Manufacturing method of slide mat and slide mat

The sliding mat addresses the challenge of bulky fitness equipment by offering a compact, easily storable design with adjustable sliding and anti-slip features for enhanced user experience.

JP2026501866APending Publication Date: 2026-01-16SIMPLE GREEN CO LTD
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Patent Information

Application Number
JP2025541827
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-01-17
Publication Date
2026-01-16

AI Technical Summary

Technical Problem

Existing fitness equipment is bulky, difficult to disassemble and store, and lacks versatility for home use, while smaller equipment often provides limited training effects.

Method used

A method for manufacturing a sliding mat with a woven fabric sheet featuring a slide area and anti-slip areas, using liquid elastomer application and shaping processes to create a mat that can be rolled up for storage, incorporating anti-slip materials and varying materials for enhanced user experience.

Benefits of technology

The sliding mat offers a convenient and effective exercise solution that can be easily stored, providing a versatile training experience with adjustable sliding and anti-slip features.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a method for manufacturing a slide mat and a slide mat. [Solution] This invention relates to the field of exercise equipment, and in particular to a method for manufacturing a sliding mat and a sliding mat. Through structural optimization design, various design elements and different combination methods for the sliding mat are proposed. The surface of the manufactured sliding mat has a planar structure with at least one sliding area and anti-slip areas on at least both sides, allowing users to perform sliding exercises and prevent slipping in a way that is different from known sliding training equipment, and is easier to use. The sliding mat manufactured by the method of this invention can be rolled up for storage, which is more convenient than conventional sliding board training equipment and has high practical value.
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Description

[Technical Field]

[0001] The present invention relates to the field of exercise equipment, and in particular to a method for manufacturing a sliding mat and a sliding mat. [Background technology]

[0002] There are numerous types of fitness equipment currently known, including weight training machines, treadmills, steppers, sliding machines, rowing machines, and fitness machines, which allow users to perform specific or diverse training and strengthening exercises based on their muscle strength and lung capacity. Professional fitness equipment is generally relatively large in size, has a complex structure, is difficult to disassemble and assemble, and is difficult to store even when disassembled, making it unsuitable for homes with limited indoor space. On the other hand, small fitness equipment often has limited training effects, but takes up little space and is easy to store after use, allowing consumers to purchase and use appropriate fitness equipment according to their needs.

[0003] The sliding training device disclosed in Patent Document 1 is a relatively small fitness device in which a user's feet are fixed to two slide boards on a mat and can slide left and right, with stoppers provided on both ends of the mat to limit the range of movement of the slide boards and control the end point of the user's slide. Although the device disclosed in Patent Document 1 is easy to use, it requires the user's feet to be fixed to the slide boards before sliding on the mat, and the stoppers have a certain volume, so it takes up some space when stored after use. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Taiwan Utility Model Registration No. M427165 Summary of the Invention [Problem to be solved by the invention]

[0005] Therefore, in consideration of the above technical problems, it was necessary to provide a method for manufacturing a sliding mat that allows users to perform sliding exercises and prevent slipping in a way that is different from the way known sliding training devices are used, makes the method of use easier, and allows the flat sliding mat to be rolled up for storage, making the storage method more convenient, as well as a sliding mat manufactured by this method. [Means for solving the problem]

[0006] The present invention discloses a method for manufacturing a slide mat, which includes at least the following steps: Preparing a woven fabric sheet: A step of preparing a woven fabric sheet including a sheet body having a slide area consisting of a plurality of piles on one side; Applying liquid elastomer: Applying liquid elastomer to the peripheral edge of the sheet body of the fabric sheet and to the joints between the sheet body and each pile. Shaping: curing and shaping the liquid elastomer by heating and / or vulcanization; and Providing anti-slip areas: providing anti-slip materials on at least two opposite sides of the fabric sheet to form anti-slip areas, thereby obtaining the sliding mat.

[0007] The present invention discloses another method for manufacturing a slide mat, which includes at least the following steps. Preparing a woven fabric sheet: A step of preparing a woven fabric sheet including a sheet body having a slide area consisting of a plurality of piles on one side; Applying liquid elastomer: Applying liquid elastomer to the peripheral edge of the sheet body of the fabric sheet and to the joints between the sheet body and each pile. Anti-slip area provision: providing anti-slip materials on at least two opposing sides of the fabric sheet to form anti-slip areas; and Shaping: A step of curing and shaping the liquid elastomer by heating and / or vulcanization to obtain the slide mat.

[0008] In one embodiment, in the liquid elastomer disposing step, the fabric sheet is immersed in the liquid elastomer with the pile facing upward, so that the sheet body and the joints between the sheet body and each pile are sufficiently permeated with the liquid elastomer.

[0009] In one embodiment, in the liquid elastomer disposing step, the fabric sheet is immersed in the liquid elastomer with the pile facing downward, and the liquid elastomer is applied to the sheet body and the peripheral edge side of the sheet body so that it penetrates into the joint between the sheet body and the pile.

[0010] In one embodiment, between the liquid elastomer disposing step and the shaping step, an unshaped anti-slip sheet is attached to the surface of the sheet body opposite the pile, and after the shaping step, the method further includes an anti-slip sheet attaching step in which the liquid elastomer and the anti-slip sheet are shaped and attached.

[0011] In one embodiment, the liquid elastomer disposing process and the anti-slip area providing process are integrated into one process, which first applies the liquid elastomer to a shaped anti-slip sheet, then attaches the woven fabric sheet to the anti-slip sheet with the pile facing upward, the area of ​​the anti-slip sheet is larger than that of the woven fabric sheet, and the portion of the anti-slip sheet that protrudes from the woven fabric sheet becomes the anti-slip area, and after the shaping process, a pressurizing process is further included in which pressure is applied to the heated anti-slip sheet, liquid elastomer, and woven fabric sheet to compress them relatively, so that the anti-slip sheet, woven fabric sheet, and elastomer are adhered to each other.

[0012] The present invention discloses a slide mat manufactured by the above-mentioned slide mat manufacturing method, a slide area for a user to perform a sliding exercise on the slide mat; a plurality of anti-slip areas made of an anti-slip material, having a flat shape, and provided facing at least one of the peripheral side or at least both sides of the sliding area, for a user to step on after sliding in the sliding area to prevent slipping; The slide mat.

[0013] In one embodiment, the slide mat comprises: a woven fabric sheet having a plurality of piles on one side and a sheet-like elastomer bonded to the other side, each pile forming a slide area; The device further includes elastic sheets made of a non-slip material and bonded to both sides of the fabric sheet to form non-slip areas.

[0014] In one embodiment, the slide mat comprises: A floor sheet made of non-slip material, The floor mat further comprises a sliding sheet made of a material with a low coefficient of friction, attached to the surface and both sides of the floor sheet, spaced apart from both ends of the floor sheet, the sliding area formed on the surface, and the distance between the both sides and both ends of the floor sheet forming two anti-slip areas.

[0015] In one embodiment, the slide mat comprises: The floor sheet is made of a non-slip material, and the slide area is formed by applying a lubricant to a predetermined surface of the floor sheet, and the surfaces on both sides of the floor sheet where no lubricant is applied become the non-slip areas.

[0016] In one embodiment, the slide mat comprises: A floor sheet made of non-slip material, The device further comprises an elastic sheet that is attached to the surface of the floor covering sheet, the sliding area being formed by applying a lubricant to a predetermined surface of the elastic sheet, and the surfaces on both sides of the elastic sheet that are not coated with lubricant becoming anti-slip areas.

[0017] In one embodiment, the slide mat comprises: The device further comprises a sliding sheet made of a material with a low coefficient of friction, and two elastic sheets made of a non-slip material and bonded to both sides of the sliding sheet.

[0018] In one embodiment, the sliding sheet and the elastic sheet have different colors, so that the junction between the sliding sheet and the elastic sheet forms a mixed-color warning line.

[0019] In one embodiment, the sliding mat further includes a tension sheet made of a non-ductile material, and the sliding mat is provided inside the flooring sheet and the sliding sheet, Alternatively, the sliding sheet and each of the elastic sheets may be provided inside the sliding sheet and each of the elastic sheets.

[0020] In one embodiment, each of the anti-slip areas includes a plurality of anti-slip areas with different anti-slip effects, each of the anti-slip areas being disposed opposite each other on both sides of the sliding area, and the anti-slip effects increasing with increasing distance from the sliding area.

[0021] In one embodiment, the sliding mat further comprises a coating film made of a material with a low coefficient of friction or a non-slip material, the coating film being coated on the surface of the sliding mat. When the coating film is made of a material with a low coefficient of friction, each of the non-slip areas is formed by applying a non-slip agent. When the coating film is made of a non-slip material, the sliding areas are formed by applying a lubricant.

[0022] In one embodiment, the surface of the sliding area is further provided with a plurality of patterns that generate frictional heat during sliding of the foot.

[0023] In one embodiment, a plurality of powdered materials that generate far-infrared rays are added to the material of the sliding area, so that the emission of far-infrared rays is promoted during the process of generating frictional heat when the foot slides.

[0024] In one embodiment, a plurality of thermochromic powders are added into the material of the sliding area, so that the color of the sliding area changes with the change in temperature during foot sliding.

[0025] In one embodiment, the slide mat further comprises a floor sheet made of a non-slip material, and the slide area is formed by the floor sheet absorbing oily wax, and the areas on both sides of the slide area that do not absorb the oily wax become the non-slip areas. [Effects of the Invention]

[0026] By adopting the above technical means, the present invention has the following advantageous effects: The present invention proposes various design elements and different combination methods for the sliding mat through structural optimization design. The surface of the manufactured sliding mat has a planar structure with at least one sliding area and anti-slip areas on at least both sides, allowing users to perform sliding exercises and anti-slip in a way that is different from that of conventional sliding training devices, and is easier to use. The sliding mat can be rolled up for storage, which is more convenient than conventional sliding board training devices and has high practical value. [Brief explanation of the drawings]

[0027] [Figure 1] 1 is a flowchart of a manufacturing method according to a first preferred embodiment of the present invention. [Figure 2] FIG. 2 is a schematic view showing the disposition of a liquid elastomer in the manufacturing method according to the first preferred embodiment of the present invention. [Figure 3] 1 is a schematic view of a slide mat manufactured by the manufacturing method of a first preferred embodiment of the present invention. [Figure 4] FIG. 1 is a schematic diagram illustrating the use of the manufacturing method of the first preferred embodiment of the present invention. [Figure 5] FIG. 2 is a schematic diagram showing a manufacturing method according to a second preferred embodiment of the present invention. [Figure 6]10 is a flowchart of a manufacturing method according to a third preferred embodiment of the present invention. [Figure 7] FIG. 4 is a schematic diagram showing a manufacturing method according to a third preferred embodiment of the present invention. [Figure 8] 10 is a flowchart of a manufacturing method according to a fourth preferred embodiment of the present invention. [Figure 9] FIG. 10 is a schematic diagram showing a manufacturing method according to a fourth preferred embodiment of the present invention. [Figure 10] FIG. 10 is a partial schematic view of a manufacturing method according to a fifth preferred embodiment of the present invention. [Figure 11] FIG. 10 is a partial schematic view of a manufacturing method according to a sixth preferred embodiment of the present invention. [Figure 12] FIG. 10 is a partial schematic view of a manufacturing method according to a seventh preferred embodiment of the present invention. [Figure 13] 1 is a schematic diagram of a slide mat according to another preferred embodiment of the present invention. [Figure 14] FIG. 2 is a schematic diagram of a ride mat according to a further preferred embodiment of the present invention. [Figure 15] 1 is a schematic diagram of a slide mat according to another preferred embodiment of the present invention. [Figure 16] FIG. 2 is a schematic diagram of a ride mat according to a further preferred embodiment of the present invention. [Figure 17] FIG. 17 is a schematic diagram showing the anti-slip area of ​​the sliding mat of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0028] In order to make the contents of the present invention more clearly understood, the present invention will be described in more detail below based on specific embodiments with reference to the drawings. In order to make the objects, technical means and advantages of the present invention more clearly understood, the present invention will be described in more detail below with reference to the accompanying drawings and embodiments. Note that the specific examples described in this specification are used only to interpret the present invention and are not intended to limit the present invention.

[0029] (First embodiment) As shown in FIGS. 1 to 3, this embodiment discloses a method for manufacturing a slide mat, Step 1 of preparing a woven fabric sheet: A woven fabric sheet 12 is prepared. The woven fabric sheet 12 is in the form of a long strip and includes a sheet body 22. The sheet body 22 is a fabric such as a nonwoven fabric or a PP woven fabric sheet, and is not particularly limited. One side of the sheet body 22 is provided with a slide area 26 consisting of a plurality of piles 24, and each pile 24 is protruded from the sheet body 22 by brushing, electrostatic flocking, weaving, or other methods.

[0030] Step 2 (liquid elastomer application): Liquid elastomer 14 is applied to the peripheral edge of the main sheet body 22 of the fabric sheet 12 and to the joints between the main sheet body 22 and each pile 24. Specifically, the liquid elastomer 14 is an elastic material such as liquid SBR, PU, ​​EVA, natural rubber, or hot melt adhesive, and is not particularly limited; it may be an elastic material that becomes liquid after being heated, or an elastic material that becomes liquid at room temperature. First, the fabric sheet 12 is placed in tank 1, and then the fabric sheet 12 is placed in tank 1 with the pile 24 facing upward. The liquid level of the liquid elastomer 14 is controlled so that the main sheet body 22 and the joints between the main sheet body 22 and each pile 24 are immersed in the liquid elastomer 14, and only the bases of each pile 24 are immersed in the liquid elastomer 14.

[0031] Shaping step 3: The textile sheet 12 is subjected to known heat foaming or vulcanization techniques (e.g., a known vulcanization foaming box or oven 2) to cure and shape the liquid elastomer 14, which is vulcanization if the elastomer is PU, or foaming if the elastomer is EVA.

[0032] The final step is to set up the anti-slip areas: by adhering elastic sheets of an elastic anti-slip material (a sheet-like elastic material such as natural rubber) to both ends of the long axis of the fabric sheet 12, anti-slip areas 28 can be formed on both ends of the long axis of the fabric sheet 12, and the elastic sheets become the anti-slip areas 28, thereby obtaining the sliding mat 10.

[0033] Of course, the sliding mat 10 may have anti-slip areas 28 on the periphery of the fabric sheet 12 in addition to the anti-slip areas 28 on both ends of the fabric sheet 12 .

[0034] In addition to the adhesive method described above, the elastic sheets can be joined to the side edges of the fabric sheet 12 by sewing, or by using known fasteners such as multiple fasteners or buttons to join the elastic sheets to the side edges of the fabric sheet 12.

[0035] When the sliding mat 10 of the present invention is laid on a floor, it does not move due to the anti-slip effect of the liquid elastomer 14. The sliding area 26 is provided with protruding pile 24 that moves in response to various forces. The low friction of the sliding area 26 allows users to stand on the sliding mat 10 and slide back and forth or back and forth to exercise. When socks are worn, the friction between the socks and the pile is relatively low, providing a better sliding effect. As shown in FIG. 4, the anti-slip area 28 prevents users from slipping by stepping on it after sliding on the sliding area 26. When not in use, the sliding mat 10 can be rolled up and stored, making the sliding mat 10 disclosed in this embodiment more convenient to use and store than conventional slide board fitness equipment.

[0036] (Second embodiment) This embodiment discloses a second preferred embodiment based on the first embodiment, and the main implementation method is based on the first embodiment. In the liquid elastomer dispensing step, as shown in Figure 5, the fabric sheet 12 is placed on a conveyor with the pile 24 facing downward, and the liquid elastomer 14 is applied to the sheet body 22. The elastomer is disposed on the peripheral side of the sheet body 22 and can penetrate into the joints between the sheet body 22 and each pile 24.

[0037] (Third embodiment) This embodiment discloses a third preferred embodiment based on the first embodiment, and the main implementation method is based on the first embodiment. Differences from the above-mentioned manufacturing method: As shown in Figures 6 and 7, between the liquid elastomer dispensing step and the shaping step, an unshaped anti-slip sheet 30, such as an elastic material such as natural rubber, is attached 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.

[0038] (Fourth embodiment) This embodiment discloses a fourth preferred embodiment based on the first embodiment, and the main implementation method is based on the first embodiment. The difference from the aforementioned manufacturing method is that, as shown in Figures 8 and 9, the liquid elastomer dispensing process and the anti-slip area forming process are integrated into one process. That is, first, the liquid elastomer 14 is applied to the shaped (solid) anti-slip sheet 32. A modifier is added to the elastomer to match the polarity of the contact surface between the anti-slip sheet 32 ​​and the elastomer, so that the solid anti-slip sheet 32 ​​and the liquid elastomer 14 can bond together. Next, the woven sheet 12 is bonded to the anti-slip sheet 32, facing each other, with the pile 24 facing upward. The area of ​​the anti-slip sheet 32 ​​is larger than that of the woven sheet 12, and the portion of the anti-slip sheet 30 that protrudes from the woven sheet 12 becomes the anti-slip area 28. Furthermore, a pressing process is further included after the shaping process. In the pressurizing process, the anti-slip sheet 32, which has been shaped and heated (at a temperature at which the anti-slip sheet 32 ​​and elastomer 14 have not yet been shaped), is attached to the woven fabric sheet 12, and the elastomer is brought to a nearly hardened state.Then, the anti-slip sheet 32, the woven fabric sheet 12, and the elastomer 14 are compressed relatively using a rolling mill 3, so that the anti-slip sheet 32 ​​and the woven fabric sheet 12 are bonded together via the elastomer 14, and then, after a vulcanization shaping process, the anti-slip sheet 32, the woven fabric sheet 12, and the elastomer 14 are adhered together face to face.

[0039] (Fifth embodiment) This embodiment discloses a fifth preferred embodiment based on the fourth embodiment, and the main implementation method is based on the fourth embodiment. The long strip-shaped anti-slip sheet 32 ​​and the woven fabric sheet 12 can also be bonded using the above manufacturing method. The anti-slip sheet 30 and the woven fabric sheet 12 are attached face-to-face and then cut to obtain the sliding mat 10. The specific process is shown in Figure 10.

[0040] (Sixth embodiment) This embodiment discloses a sixth preferred embodiment based on the fourth embodiment, and the main implementation method is based on the fourth embodiment. Similarly, a plurality of release cloths 34 (or release papers) can be attached at intervals on the long piece of fabric sheet 12. After the vulcanization shaping process, when each release cloth 34 is peeled off, the portions of the fabric sheet 12 that were covered with each release cloth 34 become the non-slip regions 28, and by cutting, a sliding mat 10 having the non-slip regions 28 around its periphery can be obtained.

[0041] (Seventh embodiment) This embodiment discloses a seventh preferred embodiment based on the first and second embodiments, and the main implementation method is based on the first or second embodiment. As shown in Figure 12, the anti-slip area installation process can also involve spraying an anti-slip material 4 on the surface of the pile 24 on both opposing sides of the fabric sheet 12 to form anti-slip areas 28. The anti-slip material 4 can be a known anti-slip agent or a material with anti-slip properties, such as silicone, rubber, or plastic.

[0042] Furthermore, the material properties and protruding direction of each pile 24 may also affect the sliding effect of the sliding mat 10, so the sliding effect of the sliding mat 10 can be adjusted by changing the material of each pile 24, applying other materials (such as resin), or designing the protruding direction (vertically upward or tilting different piles 24 left and right by weaving them), and all of these similar techniques for adjusting the sliding effect of the sliding mat 10 fall within the technical scope of the present invention.

[0043] (Eighth embodiment) The structure of the sliding mat disclosed in this embodiment is basically the same as the basic structure of the above-mentioned first to seventh embodiments, and the same components are assigned the same reference numerals. Differences: The sliding mat is composed of a floor sheet 42 and a sliding sheet 44 bonded together, the floor sheet 42 is made of a non-slip material such as natural rubber, the sliding sheet 44 is made of a material with a low friction coefficient, such as PU, TPU, TPV, TPE, etc., the surface of the sliding sheet 44 becomes the sliding area 26, and both sides of the sliding sheet 44 are spaced a certain distance from both ends of the floor sheet 42, thereby forming two non-slip areas 28.

[0044] (Ninth embodiment) The structure of the sliding mat disclosed in this embodiment is basically the same as the basic structure of the above-mentioned first to seventh embodiments, and the same components are assigned the same reference numerals. Difference: The sliding mat does not need to be provided with a sliding sheet 44, and a surface treatment lubricant is applied to the surface of the flooring sheet 42 to form the sliding area 26, and the surfaces on both sides of the flooring sheet 42 where no lubricant is applied become the anti-slip area 28. The lubricant in the sliding area 26 can also be applied in multiple layers to adjust the sliding effect.

[0045] As shown in Figure 15, an elastic sheet 46 having a non-slip material is attached to the surface of the floor sheet 42, and then a lubricant is applied to the surface of the elastic sheet 46 to form a slide area 26, and both sides of the elastic sheet 46 on which the lubricant is not applied become non-slip areas 28.

[0046] Furthermore, the above-mentioned method of forming the sliding area 26 and the anti-slip area 28 by applying or not applying a lubricant to the surface of the elastic sheet 46 can also be replaced with the above-mentioned sliding sheet 44 and elastic sheet 52 (attached to both sides of the sliding sheet 44), and the elastic sheet 52 has an anti-slip effect and is smaller in area than the elastic sheet 46, thereby eliminating the need for the floor sheet 42.

[0047] The sliding sheet 44 and the elastic sheet 52 of the sliding mat 60 shown in Figure 16 can be different colors, so that the joint between the sliding sheet 44 and the elastic sheet 52 forms mixed-color warning lines 54, 56, allowing users to pay attention to the sliding boundary.

[0048] In addition, a tensile sheet (not shown) can be provided inside the slide mat between the floor sheets 42 and the sliding sheet 44, and the tensile sheet is made of a non-ductile material such as nonwoven fabric, thereby increasing the stability and tensile strength of the slide mat.

[0049] 17, the anti-slip area 28 of each of the sliding mats 10, 40, 50, 60 may further include multiple anti-slip areas 62, 64, 66 with different anti-slip effects. The anti-slip areas 62, 64, 66 are arranged opposite each other on both sides of the sliding area 26, and the anti-slip effect increases with increasing distance from the sliding area 26. For example, the anti-slip effect of the anti-slip area 62 is 20%, the anti-slip effect of the anti-slip area 64 is 50%, and the anti-slip effect of the anti-slip area 66 is 100%. When a user's foot steps on the anti-slip area 28, each of the anti-slip areas 62, 64, 66 is gradually braked, providing a braking effect similar to that of a car's ABS braking system.

[0050] In addition, the surface of each sliding mat 40, 50, 60 may be provided with a coating film (not shown) made of a material with a low friction coefficient or a non-slip material, where the material with a low friction coefficient is, for example, PP, PU, ​​etc., and the non-slip material is, for example, natural rubber, etc. When the coating film is made of a material with a low friction coefficient, each non-slip area 28 is formed by applying a non-slip agent, and when the coating film is made of a non-slip material, the sliding area 26 is formed by applying a lubricant.

[0051] Furthermore, multiple patterns can be added to the surface of sliding area 26 to generate frictional heat during the sliding process of the foot, massaging and warming the foot and creating a health-promoting effect, thereby turning the disadvantage of reduced sliding effect due to the addition of multiple patterns into an advantage.Of course, powder of a material capable of generating far-infrared rays, such as far-infrared rays, nano-carbon fiber powder and / or graphene powder, can also be added to the material of sliding area 26 to promote the emission of far-infrared rays during the frictional heat generation process of the sliding of the foot, thereby creating a health-promoting effect for the foot.

[0052] Furthermore, by adding thermochromic powder to the material of the sliding area 26, the color of the sliding area 26 can be changed by utilizing the temperature change caused by frictional heat during the sliding process of the foot, creating a visual entertainment effect and allowing the user to check how warm the soles of their feet are.

[0053] Furthermore, in the method of forming the sliding area 26 by applying a lubricant to each sliding mat 50 described above, an oily wax (such as silicone oil) can be used instead of the lubricant, and the areas on both sides of the sliding area 26 that are not adsorbed by the oily wax become the non-slip areas 28. With this design, sliding barefoot on the surface of the sliding area 26 has the effect of a hydraulic massage on the soles of the feet.

[0054] It should be noted that while each of the slide mats mentioned above is primarily designed for one user to slide on its surface, by enlarging the surface of each slide mat (even if it only has non-slip areas on both ends), or by enlarging the surface and adding non-slip areas around the perimeter, multiple children can slide and play on the mat, allowing them to enjoy sports such as figure skating or running races.Similarly, by placing each slide mat on an inclined surface or object, it becomes three-dimensional, allowing children to enjoy sports such as indoor slides, grass skiing, and skiing.

[0055] The above specific embodiments are intended to explain in detail the objectives, technical means, and advantageous effects of the present invention. The above descriptions are merely specific embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention are included in the protection scope of the present invention.

Claims

1. A method for manufacturing a slide mat, Preparing a fabric sheet: A step of preparing a fabric sheet including a sheet body having a sliding region made of a plurality of piles on one side; disposing a liquid elastomer: disposing the liquid elastomer on the peripheral edge of the sheet body of the fabric sheet and at the joints between the sheet body and each of the piles; Shaping: curing and shaping the liquid elastomer by heating and / or vulcanization; and providing anti-slip areas: providing anti-slip materials on at least two opposite sides of the fabric sheet to form the anti-slip areas, thereby obtaining the sliding mat. A method for manufacturing a slide mat, comprising:

2. A method for manufacturing a slide mat, Preparing a fabric sheet: A step of preparing a fabric sheet including a sheet body having a sliding region made of a plurality of piles on one side; disposing a liquid elastomer: disposing the liquid elastomer on the peripheral edge of the sheet body of the fabric sheet and at the joints between the sheet body and each of the piles; Anti-slip area provision: providing anti-slip materials on at least two opposite sides of the fabric sheet to form the anti-slip areas; and shaping: curing and shaping the liquid elastomer by heating and / or vulcanization to obtain the slide mat. A method for manufacturing a slide mat, comprising:

3. In the liquid elastomer disposing step, the fabric sheet is immersed in the liquid elastomer with the pile facing upward, so that the sheet body and the joints between the sheet body and each pile are sufficiently permeated with the liquid elastomer. A method for producing the slide mat according to claim 1 or 2.

4. In the liquid elastomer application step, the fabric sheet is immersed in the liquid elastomer with the pile facing downward, and the liquid elastomer is applied to the sheet body and the peripheral edge side of the sheet body so as to penetrate into the joint between the sheet body and the pile. A method for producing the slide mat according to claim 1 or 2.

5. Between the liquid elastomer disposing step and the shaping step, an unshaped anti-slip sheet is attached to the surface of the sheet body opposite to the pile, and after the shaping step, the method further includes an anti-slip sheet attaching step of shaping and attaching the liquid elastomer and the anti-slip sheet. A method for producing the slide mat according to claim 3.

6. The liquid elastomer disposing step and the anti-slip area providing step are integrated into one step, and the liquid elastomer is first applied to the shaped anti-slip sheet, and then the woven fabric sheet is attached to the anti-slip sheet with the pile facing upward. The area of ​​the anti-slip sheet is larger than that of the woven fabric sheet, and the portion of the anti-slip sheet that protrudes from the woven fabric sheet becomes the anti-slip area. After the shaping step, the heated anti-slip sheet, the liquid elastomer, and the woven fabric sheet are pressurized and compressed relative to each other, thereby adhering the anti-slip sheet, the woven fabric sheet, and the elastomer to each other. A method for producing the slide mat according to claim 2.

7. A slide mat manufactured by the method for manufacturing a slide mat according to any one of claims 1 to 6, a slide area for a user to perform a sliding exercise on the slide mat; and a plurality of anti-slip areas made of an anti-slip material, planar, and provided facing at least one of the peripheral edge or both sides of the slide area, for a user to step on after sliding on the slide area to prevent slipping. A slide mat characterized by:

8. a woven fabric sheet having a plurality of piles on one side and a sheet-like elastomer bonded to the other side, each pile forming a slide area; and elastic sheets made of a non-slip material and bonded to both sides of the fabric sheet to form each of the non-slip areas. The slide mat according to claim 7.

9. A floor sheet made of non-slip material, The flooring sheet further includes a sliding sheet made of a material with a low coefficient of friction, attached to the surface and both sides of the flooring sheet, spaced apart from both ends of the flooring sheet, the sliding area formed on the surface, and the distance between the both sides and the both ends of the flooring sheet forms two anti-slip areas. The slide mat according to claim 7.

10. The floor sheet is made of a non-slip material, and the sliding area is formed by applying a lubricant to a predetermined surface of the floor sheet, and the surfaces on both sides of the floor sheet that are not coated with the lubricant become the non-slip areas. The slide mat according to claim 7.

11. A floor sheet made of non-slip material, The floor covering sheet further includes an elastic sheet that is attached to the surface of the floor covering sheet, the sliding area being formed by applying a lubricant to a predetermined surface of the elastic sheet, and the surfaces on both sides of the elastic sheet that are not coated with the lubricant becoming anti-slip areas. The slide mat according to claim 7.

12. The device further comprises a sliding sheet made of a material with a low coefficient of friction, and two elastic sheets made of an anti-slip material and bonded to both sides of the sliding sheet. The slide mat according to claim 7.

13. The sliding sheet and the elastic sheet have different colors, so that the joint between the sliding sheet and the elastic sheet forms a mixed-color warning line. The slide mat according to claim 12.

14. Further comprising a tensile sheet made of a non-ductile material; The floor covering sheet and the sliding sheet according to claim 9 are provided inside the floor covering sheet and the sliding sheet, Alternatively, the sliding sheet and the elastic sheet according to claim 12 are provided inside each other. The slide mat according to claim 9 or 12.

15. Each of the anti-slip areas includes a plurality of anti-slip areas with different anti-slip effects, the anti-slip areas being arranged opposite each other on both sides of the slide area, and the anti-slip effects increasing with increasing distance from the slide area.

14. The slide mat according to claim 7, 8, 9, 10, 11, 12, or 13.

16. The sliding mat further includes a coating film made of a material with a low coefficient of friction or a non-slip material, the coating film being coated on the surface of the sliding mat. When the coating film is made of a material with a low coefficient of friction, each of the non-slip areas is formed by applying a non-slip agent, and when the coating film is made of a non-slip material, the sliding areas are formed by applying a lubricant.

14. The slide mat according to claim 7, 9, 10, 11, 12 or 13.

17. The surface of the sliding area is further provided with a plurality of patterns that generate frictional heat when the foot slides.

14. The slide mat according to claim 7, 9, 10, 11, 12 or 13.

18. A plurality of powder materials that generate far-infrared rays are added to the material of the sliding area, which promotes the emission of far-infrared rays during the frictional heat generation process when the foot slides.

14. The slide mat according to claim 7, 9, 10, 11, 12 or 13.

19. A plurality of thermochromic powders are added to the material of the sliding area, so that the color of the sliding area changes with the change in temperature during foot sliding.

14. The slide mat according to claim 7, 9, 10, 11, 12 or 13.

20. The floor sheet is made of a non-slip material, and the sliding area is formed by the floor sheet absorbing oily wax, and the areas on both sides of the sliding area where the oily wax is not absorbed are the non-slip areas. The slide mat according to claim 7.

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