Insole combination and exciton thereof

By designing plantar reflexology areas and exciton structures on the insoles and combining them with foot massage principles, the problem that existing insoles cannot promote blood circulation and relieve pressure is solved, comfort and durability are improved, and environmental protection requirements are met.

CN120678282APending Publication Date: 2025-09-23TAOBODY LIFETIME HEALTHINESS INC
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Patent Information

Application Number
CN202410328105.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-03-21
Publication Date
2025-09-23

AI Technical Summary

Technical Problem

Existing insoles fail to effectively integrate the principles of foot massage in daily use and are unable to promote blood circulation, relieve pressure and eliminate fatigue.

Method used

An insole combination is designed, comprising an insole body and excitons. The insole body has multiple sole reflex zones and is provided with holes. The excitons penetrate the holes to stimulate the reflex zones. The excitons have a specific structure to be retained between the insole and the shoe. The material is thermoplastic elastomer (TPE) to meet various performance requirements.

Benefits of technology

By stimulating the reflex areas of the soles of the feet through excitons, blood circulation is promoted, stress and fatigue are relieved, comfort and long-term durability are provided, and environmental protection requirements are met.

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Abstract

An insole combination comprises an insole body and excitons, the insole body is provided with a plurality of plantar reflecting areas, each area is provided with at least one hole, and each exciton is provided with a first end and a second end. Each hole has the same aperture D, the length of each region in any specific direction is L, and the number N of the holes along the length L is a positive integer and accords with (L-2D) / Dlt; = Nlt; and = (L-D) / D. The first end penetrates out of the hole to stimulate a pelma reflex area, and the second end is retained between the insole body and an upper sole surface of a shoe accommodating the insole body.
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Description

Technical field

[0001] The present invention relates to insoles, and more particularly to excitons suitable for insoles. [Background Technology]

[0002] In addition to relieving discomfort, foot massage can also promote blood circulation, relieve stress and reduce fatigue. The present invention is a new attempt to virtually combine the use of foot massage with the daily use of insoles. [Summary of the invention]

[0003] Viewed from a first angle, the present invention aims to provide an insole suitable for all existing footwear.

[0004] From another perspective, the present invention aims to provide a shoe insole suitable for utilizing the principle of foot therapy.

[0005] From another perspective, the present invention aims to provide an exciton for insoles.

[0006] From another perspective, the present invention aims to provide a shoe insole-related product to help people's physical, mental or spiritual health.

[0007] According to a first embodiment of the present invention, an insole assembly comprises an insole body having a plurality of plantar reflex zones, each of the zones having at least one hole, wherein each of the holes has the same aperture D, and a length of each of the zones in any particular direction is L, wherein the number N of holes along the length L is a positive integer and satisfies (L-2D) / D<=N<=(LD) / D; and an exciton having a first end that passes through the hole to stimulate the plantar reflex zone, and a second end that is disposed relative to the first end and is retained between the insole body and the upper sole surface of a shoe that accommodates the insole body.

[0008] In the previous embodiment, each hole may have an upper diameter UD and a lower diameter LD, the upper and lower diameters UD and LD are unequal, (L-2UD) / UD<=N<=(L-UD) / UD, and (L-2LD) / LD<=N<=(L-LD) / LD.

[0009] Of course, the exciton has an upper portion and a lower portion, the upper and lower portions have different diameters, and the diameter of the lower portion is larger than the diameter of the upper portion.

[0010] Of course, the diameter of the lower portion gradually increases downwards. Assuming the height of the upper portion is H1 and the height of the lower portion is H2, the following formula 0.8H2<=H1<=5H2 is usually satisfied.

[0011] Of course, due to uneven soles, the height of the insoles may vary slightly. In other words, the thickness of the insole itself is typically between 3mm and 8mm, but for insoles used around the arch of the foot, the height of H1 ranges from 6mm to 18mm. Of course, for specific purposes, the thickness of the insole itself may be increased to more than 20mm.

[0012] In a second embodiment of the present invention, an exciton is used in conjunction with an insole body, wherein the insole body has multiple plantar reflex zones, each of the zones has at least one hole, and the exciton has an upper portion, the upper portion has an upper height, an upper diameter and a first end, wherein the first end passes through the hole to stimulate one of the multiple plantar reflex zones; and a lower portion has a lower height, a lower diameter and a second end, wherein the first end and the second end are relatively arranged at two opposite ends of the exciton, the lower diameter is larger than the upper diameter, the first end and the second end are integrally formed, and the second end is retained between the insole body and the upper sole surface of the shoe that accommodates the insole body.

[0013] In the previous embodiment, the second end has a bottom surface, the bottom surface has a thickness T, and in the direction of the thickness T, the bottom surface has a rounded cross-sectional protrusion near the outer side, and / or the diameter or maximum width of the rounded cross-sectional protrusion is T / 2.

[0014] Of course, the first end has a top surface, the top surface has a rounded periphery, and / or the upper diameter is between 2 mm and 8 mm.

[0015] According to a third embodiment of the present invention, an exciton is used in conjunction with an insole body, wherein the insole body has multiple plantar reflex zones, each of the zones has at least a hole, and the exciton includes an upper portion having an upper height, an upper diameter and a first end, wherein the first end passes through the hole to stimulate one of the multiple plantar reflex zones; and a lower portion having a lower height, a lower diameter and a second end, wherein the first end and the second end are relatively arranged at two opposite ends of the exciton, the lower diameter is larger than the upper diameter, the second end is retained between the insole body and the upper sole surface of the shoe that accommodates the insole body, the lower portion has multiple vertically or longitudinally extending cracks or spaces, and multiple vertically or longitudinally extending ribs, and each of the vertically or longitudinally extending cracks or spaces has a maximum bottom width W1, and each of the vertically or longitudinally extending ribs has a maximum bottom width W2.

[0016] Of course, in the previous embodiment, the number of the vertical ribs is 2 or more.

[0017] Of course, the material of the exciton is TPE or metal, and W1 is larger or smaller than W2.

Brief Description of the Drawings

[0018] The embodiments of the present invention summarized above will be clarified and understood with reference to the following drawings and embodiments. Figure 1A The first embodiment of the insole body with holes for excitons of the present invention is shown. Figure 1B A second embodiment of the bottom view of the insole body with holes for excitons according to the present invention is shown. Figure 1C A third embodiment of the insole body of the present invention has exciton holes provided corresponding to the sole reflex area. Figure 2 The first embodiment of the exciton of the present invention. Figure 3 The second embodiment of the exciton of the present invention. Figure 4 The third embodiment of the exciton of the present invention. Figure 4A A partially enlarged view of the third embodiment of the exciton of the present invention. Figure 5 A fourth embodiment of the exciton of the present invention. Figure 6 A fifth embodiment of the exciton of the present invention. [Specific implementation method]

[0019] See also Figure 1A , which has shown a plurality of holes SH for the excitons of the present invention. Figure 2 , which illustrates the basic shape of the exciton 1 of the present application, including an upper portion 2 and a lower portion 3, wherein the lower portion 3 generally gradually widens downwards.

[0020] With the objectives of this application in mind, we will utilize the following research methods within the aforementioned basic structure to explore these objectives and develop the necessary detailed structures to achieve this goal. Specifically, insoles have long been available, and their materials, such as polyurethane (PU), require no further discussion. However, as the core element of this application, Exciton 1 warrants further exploration and discussion.

[0021] In other words, in view of the foregoing, the exciton 1 of this application must meet the following requirements: 1. It has good elasticity and can return to its original shape after being stressed, making it suitable for applications that require repeated deformation; 2. It has excellent wear resistance and can maintain its appearance and performance for a long time, reducing damage caused by wear; 3. The material is relatively light and does not unnecessarily increase the weight of the overall structure; 4. It has excellent tear resistance and can withstand stretching and tearing forces, so its service life is excellent; 5. It is plastic and easy to form and process, so it can produce products of various shapes and designs, and can save energy and costs in the process of injection molding; 6. It is environmentally friendly and recyclable, which helps reduce waste generation and meets environmental protection requirements; 7. Good sealing performance, and can provide effective sealing in applications requiring waterproof or dustproof; 8. It has good tolerance to various weather conditions and is not easily deteriorated by temperature changes or exposure.

[0022] Thermoplastic elastomers (TPEs) offer a wide range of hardness and are easily modified, making them readily suitable for meeting the aforementioned requirements. Based on this, the development process is further disclosed below.

[0023] First understand that there are several sizes of insoles as shown in the following table:

[0024] To thoroughly understand the optimal method for creating the SH holes, whether creating the SH holes would damage the strength of the insole body SB, and whether the SH holes in insoles of different sizes could be created using the same method, simply scaling them proportionally, we selected Taiwan sizes 73, 77, 81, and 85 for in-depth research. The following summarizes the key points and results: 1. Although it is assumed that the plantar reflexology area should theoretically scale correctly regardless of the insole size, the number of holes SH that can be created in a plantar reflexology area of ​​a specific shape cannot be scaled proportionally. This is because the number of holes must be a positive integer and it is not advisable to create holes outside the area. 2. Therefore, one or more rules must be found, which must satisfy (1) the hole SH must be as close as possible to the centroid of the specific plantar reflex zone, because the centroid is theoretically the point of the strongest reflection of the specific plantar reflex zone, (2) although the hole SH should be as close as possible to the centroid, this consideration should not be sacrificed to maximize the number of holes SH, because the effect of multi-point stimulation is greater than that of single-point stimulation, and (3) each plantar reflex zone has a specific shape, so the consideration of the first two points should not be limited to a single direction or line segment, but should be considered comprehensively from different directions.

[0025] To understand how to choose the diameter of the upper portion 2 (the diameters used in the experiment were 2mm, 2.5mm, 3mm, and 4mm), the following test was conducted with the upper portion 2 protruding 2mm from the surface of the insole:

[0026] Based on the above experiments and discussions, the optimal minimum diameter of the upper portion 2 is approximately 2.5mm. A smaller diameter is desirable to facilitate the placement of more holes SH or exciters 1 within the same reflexology area, resulting in a better stimulation effect. Of course, for those with higher sensitivity or lower pain tolerance, larger reflexology areas may require larger diameter exciters.

[0027] A closer look at the sole of the foot reveals that it is not a flat surface, but rather an uneven surface. However, the sole of the foot bears the weight of the body, so when landing, the sole of the foot bears the weight, causing it to become nearly flat under the force. However, there is still a region beyond the surface: the arch of the foot, where the reflex zones for the stomach, pancreas, and duodenum reside. We collected data from five people in each of the following height ranges, and the distance from their arch to the insole is as follows: Height range (cm) Distance from arch to insole (mm) 130-139 5.28(4.98-5.49) 140-149 6.09(5.28-6.31) 150-159 7.18(5.91-8.51) 160-169 8.35(6.83-8.98) 170-180 10.73(8.95-12.51)

[0028] In the collection and discussion of the data in the table above, it was found that the creator is extremely mysterious. It is difficult to summarize the height that needs to be increased for the arch of the foot by itself. We can only admit that different degrees of heightened arches must be prepared for consumers to choose from.

[0029] Based on the above basic discussion, the following discloses the specific embodiments of the present invention. Figure 1C , an insole assembly SA, comprising an insole body SB, having a plurality of plantar reflex zones RZ, each of the zones RZ having at least one hole SH, wherein each of the holes SH has the same aperture D, and the length of each of the zones (taking the left lung zone LLZ as an example) in any specific direction is L (the lengths in the three specific directions are L1, L2 and L3 respectively), wherein the number N of holes along the length L is a positive integer and satisfies (L-2D) / D<=N<=(LD) / D; and an exciter 1, having an upper part or a first end 2, passing through the hole to stimulate the plantar reflex zone RZ, and a lower part or a second end 3, arranged relative to the upper part or the first end 2, and retained between the insole body SB and the upper sole surface of a shoe (not shown, any existing) that accommodates the insole body SB.

[0030] See also Figure 1B As can be seen from the bottom view, each hole SH can have an upper diameter UD and a lower diameter LD. The upper diameter UD is preferably smaller than the lower diameter LD, so that the force of the foot can retain the exciton 1 below the insole body SB. Based on the aforementioned design principles, considering the relationship between the length L of the specific reflective zone RZ in a specific direction, the upper diameter UD, and the lower diameter LD, the following two relationships are found: (L-2UD) / UD <= N <= (L-UD) / UD, and (L-2LD) / LD <= N <= (L-LD) / LD.

[0031] See also Figure 3As mentioned above, the exciton 4 of the present application has an upper portion 5 and a lower portion 6. In order to allow the exciton 4 to automatically remain under the insole body SB due to gravity or the force of stepping on the shoe, the hole SH is opened so that the diameter of the lower portion 6 is larger than the diameter of the upper portion 5.

[0032] Of course, the diameter of the lower portion 6 gradually increases as it goes downward. Furthermore, if the height of the upper portion 5 is H1 and the height of the lower portion 6 is H2, it is found that the relationship between them generally satisfies the following equation: 0.8H2 <= H1 <= 5H2. This is because (A) the upper portion of the hole SH has a fixed diameter to surround the lower portion of the upper portion 5, while the lower portion of the hole SH is used to encircle the lower portion 6; (B) the upper portion 5 must protrude from the upper surface of the insole body SB, for example, by 2mm. Therefore, 2mm plus the length of the upper portion of the hole SH with a fixed diameter, i.e., H1, will be greater than H2; (C) because the arch of the foot must have a higher upper portion, H1 <= 5H2 is generally the case.

[0033] As previously discussed, the height of the insole may vary slightly due to the unevenness of the sole of the foot. In other words, while the thickness of the insole body SB suitable for this application is typically between 3mm and 8mm, for insole used in the arch area, the upper portion 5 should protrude 2mm from the upper surface of the insole body SB, so the height H1 should be between 6mm and 18mm. Furthermore, as previously explained, for specific purposes, such as designing an insole with a wider elastic range, the height of the insole body SB may need to be increased, so the thickness of the insole body SB can be increased to even greater than 20mm.

[0034] Please refer to Figure 1 and Figure 4 According to another embodiment of the present invention, an exciton 200 is used in conjunction with an insole body SB, wherein the insole body SB has multiple plantar reflex zones RZ, each zone RZ has at least one hole SH, and the exciton 200 has an upper portion 210 with an upper height H1, an upper diameter UD and a first end 211, wherein the first end 211 passes through the hole SH to stimulate one of the multiple plantar reflex zones RZ; and a lower portion 220 with a lower height H2, a lower diameter LD and a second end 221, wherein the first end 211 and the second end 221 are relatively arranged at two opposite ends of the exciton 200, the lower diameter LD is larger than the upper diameter UD, the first end 211 and the second end 221 are integrally formed, and the second end 221 is retained between the insole body SB and the upper sole surface of the shoe that accommodates the insole body SB. In addition, the external diameter mentioned here refers to the external apparent diameter. Since the lower part is likely to be hollow, and often as described before and after, it is conical and has cracks, resulting in scattered ribs. Therefore, the so-called external diameter refers to the apparent diameter jointly formed by these ribs.

[0035] Please refer to Figure 4AThe second end 221 has a bottom surface 2210, the bottom surface 2210 has a thickness T, and in the direction of the thickness T, the bottom surface 2210 has a rounded cross-section protrusion BP near the outer side, and the diameter or maximum width of the rounded cross-section protrusion is T / 2.

[0036] In addition, the first end 211 has a top surface US, and the top surface US has a rounded periphery RP. As mentioned above, according to the size of the sole reflex zone RZ, the diameter of the upper portion 210 is between 2 mm and 8 mm.

[0037] See also Figure 3 、 Figure 5 and Figure 6 According to further embodiments of the present invention, an exciton 4 (10, 100) is used in conjunction with an insole body SB, wherein the insole body SB has a plurality of sole reflex zones RZ, each zone RZ having at least one hole SH, and the exciton 4 (10, 100) includes an upper portion 5 (20, 110) having an upper height H1, an upper diameter UD, and a first end 51, wherein the first end 51 passes through the hole SH to stimulate one of the plurality of sole reflex zones RZ; and a lower portion 6 (30, 120) having a lower height H2, a lower diameter LD, and a second end 61, wherein the first end 51 The second end 61 is arranged at two opposite ends of the exciter 4, the lower diameter LD is larger than the upper diameter UD, the second end 61 is retained between the insole body SB and the upper sole surface of the shoe that accommodates the insole body SB, the lower part 6 has a plurality of vertically or longitudinally extending cracks 7 or spaces 40, and a plurality of vertically or longitudinally extending ribs 63 (32, 125), each vertically or longitudinally extending crack 7 or space 40 has a maximum bottom width W1, and each vertically or longitudinally extending rib 63 (32, 125) has a maximum bottom width W2, and W1 can be less than or equal to W2.

[0038] As can be understood, the lower height H2 and maximum bottom width W1 determine the elasticity of the Exciton 4 (10, 100), and thus its comfort and stimulation. The Exciton 4 (10, 100) used in the non-arch area generally satisfies the following equation: 0.8H2 <= H1 <= 2H2.

[0039] Depending on the material selection and / or pressure resistance, the number of vertically or longitudinally extending ribs 63 (32, 125) may be two, four, or more. As previously mentioned, the material of the exciton 4 (10, 100) may be TPE, which is readily available due to its wide variety. Furthermore, if a metal with excellent elasticity is used as the material, it is acceptable for W1 to be greater than W2, as will be readily understood by those skilled in the art.

Explanation of symbols

[0040] The reference symbols of the components involved in this application are as follows: 1: Exciton 2: Upper or first end 3: Lower or second end 4,10,100: Exciton 5,20,110: upper part 6,30,120: Lower part 7: Vertical or longitudinal extension cracks 32,63,125: Vertical or longitudinally extending ribs 40: Space 51: First End 61: Second End 200: Exciton 210: upper part 210 211: First End 220: Lower part 221: Second End 2210: Bottom surface BP: Rounded section protrusion D: aperture H1: Upper height H2: lower height L, L1, L2, L3: Length of the reflection area in a specific direction LD: Lower aperture LLZ: Left Lung Plantar Reflex Zone RP: Circumference of the cutting circle RZ: Foot reflex zone SA: Insole combination SB: Insole body SH: Exciton hole T: thickness UD: upper aperture US: Top surface W1: Maximum bottom width of bottom space or crack W2: Maximum bottom width of the vertical or longitudinally extending rib.

Claims

1. An insole assembly comprising: The insole body comprises: A plurality of reflexology zones on the sole of the foot, each zone having at least one hole, wherein: Each of the holes has the same hole diameter D; and The length of each of the regions in any particular direction is L, wherein the number N of holes along the length L is a positive integer and satisfies the following formula: (L-2D) / D<=N<=(L-D) / D; and Excitons, which have: The first end passes through the hole to stimulate the reflex area of ​​the sole of the foot; and The second end is opposite to the first end and is retained between the insole body and the upper sole surface of the shoe that accommodates the insole body.

2. The insole assembly according to claim 1, wherein: Each of the holes has an upper hole diameter UD and a lower hole diameter LD; The upper and lower apertures UD and LD are not equal; (L-2UD) / UD <= N <= (L-UD) / UD; and (L-2LD) / LD<=N<=(L–LD) / LD.

3. The insole assembly according to claim 1, wherein: The exciton has an upper portion including the first end and a lower portion including the second end; The upper and lower diameters are unequal; and / or The diameter of the lower portion is greater than the diameter of the upper portion.

4. The insole assembly according to claim 3, wherein the diameter of the lower portion gradually increases downward.

5. The insole assembly according to claim 3, wherein: The height of the upper portion is H1; The height of the lower portion is H2; and 0.8H2<=H1<=5H2.

6. The insole assembly according to claim 3, wherein: The thickness of the insole body is between 3mm and 8mm; or For the exciton used in the arch of the foot, the height of H1 is between 6 mm and 18 mm.

7. An exciton for use with an insole body, wherein the insole body has a plurality of sole reflex zones, each zone having at least one hole, and the exciton has: The upper portion has an upper height, an upper diameter, and a first end, wherein the first end passes through the hole to stimulate one of the plurality of plantar reflexology zones; and The lower portion has a lower portion height, a lower portion diameter, and a second end, wherein: The first end and the second end are disposed opposite to each other at two opposite ends of the exciton; The lower diameter is larger than the upper diameter; The first end and the second end are integrally formed; and The second end is retained between the insole body and an upper sole surface of a shoe that accommodates the insole body.

8. The exciton according to claim 7, wherein: the second end having a bottom surface; The bottom surface has a thickness T; In the thickness T direction, the bottom surface has a rounded cross-section protrusion near the outer side; and / or The diameter or maximum width of the rounded cross-section protrusion is T / 2.

9. The exciton according to claim 7, wherein: The first end has a top surface; The top surface has a rounded periphery; and / or The diameter of the upper portion is between 2 mm and 8 mm.

10. An exciton for use with an insole body, wherein the insole body has a plurality of sole reflex areas, each of the areas having at least one hole, and the exciton has: an upper portion having an upper portion height, an upper portion diameter, and a first end, wherein the first end passes through the hole to stimulate one of the plurality of plantar reflexology zones; and a lower portion having a lower portion height, a lower portion diameter, and a second end, wherein: The first end and the second end are disposed opposite to each other at two opposite ends of the exciton; The lower diameter is larger than the upper diameter; The second end is retained between the insole body and the upper sole surface of the shoe that accommodates the insole body; The lower portion has a plurality of vertically or longitudinally extending cracks or spaces, and a plurality of vertically or longitudinally extending ribs; and Each of the vertically or longitudinally extending cracks or spaces has a maximum bottom width W1, and each of the vertically or longitudinally extending ribs has a maximum bottom width W2. The exciton according to claim 10 , wherein the number of the vertically or longitudinally extending ribs is 2 or more.

12. The exciton of claim 10, wherein: The material of the exciton is TPE or metal; and / or W1 may be larger or smaller than W2.