A type of shock-absorbing floor mat

The shock-absorbing floor mat, with its multi-layered structure including a rubber surface layer, a bottom layer, a cushioning and shock-absorbing layer, a decorative layer, and an anti-slip layer, solves the problems of short service life and poor shock absorption of existing floor mats, achieving a comprehensive performance of high efficiency, durability, aesthetics, and safety.

CN224426800UActive Publication Date: 2026-06-30ANJI YIKE DECORATION MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANJI YIKE DECORATION MATERIAL TECH CO LTD
Filing Date
2025-07-31
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing shock-absorbing floor mats are prone to compression deformation of the buffer layer and poor recovery during long-term use, resulting in a decrease in shock absorption effect and a shortened service life. Furthermore, it is difficult to simultaneously achieve strength, cushioning, and aesthetics.

Method used

The floor mat features a multi-layered structure consisting of a rubber surface layer, a rubber bottom layer, a cushioning and shock-absorbing layer, a decorative layer, and an anti-slip layer. The cushioning and shock-absorbing layer is composed of a granular hot-pressed layer and a honeycomb unit impact-resistant layer. The rubber surface layer and bottom layer provide structural stability, the decorative layer enhances aesthetics, the anti-slip layer increases friction, and the connecting grooves allow for the splicing of the floor mats.

Benefits of technology

It significantly improves the impact absorption and elastic recovery performance of floor mats, provides excellent shock absorption and cushioning, enhances durability and visual appeal, and ensures the stability and safety of floor mats.

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Abstract

This utility model provides a shock-absorbing floor mat, comprising a rubber surface layer and a rubber bottom layer located beneath the rubber surface layer. A cushioning and shock-absorbing layer is provided between the rubber surface layer and the rubber bottom layer. A decorative layer is provided on the side of the rubber surface layer facing away from the cushioning and shock-absorbing layer, and an anti-slip layer is provided on the side of the rubber bottom layer facing away from the cushioning and shock-absorbing layer. This floor mat achieves excellent cushioning and shock absorption, stable anti-slip properties, and flexible connection functions through the synergistic effect of its multi-layer composite structure.
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Description

Technical Field

[0001] This utility model relates to the field of floor mat design technology, and in particular to a shock-absorbing floor mat. Background Technology

[0002] Shock-absorbing floor mats are widely used in gyms, children's activity areas, industrial workshops, homes, and other places. Their main functions are to absorb impact, reduce noise, provide a comfortable feel underfoot, protect the floor, and prevent users from slipping.

[0003] Existing floor mats use a single material (such as pure rubber, PVC, or EVA foam) or a simple two-layer structure (such as a rubber surface layer + a foam bottom layer). Single-material structures often struggle to simultaneously achieve sufficient strength, excellent cushioning, and aesthetics.

[0004] The existing utility model disclosed in CN206371812U, entitled "A Plastic Foamed Floor Mat for Exhaust, Vibration Reduction, Heat Insulation, and Sound Absorption," includes an upper surface, a middle core, and a lower surface arranged sequentially from top to bottom. A first gradient section is provided between the upper surface and the middle core, and a second gradient section is provided between the lower surface and the middle core. The foamed floor mat is integrally formed, and the specific gravity of the upper surface, the first gradient section, and the middle core gradually decreases, as does the specific gravity of the lower surface, the second gradient section, and the middle core.

[0005] Similar to the above-mentioned floor mats, although the simple layered structure may combine the properties of different materials, under long-term heavy pressure or frequent impact, the buffer layer is prone to compression deformation, poor resilience, or even delamination, resulting in reduced shock absorption and shortened service life. Utility Model Content

[0006] To address the shortcomings of existing technologies, this utility model provides a shock-absorbing floor mat to solve the technical problems of poor shock absorption and short service life of existing shock-absorbing floor mats.

[0007] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0008] A shock-absorbing floor mat includes a rubber surface layer and a rubber bottom layer located below the rubber surface layer. A cushioning and shock-absorbing layer is provided between the rubber surface layer and the rubber bottom layer. A decorative layer is provided on the side of the rubber surface layer away from the cushioning and shock-absorbing layer, and an anti-slip layer is provided on the side of the rubber bottom layer away from the cushioning and shock-absorbing layer.

[0009] The present invention is further configured such that: the buffer and shock-absorbing layer includes a particle hot-pressed layer and an impact-resistant layer composed of several honeycomb units inside.

[0010] The present invention is further configured such that: a plurality of wave strips distributed along the length of the mat are horizontally embedded in the hot-pressed granular layer.

[0011] The present invention is further configured such that: the aperture of each of the honeycomb units is 5-15mm and the wall thickness is 2mm-2.5mm.

[0012] The present invention is further configured such that: the anti-slip layer includes two sets of horizontal stripe units composed of several horizontal stripes and two sets of vertical stripe units composed of several vertical stripes, and the two sets of horizontal stripe units and the two sets of vertical stripe units are evenly and alternately distributed at the bottom of the rubber base layer.

[0013] The present invention is further configured such that: a plurality of connecting grooves are provided on the side of the rubber bottom layer away from the buffer and shock-absorbing layer.

[0014] The present invention is further configured such that: the decorative layer has an anti-fouling coating on the side opposite to the rubber surface.

[0015] Compared to the beneficial effects achieved by existing technologies:

[0016] This application relates to a shock-absorbing floor mat. By sandwiching a special buffer and shock-absorbing layer between the rubber surface layer and the rubber bottom layer, the overall impact absorption capacity and elastic recovery performance of the floor mat are significantly improved. It can more effectively disperse and attenuate the impact force from above, such as people walking or objects falling, providing excellent shock absorption and cushioning effect, protecting the ground and reducing noise. The buffer and shock-absorbing layer also significantly improves the overall performance.

[0017] By using a rubber surface layer and a rubber bottom layer as the main structural layers, the durability and structural stability of the floor mat are not only guaranteed, but the cushioning and shock-absorbing layer is also prevented from deforming or shifting during long-term use.

[0018] The decorative layer added to the outside of the rubber surface directly enhances the product's visual appeal and environmental adaptability, meeting users' aesthetic needs.

[0019] The anti-slip layer added to the outside of the rubber base greatly enhances the friction between the floor mat and the ground, effectively preventing the floor mat from sliding or shifting during use, ensuring safety and stability. Attached Figure Description

[0020] Figure 1 This is a schematic cross-sectional view of an embodiment of the present utility model;

[0021] Figure 2 This is a schematic diagram of the overall bottom view of an embodiment of the present utility model;

[0022] Figure 3 This is a schematic diagram of the overall structure of the connector.

[0023] In the above figures: 1. Rubber surface layer; 2. Rubber bottom layer; 3. Decorative layer; 4. Anti-slip layer; 5. Particle hot-pressed layer; 6. Impact-resistant layer; 7. Horizontal stripes; 8. Horizontal stripe unit; 9. Vertical stripes; 10. Vertical stripe unit; 11. Connecting groove; 12. Anti-fouling coating; 13. Wavy stripe; 14. Connecting block; 15. Connecting rod. Detailed Implementation

[0024] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.

[0025] Example:

[0026] Reference Figure 1 and Figure 2 This application discloses a shock-absorbing floor mat, comprising a rubber surface layer 1 and a rubber bottom layer 2 located below the rubber surface layer 1. A cushioning and shock-absorbing layer is provided between the rubber surface layer 1 and the rubber bottom layer 2. The cushioning and shock-absorbing layer includes a granular hot-pressed layer 5 formed by hot pressing EPDM rubber granules and an impact-resistant layer 6 composed of a plurality of honeycomb units with a pore size of 5-15 mm and a wall thickness of 2 mm-2.5 mm. The impact-resistant layer 6 is made of EPDM foamed rubber. A plurality of corrugated strips 13 are horizontally embedded in the granular hot-pressed layer 5, distributed along the length of the floor mat. The corrugated strips 13 are made of TPE or TPU material.

[0027] like Figure 1 As shown, a decorative layer 3 is provided on the side of the rubber surface layer 1 away from the cushioning and shock-absorbing layer. The decorative layer 3 is made of PVC material. An anti-fouling coating 12 is provided on the side of the decorative layer 3 away from the rubber surface layer 1. The anti-fouling coating 12 is a transparent polyurethane coating.

[0028] like Figure 1 and Figure 2 As shown, an anti-slip layer 4 is provided on the side of the rubber bottom layer 2 away from the cushioning and shock-absorbing layer. The anti-slip layer 4 includes two sets of horizontal stripe units 8 composed of several horizontal stripes 7 and two sets of vertical stripe units 10 composed of several vertical stripes 9. The two sets of horizontal stripe units 8 and the two sets of vertical stripe units 10 are evenly and alternately distributed at the bottom of the rubber bottom layer 2.

[0029] like Figure 2 As shown, the rubber bottom layer 2 has several connecting grooves 11 on the side opposite to the cushioning and shock-absorbing layer. These connecting grooves 11 are used to accommodate... Figure 3 The connector shown consists of a connecting block 14 and several connecting rods 15. The connecting rods 15 on a connecting block 14 are inserted into the connecting grooves 11 on different mats to achieve a stable connection between the mats.

[0030] Working principle:

[0031] When external impact forces act on the surface of the mat, the top transparent polyurethane anti-fouling coating 12 first provides stain resistance protection, while the decorative layer 3 below serves as decoration and initial pressure dispersion. The impact energy is further transferred to the rubber surface layer 1 and then enters the granular hot-pressed layer 5, where it effectively absorbs and dissipates the impact energy. The internally embedded corrugated strips 13 are distributed along the length direction, significantly enhancing the layer's tensile and tear resistance in the horizontal direction and preventing interlayer separation. Further, the impact-resistant layer 6 below, with its uniformly distributed honeycomb units, undergoes elastic deformation under vertical pressure. Through the bending and compression of the honeycomb walls and the flow of internal air, it efficiently buffers and disperses the impact force, providing excellent resilience and energy absorption performance. The remaining energy, sufficiently attenuated by the buffer and shock-absorbing layer, is transferred to the rubber bottom layer 2.

[0032] The bottom of the rubber base layer 2 is evenly distributed with two sets of horizontal stripe units 7 and two sets of vertical stripe units 9. This multi-directional stripe design greatly increases the contact friction and interlocking force with the ground, effectively preventing the floor mat from sliding and shifting during use, ensuring stability and safety. In addition, the connecting groove 11 on the rubber base layer 2 can cooperate with external connectors (connecting blocks 14 and connecting rods 15). When multiple floor mats need to be spliced, the connecting rods 15 are inserted into the connecting grooves 11 of adjacent floor mats to achieve a stable connection between the floor mats, expand the coverage area and maintain the flatness of the splicing.

[0033] The entire floor mat achieves significant impact reduction, improved comfort, and slip resistance and stability through the gradual absorption, dissipation, and dispersion of energy across its various functional layers.

[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A shock-cushioning ground mat, characterized by: It includes a rubber surface layer (1) and a rubber bottom layer (2) located below the rubber surface layer (1). A buffer and shock-absorbing layer is provided between the rubber surface layer (1) and the rubber bottom layer (2). A decorative layer (3) is provided on the side of the rubber surface layer (1) away from the buffer and shock-absorbing layer, and an anti-slip layer (4) is provided on the side of the rubber bottom layer (2) away from the buffer and shock-absorbing layer.

2. A shock-absorbing ground mat according to claim 1, characterized in that: The buffer and shock-absorbing layer includes a particle hot-pressed layer (5) and an impact-resistant layer (6) composed of several honeycomb units inside.

3. A shock-absorbing ground mat according to claim 2, characterized in that: The granular hot-pressed layer (5) is horizontally embedded with several wavy strips (13) distributed along the length of the mat.

4. A shock-absorbing floor mat according to claim 2, characterized in that: Each of the aforementioned cellular units has a pore size of 5–15 mm and a wall thickness of 2 mm–2.5 mm.

5. A shock-absorbing floor mat according to claim 1, characterized in that: The anti-slip layer (4) includes two sets of horizontal stripe units (8) composed of several horizontal stripes (7) and two sets of vertical stripe units (10) composed of several vertical stripes (9). The two sets of horizontal stripe units (8) and the two sets of vertical stripe units (10) are evenly and alternately distributed at the bottom of the rubber bottom layer (2).

6. A shock-absorbing floor mat according to claim 1, characterized in that: The rubber bottom layer (2) has several connecting grooves (11) on the side away from the buffer and shock absorption layer.

7. A shock-absorbing floor mat according to claim 1, characterized in that: The decorative layer (3) has an anti-fouling coating (12) on the side opposite to the rubber surface layer (1).

Citation Information

Patent Citations

  • CN206371812U