Method for preparing a glide pad and glide pad
By combining woven sheets with liquid elastomers to create sliding mats, the problems of large size and difficult storage of fitness equipment are solved, providing a simple sliding movement and storage method, and improving the practicality and space utilization of fitness equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SIMPLE GREEN CO LTD
- Filing Date
- 2023-01-17
- Publication Date
- 2026-07-31
AI Technical Summary
Existing fitness equipment is bulky, complex in structure, difficult to disassemble and store, and has a limited range of uses, taking up a lot of space, making it particularly unsuitable for indoor use.
A sliding mat with a sliding area and an anti-slip area is prepared by combining woven sheets with liquid elastomers. The sliding mat can be directly rolled up and stored, making it easy to use.
It achieves a simple sliding motion and convenient storage method, improving the practicality and space utilization of fitness equipment.
Smart Images

Figure CN118356621B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sports equipment, and in particular to a method for preparing a sliding mat and the sliding mat itself. Background Technology
[0002] There are many types of fitness equipment available, such as weightlifting machines, treadmills, steppers, elliptical trainers, rowing machines, and exercise machines, which allow users to perform specific or multiple training and strengthening exercises for their muscles or lung capacity. Professional fitness equipment is generally bulky and complex in structure, difficult to disassemble and assemble, and hard to store in its disassembled state, making it unsuitable for families with limited indoor space. Smaller fitness equipment, while typically offering more singular training effects, saves space and is easy to store after use. Consumers can choose the appropriate equipment based on their needs.
[0003] The sliding fitness device shown in Taiwan Patent No. M427165 is a small-sized exercise equipment. The user's feet can be fixed to two sliding seats on a mat for lateral sliding movements. Each end of the mat has a retaining edge to prevent the sliding seats from obstructing the user's movement. While the aforementioned patent is convenient to use, the user's feet must be fixed to the sliding seats to slide on the mat, and the retaining edges are somewhat bulky, taking up a bit of space when stored after use. Summary of the Invention
[0004] Therefore, it is necessary to provide a method for preparing a sliding mat and a sliding mat prepared by this method to address the above-mentioned technical problems. This allows users to perform sliding exercises and achieve anti-slip properties in a way that differs from known sliding fitness equipment. The method of use is simpler, and the flat sliding mat can be directly rolled up for storage, making storage more convenient.
[0005] This invention discloses a method for preparing a sliding mat, the method comprising at least the following steps:
[0006] Prepare a knitted sheet: Prepare a knitted sheet, the knitted sheet comprising a sheet body, one side of the sheet body having a sliding area composed of a plurality of piles;
[0007] Applying liquid elastomer: Applying a liquid elastomer to the periphery of the woven sheet and at the connection points between the sheet and each pile;
[0008] Setting: The liquid elastomer is cured and set by heating and / or vulcanization;
[0009] Setting anti-slip zones: Anti-slip material is provided on at least two opposite sides of the woven sheet to form anti-slip zones, thereby obtaining the sliding mat.
[0010] This invention also discloses another method for preparing a sliding mat, the method comprising at least the following steps:
[0011] Prepare a knitted sheet: Prepare a knitted sheet, the knitted sheet comprising a sheet body, one side of the sheet body having a sliding area composed of a plurality of piles;
[0012] Applying liquid elastomer: Applying a liquid elastomer to the periphery of the woven sheet and at the connection points between the sheet and each pile;
[0013] Anti-slip zones are formed by providing anti-slip material on at least two opposite sides of the woven sheet.
[0014] Shaping: The sliding pad is obtained by curing and shaping the liquid elastomer through heating and / or vulcanization.
[0015] In one embodiment, the step of laying the liquid elastomer involves immersing the woven sheet in the liquid elastomer with the pile facing upwards, so that the sheet and the connection between the sheet and each pile are wetted.
[0016] In one embodiment, the step of laying the liquid elastomer involves immersing the woven sheet in the liquid elastomer with the pile facing down, so that the liquid elastomer is coated on the sheet and its periphery and penetrates into the connection between the sheet and each pile.
[0017] In one embodiment, the step of applying the liquid elastomer and the shaping step further includes a step of applying an anti-slip sheet, in which the unshaped anti-slip sheet is applied to the side of the sheet body facing away from the pile, and after the shaping step, the liquid elastomer and the anti-slip sheet are shaped and attached.
[0018] In one embodiment, the step of applying the liquid elastomer is combined with the step of setting the anti-slip area into a single step. First, the liquid elastomer is applied to the shaped anti-slip sheet. Then, the woven sheet is attached to the anti-slip sheet with the pile facing upwards. The area of the anti-slip sheet is larger than that of the woven sheet, so that the part of the anti-slip sheet protruding from the woven sheet forms the anti-slip area. Furthermore, after the shaping step, a pressing step is included, in which the heated anti-slip sheet, liquid elastomer, and woven sheet are subjected to pressure and squeezed relative to each other, so that each anti-slip sheet, woven sheet, and elastomer are attached to each other.
[0019] This invention also discloses a sliding mat, which is prepared using the above-described method for preparing sliding mats, and the sliding mat comprises:
[0020] A sliding area for users to slide on the sliding mat; and
[0021] Several anti-slip zones, made of anti-slip material, are flat and are arranged opposite each other on one side of the periphery or at least the two sides of the sliding area, so that users can step on them after sliding in the sliding area to prevent slipping.
[0022] In one embodiment, the sliding pad further includes:
[0023] A woven sheet, wherein one side of the woven sheet is provided with a plurality of piles and the other side is combined with a sheet-like elastomer, and each of the piles forms a sliding area;
[0024] An elastic sheet, made of an anti-slip material, is connected to both sides of the woven sheet to form anti-slip zones.
[0025] In one embodiment, the sliding pad further includes:
[0026] The floor mat is made of a non-slip material.
[0027] The sliding plate is made of a material with low surface friction and is attached to the surface and both sides of the grounding plate, separated from the two ends of the grounding plate. The sliding area is formed on the surface of the sliding plate, and the distance between the two sides of the sliding plate and the two ends of the grounding plate forms two anti-slip areas.
[0028] In one embodiment, the sliding pad further includes:
[0029] The grounding sheet is made of an anti-slip material. The sliding area is formed by applying lubricant to a predetermined surface of the grounding sheet. The two sides of the grounding sheet without lubricant are formed as anti-slip areas.
[0030] In one embodiment, the sliding pad further includes:
[0031] The floor mat is made of a non-slip material.
[0032] An elastic sheet is attached to the surface of the grounding sheet. The sliding area is formed by applying lubricant to a predetermined surface of the elastic sheet, and the surfaces on both sides of the elastic sheet without lubricant are formed as anti-slip areas.
[0033] In one embodiment, the sliding pad further includes:
[0034] A slider and two elastic plates are provided. The slider is made of a material with low surface friction, and the elastic plates are made of a non-slip material, which are connected to both sides of the slider.
[0035] In one embodiment, the slider and the elastic sheet are of different colors, so that a warning line with mixed colors is formed on the connection side of the slider and the elastic sheet.
[0036] In one embodiment, the sliding pad further includes a tensile sheet made of a non-stretchable material.
[0037] The sliding pad is disposed inside the aforementioned ground contact plate and the sliding plate;
[0038] Alternatively, it may be disposed within the aforementioned sliding sheet and each of the aforementioned elastic sheets.
[0039] In one embodiment, each of the anti-slip areas includes a plurality of anti-slip regions with different anti-slip effects. Each of the anti-slip regions is arranged opposite to each other on both sides of the sliding area, and the anti-slip effect increases as one moves away from the sliding area.
[0040] In one embodiment, the sliding mat further includes a cover film, which is disposed on the surface of the sliding mat. The cover film is made of a material with low surface friction or non-slip properties. When the cover film is made of a material with low surface friction, each of the non-slip areas is coated with an anti-slip agent. When the cover film is made of a non-slip material, the sliding areas are coated with a lubricant.
[0041] In one embodiment, the surface of the gliding area is further provided with several textures to generate friction and heat during the gliding process of the foot.
[0042] In one embodiment, the material of the gliding area contains a number of far-infrared material powders, which promote the release of far-infrared rays during the frictional heating process of foot gliding.
[0043] In one embodiment, a number of temperature-sensitive pigments are added to the material of the gliding area so that the gliding area changes color with temperature during foot gliding.
[0044] In one embodiment, the sliding mat further includes a ground-adhering sheet made of an anti-slip material, the sliding area is formed by the ground-adhering sheet absorbing oil and wax, and the sides of the sliding area do not absorb oil and wax to form anti-slip areas.
[0045] By adopting the above technical solution, the present invention has the following beneficial effects:
[0046] This invention proposes various design components and different combination methods for sliding mats through structural optimization design. The resulting sliding mat has a planar structure with at least a sliding area and at least two anti-slip areas on both sides. This allows users to perform sliding movements and anti-slip in a way that is different from the currently known sliding fitness equipment. The method of use is simpler. In addition, the sliding mat can be directly rolled up and stored, which is more convenient than the known skateboard fitness equipment. It has high practical value. Attached Figure Description
[0047] To make the content of this invention easier to understand, the invention will be further described in detail below with reference to specific embodiments and accompanying drawings, characterized in that...
[0048] Figure 1 This is a flowchart of the preparation method of the first preferred embodiment of the present invention.
[0049] Figure 2 This is a schematic diagram of the liquid elastomer being arranged in the preparation method of the first preferred embodiment of the present invention.
[0050] Figure 3 This is a schematic diagram of the sliding mat prepared by the preparation method of the first preferred embodiment of the present invention.
[0051] Figure 4 This is a schematic diagram illustrating the preparation method of the first preferred embodiment of the present invention.
[0052] Figure 5 This is a schematic diagram of the preparation method of the second preferred embodiment of the present invention.
[0053] Figure 6 This is a flowchart of the preparation method of the third preferred embodiment of the present invention.
[0054] Figure 7 This is a schematic diagram of the preparation method of the third preferred embodiment of the present invention.
[0055] Figure 8 This is a flowchart of the preparation method of the fourth preferred embodiment of the present invention.
[0056] Figure 9 This is a schematic diagram of the preparation method of the fourth preferred embodiment of the present invention.
[0057] Figure 10 This is a partial schematic diagram of the preparation method of the fifth preferred embodiment of the present invention.
[0058] Figure 11 This is a partial schematic diagram of the preparation method of the sixth preferred embodiment of the present invention.
[0059] Figure 12 This is a partial schematic diagram of the preparation method of the seventh preferred embodiment of the present invention.
[0060] Figure 13 This is a schematic diagram of a sliding mat according to another preferred embodiment of the present invention.
[0061] Figure 14 This is a schematic diagram of a sliding mat according to another preferred embodiment of the present invention.
[0062] Figure 15 This is a schematic diagram of a sliding mat according to another preferred embodiment of the present invention.
[0063] Figure 16This is a schematic diagram of a sliding mat according to another preferred embodiment of the present invention.
[0064] Figure 17 This is a schematic diagram of the anti-slip zone of the sliding mat of the present invention. Detailed Implementation
[0065] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0066] Example 1
[0067] like Figures 1 to 3 As shown, this embodiment discloses a method for preparing a sliding mat:
[0068] The first step is to prepare a woven sheet: prepare a woven sheet 12, which is a long sheet and includes a sheet 22. The sheet 22 is made of non-woven fabric or PP woven sheet, etc., and there is no specific limitation. One side of the sheet 22 is provided with a sliding area 26 composed of a plurality of piles 24. Each pile 24 is protruded on the sheet 22 by brushing, electrostatic flocking or weaving.
[0069] The second step is to lay the liquid elastomer: the liquid elastomer 14 is laid around the periphery of the sheet 22 of the woven sheet 12 and at the connection points between the sheet 22 and each pile 24. Specifically, the liquid elastomer 14 is a liquid elastic material such as SBR, PU or EVA, natural rubber, hot melt adhesive, etc., with no specific limitation. It can also be an elastic material that becomes liquid when heated or an elastic material that is liquid at room temperature. It is first placed in a tank 1, and then the woven sheet 12 is placed into the tank with the pile 24 facing upwards, so that the sheet 22 and the connection points between the sheet 22 and each pile 24 are immersed in the liquid elastomer 14. The liquid level of the liquid elastomer 14 is controlled so that only the root of each pile 24 is immersed in the liquid elastomer 14.
[0070] The third step is shaping: the woven sheet 12 is subjected to known heating foaming or vulcanization technology (e.g., a known vulcanizing foaming box or oven 2) to solidify and shape the liquid elastomer 14. When the elastomer is PU, it is vulcanization shaping; when the elastomer is EVA, it is foaming shaping.
[0071] The final step is to set up anti-slip areas: an elastic sheet of elastic anti-slip material, such as natural rubber or other sheet-like elastic material, is glued to both ends of the long axis of the woven sheet 12, so that an anti-slip area 28 can be formed at both ends of the long axis of the woven sheet 12. The elastic sheet is the anti-slip area 28, and a sliding mat 10 can be obtained.
[0072] Of course, in addition to providing anti-slip areas 28 at both ends of the woven sheet 12, the sliding mat 10 can also provide anti-slip areas 28 on all four sides of the woven sheet 12.
[0073] In addition to the aforementioned adhesive bonding method, the elastic sheets can also be connected to the side edges of the woven sheet 12 by sewing, or by using known connectors such as zippers or buttons to connect the elastic sheets to the side edges of the woven sheet 12.
[0074] When the sliding mat 10 of the present invention is laid on the ground, it will not move due to the anti-slip effect of the liquid elastomer 14. Furthermore, since the sliding area 26 has numerous protruding fibers 24 that can be swung under force, the friction of the sliding area 26 is low, allowing the user to stand on the sliding mat 10 and slide left and right or forward and backward. When wearing socks, the friction between the socks and the fibers is relatively even lower, resulting in a better sliding effect. Figure 4 As shown, the anti-slip zone 28 allows the user to step on the sliding zone 26 to stop sliding. When not in use, the sliding mat 10 can be rolled up for storage. Compared with existing skateboarding fitness equipment, the sliding mat 10 disclosed in this embodiment is more convenient to use and store.
[0075] Example 2
[0076] This embodiment discloses a second preferred embodiment based on Embodiment 1. Its main implementation method is based on Embodiment 1, wherein in the step of laying the liquid elastomer, as follows... Figure 5 As shown, the woven sheet 12 is placed on a conveyor belt with the pile 24 facing down, and liquid elastomer 14 is applied to the sheet body 22. The elastomer can be arranged around the sheet body 22 and penetrate into the connection between the sheet body 22 and each pile 24.
[0077] Example 3
[0078] This embodiment discloses a third preferred embodiment based on Embodiment 1. Its main implementation method is based on Embodiment 1, but differs from the aforementioned preparation method in that: Figure 6 , 7 As shown, between the steps of laying the liquid elastomer and shaping, there is also a step of attaching an anti-slip sheet, which involves attaching an unshaped anti-slip sheet 30, such as an elastic material like natural rubber, to the top side of the sheet body 22 so that after the shaping step 130, the elastomer and the anti-slip sheet 30 can be shaped and attached.
[0079] Example 4
[0080] This embodiment discloses a fourth preferred embodiment based on Embodiment 1. Its main implementation method is based on Embodiment 1, but differs from the aforementioned preparation method in that: Figure 8 , 9As shown, the steps of applying the liquid elastomer and setting the anti-slip zone are combined into a single step. First, the liquid elastomer 14 is applied to a pre-formed (solid) anti-slip sheet 32. A modifier is added to the elastomer to ensure polarity compatibility between the contact surfaces of the anti-slip sheet 32 and the elastomer, allowing the solid anti-slip sheet 32 to bond with the liquid elastomer 14. Then, a woven sheet 12 is attached to the anti-slip sheet 32 with the pile 24 facing upwards. The area of the anti-slip sheet 32 is larger than that of the woven sheet 12, allowing the anti-slip sheet 30 to protrude beyond the woven sheet 12. The anti-slip area 28 is formed in part, and after the shaping step, there is a pressure step. The pressure step heats and bonds the anti-slip sheet 32 and the woven sheet 12 (the temperature at which the anti-slip sheet 32 and the elastomer 14 are not yet shaped) so that the elastomer is close to solidification. Then, the anti-slip sheet 32, the woven sheet 12 and the elastomer 14 are relatively squeezed by the roller press 3 so that the anti-slip sheet 32 and the woven sheet 12 are bonded together by the elastomer 14. After the vulcanization shaping step, the anti-slip sheet 32, the woven sheet 12 and the elastomer 14 can be relatively bonded together.
[0081] Example 5
[0082] This embodiment discloses a fifth preferred embodiment based on embodiment 4. Its main implementation method is based on embodiment 4, wherein the bonding of the long, sheet-like anti-slip sheet 32 and the woven sheet 12 can also be achieved using the above-described preparation method. After the anti-slip sheet 30 and the woven sheet 12 are bonded together, they are cut to obtain the sliding mat 10. The specific process is as described in embodiment 4. Figure 10 As shown.
[0083] Example 6
[0084] This embodiment discloses a sixth preferred embodiment based on embodiment 4. Its main implementation method is based on embodiment 4. Multiple release fabrics 34 (or release paper) can also be attached to the long woven sheet 12 at intervals. After the vulcanization and shaping step, each release fabric 34 is torn off. Then the area of the woven sheet 12 covered by each release fabric 34 can become the anti-slip area 28. After cutting, a sliding mat 10 with anti-slip areas 28 on all four sides can be obtained.
[0085] Example 7
[0086] This embodiment discloses a seventh preferred embodiment based on embodiments 1 and 2. Its main implementation method is based on embodiment 1 or 2, such as... Figure 12 As shown, in the step of setting the anti-slip area, the anti-slip material 4 can also be sprayed onto the surface of the pile 24 on both opposite sides of the woven piece 12 to form the anti-slip area 28. The anti-slip material 4 can be a known anti-slip agent or a material with anti-slip effect such as silicone, rubber, or plastic.
[0087] Furthermore, the material properties and protrusion direction of each pile 24 can further affect the sliding effect of the sliding mat 10. Therefore, by changing the material of each pile 24, coating it with other materials (such as resin), and designing the protrusion direction (vertically upward or by weaving different piles 24 to the left or right), the sliding effect of the sliding mat 10 can be further adjusted. These techniques for adjusting the sliding effect of the sliding mat 10 should all fall within the technical scope of this invention.
[0088] Example 8
[0089] The sliding mat structure disclosed in this embodiment is basically the same as the basic structure of embodiments 1-7 above. The same components are referred to by the same symbols. The difference is that the sliding mat is composed of a grounding sheet 42 and a sliding sheet 44 bonded together. The grounding sheet 42 is made of an anti-slip material, such as natural rubber, and the sliding sheet 44 is made of a material with low surface friction, such as PU, TPU, TPV, TPE, etc. The surface of the sliding sheet 44 forms the sliding area 26. The two sides of the sliding sheet 44 are separated from the two ends of the grounding sheet 42 by a certain distance to form two anti-slip areas 28.
[0090] Example 9
[0091] The sliding mat structure disclosed in this embodiment is basically the same as the basic structure of embodiments 1-7 above. Identical components use the same symbols. The difference lies in that the sliding mat does not require a sliding plate 44. Instead, a surface-treated lubricant is applied to the surface of the grounding plate 42 to form the sliding area 26. The surfaces of the grounding plate 42 without lubricant form anti-slip areas 28. Multiple layers of lubricant can be applied to the sliding area 26 to adjust the sliding effect.
[0092] Furthermore, an elastic sheet 46 with an anti-slip material can also be attached to the surface of the grounding sheet 42. A lubricant is then applied to the surface of the elastic sheet 46 to form the sliding area 26. The two sides of the elastic sheet 46 without lubricant form the anti-slip area 28, as shown in the previous example. Figure 15 As shown.
[0093] Furthermore, the aforementioned method of forming the sliding area 26 and the anti-slip area 28 by applying lubricant to the surface of the elastic sheet 46 can also be replaced by the aforementioned sliding sheet 44 and elastic sheet 52 (connected to both sides of the sliding sheet 44). The elastic sheet 52 is the same as the anti-slip elastic sheet 46 with a smaller area, so the grounding sheet 42 is not needed.
[0094] like Figure 16 The sliding pad 60 shown can have different colors for the slider 44 and the elastic sheet 52, so that the connecting side of the slider 44 and the elastic sheet 52 forms warning lines 54 and 56 in a mixed color state, so that the user can pay attention to the boundary of the slide.
[0095] In addition, tensile plates (not shown in the figure) may also be provided inside the sliding pad between each of the aforementioned ground-attaching plates 42 and sliding plates 44. The tensile plates are made of non-stretchable materials such as non-woven fabric, thereby increasing the stability and tensile strength of the sliding pad.
[0096] Further points need to be pointed out, such as Figure 17 As shown, the anti-slip areas 28 of the aforementioned sliding pads 10, 40, 50, and 60 can each contain multiple anti-slip areas 62, 64, and 66 with different anti-slip effects. The anti-slip areas 62, 64, and 66 are arranged opposite each other on both sides of the sliding area 26. The anti-slip effect increases as the distance from the sliding area 26 increases. For example, the anti-slip effect of anti-slip area 62 is 20%, the anti-slip effect of anti-slip area 64 is 50%, and the anti-slip effect of anti-slip area 66 is 100%. When the user's foot steps on the anti-slip area 28, it can be gradually braked by the anti-slip areas 62, 64, and 66, achieving a braking effect similar to that of a vehicle's ABS braking system.
[0097] In addition, a coating (not shown in the figure) can be applied to the surface of each sliding pad 40, 50, and 60. The coating is made of a material with low surface friction or non-slip properties. Materials with low surface friction include PP and PU, while non-slip materials include natural rubber. When the coating is made of a material with low surface friction, each non-slip area 28 is coated with an anti-slip agent. When the coating is made of a non-slip material, the sliding area 26 is coated with a lubricant.
[0098] Furthermore, the surface of the gliding area 26 can also be adorned with multiple textures to generate heat through friction during foot gliding, producing a massage and warming effect on the feet, thus turning the disadvantage of reduced gliding performance caused by adding multiple textures into another advantage. Of course, materials that generate far-infrared rays, such as far-infrared powder, nano-carbon fiber powder, and / or graphene powder, can also be added to the material of the gliding area 26 to promote the release of far-infrared rays during the friction-generated heat process of foot gliding, producing a foot health benefit.
[0099] In addition, temperature-sensitive pigments can also be added to the material of the gliding area 26 so that the gliding area 26 changes color due to temperature changes caused by friction during foot gliding, creating a visual entertainment effect and allowing confirmation of the degree of foot warmth.
[0100] Furthermore, the method of applying lubricant to each of the aforementioned sliding pads 50 to form the sliding area 26 can also be replaced by oil wax (such as silicone oil), and the un-adsorbed grease portions on both sides of the sliding area 26 form the anti-slip area 28. Based on this design, when gliding barefoot on the surface of the sliding area 26, an effect similar to oil pressure on the soles of the feet can be produced.
[0101] It must be mentioned that although the aforementioned sliding mats are mainly for a single user to slide on their surface, when the area of each sliding mat is increased (still in the form of anti-slip areas only at both ends), or when the area is increased and anti-slip areas are provided on all four sides, several children can slide and play on them, such as figure skating and long-distance skating. Similarly, each sliding mat can be laid on an inclined ground or object to make it three-dimensional, and children can use it to perform sports such as indoor slides, grass skiing, and skiing.
[0102] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of the present invention. It should be understood that the above descriptions are merely specific embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A glide pad characterized in that, The sliding mat includes: A sliding area for users to perform sliding movements on the sliding mat; And several anti-slip areas, made of anti-slip material, are flat and are arranged opposite each other on one side of the periphery or at least one side of the sliding area, so that users can step on them after sliding in the sliding area to prevent slipping; The flooring sheet is made of a non-slip material; The sliding plate is made of a material with low surface friction and is attached to the surface and both sides of the grounding plate, separated from the two ends of the grounding plate. The sliding area is formed on the surface of the sliding plate, and the distance between the two sides of the sliding plate and the two ends of the grounding plate forms two anti-slip areas.
2. The glide pad of claim 1, wherein, The sliding mat also includes: An elastic sheet is attached to the surface of the grounding sheet. The elastic sheet is made of an anti-slip material and is connected to both sides of the sliding sheet.
3. The glide pad of claim 2, wherein, The slider and the elastic sheet are each a different color, so that a warning line with mixed colors is formed on the connecting side of the slider and the elastic sheet.
4. The glide pad of claim 3, wherein, The sliding pad also includes a tensile sheet, which is made of a non-stretchable material. The sliding pad is disposed inside the grounding sheet and the sliding sheet; or disposed inside the sliding sheet and each of the elastic sheets.
5. The glide pad of any one of claims 1-4, wherein, Each of the aforementioned anti-slip zones comprises multiple anti-slip areas with different anti-slip effects. Each of the aforementioned anti-slip areas is arranged opposite to each other on both sides of the sliding zone, and the anti-slip effect increases as one moves away from the sliding zone.
6. The glide pad of any one of claims 1-4, wherein, The sliding mat also includes a cover film, which is applied to the surface of the sliding mat. The cover film is made of a material with low surface friction or non-slip properties. When the cover film is made of a material with low surface friction, each non-slip area is coated with an anti-slip agent. When the cover film is made of a non-slip material, the sliding areas are coated with a lubricant.
7. The glide pad of any one of claims 1-4, wherein, The surface of the gliding area is further provided with several textures, which generate friction and heat during the gliding process.
8. The sliding mat as described in any one of claims 1-4, characterized in that, The material in the gliding area contains a number of far-infrared powders, which promote the release of far-infrared rays during the frictional heating process of the foot gliding.
9. The sliding mat as described in any one of claims 1-4, characterized in that, The material of the gliding area contains several temperature-sensitive pigments, which are used to make the gliding area change color with temperature changes during the gliding process of the foot.