Shoe with fishbone pattern sole
By creating herringbone-shaped grooves and a herringbone anti-slip layer on the sole, the problems of insufficient softness and anti-slip properties of the sole are solved, achieving greater comfort and anti-slip effect.
Patent Information
- Application Number
- CN202520875309.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-05-06
AI Technical Summary
The existing soles are too rigid, resulting in poor softness, making them uncomfortable for users when walking, and they are not slip-resistant enough, especially on rough roads where the contact area is insufficient.
The sole is divided into several independent blocks by a herringbone-shaped groove. Each block can be deformed and twisted individually. Combined with the herringbone anti-slip layer distributed on the block structure, it simulates the shape of normal foot arch muscles, improving softness and anti-slip effect.
It enhances the comfort and slip resistance of the shoes while walking. The independent torsion of the block structure ensures that the herringbone anti-slip layer always has a large contact area with the ground, maximizing the restoration of walking gait.
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Figure CN223943890U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of shoes, and specifically relates to a fishbone pattern sole shoe. BACKGROUND
[0002] Shoes are mainly composed of uppers, soles, insoles, tongues and other components, wherein the sole as the core part directly contacting the ground is particularly crucial in structural design. The sole is usually divided into three layers of outsole, midsole and insole: the outsole is made of rubber, TPU and other wear-resistant materials to provide skid resistance and anti-wear performance; the midsole is made of EVA, PHYLON and other elastic materials to absorb impact force through shock-absorbing technology (such as air cushion, foam) to protect joints and improve sports comfort; the insole is in line with the arch curve and is made of breathable memory foam or leather material to keep the feet dry and distribute pressure.
[0003] The utility model discloses a shoe, which includes a sole and an upper, the heel of the sole is higher than the front end of the sole, the upper is arranged above the front end of the sole, forming a foot sole wearing cavity, the front end of the foot sole wearing cavity is hollowed out, a heel positioning cover body is arranged at the rear of the upper corresponding to the heel of the sole, and the two sides of the heel positioning cover body are connected to the two sides at the rear of the upper through a belt; based on the above structure, the heel positioning cover body is connected through the belt, which is convenient for fixing and realizing the heel positioning cover body, the lower end of the heel positioning cover body is not connected to the sole, the toe of the shoe is connected to the heel, the airflow is more circulated, and the generation of odor is not easy.
[0004] For the above-mentioned shoe body, since the sole has strong integrity, it cannot produce obvious local deformation and torsion when the local part is stressed, resulting in poor softness of the whole sole, and the user's foot joints cannot be flexibly moved, so that the user cannot be very comfortable when walking, in addition, because the sole has strong integrity and cannot produce significant local deformation and torsion, when encountering rough road surface, the sole may not produce enough contact area with the ground, resulting in poor skid resistance, therefore, the fishbone pattern sole shoe is proposed for the above-mentioned problems. UTILITY MODEL CONTENTS
[0005] The utility model wants to solve the technical problem to provide a fishbone pattern sole shoes, the shoes is provided with fishbone segmentation groove on the sole, which is composed of several transversely arranged grooves and longitudinally arranged grooves, and the sole is divided into several independent block structures, each block structure can be deformed and twisted independently, and the muscle morphology of normal arch can be simulated according to the ground condition and walking posture, so that the whole sole can be flexibly bent and stretched, the walking gait is restored to the maximum extent, the comfort of the shoes when wearing and walking is improved, in addition, the sole is also provided with a fishbone antiskid layer, which is distributed on several independent block structures, because the block structures can be deformed and twisted independently, the fishbone antiskid layer can ensure a larger contact area with the ground when walking, thereby improving the overall antiskid effect of the shoes, and the technical problems of the comparative technology, such as the strong integrity of the sole, the poor softness of the whole sole, the uncomfortable wearing and walking, and the insufficient contact area between the sole and the ground, are solved.
[0006] The technical scheme adopted by the embodiment of the present application to solve the technical problem is:
[0007] A fishbone pattern sole shoe comprises a vamp, a sole, a heel cushion block embedded in the heel part of the sole, and a fishbone antiskid layer embedded in the bottom surface of the sole, wherein fishbone segmentation grooves are formed on the bottom surface of the sole and the corresponding fishbone antiskid layer, and the whole is in the shape of a fishbone, which is composed of several transversely arranged grooves and longitudinally arranged grooves, the fishbone segmentation grooves divide the sole into several independent block structures, based on the above technical scheme, because each block structure can be deformed and twisted independently, the muscle morphology of normal arch can be simulated according to the ground condition and walking posture, so that the whole sole can be flexibly bent and stretched, the walking gait is restored to the maximum extent, the comfort of the shoes when wearing and walking is improved, in addition, the fishbone antiskid layer is distributed on several independent block structures, because the block structures can be deformed and twisted independently, the fishbone antiskid layer can ensure a larger contact area with the ground when walking, thereby improving the overall antiskid effect of the shoes.
[0008] In a possible implementation manner, the fishbone segmentation grooves comprise a main longitudinal groove, a metatarsus transverse groove and a heel transverse groove, wherein the main longitudinal groove communicates the metatarsus part and the heel part of the sole, the metatarsus transverse groove is located in the metatarsus part of the sole, and the heel transverse groove is located in the heel part of the sole, in the above structure, the main longitudinal groove, the metatarsus transverse groove and the heel transverse groove can divide the sole into several large blocks, so that the sole can be deformed and twisted in the longitudinal direction and the transverse direction, and the softness of the whole sole is improved.
[0009] In a possible implementation, the fishbone-shaped segmentation groove further comprises a forefoot longitudinal groove and a heel longitudinal groove, wherein the forefoot longitudinal groove is located at the forefoot part of the shoe sole and intersects with the forefoot transverse groove, and the heel longitudinal groove is located at the heel part of the shoe sole and intersects with the heel transverse groove; in the above structure, the forefoot longitudinal groove and the heel longitudinal groove can further refine the distribution of the blocks of the two ground-contacting parts of the forefoot and the heel, and further improve the softness of the whole shoe sole.
[0010] In a possible implementation, the fishbone-shaped anti-skid layer comprises a fish head part, a fish body part and a fish tail part, wherein the fish head part is arranged at the toe part of the shoe sole, the fish body part is arranged at the forefoot part of the shoe sole, and the fish tail part is arranged at the heel part of the shoe sole; the above structure can respectively play an anti-skid role on the toe, the forefoot and the heel parts of the shoe sole.
[0011] In a possible implementation, the fish head part, the fish body part and the fish tail part are all wear-resistant rubber pads, and the bottom surfaces of the three parts are all processed to form anti-skid convex patterns arranged in a slanting direction; the above structure can further enhance the anti-skid effect of the whole fishbone-shaped anti-skid layer through the anti-skid convex patterns arranged in a slanting direction, and can ensure the wear resistance and prolong the service life.
[0012] In a possible implementation, the heel cushion block comprises a cushion rubber base, a plurality of honeycomb holes are formed in the cushion rubber base, and a gas hole is formed in the bottom surface of the cushion rubber base and communicates with the honeycomb holes; the cushion rubber base can support the heel and improve the comfort of the shoe when the shoe is worn and walked, in particular, the air column formed by the air in the honeycomb holes can play a role of shock absorption and cushioning.
[0013] In a possible implementation, a sealing cover is attached to the upper end surface of the cushion rubber base, and the sealing cover comprises a rubber sheet, a plurality of honeycomb clamping blocks corresponding to the honeycomb holes are arranged on the upper end surface of the rubber sheet, and a through hole corresponding to the gas hole is formed in the rubber sheet and the honeycomb clamping blocks; the sealing cover can increase the contact area of the whole heel cushion block in contact with the heel, so as to improve the comfort of the heel when the shoe is worn.
[0014] In a possible implementation, an anti-tear reverse edge is formed in the groove bottom of the fishbone-shaped segmentation groove, and a ground-contacting reverse edge is formed at the groove opening of the fishbone-shaped segmentation groove; in the above solution, the anti-tear reverse edge can prevent the block structure from tearing the groove bottom when it is deformed and twisted, and the ground-contacting reverse edge can form a round edge strip, which can reduce the friction generated between the block structure and the ground when it is twisted.
[0015] In summary, the utility model has the following beneficial technical effects:
[0016] The shoe is provided with fishbone segmentation grooves on the shoe sole, which are formed by intersecting a plurality of transversely arranged grooves and longitudinally arranged grooves, and the shoe sole is divided into a plurality of independent block structures, each of which can be deformed and twisted independently, so that the muscle morphology of the normal arch is simulated according to the ground condition and the walking posture, the whole shoe sole can be flexibly bent and stretched, the walking gait is restored to the maximum extent, and the comfort of the shoe when worn and walked is improved.
[0017] In addition, the shoe sole is also provided with a fishbone anti-skid layer which is distributed on the plurality of independent block structures, and due to the formation of the fishbone segmentation grooves, the block structures can be deformed and twisted independently, so that the fishbone anti-skid layer can always have a larger contact area with the ground when walking, thereby improving the overall anti-skid effect of the shoe. BRIEF DESCRIPTION OF DRAWINGS
[0018] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, and are used together with embodiments of the present application to explain the present application, and do not constitute a limitation on the present application. In the drawings:
[0019] Figure 1 It is a structural schematic diagram of the present application;
[0020] Figure 2 It is a structural schematic diagram of the fishbone segmentation groove of the present application;
[0021] Figure 3 It is a structural schematic diagram of the fishbone anti-skid layer of the present application;
[0022] Figure 4 It is a structural schematic diagram of the heel buffer block of the present application;
[0023] Figure 5 It is a structural schematic diagram of the closure cover of the present application;
[0024] Figure 6 It is a structural schematic diagram of the fishbone segmentation groove of the present application.
[0025] In the drawings: 1, shoe sole; 2, fishbone segmentation groove; 21, main longitudinal groove; 22, instep transverse groove; 23, heel transverse groove; 24, instep longitudinal connecting groove; 25, heel longitudinal connecting groove; 201, anti-tear inverted edge; 202, ground-touching inverted edge; 3, heel buffer block; 31, buffer rubber seat; 32, honeycomb hole; 33, air hole; 34, closure cover; 341, rubber sheet; 342, honeycomb clamping block; 4, fishbone anti-skid layer; 41, fish head part; 42, fish body part; 43, fish tail part; 44, anti-skid convex pattern. DETAILED DESCRIPTION
[0026] The technical solution in the embodiments of the present application is to solve the problems in the above background art, and the general idea is as follows:
[0027] As Figure 1 shown, the fishbone patterned shoe provided by the embodiment comprises a vamp and a sole 1, a heel cushion block 3 embedded in the heel part of the sole 1, and a fishbone anti-skid layer 4 embedded in the bottom surface of the sole 1, wherein the bottom surface of the sole 1 and the corresponding fishbone anti-skid layer 4 are provided with fishbone dividing grooves 2, which are in the shape of fishbone and are formed by the intersection of a plurality of transversely arranged grooves and longitudinally arranged grooves, and the fishbone dividing grooves 2 divide the sole 1 into a plurality of independent block structures. Based on the above technical solution, since each block structure can be deformed and twisted independently, the muscle morphology of the normal arch can be simulated according to the ground conditions and the walking posture, so that the entire sole 1 can be flexibly bent and stretched to the greatest extent to restore the walking gait and improve the comfort of the shoe when worn and walked. In addition, the fishbone anti-skid layer 4 is distributed on a plurality of independent block structures, and since the block structures can be deformed and twisted independently, the fishbone anti-skid layer 4 can ensure a larger contact area with the ground during walking, thereby improving the overall anti-skid effect of the shoe.
[0028] The fishbone dividing grooves 2 comprise a main longitudinal groove 21, a metatarsal transverse groove 22 and a heel transverse groove 23, wherein the main longitudinal groove 21 communicates the metatarsal and heel parts of the sole 1, the metatarsal transverse groove 22 is located in the metatarsal part of the sole 1, and the heel transverse groove 23 is located in the heel part of the sole 1. In the above structure, the main longitudinal groove 21, the metatarsal transverse groove 22 and the heel transverse groove 23 can divide the sole 1 into a plurality of large blocks, so that the sole 1 can be deformed and twisted in the longitudinal and transverse directions to improve the flexibility of the entire sole 1. In addition, the fishbone dividing grooves 2 further comprise a metatarsal longitudinal connecting groove 24 and a heel longitudinal connecting groove 25, wherein the metatarsal longitudinal connecting groove 24 is located in the metatarsal part of the sole 1 and intersects with the metatarsal transverse groove 22, and the heel longitudinal connecting groove 25 is located in the heel part of the sole 1 and intersects with the heel transverse groove 23. In the above structure, the metatarsal longitudinal connecting groove 24 and the heel longitudinal connecting groove 25 can further refine the distribution of blocks of the two ground-contacting parts of the metatarsal and the heel, and further improve the flexibility of the entire sole 1, as Figure 2 shown.
[0029] As Figure 3 shown, the fishbone anti-skid layer 4 comprises a fish head part 41, a fish body part 42 and a fish tail part 43, wherein the fish head part 41 is arranged at the toe part of the sole 1, the fish body part 42 is arranged at the metatarsal part of the sole 1, and the fish tail part 43 is arranged at the heel part of the sole 1. The above structure can play an anti-skid role on the ground-contacting toe, metatarsal and heel parts, respectively. The fish head part 41, the fish body part 42 and the fish tail part 43 are all wear-resistant rubber pads, and the bottom surfaces of the three are all provided with obliquely arranged anti-skid convex patterns 44. The above structure can further enhance the overall anti-skid effect of the fishbone anti-skid layer 4 through the obliquely arranged anti-skid convex patterns 44, and can ensure the wear resistance and prolong the service life.
[0030] As Figure 4 Figure 5 As shown in the figure, the heel buffer block 3 includes a buffer rubber base 31, a plurality of honeycomb holes 32 are opened in the inside of the buffer rubber base 31, and the bottom surface of the buffer rubber base 31 is provided with air holes 33 communicated with the honeycomb holes 32, so that the buffer rubber base 31 can support the heel and improve the comfort of the shoes when walking, in particular, the air column can be formed in the honeycomb holes 32 by air, which can play a role of shock absorption and buffering; in addition, the upper end surface of the buffer rubber base 31 is pasted with a sealing cover 34, which includes a rubber sheet 341, and the upper end surface of the rubber sheet 341 is provided with a plurality of honeycomb clamping blocks 342 corresponding to the honeycomb holes 32, in addition, the rubber sheet 341 and the honeycomb clamping blocks 342 are provided with through holes corresponding to the air holes 33, and the sealing cover 34 can increase the contact area of the heel buffer block 3 in contact with the heel, so as to improve the comfort of the heel when wearing.
[0031] As Figure 6 As shown in the figure, the fishbone dividing groove 2 is provided with an anti-tear chamfer 201 formed on the groove bottom, and a ground chamfer 202 formed on the groove opening, in the above scheme, the anti-tear chamfer 201 can prevent the block structure from tearing the groove bottom when deforming and twisting, and the ground chamfer 202 can form a rounded edge, which can reduce the friction between the block structure and the ground when twisting.
[0032] The use principle and use process of the utility model are as follows:
[0033] The shoes are provided with the fishbone dividing groove 2 on the sole 1, which is composed of a plurality of transversely arranged grooves and longitudinally arranged grooves, and the sole 1 is divided into a plurality of independent block structures, each of which can be deformed and twisted independently, and the muscle morphology of the normal arch can be simulated according to the ground condition and the walking posture, so that the whole sole 1 can be flexibly bent and stretched, the walking gait is restored to the maximum extent, and the comfort of the shoes when walking is improved; wherein the main longitudinal groove 21, the instep transverse groove 22 and the heel transverse groove 23 can divide the sole 1 into a plurality of large blocks, so that the deformation and twisting can occur in the longitudinal and transverse directions, and the softness of the whole sole 1 is improved, and the instep longitudinal connecting groove 24 and the heel longitudinal connecting groove 25 can further refine the distribution of the blocks of the two ground-contacting parts of the instep and the heel, and further improve the softness of the whole sole 1.
[0034] The sole 1 is also provided with a fishbone anti-skid layer 4, which is distributed on a plurality of independent block structures, because the fishbone dividing groove 2 is opened, the formed block structure can be deformed and twisted independently, so that the fishbone anti-skid layer 4 can ensure a larger contact area with the ground when walking, thereby improving the overall anti-skid effect of the shoes.
[0035] In addition, the heel portion of the shoe sole 1 is further provided with a heel cushion block 3, which comprises a cushion rubber base 31, a plurality of honeycomb holes 32 are formed in the inside of the cushion rubber base 31, and a gas hole 33 communicated with the honeycomb holes 32 is formed in the bottom surface of the cushion rubber base 31, so that the cushion rubber base 31 can support the heel and improve the comfort of the shoes when walking.
[0036] Finally, it should be noted that: obviously, the above examples are only for clearly illustrating the utility model, and not limited to the implementation. For those skilled in the art, on the basis of the above description, other different forms of changes or variations can be made. Here, it is not necessary and impossible to enumerate all the implementation. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.
Claims
1. A fishbone sole shoe, characterized by, The utility model relates to a kind of shoes, including: Vamp and sole (1); Heel cushion block (3) is embedded in the heel portion of sole (1); Fishbone anti-skid layer (4) is embedded in the bottom surface of sole (1); Wherein, the bottom surface of the sole (1) and corresponding fishbone anti-skid layer (4) are provided with fishbone segmentation groove (2), which is fishbone-shaped as a whole, and is composed of several transversely arranged grooves and longitudinally arranged grooves, and the fishbone segmentation groove (2) divides the sole (1) into several independent block structures.
2. The fishbone patterned sole shoe according to claim 1, wherein: The fishbone segmentation groove (2) includes main longitudinal groove (21), metatarsal transverse groove (22) and heel transverse groove (23), wherein the main longitudinal groove (21) communicates the metatarsal and heel portions of the sole (1), the metatarsal transverse groove (22) is located in the metatarsal portion of the sole (1), and the heel transverse groove (23) is located in the heel portion of the sole (1).
3. The fishbone patterned sole shoe according to claim 2, wherein: The fishbone segmentation groove (2) further includes metatarsal longitudinal connecting groove (24) and heel longitudinal connecting groove (25), wherein the metatarsal longitudinal connecting groove (24) is located in the metatarsal portion of the sole (1) and intersects with the metatarsal transverse groove (22), and the heel longitudinal connecting groove (25) is located in the heel portion of the sole (1) and intersects with the heel transverse groove (23).
4. The fishbone patterned sole shoe according to claim 1, wherein: The fishbone anti-skid layer (4) includes fish head part (41), fish body part (42) and fish tail part (43), wherein the fish head part (41) is arranged at the toe portion of the sole (1), the fish body part (42) is arranged at the metatarsal portion of the sole (1), and the fish tail part (43) is arranged at the heel portion of the sole (1).
5. The fishbone patterned sole shoe according to claim 4, wherein: The fish head part (41), fish body part (42) and fish tail part (43) are all wear-resistant rubber pads, and the bottom surface of each is processed to form an anti-skid rib (44) arranged obliquely.
6. The fishbone patterned sole shoe according to claim 1, wherein: The heel cushion block (3) includes a cushion rubber seat (31) having a plurality of honeycomb holes (32) formed therein, and a gas hole (33) formed in the bottom surface of the cushion rubber seat (31) and communicating with the honeycomb holes (32).
7. The fishbone patterned sole shoe according to claim 6, wherein: The upper end surface of the cushion rubber seat (31) is attached with a closure cover (34) including a rubber sheet (341), and the upper end surface of the rubber sheet (341) is provided with a plurality of honeycomb clamping blocks (342) corresponding to the honeycomb holes (32), and in addition, a through hole corresponding to the gas hole (33) is formed in the rubber sheet (341) and the honeycomb clamping blocks (342).
8. The fishbone patterned sole shoe according to claim 1, wherein: The groove bottom of the fishbone segmentation groove (2) is processed to form an anti-tear reverse edge (201), and the groove opening of the fishbone segmentation groove (2) is processed to form a ground-touching reverse edge (202).
Citation Information
Patent Citations
Shoes
CN221785461U