Heat insulation and cooling type artificial turf

By using staggered grass fiber components, heat insulation film, and foam board in artificial turf, combined with drainage channels and interlocking connection structures, the problems of air permeability and heat transfer are solved, achieving heat insulation and cooling as well as improved connection strength.

CN223496951UActive Publication Date: 2025-10-31JIANGSU SETH ARTIFICIAL TURF CO LTD
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Patent Information

Application Number
CN202422945553.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-31
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Existing artificial turf has poor air permeability and cannot effectively block heat transfer. Furthermore, it is inconvenient to connect adjacent turf after installation, resulting in poor heat insulation.

Method used

The grass fiber components, featuring an alternating V-shaped and inverted V-shaped structure, are combined with an insulation film and foam board, equipped with drainage channels and snap-fit ​​connections to ensure a thick air layer and rapid drainage within the lawn, enhancing insulation performance, and strengthening the connection with Velcro.

Benefits of technology

It effectively blocks heat transfer, enhances heat insulation and cooling effects, ensures good air circulation and connection strength at joints, and prevents heat accumulation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223496951U_ABST
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Abstract

The utility model discloses a heat insulation and cooling type artificial turf. The heat insulation and cooling type artificial turf comprises a turf bottom plate, a grass yarn assembly, a drainage assembly and a connecting assembly, the first mounting table and the second mounting table are arranged at the top of the lawn bottom plate, the first outer grass filaments and the second inner grass filaments are fixedly mounted at the upper ends of the first mounting table and the second mounting table respectively, the heat insulation film is fixedly mounted at the bottom of the lawn bottom plate, and the foam plate is fixedly mounted at the bottom of the heat insulation film. According to the heat insulation and temperature reduction type artificial turf, the first outer grass filaments and the second inner grass filaments which are of the V-shaped and inverted-V-shaped structures are arranged on the turf bottom plate in the staggered mode, the grass filaments on the upper portion can fully occupy space, the density of the grass filaments is increased, a thicker air layer is formed, heat transfer is further blocked, and the heat insulation and temperature reduction effects are achieved. And the heat insulation film and the foam plate at the bottom of the lawn bottom plate can further prevent heat on the lawn bottom plate from being transferred downwards, so that the heat insulation and cooling effects of the artificial lawn are enhanced.
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Description

Technical Field

[0001] This utility model relates to the field of artificial turf technology, specifically to a heat-insulating and cooling type of artificial turf. Background Technology

[0002] Artificial turf is a type of flooring material suitable for both indoor and outdoor use. It combines the functions of floor decoration and practical installation. Artificial turf is produced using plastic raw materials (such as polypropylene and polyethylene), which are non-toxic, odorless, recyclable, and meet environmental protection requirements.

[0003] Existing artificial turf, such as the breathable artificial turf disclosed in publication number CN220746483U, has solved the problem of poor breathability of existing artificial turf. However, the density between the artificial grass fibers in the upper part of this artificial turf is relatively sparse, making it inconvenient to arrange them in an interlaced manner to form a thicker air layer to block heat transfer. Furthermore, it is not easy to ensure the interlacing connection between adjacent artificial grass fibers after the artificial turf is laid, so as to ensure the heat insulation problem at the connection point. Therefore, we propose a heat-insulating and cooling artificial turf. Utility Model Content

[0004] This utility model aims to solve one of the technical problems existing in the prior art or related technologies.

[0005] Therefore, the technical solution adopted by this utility model is as follows:

[0006] A heat-insulating and cooling artificial turf includes: a turf base plate, a grass fiber assembly, a drainage assembly, and a connecting assembly; the grass fiber assembly includes a first mounting platform and a second mounting platform arranged on the top of the turf base plate, a first outer grass fiber and a second inner grass fiber respectively fixedly installed on the upper ends of the first mounting platform and the second mounting platform, a heat insulation film fixedly installed on the bottom of the turf base plate, and a foam board fixedly installed on the bottom of the heat insulation film; the drainage assembly includes drainage channels opened between the first mounting platform and the second mounting platform at the upper end of the turf base plate, and a first triangular strip set at the bottom of the first outer grass fiber; the connecting assembly includes a notch opened on one side of the foam board, a locking strip fixedly installed on the top of the notch, a connecting strip movably installed on the other side of the foam board, and a locking groove opened in the connecting strip.

[0007] Preferably, the first outer grass fibers and the second inner grass fibers are arranged alternately.

[0008] Preferably, a second triangular strip is also provided at the bottom of the second inner grass fiber.

[0009] Preferably, the card strip and the card slot engage with each other.

[0010] Preferably, a first Velcro tab and a first Velcro tab are fixedly installed at the bottom of the card strip and the top of the card slot, respectively.

[0011] Preferably, a second Velcro tab and a second Velcro tab are fixedly installed on one side of the foam board and the other side of the connecting strip, respectively.

[0012] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows:

[0013] 1. In this utility model, the first outer grass fibers and the second inner grass fibers arranged in a V-shape and an inverted V-shape on the lawn base plate can make the upper grass fibers fully occupy the space, so as to increase the density between the grass fibers and form a thicker air layer, further blocking the transfer of heat. The heat insulation film and foam board at the bottom of the lawn base plate can further prevent the heat on the lawn base plate from being transferred downward, thereby enhancing the heat insulation and cooling effect of this artificial turf.

[0014] 2. In this utility model, the drainage channel between the first and second mounting platforms on the lawn base plate, as well as the first and second triangular strip structures at the bottom of the first outer grass fibers and the second inner grass fibers that can utilize water flow, also enable the artificial turf to drain water quickly, thereby ensuring good air circulation and avoiding water accumulation that leads to heat buildup.

[0015] 3. In this utility model, the clips and connecting strips set on both sides of the foam board at the bottom of the lawn base can also be used to splice the lawn base during the laying process, thereby ensuring the interlacing of the first outer grass fiber and the second inner grass fiber at the splicing point of the lawn base after splicing, thus ensuring the heat insulation effect between the splicing of adjacent lawn bases. Attached Figure Description

[0016] Figure 1 This is an overall structural diagram of the present invention;

[0017] Figure 2 This is a structural diagram of the first outer grass fiber and the second inner grass fiber of this utility model;

[0018] Figure 3 This is a partial connection diagram of the card strip and connecting strip of this utility model.

[0019] Figure label:

[0020] 100. Lawn baseboard;

[0021] 200. Straw fiber assembly; 201. First mounting platform; 202. Second mounting platform; 203. First outer straw fiber; 204. Second inner straw fiber; 205. Heat insulation film; 206. Foam board;

[0022] 300. Drainage component; 301. Drainage channel; 302. First triangular strip; 303. Second triangular strip;

[0023] 400. Connecting component; 401. Notch; 402. Clip; 403. Connecting strip; 404. Slot; 405. First Velcro tab; 406. First Velcro tab; 407. Second Velcro tab; 408. Second Velcro tab. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features of the present utility model can be combined with each other.

[0025] The following describes, with reference to the accompanying drawings, some embodiments of the present invention, providing a heat-insulating and cooling artificial turf.

[0026] Example 1:

[0027] Combination Figure 1-3 As shown, this utility model provides a heat-insulating and cooling artificial turf, comprising: a turf base plate 100, a grass fiber assembly 200, a drainage assembly 300, and a connecting assembly 400; the grass fiber assembly 200 includes a first mounting platform 201 and a second mounting platform 202 arranged on the top of the turf base plate 100, a first outer grass fiber 203 and a second inner grass fiber 204 respectively fixedly installed on the upper ends of the first mounting platform 201 and the second mounting platform 202, a heat-insulating film 205 fixedly installed on the bottom of the turf base plate 100, and a foam board 206 fixedly installed on the bottom of the heat-insulating film 205; the drainage assembly 300 includes a drainage channel 301 opened between the first mounting platform 201 and the second mounting platform 202 at the upper end of the turf base plate 100, and a drainage channel 301 at the bottom of the first outer grass fiber 203; The first triangular strip 302 is provided; the connecting component 400 includes a notch 401 opened on one side of the foam board 206, a locking strip 402 fixedly installed on the top of the notch 401, a connecting strip 403 movably installed on the other side of the foam board 206, and a slot 404 opened in the connecting strip 403. The first outer straw filament 203 and the second inner straw filament 204 are arranged alternately. The bottom of the second inner straw filament 204 is also provided with a second triangular strip 303. The locking strip 402 and the slot 404 are engaged with each other. The bottom of the locking strip 402 and the top of the slot 404 are respectively fixedly installed with a first Velcro 405 and a first Velcro 406. The first side of the foam board 206 and the first side of the connecting strip 403 are respectively fixedly installed with a second Velcro 407 and a second Velcro 408.

[0028] Specifically, artificial turf is a ground paving material suitable for both indoor and outdoor use. It combines the functions of ground decoration, heat insulation, and practical installation. The first outer grass fibers 203 and the second inner grass fibers 204, arranged in a staggered V-shape and inverted V-shape on the turf base 100, allow the upper grass fibers to fully occupy space, increasing the density between the fibers and forming a thicker air layer, further blocking heat transfer. The heat insulation film 205 and foam board 206 at the bottom of the turf base 100 further prevent heat transfer downwards from the turf base 100, thereby enhancing the heat insulation and cooling effect of the artificial turf. The drainage channel 301 between the first mounting platform 201 and the second mounting platform 202 on the turf base 100, as well as the first triangular strip 302 and the second triangular strip structure 303 at the bottom of the first outer grass fibers 203 and the second inner grass fibers 204 that allow water flow, also enable rapid drainage within the artificial turf. To ensure good air circulation and prevent water accumulation that could lead to heat buildup, the clips 402 and connecting strips 403 on both sides of the foam board 206 at the bottom of the lawn base 100 can be spliced ​​during the laying of the lawn base 100. After splicing, the first outer grass fiber 203 and the second inner grass fiber 204 at the splice of the lawn base 100 are staggered, thus ensuring the heat insulation effect between the splices of adjacent lawn base 100s. After the clips 402 are matched and installed inside the slots 404 in the connecting strips 403, the first Velcro 405 and the first Velcro 406 between the clips 402 and the slots 404 will be glued together, thereby enhancing the connection strength. At the same time, during the laying of the lawn base 100, the connecting strips 403 that cause laying obstruction on the side near the wall can be detached and installed into the recess 401 at the bottom of the foam board 206 on the other side of the wall, so as to remove the obstruction and install support for the suspended position in the recess 401.

[0029] Working principle and usage process of this utility model:

[0030] After the artificial turf is laid, the staggered arrangement of the first outer grass fibers 203 and the second inner grass fibers 204 on top fully occupies the space at the top of the artificial turf, thus forming a relatively dense structure. This allows a thicker air layer to be formed at the top of the artificial turf during use, preventing heat from being transferred downwards. The heat insulation film 205 and foam board 206 installed at the bottom of the artificial turf also prevent heat from being transferred downwards. After rain, the water can flow quickly along the first triangular strips 302 and 303 at the bottom of the first outer grass fibers 203 and the second inner grass fibers 204 to both ends. Within the drainage ditch 301, water from the artificial turf is rapidly drained to ensure good air circulation and prevent water accumulation that could lead to heat buildup. After the artificial turf is laid, adjacent sections are connected by interlocking strips 402 and connecting strips 403. The structure on both sides of the artificial turf ensures the interlacing of the first outer grass fiber 203 and the second inner grass fiber 204 at the top after splicing, thus ensuring the heat insulation effect between the artificial turf sections. Furthermore, the first Velcro 405, which is adhered to the first Velcro 406 inside the connecting strip 403 at the bottom of the interlocking strip 402, also ensures the strength of the joints after splicing the artificial turf.

[0031] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A heat-insulating and cooling artificial turf, characterized in that, include: Lawn baseboard (100), grass fiber assembly (200), drainage assembly (300), connecting assembly (400); The grass fiber assembly (200) includes a first mounting platform (201) and a second mounting platform (202) arranged on the top of the lawn base plate (100), a first outer grass fiber (203) and a second inner grass fiber (204) respectively fixedly installed on the upper ends of the first mounting platform (201) and the second mounting platform (202), a heat insulation film (205) fixedly installed on the bottom of the lawn base plate (100), and a foam board (206) fixedly installed on the bottom of the heat insulation film (205); The drainage component (300) includes a drainage channel (301) opened between the first mounting platform (201) and the second mounting platform (202) at the upper end of the lawn base plate (100), and a first triangular strip (302) set at the bottom of the first outer grass fiber (203); The connecting assembly (400) includes a notch (401) on one side of the foam board (206), a retaining strip (402) fixedly installed on the top of the notch (401), a connecting strip (403) movably installed on the other side of the foam board (206), and a slot (404) opened in the connecting strip (403).

2. The heat-insulating and cooling artificial turf according to claim 1, characterized in that, The first outer grass fibers (203) and the second inner grass fibers (204) are arranged in an alternating pattern.

3. The heat-insulating and cooling artificial turf according to claim 1, characterized in that, The bottom of the second inner grass filament (204) is also provided with a second triangular strip (303).

4. The heat-insulating and cooling artificial turf according to claim 1, characterized in that, The card strip (402) engages with the card slot (404).

5. The heat-insulating and cooling artificial turf according to claim 1, characterized in that, The bottom of the card strip (402) and the top of the card slot (404) are respectively fixedly installed with a first Velcro tab (405) and a first Velcro tab (406).

6. The heat-insulating and cooling artificial turf according to claim 1, characterized in that, The foam board (206) and the connecting strip (403) are respectively fixedly installed with a second Velcro tab (407) and a second Velcro tab (408).

Citation Information

Patent Citations

  • Breathable artificial turf

    CN220746483U