on the upper side of the inner groove, and a locking pin is provided at the bottom of the cover plate. A locking groove is provided inside the stop block, and the locking pin and the locking groove cooperate with each other.
[0008] Positioning modules are provided at the corners of the base. Each positioning module includes a base and a cap. A top block is provided at the upper end of the base, and a gap groove is provided between the top blocks. A positioning claw is provided at the bottom of the cap.
[0009] The bottom of the top block is provided with an anti-detachment hole, and the positioning claw is provided with an anti-detachment hook. The anti-detachment hook and the anti-detachment hole cooperate with each other.
[0010] The cap has a pressure plate inside, and a pressure plate spring is provided between the pressure plate and the cap.
[0011] The surface of the cap is provided with anti-slip texture.
[0012] The beneficial effects of this invention are as follows: The heat-conducting layer ensures that heat is rapidly and evenly transferred to the ground, improving the heating efficiency of the underfloor heating module. The groove design allows the underfloor heating pipes to fit tightly against the heat-conducting layer, further enhancing heat transfer. The addition of a sound-insulating and heat-preserving layer effectively prevents heat loss, improving the insulation performance of the underfloor heating system. Simultaneously, the sound-insulating and heat-preserving layer effectively isolates noise. The design of the inner groove and stop blocks ensures that the underfloor heating pipes are firmly fixed within the grooves, preventing loosening or displacement during use. The coordinated design of the cover plate with locking pins and slots makes the installation and removal of the cover plate very convenient, facilitating the maintenance and repair of the underfloor heating system. The positioning module makes the connection between the underfloor heating modules more accurate and stable, improving installation efficiency and reducing installation errors. Attached Figure Description
[0013] Figure 1 This is a top view of the concave sound insulation groove floor heating module of this utility model.
[0014] Figure 2 This is a front sectional view of the base of the concave sound insulation groove floor heating module of this utility model.
[0015] Figure 3 This is a structural diagram showing the connection between the block and the groove in the concave sound insulation groove floor heating module of this utility model.
[0016] Figure 4 This is a structural diagram of the positioning module of the concave sound insulation groove floor heating module of this utility model.
[0017] Figure 5 This is a structural diagram of the combined base of the concave sound insulation groove floor heating module of this utility model.
[0018] Figure 6 This is a structural diagram of the cap of the concave sound insulation groove floor heating module of this utility model.
[0019] Figure 7 This is a front view of the cap of the concave sound insulation groove floor heating module of this utility model.
[0020] In the diagram: 1. Base; 2. Heat-conducting layer; 3. Sound insulation and heat preservation layer; 4. Groove; 5. Underfloor heating pipe; 6. Inner groove; 7. Stop block; 8. Stop spring; 9. Cover plate; 10. Locking groove; 11. Locking pin; 12. Arc groove; 13. Positioning module; 14. Base; 15. Sealing cap; 16. Top block; 17. Spacing groove; 18. Anti-detachment hole; 19. Positioning claw; 20. Anti-detachment hook; 21. Pressure plate; 22. Pressure plate spring; 23. Anti-slip texture. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings. Example
[0022] like Figure 1-3 As shown, the concave soundproof groove floor heating module includes a base 1, a heat-conducting layer 2 on the upper side of the base 1, a sound-insulating and heat-preserving layer 3 at the bottom of the heat-conducting layer 2, grooves 4 spaced apart inside the heat-conducting layer 2, a floor heating pipe 5 in the middle of the groove 4, inner grooves 6 symmetrically arranged inside the groove 4, and a stop block 7 movably arranged inside the inner groove 6. A stop spring 8 is connected between the end of the stop block 7 away from the floor heating pipe 5 and the inner groove 6.
[0023] The upper and lower surfaces of the end of the stop block 7 near the underfloor heating pipe 5 are provided with arc-shaped grooves 12.
[0024] The inner groove 6 is provided with a cover plate 9 on the upper side, and a locking pin 11 is provided at the bottom of the cover plate 9. The block 7 is provided with a locking groove 10 inside, and the locking pin 11 and the locking groove 10 cooperate with each other.
[0025] In use, the floor heating modules are laid according to the design drawings, with the bases 1 tightly spliced together to ensure no gaps. The floor heating pipes 5 are then inserted into the grooves 4 of the bases 1 according to the designed circuit, ensuring the pipes remain naturally curved and free from sharp bends or twists. When the pipes 5 are placed into the grooves 4, the stop block 7 is pressed down, and under the action of the baffle spring 8, the stop block 7 retracts into the inner groove 6, allowing the pipes 5 to be smoothly inserted into the grooves 4. After the pipes 5 are inserted, the baffle spring 8 pushes the stop block 7 outwards, limiting the position of the pipes 5. The cover plate 9 is then placed on top of the grooves 4, ensuring that the locking pin 11 at the bottom of the cover plate 9 engages with the locking groove 10 inside the stop block 7. This prevents the floor heating pipes 5 from loosening or shifting during use.
[0026] This device boasts advantages such as high-efficiency heat conduction, superior sound insulation and heat preservation, convenient installation and maintenance, and reliable anti-detachment. These combined enhance the performance and reliability of the underfloor heating system. Example
[0027] like Figure 1-7 As shown, the concave soundproof groove floor heating module includes a base 1, a heat-conducting layer 2 on the upper side of the base 1, a sound-insulating and heat-preserving layer 3 at the bottom of the heat-conducting layer 2, grooves 4 spaced apart inside the heat-conducting layer 2, a floor heating pipe 5 in the middle of the groove 4, inner grooves 6 symmetrically arranged inside the groove 4, and a stop block 7 movably arranged inside the inner groove 6. A stop spring 8 is connected between the end of the stop block 7 away from the floor heating pipe 5 and the inner groove 6.
[0028] For better performance, the upper and lower surfaces of the end of the stop block 7 near the underfloor heating pipe 5 are provided with arc-shaped grooves 12. The arc-shaped grooves 12 facilitate the insertion or removal of the underfloor heating pipe 5 from the groove 4.
[0029] For better performance, a cover plate 9 is provided on the upper side of the inner groove 6, and a locking pin 11 is provided at the bottom of the cover plate 9. A locking groove 10 is provided inside the stop block 7, and the locking pin 11 and the locking groove 10 cooperate with each other. The cooperation between the cover plate 9, the locking pin 11, and the locking groove 10 makes the installation and removal of the cover plate 9 very convenient.
[0030] For better results, positioning modules 13 are provided at the corners of the base 1. The positioning module 13 includes a base 14 and a cap 15. A top block 16 is provided at the upper end of the base 14, and a gap groove 17 is provided between the top blocks 16. A positioning claw 19 is provided at the bottom of the cap 15.
[0031] For better performance, the bottom of the top block 16 is provided with an anti-detachment hole 18, and the positioning claw 19 is provided with an anti-detachment hook 20. The anti-detachment hook 20 and the anti-detachment hole 19 cooperate with each other. The anti-detachment hole 19 and the anti-detachment hook 20 ensure a firm connection between the base 14 and the cap 15, preventing detachment due to external force or prolonged use.
[0032] For better results, a pressure plate 21 is provided inside the cap 15, and a pressure plate spring 22 is provided between the pressure plate 21 and the cap 15. The pressure plate 21 and the pressure plate spring 22 further enhance the stability of the cap 15 and improve the connection reliability of the base 1.
[0033] For better results, the surface of the cap 15 is provided with anti-slip texture 23. The anti-slip texture 23 on the surface of the cap 15 makes it easier to grip and apply force during operation.
[0034] In use, the floor heating modules are laid according to the design drawings, with the bases 1 tightly spliced together to ensure no gaps. The floor heating pipes 5 are then inserted into the grooves 4 of the bases 1 according to the designed circuit, ensuring the pipes remain naturally curved and free from sharp bends or twists. When the pipes 5 are placed into the grooves 4, the stop block 7 is pressed down, and under the action of the baffle spring 8, the stop block 7 retracts into the inner groove 6, allowing the pipes 5 to be smoothly inserted into the grooves 4. After the pipes 5 are inserted, the baffle spring 8 pushes the stop block 7 outwards, limiting the position of the pipes 5. The cover plate 9 is then placed on top of the grooves 4, ensuring that the locking pin 11 at the bottom of the cover plate 9 engages with the locking groove 10 inside the stop block 7. This prevents the floor heating pipes 5 from loosening or shifting during use.
[0035] Furthermore, to ensure a tighter connection between the bases 1, positioning modules 13 are provided at the corners of the bases 1. Each corner structure of the base 1 is a quarter-sized portion of the base 14, and the four corners are joined together to form a complete base 14. The positioning claws 19 of the cap 15 are aligned with the slots 17 on the top block 16, and the cap 15 is gently pressed down to allow the positioning claws 19 to enter the slots 17. The cap 15 is then rotated so that the anti-disengagement hooks 20 on the inner side of the positioning claws 19 align with the anti-disengagement holes 18. Under the action of the pressure spring 22, the cap 15 automatically and tightly fits against the base 14, and the anti-disengagement hooks 20 enter the anti-disengagement holes 18, thus fixing the positioning modules 13. The positioning modules 13 make the connection between the underfloor heating modules more accurate and stable, improving installation efficiency and reducing installation errors.
[0036] This device boasts advantages such as high-efficiency heat conduction, superior sound insulation and heat preservation, convenient installation and maintenance, and reliable anti-detachment. These combined enhance the performance and reliability of the underfloor heating system.
Claims
1. A concave sound-insulating groove floor heating module, comprising a base, characterized in that: A heat-conducting layer is provided on the upper side of the base, and a sound-insulating and heat-preserving layer is provided at the bottom of the heat-conducting layer. Grooves are provided at intervals inside the heat-conducting layer, and a floor heating pipe is provided in the middle of the groove. Inner grooves are symmetrically arranged inside the grooves, and a stop block is movably arranged inside the inner groove. A stop spring is connected between the end of the stop block away from the floor heating pipe and the inner groove.
2. The concave sound insulation groove floor heating module according to claim 1, characterized in that: The upper and lower surfaces of the end of the block near the underfloor heating pipe are provided with arc-shaped grooves.
3. The concave sound insulation groove floor heating module according to claim 1, characterized in that: A cover plate is provided on the upper side of the inner groove, and a locking pin is provided at the bottom of the cover plate. A locking groove is provided inside the stop block, and the locking pin and the locking groove cooperate with each other.
4. The concave sound insulation groove floor heating module according to claim 1, characterized in that: Positioning modules are provided at the corners of the base. Each positioning module includes a base and a cap. A top block is provided at the upper end of the base, and a gap groove is provided between the top blocks. A positioning claw is provided at the bottom of the cap.
5. The concave sound insulation groove floor heating module according to claim 4, characterized in that: The bottom of the top block is provided with an anti-detachment hole, and the positioning claw is provided with an anti-detachment hook. The anti-detachment hook and the anti-detachment hole cooperate with each other.
6. The concave sound insulation groove floor heating module according to claim 5, characterized in that: The cap has a pressure plate inside, and a pressure plate spring is provided between the pressure plate and the cap.
7. The concave sound insulation groove floor heating module according to claim 6, characterized in that: The surface of the cap is provided with anti-slip texture.