Anti-skidding foot pad
By using the interlocking structure of the base and top plates and the design of the adsorption components, the problems of traditional foot mats sliding on smooth surfaces and structural instability are solved, achieving anti-slip and stable effects, and improving safety and lifespan.
Patent Information
- Application Number
- CN202423084785.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Traditional foot pads are prone to sliding on smooth surfaces, causing users to slip and get injured, affecting the stability and normal operation of equipment, and their structure is not stable enough, making them prone to deformation or component separation, reducing their service life and reliability.
The bottom plate and top plate are connected by an adhesive component. The first protrusion at the bottom of the top plate matches the first circular groove at the top of the bottom plate. Combined with the suction cup and nano-adhesive pad in the adsorption component, the suction cup's elastic deformation creates negative pressure adsorption, and the nano-adhesive pad increases friction and adhesion, enhancing the structural stability.
It effectively prevents the foot pads from sliding on smooth surfaces, improves structural stability and safety, extends service life, and ensures good adsorption stability under different surface conditions.
Smart Images

Figure CN223489487U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of foot pad technology, and in particular to an anti-slip foot pad. Background Technology
[0002] Foot mats are widely used in many fields such as daily life and industrial production. However, traditional foot mats often have insufficient anti-slip performance.
[0003] On smooth surfaces such as tile or marble, ordinary floor mats are prone to slipping due to external forces. This not only affects the mat's usability but can also pose safety hazards. For example, in a home environment, a slipping floor mat placed at the bathroom door could cause a user to slip and fall and get injured. In industrial production workshops, slipping floor mats on the bottom of equipment could affect the stability and normal operation of the equipment. In addition, some existing floor mats are not structurally stable enough and are prone to deformation or component separation after prolonged use, reducing the lifespan and reliability of the mats.
[0004] Therefore, we propose an anti-slip foot pad. Utility Model Content
[0005] The main purpose of this utility model is to provide an anti-slip mat to prevent the mat from sliding on smooth surfaces due to insufficient anti-slip performance, thereby avoiding safety and functional problems such as user slips and injuries, and affecting equipment stability and normal operation. It also prevents the mat from deforming or separating parts due to insufficient structural stability, which would reduce its service life and reliability. In this way, the anti-slip performance, structural stability, and overall use effect and safety of the mat are improved, effectively solving the problems in the background art.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] An anti-slip mat includes a bottom plate and a top plate, which are connected by an adhesive component. The bottom end of the top plate is provided with a first protrusion, and the top end of the bottom plate is provided with a first circular groove that matches the first protrusion.
[0008] Adsorption components are provided at the four corners of the base plate. Each adsorption component includes a rotating mechanism. Circular protective shells are provided at the four corners of the top plate. A second circular groove matching the outside of the rotating mechanism is provided inside the circular protective shell. A suction cup is nested at the bottom of the rotating mechanism. A nano-adhesive pad is provided on the inner side of the suction cup.
[0009] By adopting the above technical solution, the anti-slip mat is mainly composed of a bottom plate, a top plate, and an adhesive component. The bottom plate and the top plate are connected by the adhesive component to form an integral structural frame. The first protruding post at the bottom of the top plate matches the first circular groove at the top of the bottom plate. This convex-concave mating structure can not only play a positioning role in the vertical direction to prevent the top plate and the bottom plate from shifting in the horizontal direction, but also enhance the stability of the overall structure. When the mat is subjected to external force, the relative positions between the components remain fixed, reducing the possibility of deformation or displacement.
[0010] The suction cup in the adsorption assembly utilizes its own elastic deformation properties. When it comes into contact with and is pressed against a smooth surface, it can expel the air between the suction cup and the adsorption surface, thereby creating a negative pressure area inside the suction cup. The external atmospheric pressure will generate a pressure perpendicular to the adsorption surface, making the suction cup firmly adhere to the surface. The nano-adhesive pad on the inside of the suction cup further enhances the adsorption effect. The nano-adhesive pad has the characteristics of high adhesion. It can fill the tiny gaps that may exist between the suction cup and the adsorption surface, increasing the friction and adhesion between the suction cup and the surface. Even when the suction force of the suction cup is weakened by some factors such as surface dust or slight unevenness, the nano-adhesive pad can still provide additional adhesive force to ensure the overall adsorption stability of the foot pad.
[0011] This anti-slip mat achieves excellent anti-slip and stability effects. The connection structure between the bottom plate and the top plate, as well as the adsorption effect of the adsorption components, allow the mat to be firmly fixed on the surface it is placed on. Whether on a level surface or a surface with a certain degree of inclination, it can effectively prevent the mat from sliding.
[0012] Furthermore, a second protruding post is provided at the top of the top plate.
[0013] By adopting the above technical solution, the second protrusion increases the contact point with the bottom of the contacting object.
[0014] Furthermore, the second protrusion, the first protrusion, and the first circular groove are all provided with multiple protrusions.
[0015] By adopting the above technical solution, multiple second protrusions are distributed on the top of the top plate. When in contact with the top plate, these protrusions can form multiple contact points with the bottom of the contacting object. By increasing the number of contact points, the friction between the top plate and the contacting object can be effectively increased.
[0016] Multiple first protruding pillars and first circular grooves cooperate with each other to provide precise positioning when the bottom plate and top plate are connected.
[0017] Furthermore, both the top plate and the second protrusion are made of an elastic material.
[0018] By adopting the above technical solution, when the contact object is on the top plate and exerts pressure on the second protrusion, the elastic second protrusion will deform to a certain extent, thereby better conforming to the shape of the bottom of the object. For example, for contact objects with irregular bottom shapes, the elastic second protrusion can adaptively change its shape, increasing the contact area and friction with the bottom of the contact object. The elastic plate and the second protrusion can resist this sliding to a certain extent through elastic deformation, just like small springs, providing continuous anti-slip resistance.
[0019] Furthermore, the adhesive assembly is composed of a hook and loop fastener surface at the top of the base plate and a hook and loop fastener surface at the bottom of the top plate.
[0020] By adopting the above technical solution, when the top plate is placed on the bottom plate, the hook and loop surface at the top of the bottom plate and the hook and loop barbed surface at the bottom of the top plate come into contact with each other. The small hooks on the hook and loop barbed surface will hook the fibers of the hook and loop surface. This mechanical interlocking action makes the bottom plate and the top plate tightly connected together.
[0021] Furthermore, the hook and loop surface and the hook and loop barbed surface are bonded together, and multiple sets of both the hook and loop surface and the hook and loop barbed surface are provided.
[0022] By adopting the above technical solution, the presence of multiple sets of hook and loop fastener surfaces and hook and loop serration surfaces increases the connection area, which can evenly distribute the tensile and compressive forces borne by the connection parts, making the entire connection structure more stable. When it is necessary to separate the hook and loop fastener surfaces and hook and loop serration surfaces, simply apply a certain lateral tensile force to make the hooks on the serration surface disengage from the fibers of the hook surface, and separation can be achieved. Due to the material properties of the hook and loop fastener itself, under normal use conditions, this separation and re-adhesion process can be repeated multiple times. This feature makes the anti-slip mat very convenient in situations where the structure needs to be adjusted frequently or parts need to be replaced. If a part of the anti-slip mat is damaged and needs to be replaced, or if the shape of the mat needs to be changed to adapt to different usage scenarios, the reusable nature of the hook and loop fastener allows for easy disassembly and reinstallation.
[0023] Compared with the prior art, the present invention has the following beneficial effects:
[0024] (1) The present invention provides an anti-slip mat, which is connected by an adhesive component between the bottom plate and the top plate, and adopts a convex-concave mating structure with a first protruding post at the bottom of the top plate and a first circular groove at the top of the bottom plate. This design positions the top plate and the bottom plate in the vertical direction, effectively preventing them from shifting in the horizontal direction. When subjected to external impact or friction during daily use, the components can maintain a relatively fixed positional relationship, greatly reducing the possibility of deformation or displacement, thereby improving the stability of the entire mat structure and extending its service life.
[0025] (2) The present invention provides an anti-slip foot pad. The suction cup in the adsorption component can expel internal air and form negative pressure when it is pressed against a smooth surface by its own elastic deformation characteristics. Adsorption is achieved by relying on the external atmospheric pressure. The nano-adhesive pad on the inside of the suction cup plays an important role. Its high viscosity can fill the tiny gaps and increase friction and adhesion. Even when the adsorption force of the suction cup is weakened by factors such as surface dust and slight unevenness, the nano-adhesive pad can still provide additional adhesion, ensuring that the foot pad can maintain good adsorption stability under different surface conditions, effectively preventing the foot pad from sliding and improving the safety and reliability of use. Attached Figure Description
[0026] Figure 1 This is a structural schematic diagram of an anti-slip foot pad according to the present invention.
[0027] Figure 2 This is a front-view disassembled structural diagram of an anti-slip foot pad according to the present invention.
[0028] Figure 3 This is a schematic diagram of the flip-up and disassembly structure of an anti-slip foot pad according to the present invention.
[0029] In the diagram: 1. Base plate; 2. Top plate; 3. Adhesive assembly; 4. First protrusion; 5. First circular groove; 6. Circular protective shell; 7. Adsorption assembly; 8. Rotation mechanism; 9. Suction cup; 10. Nano adhesive pad; 11. Second circular groove; 12. Hook and loop fastener surface; 13. Hook and loop fastener barbed surface; 14. Second protrusion. Detailed Implementation
[0030] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0031] To prevent foot pads from sliding on smooth surfaces due to insufficient anti-slip performance, thus avoiding user slips and injuries, and ensuring equipment stability and normal operation, as well as to prevent deformation and component separation due to insufficient structural stability, thereby reducing lifespan and reliability, the goal is to improve the anti-slip performance, structural stability, and overall usability and safety of the foot pads. Figure 1 , Figure 2 , Figure 3 As shown, an anti-slip mat includes a base plate 1 and a top plate 2, which are connected by an adhesive component 3. The bottom end of the top plate 2 is provided with a first protrusion 4, and the top end of the base plate 1 is provided with a first circular groove 5 that matches the first protrusion 4.
[0032] Adsorption components 7 are provided at the four corners of the base plate 1. Each adsorption component 7 includes a rotating mechanism 8. A circular protective shell 6 is provided at the four corners of the top plate 2. A second circular groove 11 matching the outside of the rotating mechanism 8 is provided inside the circular protective shell 6. A suction cup 9 is nested at the bottom of the rotating mechanism 8. A nano-adhesive pad 10 is provided on the inner side of the suction cup 9.
[0033] In use, the anti-slip mat is mainly composed of a base plate 1, a top plate 2, and an adhesive component 3. The base plate 1 and the top plate 2 are connected by the adhesive component 3 to form an integral structural frame. The first protruding post 4 at the bottom of the top plate 2 matches the first circular groove 5 at the top of the base plate 1. This convex-concave mating structure can not only play a positioning role in the vertical direction to prevent the top plate and the base plate from shifting in the horizontal direction, but also enhance the stability of the overall structure, so that the relative positions between the components remain fixed when the mat is subjected to external force, reducing the possibility of deformation or displacement.
[0034] The suction cup 9 in the adsorption component 7 utilizes its own elastic deformation characteristics. When it comes into contact with and is pressed against a smooth surface, it can expel the air between the suction cup and the adsorption surface, thereby forming a negative pressure area inside the suction cup. The external atmospheric pressure will generate a pressure perpendicular to the adsorption surface, making the suction cup firmly adsorbed onto the surface. The nano-adhesive pad 10 on the inner side of the suction cup 9 further enhances the adsorption effect. The nano-adhesive pad has the characteristics of high adhesion. It can fill the tiny gaps that may exist between the suction cup and the adsorption surface, increasing the friction and adhesion between the suction cup and the surface. Even when the suction force of the suction cup is weakened due to certain factors such as surface dust or slight unevenness, the nano-adhesive pad can still provide additional adhesive force to ensure the overall adsorption stability of the foot pad.
[0035] The anti-slip mat achieves excellent anti-slip and stability effects. The connection structure between the base plate 1 and the top plate 2, as well as the adsorption effect of the adsorption component 7, enable the mat to be firmly fixed on the placement surface. Whether on a level ground or a surface with a certain inclination, it can effectively prevent the mat from sliding.
[0036] For example, such as Figure 1 , Figure 2 As shown, the present invention also includes a second protruding post 14 provided at the top end of the top plate 2.
[0037] In use, the second protrusion 14 increases the contact point with the bottom of the contact object.
[0038] For example, such as Figure 1 , Figure 2 , Figure 3 As shown, the present invention also includes multiple second protrusions 14, first protrusions 4, and first circular grooves 5.
[0039] In use, multiple second protrusions 14 are distributed on the top of the top plate 2. When in contact with the top plate 2, these protrusions can form multiple contact points with the bottom of the contact object. By increasing the number of contact points, the friction between the top plate and the contact object can be effectively increased.
[0040] Multiple first protruding pillars 4 and first circular grooves 5 cooperate with each other to provide precise positioning when the bottom plate 1 and the top plate 2 are connected.
[0041] For example, such as Figure 1 , Figure 2 As shown, the present invention also includes that the top plate 2 and the second protruding post 14 are both made of an elastic material.
[0042] When in use, when the contact object is on the top plate 2 and exerts pressure on the second protrusion 14, the elastic second protrusion 14 will deform to a certain extent, thereby better conforming to the shape of the bottom of the object. For example, for contact objects with irregular bottom shapes, the elastic second protrusion 14 can adaptively change its shape to increase the contact area and friction with the bottom of the contact object. The elastic plate 2 and the second protrusion 14 can resist this sliding to a certain extent through elastic deformation, just like small springs, providing continuous anti-slip resistance.
[0043] For example, such as Figure 2 , Figure 3 As shown, the present invention also includes the adhesive component 3, which is composed of the hook and loop fastener surface 12 provided at the top of the bottom plate 1 and the hook and loop fastener barbed surface 13 provided at the bottom of the top plate 2.
[0044] When in use, when the top plate 2 is placed on the bottom plate 1, the hook and loop surface 12 at the top of the bottom plate 1 comes into contact with the hook and loop barbed surface 13 at the bottom of the top plate 2. The small hooks on the hook and loop barbed surface 13 hook the fibers of the hook and loop surface 12. This mechanical interlocking action makes the bottom plate 1 and the top plate 2 tightly connected together.
[0045] For example, such as Figure 2 , Figure 3 As shown, the present invention also includes the hook and loop fastener 12 and the hook and loop fastener barbed fastener 13 being bonded together, and multiple sets of the hook and loop fastener 12 and the hook and loop fastener 13 are provided.
[0046] During use, the presence of multiple sets of hook and loop fasteners 12 and hook and loop fasteners 13 increases the connection area, which can evenly distribute the tensile and compressive forces borne by the connection parts, making the entire connection structure more stable. When it is necessary to separate the hook and loop fasteners 12 and hook and loop fasteners 13, simply apply a certain lateral pulling force to make the hooks on the hook and loop fasteners 13 come out of the fibers of the hook and loop fasteners 12, and separation can be achieved. Due to the material properties of the hook and loop fasteners themselves, under normal use conditions, this separation and re-adhesion process can be repeated many times. This feature makes the anti-slip mats very convenient in situations where the structure needs to be adjusted frequently or parts need to be replaced. If a part of the anti-slip mat is damaged and needs to be replaced, or if the shape of the mat needs to be changed to adapt to different usage scenarios, the reusable nature of the hook and loop fasteners allows for easy disassembly and reinstallation.
[0047] It should be noted that this utility model is an anti-slip mat. The top plate 2 is placed on the bottom plate 1, so that the hook and loop fastener 12 at the top of the bottom plate 1 and the hook and loop fastener 13 at the bottom of the top plate 2 come into contact with each other. The mechanical interlocking effect of the small hooks on the hook and loop fastener 13 hooking the fibers of the hook and loop fastener 12 makes the bottom plate 1 and the top plate 2 tightly connected together. Multiple sets of corresponding hook and loop fastener 12 and hook and loop fastener 13 increase the connection area, evenly distribute the tension and pressure, and form a stable overall structural frame. At the same time, multiple first protrusions 4 at the bottom of the top plate 2 match with multiple first circular grooves 5 at the top of the bottom plate 1, which play a precise positioning role, prevent horizontal displacement, and enhance overall stability.
[0048] Place the anti-slip mat on the smooth surface that needs to be fixed, press the adsorption component 7, and the suction cup 9 nested at the bottom of the rotating mechanism 8 will use its own elastic deformation characteristics to expel the air between the suction cup and the adsorption surface, forming a negative pressure area inside the suction cup. The external atmospheric pressure exerts a pressure perpendicular to the adsorption surface on the suction cup, making the suction cup firmly adsorbed on the surface. At the same time, the nano-adhesive pad 10 on the inside of the suction cup 9, with its high viscosity, fills any possible tiny gaps, increases friction and adhesion, ensures adsorption stability, and prevents the mat from slipping.
[0049] Multiple second protrusions 14 at the top of the top plate 2 form multiple contact points with the bottom of the contact object. Relying on the properties of the top plate 2 and the second protrusions 14 made of elastic material, the friction between the top plate and the contact object is increased, further enhancing the anti-slip effect. This allows the foot pad to be firmly fixed on both level ground and surfaces with a certain degree of inclination, preventing it from sliding.
[0050] When it is necessary to separate the bottom plate 1 and top plate 2 of the anti-slip mat, for example, if a part is damaged and needs to be replaced, or if the shape of the mat needs to be changed to adapt to different scenarios, simply apply a certain lateral pulling force to make the hooks on the hook and loop side 13 come out of the fibers of the hook and loop side 12, thus achieving separation. If reinstallation is required, simply place the top plate 2 on the bottom plate 1 again to make the hook and loop side 12 and the hook and loop side 13 stick together. Under normal use conditions, this separation and re-attachment process can be repeated multiple times.
[0051] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. An anti-slip mat, comprising a base plate (1) and a top plate (2), characterized in that, The bottom plate (1) and the top plate (2) are connected by an adhesive assembly (3). The bottom end of the top plate (2) is provided with a first protrusion (4), and the top end of the bottom plate (1) is provided with a first circular groove (5) that matches the first protrusion (4). Adsorption components (7) are provided at the four corners of the base plate (1). The adsorption components (7) include a rotating mechanism (8). Circular protective shells (6) are provided at the four corners of the top plate (2). A second circular groove (11) matching the outside of the rotating mechanism (8) is provided inside the circular protective shell (6). A suction cup (9) is nested at the bottom of the rotating mechanism (8). A nano-adhesive pad (10) is provided on the inner side of the suction cup (9).
2. The anti-slip foot pad according to claim 1, characterized in that: The top of the top plate (2) is provided with a second protruding post (14).
3. The anti-slip foot pad according to claim 2, characterized in that: The second protrusion (14) and the first protrusion (4) and the first circular groove (5) are each provided with multiple protrusions.
4. The anti-slip foot mat according to claim 2, characterized in that: Both the top plate (2) and the second protrusion (14) are made of an elastic material.
5. The anti-slip foot mat according to claim 1, characterized in that: The adhesive component (3) is composed of a hook and loop fastener (12) provided at the top of the bottom plate (1) and a hook and loop fastener (13) provided at the bottom of the top plate (2).
6. The anti-slip foot mat according to claim 5, characterized in that: The hook and loop fastener (12) and the hook and loop fastener (13) are bonded together, and multiple sets of hook and loop fastener (12) and hook and loop fastener (13) are provided.