Regenerated cotton anti-skidding cool-feeling floor mat
By designing a recycled cotton non-slip cooling floor mat, combined with a three-proof fabric, a cooling silicone support layer, and a recycled cotton cushioning layer, the problems of high cost, high density, and easy aging of rubber floor mats have been solved, resulting in a low-cost, durable, and comfortable floor mat product.
Patent Information
- Application Number
- CN202520495796.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-20
AI Technical Summary
Existing rubber floor mats are expensive, dense, difficult to transport and install, and prone to aging in high-temperature environments, affecting their service life.
The design of the recycled cotton non-slip cooling mat includes a three-proof fabric surface layer, a cooling silicone support layer, a recycled cotton cushioning layer, and an SBR rubber base layer. Combined with anti-slip texture, overlock edge structure, recycled cotton crease strips, and breathable holes, it improves anti-slip properties, durability, and comfort.
It reduces production costs, enhances the anti-slip properties and comfort of floor mats, extends their service life, and maintains good applicability in high-temperature environments.
Smart Images

Figure CN223890581U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of floor mat, especially to the regenerated cotton antiskid cool floor mat. BACKGROUND
[0002] The floor mat not only has a decorative effect, but also has the functions of antiskid and dust removal. The high-grade floor mat commonly used in the market is generally made of rubber material. The floor mat made of rubber material has good elasticity and can quickly eliminate the fatigue feeling during walking. However, the floor mat made of rubber material has the following defects: high cost, which increases the use cost of users; high density, which increases the transportation and laying difficulty; easy to age in high-temperature environment, which reduces the service life. SUMMARY
[0003] The utility model aims at providing a regenerated cotton antiskid cool floor mat which is cheap and durable.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the technical scheme of a regenerated cotton antiskid cool floor mat, which comprises a floor mat body, and a three-proof face fabric surface layer, a cool silica gel supporting layer, a regenerated cotton buffer layer and an SBR rubber base layer are compounded on the floor mat body from top to bottom. Anti-skid lines are arranged on the three-proof face fabric surface layer. The three-proof face fabric surface layer extends obliquely downward to the SBR rubber base layer to form a large bevel. The cool supporting layer and the regenerated cotton buffer layer are both attached to the large bevel. The edges of the three-proof face fabric surface layer and the edges of the SBR rubber base layer are connected together by heat sealing to form a lock edge structure. Regenerated cotton crease strips with a lower density than the regenerated cotton buffer layer are embedded in the top wall and the bottom wall of the regenerated cotton buffer layer. The regenerated cotton crease strips are flush with the regenerated cotton buffer layer. The width of the regenerated cotton crease strips is 1.5-2 times the thickness of the regenerated cotton buffer layer. The thickness of the regenerated cotton crease strips is 15%-25% of the thickness of the regenerated cotton buffer layer. Anti-skid grooves and air holes are arranged on the bottom surface of the SBR rubber base layer.
[0005] Further, the regenerated cotton antiskid cool floor mat, wherein the top wall and the bottom wall of the regenerated cotton buffer layer are symmetrically provided with upper and lower clamping grooves. Wave grooves are arranged on the bottom wall of the upper clamping groove and on the top wall of the lower clamping groove. Wave grooves are also arranged on the regenerated cotton crease strips. When the regenerated cotton crease strips are clamped into the upper or lower clamping groove, the wave grooves on the regenerated cotton crease strips are clamped with the wave grooves in the upper or lower clamping groove.
[0006] Further, the regenerated cotton antiskid cool floor mat, wherein when the length of the floor mat body is between 500-1100 mm, the two regenerated cotton crease strips symmetrically arranged above and below are located on the center line of the regenerated cotton buffer layer. When the length of the floor mat body exceeds 1100 mm, one more set of regenerated cotton crease strips symmetrically arranged above and below are added to the regenerated cotton buffer layer when the length of the floor mat body increases by 550 mm.
[0007] Further, the regenerated cotton anti-skid cool feeling floor mat, wherein the shape of the floor mat body is any one of circular, rectangular, and oval.
[0008] Further, the regenerated cotton anti-skid cool feeling floor mat, wherein the angle of the large bevel is 30-45°.
[0009] Further, the regenerated cotton anti-skid cool feeling floor mat, wherein the diameter of the air-permeable hole is 2-4 mm, and the air-permeable hole is distributed in an array with a hole distance of 15-25 mm.
[0010] Further, the regenerated cotton anti-skid cool feeling floor mat, wherein the thickness of the cool feeling silica gel supporting layer is 0.2-0.4 mm.
[0011] The regenerated cotton anti-skid cool feeling floor mat has the advantages that the three-proofing surface layer can achieve three-proofing effect and prolong service life, the regenerated cotton buffer layer can reduce production cost and weight, the overall buffer comfort of the floor mat is improved through the elasticity and softness of the regenerated cotton, the cool feeling silica gel supporting layer between the three-proofing surface layer and the regenerated cotton buffer layer can support the three-proofing surface layer to be more flat and soft and can achieve heat absorption effect, and the regenerated cotton fold line strips arranged symmetrically above and below in the regenerated cotton buffer layer can be folded conveniently when the floor mat is stored, and the regenerated cotton fold line strips are located inside the three-proofing surface layer and the SBR rubber base layer, so that the appearance of the overall floor mat is not damaged. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is a structural schematic view of the regenerated cotton anti-skid cool feeling floor mat.
[0013] Figure 2 is Figure 1 a sectional view of the structure.
[0014] Figure 3 is Figure 2 a connection structure between the regenerated cotton buffer layer and the regenerated cotton fold line strip in
[0015] Figure 4 is Figure 1 a structural schematic view of the bottom view in
[0016] Figure 5 is a structural schematic view of the regenerated cotton anti-skid cool feeling floor mat provided with two groups of regenerated cotton fold line strips symmetrically arranged above and below.
[0017] Figure 6 is a structural schematic view of the regenerated cotton anti-skid cool feeling floor mat provided with three groups of regenerated cotton fold line strips symmetrically arranged above and below.
[0018] Figure 7 This is a schematic diagram of the structure of the recycled cotton anti-slip and cooling floor mat of this utility model when it is circular. Detailed Implementation
[0019] The technical solution of this utility model will be further described below with reference to the accompanying drawings and preferred embodiments.
[0020] like Figures 1-7 As shown, the recycled cotton anti-slip and cooling floor mat of this utility model includes: a floor mat body 1, on which, from top to bottom, are composited: a three-proof fabric surface layer 11, a cooling silicone support layer 12, a recycled cotton cushioning layer 13, and an SBR rubber base layer 14. The three-proof fabric surface layer 11 has advantages such as waterproof, stain-proof, wear-resistant, and scratch-resistant. The cooling silicone support layer 12 has a rapid rebound effect and heat absorption function, improving its suitability for high-temperature environments. When the three-proof fabric surface layer 11 and the cooling silicone support layer 12 are combined, when the three-proof fabric surface layer 11 is affected by high temperature, it can transfer heat to the cooling silicone support layer 12 for heat dissipation, which helps to reduce the damage rate of the three-proof fabric surface layer 11 under high temperature. In this embodiment, the thickness of the cooling silicone support layer 12 is 0.2-0.4mm, and the surface roughness Ra of the cooling silicone support layer 12 of this thickness is ≤0.1μm, with a texture close to silk, which can play the role of the original Some have heat absorption properties, and the thickness will not affect the cushioning performance of the recycled cotton buffer layer 13. The recycled cotton buffer layer 13 can reduce production costs and improve the cushioning comfort of the floor mat through the elasticity and softness of the recycled cotton itself. During the production of the floor mat, the recycled cotton in the recycled cotton buffer layer 13 will mature and expand during the hot pressing process, which may easily lead to unevenness between the top and bottom walls. The cooling silicone support layer 12, which is composited between the three-proof fabric surface layer 11 and the recycled cotton buffer layer 13, can play a supporting and smoothing role, so that the three-proof fabric surface layer 11 will not be affected by the unevenness of the recycled cotton buffer layer 13 and will remain flat and soft. The SBR rubber base layer 14 has a high coefficient of friction, which can effectively improve the anti-slip and stability performance of the floor mat body 1. Since the SBR rubber base layer 14 itself has high support force, it will play a supporting and smoothing role for the recycled cotton buffer layer 13.
[0021] The three-proof fabric surface layer 11 extends diagonally downwards to the SBR rubber base layer 14 to form a large beveled edge 111. The cooling silicone support layer 12 and the recycled cotton cushioning layer 13 both rest on the large beveled edge 111. The large beveled edge 111 ensures a smooth transition between the edge of the mat body 1 and the ground, preventing tripping risks. The angle of the large beveled edge 111 is 30° to 45°. At this angle, the large beveled edge 111 effectively prevents tripping and provides sufficient edge support, improving the grip of the mat body 1. The edge of the three-proof fabric surface layer 11 and the edge of the SBR rubber base layer 14 are heat-sealed together to form a locking structure 15. A [further details about the three-proof fabric surface layer 11 are needed for accurate translation.] The recycled cotton cushioning layer 13 features anti-slip textures to increase friction and prevent slippage. These textures are not shown in the diagram. Recycled cotton crease strips 16, with a lower density than the recycled cotton cushioning layer 13, are embedded in both the top and bottom walls of the recycled cotton cushioning layer 13. During folding, the density difference between the recycled cotton crease strips 16 and the recycled cotton cushioning layer 13 makes it easier for the crease strips 16 to bend and deform, forming natural creases, thus facilitating folding. Upper and lower locking grooves 131 and 132 are symmetrically arranged on the top and bottom walls of the recycled cotton cushioning layer 13. A wave groove is provided on the bottom wall of the upper locking groove 131, and a wave groove is also provided on the top wall of the lower locking groove 132. Wave grooves are also provided on the recycled cotton crease strips 16. When the recycled cotton crease strip 16 is inserted into the upper slot 131 or the lower slot 132, the wavy groove on the recycled cotton crease strip 16 engages with the wavy groove in the upper slot 131 or the lower slot 132. The wavy design of the wavy groove makes the transition between the recycled cotton buffer layer 13 and the recycled cotton crease strip 16 smoother, reducing the risk of breakage caused by rigid connection. Secondly, the undulating structure of the wavy groove can disperse the concentrated stress generated during bending to multiple peaks and troughs, avoiding stress concentration at a single location that could lead to tearing or permanent deformation. The recycled cotton crease strip 16 is flush with the recycled cotton buffer layer 13, and the width of the recycled cotton crease strip 16 is 1.5 times the thickness of the recycled cotton buffer layer. The thickness of the recycled cotton crease strip is approximately 2 times that of the recycled cotton buffer layer, which can prevent the local stress on the recycled cotton crease strip 16 from increasing due to its small width. The thickness of the recycled cotton crease strip is 15% to 25% of the thickness of the recycled cotton buffer layer. This reduces bending resistance while ensuring the support strength at the bending position. Anti-slip grooves 141 and vent holes 142 are provided on the bottom surface of the SBR rubber base layer 14. The diameter of the vent holes 142 is 2 to 4 mm, which can both vent air and prevent the recycled cotton in the recycled cotton buffer layer 13 from being exposed through the vent holes 142. The vent holes 142 are arranged in an array with a hole spacing of 15 to 25 mm. In this embodiment, the hole spacing is preferably 20 mm.
[0022] When the length of the mat body 1 is between 500 and 1100 mm, the two symmetrically arranged recycled cotton crease strips 16 are located on the center line of the recycled cotton buffer layer 13, so that it can be folded. When the length of the mat body 1 exceeds 1100 mm, for every 550 mm increase in the length of the mat body 1, an additional set of symmetrically arranged recycled cotton crease strips 16 is added to the recycled cotton buffer layer 13. For example, when the length of the floor mat body 1 is 1650mm, two sets of symmetrically arranged recycled cotton crease strips 16 are provided in the recycled cotton buffer layer 13. The two sets of symmetrically arranged recycled cotton crease strips 16 are symmetrically arranged with respect to the center line of the recycled cotton buffer layer 13, so that the floor mat body 1 can be folded twice. When the length of the floor mat body 1 is 2200mm, three sets of symmetrically arranged recycled cotton crease strips 16 are provided in the recycled cotton buffer layer 13. One set of symmetrically arranged recycled cotton crease strips 16 is located on the center line of the recycled cotton buffer layer 13, and the other two sets of symmetrically arranged recycled cotton crease strips 16 are symmetrically arranged with respect to the center line of the recycled cotton buffer layer 13, so that the floor mat body 1 can be folded three times.
[0023] In this embodiment, the shape of the floor mat body 1 can be any one of a circle, rectangle, or ellipse. When the floor mat body 1 is circular, the number of recycled cotton crease strips 16 is related to the diameter of the floor mat body 1, that is, when the diameter of the floor mat body 1 is between 500 and 1100 mm, a set of symmetrically arranged recycled cotton crease strips 16 is provided in the recycled cotton buffer layer 13. When the diameter of the floor mat body 1 exceeds 1100 mm, for every 550 mm increase in the diameter of the floor mat body 1, an additional set of symmetrically arranged recycled cotton crease strips 16 is added to the recycled cotton buffer layer 13. When the floor mat body 1 is rectangular, the number of recycled cotton crease strips 16 is related to the long side of the floor mat body 1, that is, when the long side of the floor mat body 1 is between 500 and 1100 mm, a set of symmetrically arranged recycled cotton crease strips 16 is provided in the recycled cotton buffer layer 13. Crease strip 16, the recycled cotton crease strip 16 is parallel to the short side of the mat body 1. When the long side of the mat body 1 exceeds 1100mm, for every 550mm increase in the long side of the mat body 1, an additional set of symmetrically arranged recycled cotton crease strips 16 is added to the recycled cotton buffer layer 13. When the mat body is elliptical, the number of recycled cotton crease strips 16 is related to the long axis of the mat body 1, that is, when the long axis of the mat body 1 is between 500 and 1100mm, a set of symmetrically arranged recycled cotton crease strips 16 is provided in the recycled cotton buffer layer 13. The recycled cotton crease strip 16 is parallel to the short axis of the mat body 1. When the long axis of the mat body 1 exceeds 1100mm, for every 550mm increase in the long axis of the mat body 1, an additional set of symmetrically arranged recycled cotton crease strips 16 is added to the recycled cotton buffer layer 13.
[0024] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and not to limit it. Although the utility model has been described in detail with reference to the above embodiments, those skilled in the art should understand that modifications or equivalent substitutions can still be made to the specific implementation of this utility model. Any modifications or equivalent substitutions that do not depart from the spirit and scope of this utility model should be covered within the protection scope of the claims of this utility model.
Claims
1. Recycled cotton non-slip cooling floor mat, including: The floor mat body is characterized by the following components, from top to bottom: a three-proof fabric surface layer, a cooling silicone support layer, a recycled cotton cushioning layer, and an SBR rubber base layer. The three-proof fabric surface layer has anti-slip textures and extends diagonally downwards to the SBR rubber base layer to form a large bevel. The cooling support layer and the recycled cotton cushioning layer are both attached to this large bevel. The edges of the three-proof fabric surface layer and the edges of the SBR rubber base layer are heat-sealed together to form a locking edge structure. Recycled cotton crease strips with a lower density than the recycled cotton cushioning layer are embedded in the top and bottom walls of the recycled cotton cushioning layer. These crease strips are flush with the recycled cotton cushioning layer, and their width is 1.5 to 2 times the thickness of the recycled cotton cushioning layer, while their thickness is 15% to 25% of the thickness of the recycled cotton cushioning layer. Anti-slip grooves and ventilation holes are provided on the bottom surface of the SBR rubber base layer.
2. The recycled cotton anti-slip and cooling floor mat according to claim 1, characterized in that: The top and bottom walls of the recycled cotton buffer layer are symmetrically provided with upper and lower locking grooves. A wavy groove is provided on the bottom wall of the upper locking groove and a wavy groove is also provided on the top wall of the lower locking groove. A wavy groove is provided on the recycled cotton crease strip. When the recycled cotton crease strip is inserted into the upper or lower locking groove, the wavy groove on the recycled cotton crease strip engages with the wavy groove in the upper or lower locking groove.
3. The recycled cotton anti-slip and cooling floor mat according to claim 2, characterized in that: When the length of the mat body is between 500 and 1100 mm, the two recycled cotton crease strips, which are symmetrically arranged vertically, are located on the center line of the recycled cotton buffer layer. When the length of the mat body exceeds 1100 mm, for every 550 mm increase in the length of the mat body, an additional set of symmetrically arranged recycled cotton crease strips is added to the recycled cotton buffer layer.
4. The recycled cotton anti-slip and cooling floor mat according to any one of claims 1 to 3, characterized in that: The shape of the floor mat body can be any one of circle, rectangle, or ellipse.
5. The recycled cotton anti-slip and cooling floor mat according to any one of claims 1 to 3, characterized in that: The angle of the large hypotenuse is 30° to 45°.
6. The recycled cotton anti-slip and cooling floor mat according to any one of claims 1 to 3, characterized in that: The vent holes have a diameter of 2-4 mm, are arranged in an array, and have a spacing of 15-25 mm.
7. The recycled cotton anti-slip and cooling floor mat according to any one of claims 1 to 3, characterized in that: The thickness of the cooling silicone support layer is 0.2–0.4 mm.