Environment-friendly recyclable artificial turf
By introducing a combination of multi-cell infill rubber sleeves, heat-absorbing extrusion blocks, and breathable partition nets into the artificial turf, the problems of corrosion caused by water accumulation and erosion at the joints are solved, achieving high-efficiency waterproofing, moisture resistance, and durability, reducing drying costs, and improving recycling rates.
Patent Information
- Application Number
- CN202423188623.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing environmentally friendly recyclable artificial turf tends to accumulate water stains during use, leading to corrosion and edge erosion at joints, which affects its performance. Current technologies are also difficult to effectively waterproof and prevent moisture, and increase costs.
It adopts a combination structure of multi-compartment filling rubber sleeve, heat-absorbing extrusion block, extrusion plate, breathable partition net and compressed water-absorbing cotton. Through heat absorption and heat transfer and external stepping pressure, the water-absorbing cotton is compressed. Combined with the breathable partition net and water collection groove, it can achieve rapid drying. The embedded locking sleeve and locking column structure prevents water stains from eroding the joints.
It improves waterproof and moisture-proof performance, extends service life, reduces drying costs, enhances connection and fixation, and facilitates subsequent recycling.
Smart Images

Figure CN223893181U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of artificial turf technology, specifically to an environmentally friendly and recyclable artificial turf. Background Technology
[0002] Artificial turf is a type of artificial turf made from non-living plastic fiber products through artificial methods. Artificial turf has a wide range of applications, commonly used in dedicated competition fields for hockey, baseball, and rugby; public practice ranges for football, tennis, and golf; as well as for ground paving and beautifying indoor environments.
[0003] To improve the recyclability of artificial turf, there is an increasing development of environmentally friendly recyclable artificial turf. However, existing artificial turf tends to accumulate water stains during use, which can lead to corrosion over time and hinder subsequent recycling. Traditional methods typically involve manually turning and drying the turf or adding a drainage layer to the ground, which not only increases costs but also leaves moisture trapped in some gaps, resulting in lower waterproof and moisture-proof performance, as well as poor durability and recyclability. Furthermore, since most artificial turf is assembled by splicing together pieces, water stains can easily accumulate in the gaps at the joints, eroding the edges and affecting the connection and fixation, thus impacting usability.
[0004] Therefore, we propose an environmentally friendly, recyclable artificial turf to solve the above problems. Utility Model Content
[0005] This utility model aims to solve one of the technical problems existing in the prior art or related technologies.
[0006] Therefore, the technical solution adopted by this utility model is as follows:
[0007] An environmentally friendly recyclable artificial turf includes a turf support board and a turf body. An installation plate is embedded in the inner top of the turf support board. A multi-compartment filling sleeve is installed on the outer side of the turf body at the top of the installation plate. A heat-absorbing extrusion block is embedded inside the multi-compartment filling sleeve. A water-collecting groove is formed inside the turf support board. An extrusion plate, connected to the bottom end of the heat-absorbing extrusion block, is slidably engaged at the top of the water-collecting groove. A breathable partition net is installed inside the water-collecting groove. Compressed absorbent cotton is installed between the extrusion plate and the breathable partition net. Multiple connecting holes are formed at the connection points between the installation plate and the turf support board and at corresponding points on the extrusion plate. A locking sleeve is embedded in the outer side of the multi-compartment filling sleeve.
[0008] In a preferred embodiment, this utility model can be further configured as follows:
[0009] By adopting the above technical solution, the bottom end of the heat-absorbing extrusion block slides through the connection between the mounting panel and the lawn support panel, and the top end of the heat-absorbing extrusion block extends to the outer side of the top end of the multi-cell filling sleeve.
[0010] In a preferred embodiment, this utility model can be further configured as follows:
[0011] By adopting the above technical solution, the inner bottom of the multi-cell filling sleeve and the embedded locking sleeve are both equipped with a mesh plate, and the lawn body is installed on the top of the mesh plate.
[0012] In a preferred embodiment, this utility model can be further configured as follows:
[0013] By adopting the above technical solution, the bottom end of the embedded locking sleeve is symmetrically connected with two sets of embedded locking pins. The bottom ends of the two sets of embedded locking pins can be embedded in the outer inner top of the lawn support board, and the top ends are connected to the embedded locking sleeve through the lock.
[0014] In a preferred embodiment, this utility model can be further configured as follows:
[0015] By adopting the above technical solution, guide holes are opened through the bottom side of the two sets of embedded locking pins and the inner part of the lawn support plate.
[0016] In a preferred embodiment, this utility model can be further configured as follows:
[0017] By adopting the above technical solution, the guide hole is located at the top of one end of the breathable partition mesh, and the embedded locking post is connected to the water accumulation trough through the guide hole.
[0018] In a preferred embodiment, this utility model can be further configured as follows:
[0019] By adopting the above technical solution, an adsorption and compression pad is installed at the bottom of the lawn support board.
[0020] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows:
[0021] 1. This utility model incorporates a multi-compartment filling sleeve, a heat-absorbing extrusion block, an extrusion plate, compressed absorbent cotton, a breathable partition net, and a water accumulation trough. During use, as water accumulates in the water accumulation trough by sequentially passing through the mesh plate, connecting holes, compressed absorbent cotton, and breathable partition net, the heat-absorbing extrusion block, along with external extrusion pressure, causes the extrusion plate to compress the absorbent cotton, resulting in elastic compression. This compression is then combined with heat drying and airflow compression drying, saving drying costs, improving waterproofing and moisture resistance, enhancing durability, and facilitating subsequent recycling.
[0022] 2. In this utility model, by setting an embedded locking sleeve, an embedded locking post, and a guide hole, the embedded locking sleeve is engaged between the outer sides of the multi-cell filling rubber sleeves at the top of the two sets of lawn support boards during use, and the two embedded locking posts are respectively embedded into the inner top of the two sets of lawn support boards. In this way, when encountering water accumulation, the water flows through the installation strainer plate inside the embedded locking sleeve, and then sequentially through the embedded locking post, the guide hole, and the breathable partition net into the bottom of the water accumulation trough. This allows for drying according to the structure described above, which not only prevents water stains from eroding and affecting the connection and fixing effect, but also improves the overall use effect. Attached Figure Description
[0023] Figure 1 This is a front view structural diagram of an embodiment of the present invention;
[0024] Figure 2 This is a front cross-sectional view of one embodiment of the present invention;
[0025] Figure 3 This is a partial structural diagram of the embedded locking sleeve according to an embodiment of the present utility model;
[0026] Figure 4 This is a schematic diagram of the structure at point A in one embodiment of the present invention.
[0027] Figure label:
[0028] 1. Lawn support board; 2. Multi-compartment insulator sleeve; 3. Embedded locking sleeve; 4. Absorbent compression pad; 5. Lawn body; 6. Water collection trough; 7. Installed mesh panel; 8. Heat-absorbing compression block; 9. Installed panel; 10. Breathable partition net; 11. Compressed absorbent cotton; 12. Compression plate; 13. Embedded locking post; 14. Guide hole; 15. Connecting hole. Detailed Implementation
[0029] 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.
[0030] It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this invention.
[0031] The following describes some embodiments of the present invention, with reference to the accompanying drawings, of an environmentally friendly and recyclable artificial turf.
[0032] Example 1:
[0033] Combination Figures 1-4 As shown, this utility model provides an environmentally friendly, recyclable artificial turf.
[0034] Specifically, the lawn support board 1 and the lawn body 5 are included. An installation plate 9 is embedded on the inner side of the top of the lawn support board 1. A multi-compartment infill sleeve 2 is installed on the outer side of the top of the installation plate 9, located outside the lawn body 5. A heat-absorbing extrusion block 8 is embedded inside the multi-compartment infill sleeve 2. The heat-absorbing extrusion block 8 is a heat-conducting metal sheet, and its top is made of black heat-absorbing material on the outer side of the multi-compartment infill sleeve 2, facilitating the absorption of sunlight and heat conduction. A water collection trough 6 is formed inside the lawn support board 1. An extrusion plate 12, connected to the bottom of the heat-absorbing extrusion block 8, is slidably engaged at the top of the water collection trough 6. A breathable partition net 10 is installed inside the water collection trough 6. The breathable partition net 10 mainly supports the compressed absorbent cotton 11, preventing water from directly contacting the compressed absorbent cotton 11 for extended periods, thus affecting its elasticity, and also facilitating water drainage. Compressed absorbent cotton 11 is installed between the extrusion plate 12 and the breathable partition net 10. The connection between the installation plate 9 and the lawn support board 1 is continuous with the corresponding connection of the extrusion plate 12. Multiple connecting holes 15 are provided, which not only guide water but also allow for ventilation, facilitating the dissipation of moisture. A locking sleeve 3 is embedded on the outer side of the multi-compartment filling sleeve 2. The bottom end of the heat-absorbing extrusion block 8 slides through the connection between the mounting plate 9 and the lawn support plate 1, and the top end of the heat-absorbing extrusion block 8 extends to the outer side of the top end of the multi-compartment filling sleeve 2. A mesh plate 7 is installed at the bottom of both the multi-compartment filling sleeve 2 and the locking sleeve 3. The lawn body 5 is installed on the top of the mesh plate 7. With the use of these components, water accumulates sequentially through the mesh plate 7, connecting holes 15, compressed absorbent cotton 11, and breathable dividing net 10, accumulating inside the water accumulation trough 6. Through the heat absorption and heat transfer of the heat-absorbing extrusion block 8 and the external pressure from footsteps, the extrusion plate 12 compresses the absorbent cotton 11, causing elastic compression. The heat dries the water, and the airflow compresses and dries the accumulated water, saving drying costs and improving waterproofing, moisture resistance, and durability, facilitating subsequent recycling.
[0035] Example 2:
[0036] Combination Figure 2 and 3 As shown, based on Example 1,
[0037] Specifically, the bottom end of the embedded locking sleeve 3 is symmetrically connected with two sets of embedded locking pins 13. The bottom ends of both sets of embedded locking pins 13 can be embedded in the outer inner top of the lawn support plate 1, and the top ends are connected to the embedded locking sleeve 3. The bottom side of the two sets of embedded locking pins 13 and the inner part of the lawn support plate 1 are connected by guide holes 14. The guide holes 14 are close to the top of one end of the breathable partition net 10. The embedded locking pins 13 are connected to the water accumulation trough 6 through the guide holes 14. With the use of the above components and the components in Embodiment 1, the two embedded locking pins 13 at the bottom of the embedded locking sleeve 3 are respectively embedded in the inner top of the two sets of lawn support plates 1. When encountering water accumulation, the water flows through the installation drain plate 7 inside the embedded locking sleeve 3, and then through the embedded locking pins 13, guide holes 14 and breathable partition net 10 to the bottom of the water accumulation trough 6, preventing water stains from eroding and affecting the connection and fixing effect, and improving the use effect.
[0038] Combination Figure 1 and Figure 2 As shown, in the above embodiments,
[0039] Specifically, an adsorption and compression pad 4 is installed at the bottom of the lawn support plate 1. The adsorption and compression pad 4 is mainly used to improve the adsorption and gripping force of the ground of the platform, and at the same time, it is used in conjunction with the splicing of multiple artificial turf blocks for joint fixation.
[0040] The working principle and usage process of this utility model are as follows: First, during use, when water accumulates sequentially through the mesh plate 7, the connecting hole 15, the compressed absorbent cotton 11, and the breathable partition net 10 into the water accumulation trough 6 inside the lawn support board 1, the heat from sunlight causes the heat-absorbing extrusion block 8 to absorb and transfer heat. Combined with external pressure from footsteps, the heat-absorbing extrusion block 8 presses against the extrusion plate 12, compressing the compressed absorbent cotton 11. This causes the compressed absorbent cotton 11 to elastically compress, and some heat is conducted to the interior of the water accumulation trough 6 to dry the water. Simultaneously, airflow compression drying further dries the water, thus saving drying costs. This also improves waterproof and moisture-proof performance, enhances durability, and facilitates subsequent recycling. Secondly, during use, the embedded locking sleeve 3 is secured between the outer sides of the multi-compartment filling sleeve 2 at the top of the two sets of lawn support plates 1, and the two embedded locking posts 13 are respectively embedded in the inner top of the two sets of lawn support plates 1. In this way, when encountering water accumulation, the water flows through the installation drain plate 7 inside the embedded locking sleeve 3, and then sequentially through the embedded locking posts 13, guide holes 14, and breathable partition net 10 into the bottom of the water accumulation trough 6. This allows for drying according to the drying treatment structure of each component, which not only prevents water stains from affecting the connection and fixing effect, but also improves the overall use effect.
[0041] 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. An environmentally friendly recyclable artificial turf, comprising a turf support board (1) and a turf body (5), characterized in that, An installation plate (9) is embedded in the inner side of the top of the lawn support plate (1). A multi-compartment filling sleeve (2) is installed on the outer side of the lawn body (5) at the top of the installation plate (9). A heat-absorbing extrusion block (8) is embedded inside the multi-compartment filling sleeve (2). A water-collecting groove (6) is opened inside the lawn support plate (1). An extrusion plate (12) connected to the bottom end of the heat-absorbing extrusion block (8) is slidably attached to the top of the water-collecting groove (6). A breathable partition net (10) is installed on the inner side of the water-collecting groove (6). A compressed water-absorbing cotton (11) is installed between the extrusion plate (12) and the breathable partition net (10). A multi-connecting hole (15) is opened through the connection between the installation plate (9) and the lawn support plate (1) and the corresponding position of the extrusion plate (12). A locking sleeve (3) is embedded on the outer side of the multi-compartment filling sleeve (2).
2. The environmentally friendly recyclable artificial turf according to claim 1, characterized in that, The bottom end of the heat-absorbing extrusion block (8) slides through the connection between the mounting plate (9) and the lawn support plate (1), and the top end of the heat-absorbing extrusion block (8) extends to the outside of the top end of the multi-cell filling sleeve (2).
3. The environmentally friendly recyclable artificial turf according to claim 1, characterized in that, The inner bottom of the multi-cell filling sleeve (2) and the embedded locking sleeve (3) are both equipped with a mesh plate (7), and the lawn body (5) is installed on the top of the mesh plate (7).
4. The environmentally friendly recyclable artificial turf according to claim 1, characterized in that, The bottom end of the embedded lock sleeve (3) is symmetrically connected with two sets of embedded lock pins (13). The bottom ends of the two sets of embedded lock pins (13) can be embedded in the outer inner top of the lawn support plate (1), and the top ends are connected to the embedded lock sleeve (3).
5. The environmentally friendly recyclable artificial turf according to claim 4, characterized in that, Both sets of embedded locking pins (13) have guide holes (14) that are opened through the bottom side of the two sets of embedded locking pins (13) and the interior of the lawn support plate (1).
6. The environmentally friendly recyclable artificial turf according to claim 5, characterized in that, The guide hole (14) is located at the top of one end of the breathable partition net (10), and the embedded locking post (13) is connected to the water accumulation trough (6) through the guide hole (14).
7. The environmentally friendly recyclable artificial turf according to claim 1, characterized in that, An adsorption and compression pad (4) is installed at the bottom of the lawn support board (1).