Anti-skid foot pad for surfing and paddling paddle board

By designing staggered anti-slip protrusions and a heating layer on the paddleboard, the safety and comfort issues of traditional paddleboard anti-slip pads in complex water flow and low-temperature environments are solved, achieving a stable and warm user experience in cold seasons and waters.

CN223949332UActive Publication Date: 2026-02-27浙江明士达股份有限公司
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Patent Information

Application Number
CN202520638054.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-02-27
Estimated Expiration
2035-04-07

AI Technical Summary

Technical Problem

Traditional paddleboard anti-slip mats are not effective in complex water flow environments, leading to safety hazards. Furthermore, the cold surface of the mats in low-temperature environments affects the user's flexibility and operational accuracy, limiting the development of surfing and water paddleboarding.

Method used

A paddleboard anti-slip foot pad was designed, comprising an anti-slip surface layer, a heating layer, and a heat insulation layer. The anti-slip surface layer consists of multiple anti-slip plates, with staggered anti-slip protrusions at the top of the anti-slip plates. It is equipped with a heating layer and a power module. The heating layer provides heat to keep the feet warm, and the battery is protected from water damage by a waterproof sealing box and a breathable membrane.

Benefits of technology

It improves the safety and comfort of paddleboard use, ensures the stability and comfort of users in complex water flow and low temperature environments, and expands the application scenarios and time range of paddleboards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-skidding foot pad for a surfing and paddling paddle board, which comprises a paddle board body, an anti-skidding surface layer arranged on the paddle board body, a heating layer arranged below the anti-skidding surface layer, a heat insulation layer arranged below the heating layer and a power supply module arranged below the heat insulation layer, a plurality of first anti-skid convex column groups and second anti-skid convex column groups are respectively arranged at the top ends of the plurality of anti-skid plates, the first anti-skid convex column groups and the second anti-skid convex column groups are distributed at intervals, and the first anti-skid convex column groups are higher than the second anti-skid convex column groups. By means of the unique anti-skid surface layer design, the anti-skid plates are arranged, the first anti-skid protruding column set and the second anti-skid protruding column set are arranged at the top ends in a high-low staggered mode, feet can be effectively prevented from sliding, the exercise safety is improved, meanwhile, the heating layer, the heat insulation layer and the power module are arranged, the heating function is started in the cold environment, the warm and comfortable environment can be created, and the user experience is improved. And the use scene and time range of the paddle board are expanded.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of surfing and paddling equipment, in particular to a surfing and paddling paddle board antiskid foot pad. BACKGROUND

[0002] In the surfing and paddling movement, the safety and comfort of the paddle board have been the key factors affecting the user experience.

[0003] The traditional paddle board antiskid foot pad often only has a single antiskid function, and it is difficult to meet the diversified needs of the user in the complex water flow environment and cold weather conditions. When the water flow is turbulent or the user's body shakes, the antiskid effect of the ordinary antiskid foot pad is poor, which easily leads to the sliding of the user's feet and has a security risk. In addition, when using the paddle board in a low-temperature environment, the cold surface of the foot pad will make the user's feet uncomfortable, and even affect the flexibility and accuracy of the operation, greatly limiting the development of the surfing and paddling movement in cold seasons or cold water areas.

[0004] Therefore, we propose a surfing and paddling paddle board antiskid foot pad. CONTENT OF THE UTILITY MODEL

[0005] The main purpose of the utility model is to provide a surfing and paddling paddle board antiskid foot pad. In order to prevent the user from sliding and causing a security risk due to the poor antiskid effect of the ordinary antiskid foot pad in the complex water flow environment, and to avoid the problem that the cold surface of the foot pad makes the user's feet uncomfortable and affects the flexibility and accuracy of the operation in a low-temperature environment, thereby improving the safety and comfort of the surfing and paddling movement and expanding its development range in cold seasons and cold water areas, the problem in the background art can be effectively solved.

[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is as follows:

[0007] The surfing and paddling paddle board antiskid foot pad comprises a paddle board body, an antiskid surface layer is arranged on the paddle board body, a heating layer is arranged below the antiskid surface layer, a heat insulation layer is arranged below the heating layer, and a power module is arranged below the heat insulation layer.

[0008] The antiskid surface layer is composed of a plurality of antiskid plates, and a plurality of first antiskid column groups and a plurality of second antiskid column groups are arranged at the top ends of the plurality of antiskid plates, the first antiskid column groups and the second antiskid column groups are distributed at intervals, and the height of the first antiskid column groups is higher than the height of the second antiskid column groups.

[0009] By adopting the above technical scheme, when the user stands on the paddle board, the feet are in contact with the anti-skid convex columns, and due to the height difference between the first anti-skid convex column group and the second anti-skid convex column group, the staggered structure of high and low can increase the friction between the feet and the anti-skid surface layer. Just like on a flat surface, if there are obstacles with different heights, the object will move on it will receive more resistance. When the user moves on the paddle board, the anti-skid convex columns can prevent the feet from slipping and ensure the stability of the user on the paddle board. Even in the case of water flow impact or body sway during paddling, the user can better maintain balance.

[0010] The anti-skid foot pad also has a heating function. The power module provides power for the heating layer. When using the paddle board in a cold environment, turn on the heating function. The power of the power module makes the heating layer heat up. The heat generated by the heating layer can be transmitted upward. Through the blocking of the heat insulation layer, the heat is mainly concentrated between the heating layer and the anti-skid surface layer, so that the anti-skid surface layer remains warm. The heat insulation layer prevents heat loss downward, reduces energy loss, and allows heat to be more effectively used to heat the anti-skid surface layer, providing a warm and comfortable experience for the user's feet, reducing the adverse effects of cold weather on the feet, and avoiding overheating of the paddle board body and the surface of the power module.

[0011] Further, the heating layer is internally provided with a flexible heating element.

[0012] By adopting the above technical scheme, when the power module supplies power to the heating layer, the built-in flexible heating element starts to work. Since the heating element such as a metal heating wire is flexible, it can well fit the space shape inside the heating layer. This flexible feature allows the heating element to be evenly distributed in the heating layer, without local overheating or uneven heating due to shape mismatch.

[0013] Further, the power module includes a waterproof sealed box, and the waterproof sealed box is located in the groove of the paddle board body, and the waterproof sealed box is internally provided with a battery.

[0014] By adopting the above technical scheme, the main function of the waterproof sealed box is to protect the battery from water. Since the surf paddle board is used in a water environment, it is easy to come into contact with water. The waterproof sealed box is designed to be sealed and placed in the groove of the paddle board body. This groove design can further reduce the possibility of water directly contacting the waterproof sealed box. The waterproof performance of the sealed box ensures that the internal battery is in a dry environment.

[0015] The battery as the core component of the power module is the energy source of the whole heating system, and when the heating element in the heating layer needs to be powered, the battery outputs electric energy through the circuit, and the chemical energy stored in the battery is converted into electric energy through chemical reaction, and the electric energy is transmitted to the heating element along the connecting line, so as to drive the heating element to work and generate heat to heat the anti-skid surface layer.

[0016] Further, a plurality of air inlet holes are formed on one side of the waterproof sealed box, and a plurality of air outlet holes are formed on the other side of the waterproof sealed box, and waterproof and breathable membranes are arranged in the air inlet holes and the air outlet holes.

[0017] By adopting the above technical scheme, when the battery works in the waterproof sealed box, the battery will generate heat, and during the surfing paddling process, air flow will enter the sealed box through the air inlet hole, taking away the heat emitted by the lithium battery, and the hot air will be discharged from the air outlet hole, forming natural convection heat dissipation.

[0018] The waterproof and breathable membranes arranged in the air inlet holes and the air outlet holes are key waterproof components, and the waterproof and breathable membranes have a special microstructure, and the intermolecular gap thereof allows gas molecules such as oxygen and carbon dioxide to pass through, but water molecules cannot pass through due to their large volume. For example, some waterproof and breathable membranes are made of high molecular materials, and the pore size thereof is accurately designed, so that gas molecules can freely diffuse in and out of the pores, and water will form water droplets on the surface of the membrane under normal circumstances and cannot penetrate the tiny pores into the sealed box. In this way, the waterproof and breathable performance of the waterproof sealed box is ensured, and the entry of water is prevented, so that the battery is always in a dry working environment.

[0019] Further, a box cover is arranged on the waterproof sealed box, and a sealing strip is arranged between the box cover and the waterproof sealed box.

[0020] By adopting the above technical scheme, the box cover is used to close the waterproof sealed box, and the sealing strip between the box cover and the waterproof sealed box is a key component for realizing the sealing function, and the sealing strip is made of rubber material with elasticity.

[0021] When the box cover is covered on the waterproof sealed box, the sealing strip will be squeezed, and due to its elasticity, the sealing strip will fill the tiny gap between the box cover and the waterproof sealed box. Just like putting a soft and elastic object into a gap, it will deform according to the shape of the gap, so as to fill the gap. This close filling can effectively prevent water, dust and other external substances from entering the waterproof sealed box. Even in the case that the surf paddle is in a humid water environment or encounters water splashing, water is difficult to break through this sealing line and enter the box, so as to protect the internal battery and other components from water damage.

[0022] Further, a charging interface is arranged on the side surface of the waterproof sealed box, and a protective cover is arranged on the charging interface.

[0023] By adopting the technical scheme, when the battery power is insufficient, the plug of the charger is inserted into the charging interface, the electric energy of the external power supply is transmitted to the battery through the circuit connection between the charging interface and the battery, the charging process of the battery is realized, and power support is continuously provided for the heating and other functions of the whole paddle anti-skid foot pad.

[0024] When the charging interface is not used, the protective cover is covered, which can prevent water, dust and other external impurities from entering the inside of the charging interface, because when the paddle is used on water, if the charging interface contacts water and other impurities, a circuit short circuit or other faults can be caused, the battery charging and the normal operation of the whole system are affected, and the protective cover acts as a protective barrier to isolate the influence of external bad factors on the charging interface when not charging, and ensure that the charging interface can normally work when needed.

[0025] Compared with the prior art, the utility model has the following beneficial effects:

[0026] (1) The surf paddle anti-skid foot pad is composed of a plurality of anti-skid plates through the unique anti-skid surface layer design, and the top ends of the anti-skid plates are spaced apart and distributed with first and second anti-skid column groups with different heights. When a user stands on the paddle, the feet contact the anti-skid columns, and the high and low structure greatly increases the friction between the feet and the anti-skid surface layer. Just like setting obstacles with different heights on a plane can hinder the movement of objects, this design can effectively prevent the feet from slipping when the user moves on the paddle, and even in the case of water flow impact or body shaking during paddling, the user can maintain good stability on the paddle, and the safety of the surf paddling movement is significantly improved.

[0027] (2) The surf paddle anti-skid foot pad is provided with a heating layer and a heat insulation layer, and is equipped with a power module. When the paddle is used in a cold environment, the heating function is turned on, the power module provides electric energy for the heating layer to heat, the generated heat is blocked by the heat insulation layer, and is mainly concentrated between the heating layer and the anti-skid surface layer, so that the anti-skid surface layer remains warm, the heat insulation layer effectively prevents heat loss downward, reduces energy loss, and makes the heat more efficiently used for heating the anti-skid surface layer, creating a warm and comfortable environment for the user's feet, reducing the adverse effects of cold weather on the feet, and avoiding overheating of the paddle body and the surface of the power module, greatly improving the surf paddling experience of the user in cold conditions, and expanding the use scenarios and time range of the paddle. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structural schematic view of the surf paddle anti-skid foot pad.

[0029] Figure 2This is a cross-sectional view of the anti-slip foot pad for surfing and paddling paddleboards according to this utility model.

[0030] Figure 3 This is a schematic diagram of the power module structure of the anti-slip foot pad for surfing paddleboards of this utility model.

[0031] In the diagram: 1. Paddleboard body; 2. Anti-slip surface layer; 3. Anti-slip plate; 4. First anti-slip protrusion group; 5. Second anti-slip protrusion group; 6. Heating layer; 7. Heat insulation layer; 8. Heating element; 9. Power module; 10. Waterproof sealing box; 11. Battery; 12. Air inlet; 13. Air outlet; 14. Waterproof and breathable membrane; 15. Box cover; 16. Sealing strip; 17. Charging interface; 18. Protective cover. Detailed Implementation

[0032] 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.

[0033] To prevent users from slipping due to the poor anti-slip effect of ordinary anti-slip mats in complex water flow environments, and to avoid discomfort caused by cold mat surfaces in low temperatures, which could affect flexibility and accuracy, thus improving the safety and comfort of surfing and waterskiing, and expanding its application in cold seasons and cold waters, such as... Figure 1 , Figure 2 , Figure 3 As shown, the anti-slip pad for surfing paddleboards includes a paddleboard body 1, an anti-slip surface layer 2 on the paddleboard body 1, a heating layer 6 below the anti-slip surface layer 2, a heat insulation layer 7 below the heating layer 6, and a power module 9 below the heat insulation layer 7.

[0034] The anti-slip surface layer 2 is composed of multiple anti-slip plates 3, and multiple first anti-slip protrusion groups 4 and second anti-slip protrusion groups 5 are respectively provided on the top of the multiple anti-slip plates 3. The first anti-slip protrusion groups 4 and second anti-slip protrusion groups 5 are distributed at intervals, and the height of the first anti-slip protrusion group 4 is higher than the height of the second anti-slip protrusion group 5.

[0035] When in use, when the user stands on the paddleboard, their feet come into contact with these anti-slip protrusions. Since there is a certain height difference between the first anti-slip protrusion group 4 and the second anti-slip protrusion group 5, this staggered structure can increase the friction between the feet and the anti-slip surface. Just like on a plane, if there are obstacles of different heights, the object will encounter more resistance when moving on it. When the user is active on the paddleboard, the anti-slip protrusions can prevent the feet from slipping and ensure the stability of the user on the paddleboard. Even if there is water flow impact or body swaying during the paddling process, the user can better maintain balance.

[0036] The anti-skid foot pad also has a heating function, and the power module 9 provides power for the heating layer 6; when the paddle is used in a colder environment, the heating function is turned on, and the power of the power module 9 makes the heating layer 6 heat up; the heat generated by the heating layer 6 can be transmitted upward, and the heat is mainly concentrated between the heating layer 6 and the anti-skid surface layer 2 through the blocking of the heat insulation layer 7, so that the anti-skid surface layer 2 remains warm; the heat insulation layer 7 prevents heat loss downward, reduces energy loss, and enables the heat to be more effectively used to heat the anti-skid surface layer 2, thereby providing a warm and comfortable experience for the user's feet and reducing the adverse effects of cold weather on the feet, while avoiding overheating of the surface of the paddle body 1 and the power module 9.

[0037] For example, as shown in Figure 2 The heating layer 6 is internally provided with a flexible heating element 8.

[0038] In use, when the power module 9 supplies power to the heating layer 6, the built-in flexible heating element 8 begins to work; since the heating element 8, such as a metal heating wire, is flexible, it can well conform to the shape of the space inside the heating layer 6; this flexible feature enables the heating element 8 to be evenly distributed within the heating layer 6, and prevents local overheating or uneven heating due to shape mismatch.

[0039] For example, as shown in Figure 2 , Figure 3 The power module 9 includes a waterproof sealed box 10, which is located in the groove of the paddle body 1, and the waterproof sealed box 10 is internally provided with a battery 11.

[0040] In use, the main function of the waterproof sealed box 10 is to protect the battery 11 from water; since the surf paddle is used in a water environment, it is easy to come into contact with water; the waterproof sealed box 10 is designed to be sealed and placed in the groove of the paddle body 1; this groove design can further reduce the possibility of water directly contacting the waterproof sealed box 10; the waterproof performance of the sealed box ensures that the internal battery 11 is in a dry environment;

[0041] The battery 11, as the core component of the power module 9, is the energy source of the entire heating system; when the heating element 8 in the heating layer 6 needs to be powered, the battery 11 outputs electrical energy through the circuit; the chemical energy stored in the battery 11 is converted into electrical energy through a chemical reaction; this electrical energy is transmitted to the heating element 8 along the connecting line, thereby driving the heating element 8 to work and generate heat to heat the anti-skid surface layer 2.

[0042] For example, as shown in Figure 1 , Figure 3As shown, the utility model also includes, the waterproof sealed box 10 one side is equipped with a plurality of air inlet 12, the waterproof sealed box 10 other side is equipped with a plurality of air outlet 13, air inlet 12 and air outlet 13 inside are provided with waterproof air permeable membrane 14.

[0043] In use, when battery 11 works in waterproof sealed box 10, battery 11 will produce heat, in the process of surfing, air flow will enter sealed box through air inlet 12, take away the heat that lithium battery emits, and hot air is discharged from air outlet 13, form natural convection heat dissipation;

[0044] The waterproof air permeable membrane 14 inside air inlet 12 and air outlet 13 is the key waterproof component, and the waterproof air permeable membrane 14 has a special microstructure, and the intermolecular gap thereof allows gas molecules such as oxygen and carbon dioxide to pass through, but water molecules cannot pass through due to their large volume, for example, some waterproof air permeable membranes are made of high molecular materials, and the pore size thereof is accurately designed, so that gas molecules can freely diffuse in and out of the pores, and water cannot penetrate the tiny pores to enter the sealed box under normal circumstances, so that the air permeability of the waterproof sealed box 10 is ensured, and the entry of water is prevented, to ensure that the battery 11 is always in a dry working environment.

[0045] As shown in the drawings, Figure 3 As shown, the utility model also includes that the waterproof sealed box 10 is provided with box cover 15, and the sealing strip 16 is arranged between the box cover 15 and the waterproof sealed box 10.

[0046] In use, the box cover 15 is used for closing the waterproof sealed box 10, and the sealing strip 16 between the box cover 15 and the waterproof sealed box 10 is the key component for realizing the sealing function, and the sealing strip 16 is made of rubber material with elasticity;

[0047] When the box cover 15 is covered on the waterproof sealed box 10, the sealing strip 16 is extruded, and due to the elasticity thereof, the sealing strip 16 can fill the tiny gap between the box cover 15 and the waterproof sealed box 10, like a soft and elastic object is inserted into the gap, which can be deformed according to the shape of the gap, so as to fill the gap, and the close filling can effectively prevent water, dust and other external substances from entering the waterproof sealed box 10, so that even in the wet water environment of the surfing paddle or in the case of water splashing, water is difficult to break through the sealing line and enter the box, so as to protect the internal battery 11 and other components from water damage.

[0048] As shown in the drawings, Figure 1 , Figure 3 As shown, the utility model also includes that the waterproof sealed box 10 is provided with a charging interface 17, and the protection cover 18 is arranged on the charging interface 17.

[0049] In use, when the battery 11 is insufficient, the plug of the charger is inserted into the charging interface 17, and the power of the external power supply is transmitted to the battery 11 through the circuit connection between the charging interface 17 and the battery 11, so that the charging process of the battery 11 is realized, and the power support for the heating and other functions of the entire paddle non-slip foot pad is continuously provided;

[0050] When the charging interface 17 is not used, the protective cover 18 is covered, which can prevent water, dust and other external impurities from entering the inside of the charging interface 17. Because the paddle is used on water, if the charging interface contacts water and other impurities, it may cause a short circuit or other faults, affect the battery charging and the normal operation of the entire system, and the protective cover acts as a protective barrier to isolate the influence of external bad factors on the charging interface when not charging, and ensure that the charging interface 17 can work normally when needed.

[0051] It should be noted that the utility model is a surf paddle non-slip foot pad, if the battery 11 is insufficient, the protective cover 18 of the charging interface 17 is opened, the charger plug is inserted into the charging interface 17, and the battery 11 is charged, and after the charging is completed, the charger is pulled out and the protective cover 18 is covered;

[0052] The paddle is placed in water, and the user steps on the paddle, at this time, the feet contact the first anti-skid column group 4 and the second anti-skid column group 5 of the anti-skid surface layer 2, and the stability on the paddle is maintained by using the staggered structure to increase the friction.

[0053] If the heating function is needed in a relatively cold environment, the heating function is started, the battery 11 in the power module 9 supplies power to the flexible heating element 8 of the heating layer 6 through the circuit, the heating element 8 works and generates heat, and the heat is transmitted upward to the anti-skid surface layer 2, so that the anti-skid surface layer 2 remains warm, and the heat insulation layer 7 prevents the heat from being lost downward.

[0054] During the surfing process, the waterproof air permeable membrane 14 in the air inlet hole 12 on one side of the waterproof sealed box 10 allows air to enter and take away the heat generated by the battery 11, and the hot air is discharged from the air outlet hole 13 on the other side, so that natural convection cooling is realized, and the waterproof air permeable membrane 14 prevents water from entering.

[0055] The basic principles and main features of the utility model and the advantages of the utility model are shown and described. It should be understood by those skilled in the art that the utility model is not limited to the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the utility model, and various changes and improvements can be made without departing from the spirit and scope of the utility model. The utility model falls within the scope of the utility model claimed. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. Anti-slip foot pad for a surf paddleboard, comprising a paddleboard body (1), characterized in that, The paddle body (1) is provided with an anti-skid surface layer (2), the lower side of the anti-skid surface layer (2) is provided with a heating layer (6), the lower side of the heating layer (6) is provided with a heat insulation layer (7), and the lower side of the heat insulation layer (7) is provided with a power module (9). The anti-skid surface layer (2) is composed of a plurality of anti-skid plates (3), and the top ends of the plurality of anti-skid plates (3) are respectively provided with a plurality of first anti-skid column groups (4) and second anti-skid column groups (5), the first anti-skid column groups (4) and the second anti-skid column groups (5) are distributed at intervals, and the height of the first anti-skid column groups (4) is higher than the height of the second anti-skid column groups (5).

2. The non-slip foot pad for a paddleboard according to claim 1, wherein: The heating layer (6) is internally provided with a flexible heating element (8).

3. The non-slip foot pad for a paddleboard according to claim 1, wherein: The power module (9) comprises a waterproof sealed box (10), the waterproof sealed box (10) is located in a groove of the paddle body (1), and the waterproof sealed box (10) is internally provided with a battery (11).

4. The non-slip foot pad for a paddleboard according to claim 3, wherein: A plurality of air inlet holes (12) are formed on one side of the waterproof sealed box (10), a plurality of air outlet holes (13) are formed on the other side of the waterproof sealed box (10), and waterproof air-permeable membranes (14) are arranged in the air inlet holes (12) and the air outlet holes (13).

5. The non-slip foot pad for a paddleboard according to claim 4, wherein: The waterproof sealed box (10) is provided with a box cover (15), and a sealing strip (16) is arranged between the box cover (15) and the waterproof sealed box (10).

6. The non-slip foot pad for a paddleboard according to claim 5, wherein: A charging interface (17) is arranged on the side of the waterproof sealed box (10), and a protective cover (18) is arranged on the charging interface (17).