Honeycomb silica gel damping integrally-formed insole

The insole design with a honeycomb silicone shock-absorbing structure bonded to the surface and base layers solves the problems of insufficient heel shock absorption and delamination, achieves high stability and durability, and improves the user experience.

CN223437980UActive Publication Date: 2025-10-17LIRONG SHOES SHENZHEN CO LTD
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Patent Information

Application Number
CN202422712210.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-10-17
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

Existing insoles have insufficient shock absorption performance at the heel, and the multi-layer composite structure is prone to delamination and falling off, affecting the user experience and lifespan.

Method used

It adopts a honeycomb silicone shock-absorbing structure, with shock-absorbing holes formed by silicone cells, and bonded to the surface layer and base layer as one. Combined with Velcro connection, it achieves detachable connection, enhancing stability and durability.

Benefits of technology

Provides good shock absorption, supports the heel, improves comfort and structural stability, prevents delamination and extends service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a honeycomb silica gel damping integrally-formed insole, which belongs to the technical field of insoles and comprises a surface layer and a base layer, the surface layer and the base layer are sequentially overlapped and adhered into a whole, a connecting groove and a silica gel damping structure are arranged at the rear end of the base layer, a connecting piece is fixedly arranged on the upper end face of the base layer, and the base layer is fixedly arranged in the connecting groove through the connecting piece. According to the technical scheme, the silica gel damping structure is composed of a plurality of hexagonal or similar-shaped silica gel cells, honeycomb damping holes are formed, air columns can be formed in the damping holes to achieve the supporting and damping effects when the shoe is worn for walking, meanwhile, the silica gel material can also provide the good damping effect, and the damping effect is good. Compared with the prior art, the shoe pad has the advantages that impact force generated during walking or movement can be effectively absorbed and dispersed, the heel is well protected, in addition, the shoe pad body is integrally formed by bonding the surface layer and the base layer, the structure is relatively simple, and the stability and durability of the shoe pad structure can be guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to insole technical field, specifically is a honeycomb silica gel shock absorption integrated moulding insole. BACKGROUND

[0002] Insole is the most part of shoes and feet, located inside the shoes, directly contact the sole. Insole as important accessories of shoes, plays an important role in improving comfort, supporting feet, protecting shoes, etc.

[0003] The utility model discloses a kind of insoles, and the utility model is fast when linking frame and filling block with string in manufacturing process, and it is knotted less, greatly improve the production efficiency of insole, and string is all latent in threading hole and threading groove, so that string is not easy to wear and tear, prolong the service life of insole, the utility model can be used as a kind of insole, directly put into shoes and use, also can be used as a kind of shoe upper, in shoemaking process, frame is fixed on the upper of midsole.

[0004] But the above-mentioned insole has the deficiency in shock absorption performance, especially in heel part often can not provide enough support and shock absorption effect, leading to wearer to feel tired and uncomfortable when walking or moving for a long time, in addition, most of the existing shock absorption silica gel insole adopts multilayer composite structure, leading to not only complex processing but also easy to appear delamination, affect use experience and the service life of insole, therefore, aiming at the above-mentioned problem, present a kind of honeycomb silica gel shock absorption integrated moulding insole. UTILITY MODEL CONTENTS

[0005] The utility model solves the technical problem to provide a kind of honeycomb silica gel shock absorption integrated moulding insole, the heel center part of the insole is equipped with silica gel shock absorption structure, it is composed of several hexagonal or similar shape silica gel unit cell, forms the shock absorption hole of honeycomb, when wearing and walking, air column is formed in shock absorption hole and plays the role of support and shock absorption, while silica gel material can also provide better shock absorption effect, can effectively absorb and disperse the impact force generated when walking or moving, play good protection effect to heel, in addition, insole main part is made into an organic whole by face layer and base layer, constitute relatively simple, can ensure the stability and durability of insole structure, solve the technical problems that insole often can not provide enough support and shock absorption effect to heel part in prior art and shock absorption insole of multilayer composite structure is easy to appear delamination.

[0006] The technical scheme adopted by the embodiment of the application to solve the technical problems thereof is:

[0007] The application discloses a honeycomb silica gel shock-absorbing integrally-formed insole, which comprises a surface layer and a base layer, and the surface layer and the base layer are sequentially overlapped and bonded to be integrated, so that the insole is high in integration degree and relatively simple in structure, the stability and durability of the insole structure can be ensured, and the rear end of the base layer is provided with a connecting groove, and a silica gel shock-absorbing structure is fixedly provided with a connecting piece on the upper end face, the connecting piece is fixedly arranged in the connecting groove, the connecting piece plays a connecting intermediary role, and a basis is provided for detachable connection between the base layer and the silica gel shock-absorbing structure, wherein the silica gel shock-absorbing structure is composed of a plurality of hexagonal or similar silica gel unit cells, and shock-absorbing holes in a honeycomb shape are formed, when walking, air columns are formed in the shock-absorbing holes to play a supporting and shock-absorbing role, meanwhile, the silica gel material can provide a better shock-absorbing effect, impact force generated during walking or movement can be effectively absorbed and dispersed, and the heel is well protected.

[0008] In a possible implementation manner, the surface layer comprises a heel pad block, an arch pad block and a sole pad block which are sequentially arranged from back to front, and further comprises a supplementary pad block arranged on the side of the sole pad block, the four blocks can respectively play a supporting role on the heel, the arch, the sole joint and the edge of the sole, so that the surface layer is more fitted to the sole, and the comfort during use is improved, in addition, the four blocks are integrally bonded by a connecting fabric, the connecting fabric enables the relative position angle between the four blocks to be changed, and the fitting to the foot is further improved.

[0009] In a possible implementation manner, the bottom of the connecting groove is pasted with a magic tape rough surface, and the upper end face of the connecting piece is fixedly pasted with a magic tape hook surface, the connecting piece is bonded in the connecting groove through the magic tape structure, through the structure, detachable bonding between the connecting piece and the connecting groove can be realized, and then the disassembly and assembly of the silica gel shock-absorbing structure are facilitated, and the silica gel shock-absorbing structure can be individually replaced.

[0010] In a possible implementation manner, a silica gel plug is arranged in the shock-absorbing hole, the silica gel plug can play a supporting and shaping role on the shock-absorbing hole, so that the shock-absorbing hole can be more uniform when transmitting force under pressure, and is not prone to deformation under pressure to cause normal use, and after the silica gel plug is completely inserted into the shock-absorbing hole, the lower end face of the silica gel plug is flush with the lower end face of the silica gel shock-absorbing structure, and the structure can avoid the situation that the silica gel plug is convex to cause unstable contact between the silica gel shock-absorbing structure and the sole.

[0011] In a possible implementation manner, the silica gel plug comprises a silica gel table body which is in a hexagonal prism shape, and a bottom end cover piece which is hermetically connected to the lower end face of the silica gel table body, the bottom end cover piece can increase the contact area between the silica gel shock-absorbing structure and the sole, so that the two are not prone to relative shaking, and the silica gel shock-absorbing structure can also avoid leaving a hexagonal indentation on the sole, in addition, a through air hole is formed in the bottom end cover piece, and the air hole can allow air to enter the shock-absorbing hole to form a shock-absorbing air column.

[0012] In a possible implementation, the reinforcing rib is centrally arranged on each inner wall of the silica gel platform body, is made of silica gel, and has a semicircular cross section.

[0013] To sum up, the utility model has the advantages of the following beneficial technical effects:

[0014] The heel center part of the insole is provided with a silica gel damping structure, which is composed of a plurality of hexagonal or similar silica gel unit cells, and forms a honeycomb-shaped damping hole.

[0015] In addition, the insole body is integrally made by bonding a surface layer and a base layer, which has a relatively simple structure and can ensure the stability and durability of the insole structure, and the insole body is not prone to delamination. BRIEF DESCRIPTION OF DRAWINGS

[0016] The accompanying drawings are included to provide a further understanding of the utility model, and constitute a part of the specification, and are used together with embodiments of the utility model to explain the utility model, and do not constitute a limitation on the utility model. In the drawings:

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 It is a schematic diagram of the structure of the utility model;

[0019] Figure 3 It is a schematic diagram of the damping structure of the utility model;

[0020] Figure 4 It is a schematic diagram of the connection structure of the silica gel damping structure of the utility model.

[0021] In the drawings: 1, surface layer; 11, heel pad; 12, arch pad; 13, foot pad; 14, supplementary pad; 15, connecting fabric; 2, base layer; 21, connecting groove; 22, magic tape nap surface; 3, connecting sheet; 31, magic tape hook surface; 4, silica gel damping structure; 41, damping hole; 5, silica gel plug; 51, silica gel platform body; 52, bottom cover sheet; 53, air hole; 54, reinforcing rib. DETAILED DESCRIPTION

[0022] The technical solution in the embodiment of the application is to solve the problems in the above background art, and the general idea is as follows:

[0023] As Figure 1 - Figure 3 As shown in the figure, the honeycomb silica gel shock absorbing integrated insole provided by the embodiment comprises a surface layer 1 and a base layer 2, the two are sequentially superimposed and bonded into one, so that the insole has high integration degree and relatively simple structure, the stability and durability of the insole structure can be ensured, and the base layer 2 is provided with a connecting groove 21 at the rear end, and the silica gel shock absorbing structure 4 is fixedly provided with a connecting piece 3 on the upper end face, which is fixedly arranged in the connecting groove 21 through the connecting piece 3, and the connecting piece 3 plays the role of a connecting intermediary, providing a basis for the detachable connection between the base layer 2 and the silica gel shock absorbing structure 4.

[0024] The silica gel shock absorbing structure 4 is composed of a plurality of hexagonal or similar shaped silica gel unit cells, and a honeycomb shaped shock absorbing hole 41 is formed, and when walking, an air column is formed in the shock absorbing hole 41 to play a supporting and shock absorbing role, and the silica gel material can also provide better shock absorbing effect, which can effectively absorb and disperse the impact force generated during walking or exercise, and play a good protective role on the heel.

[0025] As Figure 2 shown, the surface layer 1 comprises a heel pad 11, an arch pad 12 and a sole pad 13 arranged in sequence from back to front, and a supplementary pad 14 arranged on the side of the sole pad 13, the four can respectively support the heel, arch, sole joint and edge of the sole, so that the surface layer 1 is more fitted to the sole, thereby improving the comfort during use, in addition, the four are bonded into one through a connecting fabric 15, and the position angle between the four can be relatively changed through the connecting fabric 15, further improving the fit with the foot.

[0026] As Figure 4 shown, the connecting groove 21 is pasted with a magic tape 22 on the groove bottom, and the connecting piece 3 is fixedly pasted with a magic tape hook surface 31 on the upper end face, and the connecting piece 3 is bonded in the connecting groove 21 through the magic tape structure, through the above structure, the detachable bonding between the connecting piece 3 and the connecting groove 21 can be realized, and then the disassembly and assembly of the silica gel shock absorbing structure 4 can be easily completed, and the silica gel shock absorbing structure 4 can be easily replaced.

[0027] As Figure 3 shown, the silica gel plug 5 is inserted into the shock absorbing hole 41, which can support and shape the shock absorbing hole 41, so that the shock absorbing hole 41 can be more uniform when transmitting force under pressure, and is not easy to deform under pressure, which can cause it to be unable to be normally used, and after the silica gel plug 5 is completely inserted into the shock absorbing hole 41, the lower end face is flush with the lower end face of the silica gel shock absorbing structure 4, and this structure can avoid the situation that the silica gel plug 5 protrudes outward, causing the silica gel shock absorbing structure 4 to be unstable in contact with the sole.

[0028] The silica gel plug 5 includes a silica gel platform body 51, which is hexagonal, and a bottom end cover plate 52 connected to the lower end surface of the silica gel platform body 51, the bottom end cover plate 52 can increase the contact area between the silica gel damping structure 4 and the sole, so that the two are not easy to shake relative to each other, and the silica gel damping structure 4 can also avoid leaving a hexagonal indentation on the sole, in addition, the bottom end cover plate 52 is provided with a through air hole 53, the air hole 53 can allow air to enter the damping hole 41 to form a damping air column.

[0029] In addition, the inner wall of each face of the silica gel platform body 51 is fixedly provided with a reinforcing rib 54 arranged in the middle, the reinforcing rib 54 is made of silica gel and has a semicircular cross section, the reinforcing rib 54 can improve the anti-deformation ability of the silica gel platform body 51, so that the silica gel platform body 51 is not easy to deform after long-term use, and can still be closely fitted with the damping hole 41.

[0030] The use principle and use process of the utility model are as follows:

[0031] The heel center of the insole is provided with a silica gel damping structure 4, which is composed of a plurality of hexagonal or similar silica gel unit cells, and forms a honeycomb-shaped damping hole 41, when walking, an air column is formed in the damping hole 41 to support and dampen, and the silica gel material can also provide good damping effect, which can effectively absorb and disperse the impact force generated during walking or exercise, and protect the heel.

[0032] At the same time, the insole body is made of a surface layer 1 and a base layer 2, which are bonded together, the structure is relatively simple, and the stability and durability of the insole structure can be ensured, and the insole body is not easy to separate and fall off.

[0033] In addition, the silica gel plug 5 is inserted into the damping hole 41, the silica gel plug 5 includes a silica gel platform body 51, which is hexagonal, and a bottom end cover plate 52 connected to the lower end surface of the silica gel platform body 51, the bottom end cover plate 52 can increase the contact area between the silica gel damping structure 4 and the sole, so that the two are not easy to shake relative to each other, and the silica gel damping structure 4 can also avoid leaving a hexagonal indentation on the sole, in addition, the bottom end cover plate 52 is provided with a through air hole 53, the air hole 53 can allow air to enter the damping hole 41 to form a damping air column.

[0034] Finally, it should be pointed out that: obviously, the above embodiments are only examples for clearly illustrating the utility model, and are not limited to the implementation. For ordinary skilled persons in the art, other different forms of changes or variations can be made on the basis of the above description. Here, it is not necessary and impossible to enumerate all the implementation modes. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.

Claims

1. A honeycomb silica gel shock-absorbing one-piece molded insole, characterized in that: include: The surface layer (1) and the base layer (2) are sequentially superimposed and bonded together, and a connecting groove (21) is provided at the rear end of the base layer (2); A silica gel shock-absorbing structure (4) has a connecting piece (3) fixedly provided on its upper end surface, and is fixedly arranged in the connecting groove (21) via the connecting piece (3); The silica gel shock-absorbing structure (4) is composed of a plurality of hexagonal silica gel cells, forming honeycomb-shaped shock-absorbing holes (41).

2. The honeycomb silica gel shock-absorbing integrally molded insole according to claim 1, characterized in that: The surface layer (1) comprises a heel pad (11), an arch pad (12) and a sole pad (13) which are arranged in sequence from back to front, and also comprises a supplementary pad (14) arranged on the side of the sole pad (13), and the above four are bonded into one body by a connecting fabric (15).

3. The honeycomb silica gel shock-absorbing integrally molded insole according to claim 1, characterized in that: The bottom of the connecting groove (21) is adhered with a Velcro surface (22), the upper end surface of the connecting piece (3) is fixedly adhered with a Velcro hook surface (31), and the connecting piece (3) is adhered to the connecting groove (21) via the Velcro structure.

4. The honeycomb silica gel shock-absorbing integrally molded insole according to claim 1, characterized in that: A silicone plug (5) is plugged into the shock-absorbing hole (41), and after the silicone plug (5) is completely inserted into the shock-absorbing hole (41), its lower end surface is flush with the lower end surface of the silicone shock-absorbing structure (4).

5. The honeycomb silica gel shock-absorbing integrally molded insole according to claim 4, characterized in that: The silicone plug (5) comprises a silicone platform (51) in the shape of a hexagonal platform, and its lower end surface is sealedly connected to a bottom cover (52), and a through vent hole (53) is provided on the bottom cover (52).

6. The honeycomb silica gel shock-absorbing integrally molded insole according to claim 5, characterized in that: A centrally arranged reinforcing rib (54) is fixedly provided on each inner wall of the silicone platform (51), and the reinforcing rib (54) is made of silicone material and has a semicircular cross-section.

Citation Information

Patent Citations

  • Insole

    CN207341286U