Snow melting pad with anti-skid performance

The snow melting mat, with its double-layer anti-slip structure and electric heating design, solves the slippage problem caused by snow water penetration during use, improving anti-slip performance and safety, and is suitable for various road surface environments.

CN223614539UActive Publication Date: 2025-12-02SHANXIAN DOMI GRAPHENE TECH CO LTD
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Patent Information

Application Number
CN202423112437.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-02
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

When existing snow melting mats are in use, the melted snow water seeps into the gaps between the mat and the surface, forming a lubricating layer. This reduces friction, affects the mat's performance, and poses a safety hazard.

Method used

It adopts a double-layer anti-slip structure design, including a bottom anti-slip layer and a top anti-slip layer. The bottom anti-slip layer is made of silicone and has a grid-like drainage channel and circular anti-slip protrusions. The top anti-slip layer has a hollow grid structure and is filled with water-absorbing cotton. Combined with an electric heating element and a waterproof sealing layer, it can ensure safety and anti-slip performance.

Benefits of technology

It improves the anti-slip performance of snow melting mats in wet environments, avoids the risk of slipping, enhances friction, extends service life, and is suitable for stairs and inclined surfaces, improving safety and stability in use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of snow melting pads, in particular to a snow melting pad with antiskid performance, which comprises a waterproof packaging layer and an electric heating sheet, the electric heating sheet is packaged in the waterproof packaging layer, a conductive electrode of the electric heating sheet is connected with a cable, the outer end of the cable is connected with a waterproof quick-connection plug, and the waterproof quick-connection plug is connected with the waterproof packaging layer. A top supporting cushion layer is pasted on the upper side of the waterproof packaging layer, a top anti-skid layer is arranged on the upper side of the top supporting cushion layer, a bottom supporting cushion layer is arranged on the lower side of the waterproof packaging layer, and a bottom anti-skid layer is arranged on the lower side of the bottom supporting cushion layer. According to the snow melting pad, through the design of the double-layer anti-skid structure, the anti-skid performance of the snow melting pad in a humid environment is effectively improved, the sliding problem caused by snow water permeation is effectively avoided, the safety of pedestrians is guaranteed, meanwhile, snow water accumulation is avoided through the arranged drainage grooves, the sliding risk of the snow melting pad is reduced, and the snow melting pad is suitable for popularization and application. And the use safety is improved.
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Description

Technical Field

[0001] This utility model relates to the field of snow melting mat technology, and more specifically, to a snow melting mat with anti-slip properties. Background Technology

[0002] A snow melting mat is a device specifically designed to address road icing issues. It primarily melts ice and snow by providing additional friction or heating, thereby helping vehicles and pedestrians achieve better traction and stability on icy and snowy roads.

[0003] Winter snow and ice accumulation on roads causes significant inconvenience, especially on uneven surfaces like stairs. Snow-melting mats are commonly used to accelerate snow melting and improve mobility. However, melted snow often seeps into the tiny gaps between the mat and the surface, forming a lubricating layer that significantly reduces friction. This causes the mat to slip when stepped on, affecting its effectiveness and posing a safety hazard. Most existing snow-melting mats prioritize melting efficiency while neglecting anti-slip design. Utility Model Content

[0004] To address the shortcomings of existing products, this invention provides a snow melting mat with anti-slip properties, aiming to solve the problem of slippage caused by melted snow and water during use, and improve safety.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A snow melting mat with anti-slip properties includes a waterproof encapsulation layer and an electric heating element. The electric heating element is encapsulated in the waterproof encapsulation layer. A cable is connected to the conductive electrode of the electric heating element, and a waterproof quick-connect plug is connected to the outer end of the cable. A top support pad is attached to the upper side of the waterproof encapsulation layer, and a top anti-slip layer is provided on the upper side of the top support pad. A bottom support pad is provided on the lower side of the waterproof encapsulation layer, and a bottom anti-slip layer is provided on the lower side of the bottom support pad.

[0007] Furthermore, the bottom anti-slip layer is made of silicone, and a grid-like drainage groove is formed on the bottom surface of the bottom anti-slip layer.

[0008] Furthermore, the bottom anti-slip layer has multiple sets of integrated circular anti-slip protrusions on its bottom surface, and the anti-slip protrusions are located in the grid blank area of ​​the drainage channel.

[0009] Furthermore, a water-stopping edging is fixed around the bottom anti-slip layer, and the lower surface of the water-stopping edging is flush with the bottom surface of the anti-slip protrusion.

[0010] Furthermore, an absorbent cotton pad is provided between the top support pad and the top anti-slip layer.

[0011] Furthermore, the top anti-slip layer is configured as a hollowed-out mesh structure, and the hollowed-out areas are filled with absorbent cotton.

[0012] Furthermore, both the top support pad and the bottom support pad are made of rubber, silicone, or PVC materials.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. The snow melting mat of this utility model has an effective anti-slip performance in wet environments through the design of a double-layer anti-slip structure, which effectively avoids the slipping problem caused by snow water penetration and ensures the safety of pedestrians. At the same time, the drainage grooves prevent snow water from accumulating, reduce the risk of the snow melting mat slipping, and improve the safety of use. It is not only suitable for stairs, but can also be widely used on roads, slopes and other inclined surfaces, and has a broad market prospect.

[0015] 2. The bottom anti-slip layer of this utility model is made of silicone. Silicone has excellent anti-slip properties and can maintain good friction even in wet and slippery environments, ensuring that the snow melting mat adheres stably to steps or other surfaces. Silicone also has good wear resistance, resisting wear from pedestrians and the snow melting process, extending the service life of the snow melting mat. In addition, silicone has a certain degree of elasticity, which can adapt to minor unevenness on different surfaces, further enhancing the anti-slip effect. The bottom surface of the anti-slip layer has a grid-like drainage channel. The grid-like drainage channel design allows melted snow water to drain quickly and evenly. When the snow melting mat is stepped on, the snow water is squeezed out through the drainage channel, preventing snow water from accumulating under the snow melting mat and forming a lubricating layer, reducing the formation of a water film, increasing friction, and thus reducing the risk of slipping.

[0016] 3. In this utility model, the bottom anti-slip layer has multiple sets of integrated circular anti-slip protrusions on its bottom surface. These protrusions are located in the blank areas of the drainage channel's mesh. The circular anti-slip protrusions significantly increase the friction between the bottom of the snow melting mat and the contact surface (such as steps, the ground, etc.). When pedestrians step on it or the snow melting mat is subjected to other external forces, these protrusions effectively resist slippage, ensuring the stability of the snow melting mat. The design of the anti-slip protrusions also helps to distribute the pressure on the snow melting mat. When pedestrians step on it, the protrusions can locally bear greater pressure, thus preventing the snow melting mat from being deformed or damaged due to excessive pressure.

[0017] 4. In this utility model, a water-stop edging is fixed around the bottom anti-slip layer, and the lower surface of the water-stop edging is flush with the bottom surface of the anti-slip protrusion. As an additional waterproof barrier, the water-stop edging can tightly fit the placement surface of the snow melting mat, effectively preventing melted snow or rainwater from seeping in from the edge of the snow melting mat. At the same time, the water-stop edging not only has a waterproof function, but also enhances the structural stability of the edge of the snow melting mat, resisting external force to wear and impact on the edge, and preventing the edge of the snow melting mat from being damaged due to long-term use.

[0018] 5. In this utility model, a water-absorbing cotton pad is provided between the top support pad and the top anti-slip layer. The water-absorbing cotton pad can quickly absorb melted snow or rainwater, preventing moisture from accumulating on the surface of the snow-melting pad, thereby keeping the pad surface dry and helping to prevent pedestrians from slipping. The top anti-slip layer is designed with a hollowed-out mesh structure, and the hollowed-out areas are filled with water-absorbing cotton. The hollowed-out mesh structure design increases the surface area of ​​the anti-slip layer, thereby increasing the friction between the anti-slip layer and the sole of the shoe, enhancing the anti-slip effect. At the same time, the water-absorbing cotton can absorb moisture from the sole of the shoe, keeping the sole of the pedestrian's shoe clean, thereby reducing the risk of slipping. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0020] Figure 2 This is a schematic diagram of the bottom structure of this utility model.

[0021] Figure 3 This is a schematic diagram of the disassembled structure of this utility model.

[0022] Figure 4 This is a schematic diagram of the bottom anti-slip layer in this utility model.

[0023] Figure 5 This is a partial structural diagram of the bottom anti-slip layer in this utility model.

[0024] In the diagram: 1. Top anti-slip layer; 2. Waterproof quick-connect plug; 3. Bottom anti-slip layer; 4. Cable; 5. Top support pad; 6. Waterproof encapsulation layer; 7. Electric heating element; 8. Bottom support pad; 9. Anti-slip protrusion; 10. Drainage groove; 11. Waterproof edging. Detailed Implementation

[0025] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0026] Example:

[0027] like Figures 1 to 5 As shown, a snow melting mat with anti-slip properties includes a waterproof encapsulation layer 6 and an electric heating element 7. The electric heating element 7 is encapsulated in the waterproof encapsulation layer 6, which ensures that the electric heating element 7 is not affected by moisture during operation, guaranteeing the safety and reliability of the snow melting mat. A cable 4 is connected to the conductive electrode of the electric heating element 7, and a waterproof quick-connect plug 2 is connected to the outer end of the cable 4. The waterproof quick-connect plug 2 facilitates quick connection and disconnection with the power supply and can also meet the needs of multiple snow melting mats connected in parallel. A top support pad 5 is pasted on the upper side of the waterproof encapsulation layer 6, and a top anti-slip layer 1 is provided on the upper side of the top support pad 5. A bottom support pad layer 8 is provided on the lower side of the water-sealing layer 6. The top support pad layer 5 and the bottom support pad layer 8 provide support for the snow melting mat and help maintain the structural stability of the snow melting mat. A bottom anti-slip layer 3 is provided on the lower side of the bottom support pad layer 8. The bottom anti-slip layer 3 prevents the snow melting mat from sliding on the wet and slippery step surface and ensures stability. This design solves the problem that when existing snow melting mats are used, melted snow water will seep into the tiny gaps between the snow melting mat and the step surface, forming a lubricating layer, which significantly reduces the friction between the two and causes the snow melting mat to slide when stepped on, which not only affects the use effect but also poses a safety hazard.

[0028] In this embodiment, the bottom anti-slip layer 3 is made of silicone. Silicone has excellent anti-slip properties and can maintain good friction even in wet and slippery environments, ensuring that the snow melting mat adheres stably to steps or other surfaces. Silicone also has good wear resistance, resisting wear from pedestrians and during the snow melting process, extending the service life of the snow melting mat. In addition, silicone has a certain degree of elasticity, which can adapt to minor unevenness on different surfaces, further enhancing the anti-slip effect. The bottom surface of the bottom anti-slip layer 3 has a grid-like drainage groove 10. The grid-like drainage groove 10 design allows melted snow water to drain quickly and evenly. When the snow melting mat is stepped on, the snow water is squeezed out through the drainage groove 10, preventing snow water from accumulating under the snow melting mat to form a lubricating layer, reducing the formation of a water film, increasing friction, and thus reducing the risk of slipping.

[0029] In this embodiment, the bottom anti-slip layer 3 has multiple sets of integrated circular anti-slip protrusions 9 on its bottom surface, and these protrusions 9 are located in the grid blank areas of the drainage channel 10. The circular anti-slip protrusions 9 can significantly increase the friction between the bottom of the snow melting mat and the contact surface such as steps or the ground. When pedestrians step on it or the snow melting mat is subjected to other external forces, these protrusions can effectively resist sliding and ensure the stability of the snow melting mat. The design of the anti-slip protrusions 9 also helps to distribute the pressure on the snow melting mat. When pedestrians step on it, the protrusions can locally bear greater pressure, thereby preventing the snow melting mat from being deformed or damaged due to excessive pressure.

[0030] In this embodiment, a water-stop edge 11 is fixed around the bottom anti-slip layer 3, and the lower surface of the water-stop edge 11 is flush with the bottom surface of the anti-slip protrusion 9. As an additional waterproof barrier, the water-stop edge 11 can fit tightly against the placement surface of the snow melting mat, effectively preventing melted snow or rainwater from seeping in from the edge of the snow melting mat. At the same time, the water-stop edge 11 not only has a waterproof function, but also enhances the structural stability of the edge of the snow melting mat, resisting external force to wear and impact on the edge, and preventing the edge of the snow melting mat from being damaged due to long-term use.

[0031] In this embodiment, a water-absorbing cotton pad is provided between the top support pad 5 and the top anti-slip layer 1. The water-absorbing cotton pad can quickly absorb melted snow or rainwater, prevent moisture from accumulating on the surface of the snow melting pad, thereby keeping the pad surface dry and helping to prevent pedestrians from slipping.

[0032] In this embodiment, the top anti-slip layer 1 is set as a hollowed-out mesh structure, and the hollowed-out areas are filled with absorbent cotton. The hollowed-out mesh structure design increases the surface area of ​​the anti-slip layer, thereby improving the friction between it and the sole of the shoe and enhancing the anti-slip effect. At the same time, the absorbent cotton can absorb the moisture on the sole of the shoe, keeping the sole of the pedestrian's shoe clean and thus reducing the risk of slipping.

[0033] In this embodiment, both the top support pad 5 and the bottom support pad 8 are made of rubber, silicone or PVC materials, which have excellent elasticity and resilience, and can adapt well to the pressure changes during pedestrian trampling and snow melting, maintaining the shape and stability of the snow melting pad.

[0034] The working principle of this anti-slip snow melting mat is as follows: In actual use, the snow melting mat is laid on the steps or other surfaces where snow needs to be melted, ensuring that the bottom anti-slip layer 3 is tightly attached to the surface. If necessary, multiple snow melting mats can be connected in parallel using waterproof quick-connect plugs 2 to increase the melting area. The waterproof quick-connect plugs 2 ensure that the connection between the cable 4 and the power supply is also waterproof, while facilitating quick connection and disconnection.

[0035] Connect the waterproof quick-connect plug 2 to the power source. Once the snow melting mat is powered on, the electric heating element 7 begins to operate, generating heat and transferring it to the waterproof encapsulation layer 6 and its surrounding layers. The heat is transferred to the surface of the snow melting mat through the top support pad layer 5 and the top anti-slip layer 1, accelerating snow melting. The waterproof encapsulation layer 6 ensures that the electric heating element 7 is not affected by moisture during operation, preventing short circuits and leakage, and guaranteeing the safety and reliability of the snow melting mat. The absorbent cotton pad layer under the top anti-slip layer 1 quickly absorbs melted snow or rainwater, keeping the mat surface dry. The drainage grooves 10 on the bottom surface of the bottom anti-slip layer 3 allow snow water to drain quickly and evenly, preventing snow water from accumulating under the snow melting mat and forming a lubricating layer. The bottom anti-slip layer 3 is made of silicone, providing excellent anti-slip performance and maintaining good friction even in wet and slippery environments. The circular anti-slip protrusions 9 and the water-stopping edge 11 further enhance the stability of the snow melting mat, preventing it from sliding on wet and slippery surfaces. Both the top support pad 5 and the bottom support pad 8 are made of rubber material, which has excellent elasticity and resilience, and can adapt to pressure changes during pedestrian trampling and snow melting.

[0036] Based on the above working principle, this snow melting mat can effectively solve the problems of water seepage and slippage that exist in existing snow melting mats during use, improve snow melting efficiency and safety, and provide safer and more convenient protection for pedestrians.

[0037] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. For those skilled in the art, other variations or modifications can be made based on the above description. It is impossible to exhaustively list all the implementation methods here. Any obvious variations or modifications derived from the technical solutions of this utility model are still within the protection scope of this utility model.

Claims

1. A snow melting mat with anti-slip properties, comprising a waterproof sealing layer (6) and an electric heating element (7), characterized in that: The electric heating element (7) is encapsulated in a waterproof encapsulation layer (6). A cable (4) is connected to the conductive electrode of the electric heating element (7). A waterproof quick connector (2) is connected to the outer end of the cable (4). A top support pad (5) is pasted on the upper side of the waterproof encapsulation layer (6). A top anti-slip layer (1) is provided on the upper side of the top support pad (5). A bottom support pad (8) is provided on the lower side of the waterproof encapsulation layer (6). A bottom anti-slip layer (3) is provided on the lower side of the bottom support pad (8). The bottom anti-slip layer (3) is made of silicone, and the bottom surface of the bottom anti-slip layer (3) is provided with a grid-shaped drainage groove (10). The bottom anti-slip layer (3) is fixed with a water-stopping edge (11) around its perimeter, and the lower surface of the water-stopping edge (11) is flush with the bottom surface of the anti-slip protrusion (9).

2. The snow melting mat with anti-slip properties according to claim 1, characterized in that: The bottom anti-slip layer (3) has multiple sets of circular anti-slip protrusions (9) integrated with it on the bottom surface, and the anti-slip protrusions (9) are set in the grid blank area of ​​the drainage groove (10).

3. The snow melting mat with anti-slip properties according to claim 1, characterized in that: A layer of absorbent cotton padding is provided between the top support padding layer (5) and the top anti-slip layer (1).

4. The snow melting mat with anti-slip properties according to claim 1, characterized in that: The top anti-slip layer (1) is set as a hollowed-out mesh structure, and the hollowed-out areas are filled with absorbent cotton.

5. The snow melting mat with anti-slip properties according to claim 1, characterized in that: Both the top support pad (5) and the bottom support pad (8) are made of rubber, silicone or PVC materials.