Anti-deformation, strong-heat-conduction, mute and oversized metal double-tenon solid wood floor heating floor

By adopting an extra-large metal double-tenon structure and the combination of floor heating extruded board and spring in solid wood flooring, the deformation and thermal conductivity of the suspended installation floor are solved, and the stable connection and silent effect of the floor are achieved.

CN223135580UActive Publication Date: 2025-07-22SHANGHAI IMAGINATION TECH CO LTD
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Patent Information

Application Number
CN202422393837.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The existing solid wood floor heating floor is prone to tiles, arches, deformation and poor thermal conductivity after floating installation, and there is a sound when pressing.

Method used

The ultra-large metal double-toned solid wood floor structure is adopted that is resistant to deformation and strong heat conduction. It is connected by the mortise and tenon between the floors, combined with the cooperation of the floor heating extruded board and the spring, which increases the connection strength and adaptability, and uses silent gaskets to reduce noise.

Benefits of technology

It effectively avoids deformation and noise from the floor, improves thermal conductivity, and ensures that the floor is connected tightly and stably.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-deformation, strong-heat-conduction, mute and oversized metal double-tenon solid wood floor heating floor, which is characterized in that a floor heating extruded sheet is laid on the ground, floor heating pipe mounting grooves and spring mounting grooves are distributed on the upper surface of the floor heating extruded sheet, and the spring mounting grooves are respectively distributed on the periphery of the upper surface of the floor heating extruded sheet; the floor heating pipe is limited in the floor heating pipe mounting groove; the floor assembly is laid on the floor heating extruded sheet and the floor heating pipe; the floor assembly comprises floors and mortise and tenon buckles, the floors are in mortise and tenon joint through the mortise and tenon buckles, and the upper surfaces of the floors are kept on the same horizontal plane. The spring is arranged in the spring mounting groove, one end of the spring pushes against the side edge of the adjacent floor, and the other end of the spring pushes against the wall body; a spring covering groove is formed in the lower surface of the movable cover plate, and the movable cover plate is arranged between the floor on the outermost edge and the wall body and covers the floor heating extruded sheet and the spring; the upper surface of the movable cover plate is flush with the upper surface of the floor; and the mute gasket is arranged between the floor assembly and the floor heating extruded sheet.
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Description

Technical Field

[0001] The utility model relates to the technical field of floor heating floors, and more specifically, to an anti-deformation, highly heat-conductive, silent, and extra-large metal double-tenon solid wood floor heating floor. Background Art

[0002] With the progress of the times, people's living standards have been continuously improved, and the technology of floors in decoration has been constantly advancing. Suspended installation floor heating floors have been widely adopted due to their advantages such as simplicity, convenience, relatively low cost, and short construction period. However, after the existing structure of solid wood floor heating floors is suspended and installed, there are still technical problems such as easy to form a tile shape, arching, deformation, poor heat conduction effect, and noise when stepped on.

[0003] Due to the above problems, people hope that there is a technology to optimize from the structure of the floor itself to actively eliminate or effectively reduce the tile shape and arching of the floor and improve the heat conduction efficiency. Summary of the Utility Model

[0004] This application proposes a new structure for suspended installation floor heating floors, namely "anti-deformation, highly heat-conductive, silent, and extra-large metal double-tenon solid wood floor heating floors", thus effectively solving the technical problems of deformation, poor heat conduction, and noise when stepped on in suspended installation floor heating floors.

[0005] To achieve the above technical purpose, this application adopts the following technical solutions:

[0006] The anti-deformation, highly heat-conductive, silent, and extra-large metal double-tenon solid wood floor heating floor includes: a floor heating extruded board, which is laid on the ground, and the upper surface of the floor heating extruded board is provided with a floor heating pipe installation groove and a spring installation groove, and the spring installation grooves are respectively arranged on the four peripheries of the upper surface of the floor heating extruded board; a floor heating pipe, which is restricted in the floor heating pipe installation groove; a floor assembly, which is laid on the floor heating extruded board and the floor heating pipe; the floor assembly includes a floor and a tenon and mortise buckle, and the floors are tenoned and mortised with each other through the tenon and mortise buckle and keep the upper surfaces on the same horizontal plane; a spring, which is arranged in the spring installation groove, and one end of the spring pushes against the side of the adjacent floor and the other end of the spring pushes against the wall; a movable cover plate, the lower surface of which is provided with a spring covering groove, and is arranged between the outermost floor and the wall and covers the floor heating extruded board and the spring; the upper surface of the movable cover plate is flush with the upper surface of the floor; a silent gasket, which is arranged between the floor assembly and the floor heating extruded board.

[0007] Preferably, the floor includes an integrally formed floor body and a metal skin layer attached to the bottom of the floor body, and a rectangular first mortise groove is recessed inward on the left side and / or the right side of the floor body; a horizontal first tenon tongue is formed in the middle of the mortise groove of the floor body.

[0008] Preferably, the front side and / or the rear side of the floor body are provided with the rectangular first mortise grooves that are recessed inward, and the first tenons that extend horizontally are also extended in the first mortise grooves.

[0009] Preferably, the mortise and tenon buckle is made of metal, the mortise and tenon buckle is in an "H" shape, the side edges of the mortise and tenon buckle form second tenons, and the second tenons are embedded in the first mortise grooves of the adjacent floor bodies; and the mortise openings are recessed from the left and right sides toward the middle to form second mortise grooves that match the first tenons.

[0010] Preferably, the metal mortise and tenon buckles are fully inserted or segmentally inserted into two connected floor boards.

[0011] Preferably, the upper side edge and the lower side edge of the second mortise groove form a guiding structure.

[0012] Preferably, the sound insulation gasket is an embedded elastic strip, and a sealing groove penetrating the metal skin layer is opened on the lower surface of the floor, and the embedded elastic strip is embedded in the sealing groove.

[0013] Preferably, the sound insulation gasket is a self-adhesive elastic strip, and an adhesive layer is provided on the back surface of the elastic strip pad, and the adhesive layer is attached to the lower surface of the metal skin layer.

[0014] Preferably, the diameter of the floor heating pipe installation groove is greater than or equal to the diameter of the floor heating pipe.

[0015] Preferably, the sum of the depths of the mortise grooves on both sides of the floor body accounts for one-half to one-eighth of the width of the board surface of the floor body, and the larger the width of the board surface of the floor body, the smaller the proportion, and vice versa.

[0016] Due to the adoption of the above technical solution, the floor of the utility model utilizes the mortise and tenon structure between the floors to increase the connection strength and avoid the problems of arching and deformation; at the same time, the cooperation of the floor heating extruded board and the spring leaves room for adaptive changes for the floor, further avoiding deformation. In addition, through the setting of the floor heating extruded board and the metal skin layer of the floor bottom plate, the heat conduction is further strengthened; the generation of noise is avoided through the setting of the sound insulation gasket. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is an installation schematic diagram of an embodiment of the utility model;

[0018] Figure 2 is a schematic cross-sectional view of an embodiment of the utility model Figure 1 ;

[0019] Figure 3 is a schematic cross-sectional view of an embodiment of the utility modelFigure 2 ;

[0020] Figure 4 is a schematic structural view of the extruded polystyrene board for floor heating of the present utility model;

[0021] Figure 5 is a schematic structural view of the floor of the present utility model;

[0022] Figure 6 is a schematic structural view of the metal double mortise and tenon buckle of the present utility model;

[0023] Figure 7 is a schematic structural view of the floor of the present utility model with a sound - proof elastic strip added;

[0024] Figure 8 is a schematic structural view of another embodiment of the floor of the present utility model. Detailed implementation manners

[0025] The technical solutions of the present utility model will be further specifically described below through embodiments and in conjunction with the drawings.

[0026] Combined with Figures 1 to 3 shown, is a schematic structural view of this embodiment. The solid wood floor heating floor in this embodiment includes an extruded polystyrene board 1 for floor heating, a floor heating pipe 2, a floor assembly 3, a spring 4, a movable cover plate 5 and a sound - proof gasket 6.

[0027] Combined with Figure 1 and Figure 4 shown, the size of the extruded polystyrene board 1 for floor heating in this embodiment matches the area of the ground 7 (the area of the extruded polystyrene board 1 for floor heating is slightly smaller than the area of the ground for easy laying). The extruded polystyrene board 1 for floor heating is directly laid on the ground 7. The upper surface of the extruded polystyrene board 1 is provided with a floor heating pipe installation groove 11 and a spring installation groove 12. The diameter of the floor heating pipe installation groove 11 is greater than or equal to the diameter of the floor heating pipe 2, so that the upper surface of the floor heating pipe 2 does not exceed the upper surface of the extruded polystyrene board 1. The spring installation grooves 12 are evenly distributed on the four perimeters of the upper surface of the extruded polystyrene board 1. The extruded polystyrene board 1 for floor heating is enhanced and can withstand heavy pressure and high temperature. The extruded polystyrene board 1 for floor heating can play a heat - preservation role. At the same time, a metal skin (such as aluminum or copper) is pasted on the upper surface of the extruded polystyrene board to reflect temperature, which can enhance temperature conduction, simplify the laying steps and save construction costs. The floor heating pipe 2 is inserted into the floor heating pipe installation groove 11 from one side of the extruded polystyrene board 1 before laying the extruded polystyrene board 1 into the ground.

[0028] As Figure 1 and Figure 2 shown, the floor assembly 3 is laid on the extruded polystyrene board 1 for floor heating and the floor heating pipe 2. The floor assembly 3 includes a floor 31 and a metal mortise and tenon buckle 32. The floors 31 are mortised and tenoned with each other through the metal mortise and tenon buckle 32 and keep the upper surfaces on the same horizontal plane. Refer toFigure 5 As shown, the floor 31 includes an integrally formed floor body 311 and a metal skin 312 attached to the bottom of the floor body 311. The two sides of the floor body 311 are respectively inwardly recessed into rectangular first grooves 3111; a first tongue 3112 extending horizontally is formed in the middle of the rectangular first groove 3111 of the floor body 311. Figure 6 As shown, the metal mortise and tenon buckle 32 is in an "H" shape as a whole, and the two sides of the metal mortise and tenon buckle 32 are recessed toward the middle to form a second mortise groove 321 matching the first mortise tongue 3112, and the side of the metal mortise and tenon buckle 32 forms a second mortise tongue 322 embedded in the first mortise groove 3111. The second mortise tongues 322 on both sides of the metal mortise and tenon buckle 32 are respectively embedded in the rectangular first mortise groove 3111 of the two adjacent floor boards 31, and the first mortise tongue 3112 is embedded in the second mortise groove 321 to achieve a double-mortise structure. In order to ensure that the mortise tongue enters the mortise groove smoothly and avoid errors caused by damage, the inner walls of the upper side and lower side of the second mortise groove 321 form a guide structure. The double-mortise structure strengthens the tightness of the floor connection and avoids noise caused by the gap between the floors being stressed. At the same time, the metal mortise and tenon buckle 32 does not have temperature and humidity image deformation, and the efficiency of heat conduction is high, thereby avoiding the degree of deformation of the connection between the floors. The metal mortise and tenon buckle 32 can be made of copper, iron, steel, aluminum and other metals. Under different places and requirements, it can be fully inserted or inserted in sections into the tenon and mortise groove of two connected floors. When the I-shaped paving is performed, the two sides connected at both ends must ensure the use of the oversized metal double tenon to make the length direction of the floor connected tightly and seamlessly.

[0029] See also Figure 1 As shown, the spring 4 is arranged in the spring installation groove 12. One end of the spring 4 pushes against the side of the adjacent floor 31 and the other end of the spring 4 pushes against the wall 8. The expansion and contraction force of the spring 4 always pushes against the floor 31 and the wall 8, while leaving room for the appropriate expansion and contraction of the floor due to changes in temperature and humidity, avoiding deformation of the floor caused by rigid fixation, and ensuring the tightness between the floors. The upper surface of the movable cover 5 is flush with the upper surface of the floor 31.

[0030] In addition, in order to further reduce the noise generation, a silent gasket 6 is arranged between the floor assembly 3 and the floor heating extruded board 1. Figure 7 As shown, in this embodiment, the sound-proof gasket 6 is an embedded elastic strip 61, and a sealing groove 313 penetrating the metal skin layer 312 is provided on the lower surface of the floor 31, and the embedded elastic strip 61 is embedded in the sealing groove 313, and the vertical edge of the embedded elastic strip 61 is fixed by the sealing groove 313, and the horizontal edge is padded on the floor heating extruded board 1. In addition, as another embodiment of the present application, the sound-proof gasket 6 can also be a self-adhesive elastic strip, and the back of the elastic strip pad is provided with an adhesive layer, and the adhesive layer is attached to the lower surface of the metal skin layer.

[0031] See Figure 4 the structural schematic diagram of an embodiment of the floor shown, which is used for splicing into an integral shape such as a strip or the like; and see Figure 8 shown, which is an embodiment of another floor structure of the present invention. Relative to Figure 4 the floor structure, in this embodiment, the floor body is not only provided with a first mortise groove and a first tenon tongue on the left side and / or the right side, but also has the rectangular first mortise groove recessed inwardly on the front side and / or the rear side of the floor body, and the first tenon tongue extending horizontally also extends in the first mortise groove. Therefore, the floor structure in this second embodiment is more suitable for splicing into shapes such as herringbone, parquet or the like.

[0032] In addition, the sum of the depths of the mortise grooves on both sides of the floor body accounts for one-half to one-eighth of the width of the board surface of the floor body, and the smaller the board surface of the floor body, the larger the proportion, and conversely, the larger the board surface of the floor body, the smaller the proportion, so as to increase the anti-waviness of the floor and increase the stability of the floor.

[0033] In summary, the present invention realizes the tight connection between the floors through a double tenon and mortise structure, and at the same time uses the cooperation of the geothermal extruded board and the spring to leave room for adaptive changes for the floor, further avoiding deformation. In addition, through the setting of the geothermal extruded board and the metal skin layer of the floor bottom plate, the heat conduction is further strengthened; the generation of noise is avoided through the setting of the sound insulation gasket.

[0034] The above-described embodiments are only used to illustrate the present invention and not to limit the scope of the present invention. Equivalent changes and modifications made by those skilled in the art to the present invention shall fall within the scope covered by the claims appended to the present invention.

Claims

1. An anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor, characterized in that, Including: A floor heating extruded board, which is laid on the ground. The upper surface of the floor heating extruded board is provided with a floor heating pipe installation groove and a spring installation groove, and the spring installation grooves are respectively arranged on the four peripheries of the upper surface of the floor heating extruded board; A floor heating pipe, which is restricted in the floor heating pipe installation groove; A floor assembly, which is laid on the floor heating extruded board and the floor heating pipe; the floor assembly includes a floor and a mortise and tenon buckle. The floors are mortised and tenoned with each other through the mortise and tenon buckle and keep the upper surfaces on the same horizontal plane; A spring, which is arranged in the spring installation groove, and one end of the spring pushes against the side of the adjacent floor and the other end of the spring pushes against the wall; A movable cover plate, the lower surface of which is provided with a spring covering groove. It is arranged between the outermost floor and the wall and covers the floor heating extruded board and the spring; the upper surface of the movable cover plate is flush with the upper surface of the floor; A sound insulation gasket, which is arranged between the floor assembly and the floor heating extruded board.

2. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 1, characterized in that The floor includes an integrally formed floor body and a metal skin layer attached to the bottom of the floor body. The left side and / or the right side of the floor body is / are recessed inward to form a rectangular first mortise groove; a horizontally extending first tenon tongue is formed in the middle of the recessed groove of the floor body.

3. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 2, characterized in that The front side and / or the rear side of the floor body is / are provided with the rectangular first mortise groove recessed inward, and the first tenon tongue also extends horizontally in the first mortise groove.

4. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 2 or 3, characterized in that, The mortise and tenon buckle is made of metal. The mortise and tenon buckle is in an "H" shape. The side of the mortise and tenon buckle forms a second tenon tongue, and the second tenon tongue is embedded in the first mortise groove of the adjacent floor body; and the mortise and tenon buckle is recessed inward from the left and right sides respectively to form a second mortise groove matching the first tenon tongue.

5. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 4, characterized in that, The mortise and tenon buckle is inserted into two adjacent floors in a full-insertion or segmented-insertion manner.

6. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 4, characterized in that, The upper side and the lower side of the second mortise groove form a guiding structure.

7. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 2 or 3, characterized in that, The sound insulation gasket is an embedded elastic strip. A sealing groove penetrating the metal skin layer is opened on the lower surface of the floor, and the embedded elastic strip is embedded in the sealing groove.

8. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 7, characterized in that, The sound insulation gasket is a self-adhesive elastic strip, and an adhesive layer is provided on the back of the elastic strip pad, and the adhesive layer is attached to the lower surface of the metal skin layer.

9. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 1, characterized in that, The diameter of the floor heating pipe installation groove is greater than or equal to the diameter of the floor heating pipe.

10. The anti-deformation, highly heat-conductive, silent, extra-large metal double-tenon solid wood floor heating floor according to claim 2 or 3, characterized in that, The sum of the depths of the mortise grooves on both sides of the floor body accounts for one-half to one-eighth of the width of the board surface of the floor body, and the larger the width of the board surface of the floor body, the smaller the proportion, and vice versa.