CN223943890U - Fishbone line sole shoes - Google Patents

Fishbone line sole shoes

Info

Publication number
CN223943890U
CN223943890U CN202520875309.9U CN202520875309U CN223943890U CN 223943890 U CN223943890 U CN 223943890U CN 202520875309 U CN202520875309 U CN 202520875309U CN 223943890 U CN223943890 U CN 223943890U
Authority
CN
China
Prior art keywords
sole
fishbone
heel
groove
shoe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202520875309.9U
Other languages
Chinese (zh)
Inventor
吴淑英
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Lirong Shoes Shenzhen Co Ltd
Original Assignee
Lirong Shoes Shenzhen Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Lirong Shoes Shenzhen Co Ltd filed Critical Lirong Shoes Shenzhen Co Ltd
Priority to CN202520875309.9U priority Critical patent/CN223943890U/en
Application granted granted Critical
Publication of CN223943890U publication Critical patent/CN223943890U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Abstract

The utility model discloses a fishbone sole shoe, which belongs to the technical field of shoes and comprises a vamp, a sole, a heel buffer block, a fishbone anti-slip layer and a fishbone dividing groove, wherein the heel buffer block is embedded in the heel part of the sole, the fishbone anti-slip layer is embedded in the bottom surface of the sole, the fishbone dividing groove is formed in the bottom surface of the sole and the corresponding fishbone anti-slip layer, and the fishbone dividing groove is formed by intersecting a plurality of grooves which are transversely arranged and grooves which are longitudinally arranged, so that the sole is divided into a plurality of mutually independent block structures. The novel shoe has the technical key points that as each block structure can be deformed and twisted independently, the muscle form of a normal foot arch can be simulated according to the ground condition and the walking posture, the whole sole can be flexibly bent and stretched, the comfort of the shoe when the shoe is worn and walked is improved, and in addition, the fishbone anti-skid layer is distributed on a plurality of independent block structures, so that the fishbone anti-skid layer and the ground can be ensured to have a larger contact area all the time when the shoe walks, and the integral anti-skid effect of the shoe is further improved.

Description

Fishbone line sole shoes
Technical Field
The utility model relates to the technical field of shoes, in particular to a fishbone line sole shoe.
Background
The shoes mainly comprise parts such as uppers, soles, insoles, tongues and the like, wherein the soles are used as core parts for directly contacting with the ground, and the structural design is particularly critical. The sole is generally divided into three layers, namely an outsole, a midsole and an insole, wherein the outsole adopts wear-resistant materials such as rubber and TPU (thermoplastic polyurethane) to provide anti-skid ground grabbing force and wear resistance, the midsole adopts elastic materials such as EVA (ethylene vinyl acetate), PHYLON (polyethylene glycol) and the like to absorb impact force through a cushioning technology (such as an air cushion and foam), so as to protect joints and improve movement comfort, and the insole is attached to an arch curve and adopts breathable memory cotton or leather material to keep feet dry and disperse pressure.
The utility model discloses a pair of shoes with the bulletin number of CN221785461U, which comprises soles and vamps, wherein heels of the soles are higher than the front ends of the soles, the uppers are arranged above the front ends of the soles to form sole wearing cavities, the front ends of the sole wearing cavities are hollowed out, heel positioning cover bodies are arranged at the positions, corresponding to the heels, of the soles, two sides of each heel positioning cover body are connected with two sides of the rear of each vamp through belt bodies, and based on the structural form, the heel positioning cover bodies are connected through the belt bodies, so that the bottoms of the heel positioning cover bodies are not connected with the soles, shoe tips are communicated with heels, air flows are more circulated, and peculiar smell is not easy to generate.
For the shoe body, because the sole has stronger integrity, the sole cannot generate more obvious local deformation torsion when being locally stressed, so that the sole is poorer in overall softness, the foot joints of a user cannot perform more flexible activities, so that the user cannot feel comfortable when wearing and walking, in addition, because the sole is strong in integrity, the sole cannot generate obvious local deformation torsion, when encountering a rugged road surface, the sole cannot generate enough contact area with the ground, and the skid resistance is poorer, and therefore, the fishbone line sole shoe is provided for solving the problems.
Disclosure of utility model
The utility model aims to solve the technical problem of providing a fishbone pattern sole shoe, which is characterized in that a fishbone dividing groove is formed in the sole, the fishbone dividing groove is formed by a plurality of grooves which are transversely arranged and grooves which are longitudinally arranged, the sole is divided into a plurality of mutually independent block structures, each block structure can be deformed and twisted independently, the muscle form of a normal arch is simulated according to the ground condition and the walking posture, the whole sole can be flexibly bent and stretched, the walking gait is restored to the greatest extent, the comfort of the shoe when the shoe is worn and walked is improved, in addition, the sole is also provided with a fishbone anti-skid layer which is distributed on a plurality of independent block structures, and as the block structures can be deformed and twisted independently of each other, the fishbone anti-skid layer and the ground can always have a larger contact area when the shoe is walked, so that the whole anti-skid effect of the shoe is improved, and the technical problems that the sole is strong in the comparison technology, the whole sole is poor in softness, the walking is uncomfortable due to the fact that the sole cannot generate enough contact area with the ground due to the higher integrity are solved.
The technical scheme adopted by the embodiment of the application for solving the technical problems is as follows:
The utility model provides a shoes at bottom of fish bone line, includes vamp and sole, heel buffer block, and its embedded setting is at the heel part of sole, and fish bone anti-skidding layer, its embedded setting is at the bottom surface of sole, wherein, set up fish bone division groove on sole bottom surface and the corresponding fish bone anti-skidding layer, its whole is the fish bone form, by the crossing constitution of a plurality of transverse arrangement's groove and longitudinal arrangement's groove, fish bone division groove is cut apart into a plurality of mutually independent block structures with the sole, based on above-mentioned technical scheme, because each block structure can all carry out independent deformation torsion, consequently, can simulate the muscle form of normal arch of foot according to ground condition and walking posture, make whole sole can realize buckling and extend in a flexible way, furthest reduction walking gait, improve the travelling comfort of shoes when wearing the walking, in addition, fish bone anti-skidding layer distributes on a plurality of independent block structures, because block structure can mutually independent deformation torsion, consequently can ensure that fish bone anti-skidding layer has great area with ground all the time, and shoes holistic effect improves.
In one possible implementation manner, the fishbone dividing groove comprises a main longitudinal groove, a sole transverse groove and a heel transverse groove, wherein the main longitudinal groove is communicated with the sole and the heel part of the sole, the sole transverse groove is positioned at the sole part of the sole, the heel transverse groove is positioned at the heel part of the sole, and in the structure, the main longitudinal groove, the sole transverse groove and the heel transverse groove can divide the sole into a plurality of large blocks, so that the sole can deform and twist longitudinally and transversely, and the flexibility of the whole sole is improved.
In one possible implementation manner, the fishbone dividing groove further includes a sole longitudinal groove and a heel longitudinal groove, wherein the sole longitudinal groove is located at a sole portion and is intersected with the sole transverse groove, the heel longitudinal groove is located at a sole heel portion and is intersected with the heel transverse groove, and in the above structural form, the sole longitudinal groove and the heel longitudinal groove can further refine the distribution of blocks of the sole and the heel two ground contact portions, so that the overall flexibility of the sole is further improved.
In one possible implementation manner, the fishbone anti-slip layer comprises a fish head part, a fish body part and a fish tail part, wherein the fish head part is arranged at a sole toe part, the fish body part is arranged at a sole heel part, and the fish tail part is arranged at the sole heel part.
In a possible implementation manner, the three parts of the fish head part, the fish body part and the fish tail part are wear-resistant rubber pads, and the bottom surfaces are all processed to form oblique anti-skid convex lines, so that the anti-skid effect of the fish bone anti-skid layer is further enhanced through the oblique anti-skid convex lines, the wear resistance of the fish bone anti-skid layer can be ensured, and the service life of the fish bone anti-skid layer is prolonged.
In a possible implementation manner, the heel buffer block comprises a buffer rubber seat, a plurality of honeycomb holes are formed in the buffer rubber seat, air holes communicated with the honeycomb holes are formed in the bottom surface of the buffer rubber seat, the heel can be supported through the buffer rubber seat, the comfort of the shoe when the shoe is worn and walked is improved, and particularly, an air column can be formed in the honeycomb holes through air, so that the effect of damping and buffering is achieved.
In a possible implementation manner, the sealing cover is stuck on the upper end surface of the cushion rubber seat, 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, in addition, through holes corresponding to the air holes are formed in the rubber sheet and the honeycomb clamping blocks, and the sealing cover can increase the whole contact area of the heel cushion block contacted with the heel, so that the comfort of the heel is improved when the rubber sheet is worn.
In one possible implementation manner, the bottom of the fishbone dividing groove is processed to form a tearing-proof inverted edge, and the notch of the fishbone dividing groove is processed to form a grounding inverted edge.
In summary, the utility model has the following beneficial technical effects:
The shoe is characterized in that the sole is provided with fishbone dividing grooves, the fishbone dividing grooves are formed by intersecting a plurality of grooves which are transversely arranged and grooves which are longitudinally arranged, the sole is divided into a plurality of mutually independent block structures, each block structure can be deformed and twisted independently, and the muscle form of a normal arch is simulated according to the ground condition and the walking posture, so that the whole sole can be flexibly bent and stretched, the walking gait is restored to the greatest extent, and the comfort of the shoe in wearing and walking is improved;
In addition, the sole still is provided with fish bone anti-skidding layer, and its distribution is on a plurality of independent block structures, owing to seting up of fish bone partition groove for the block structure that forms can mutually independent warp and twist reverse, consequently can ensure when walking that fish bone anti-skidding layer has great area of contact all the time with ground, and then improves the holistic anti-skidding effect of shoes.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the embodiments of the utility model, serve to explain the utility model. In the drawings:
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of a fish bone dividing groove structure according to the present utility model;
FIG. 3 is a schematic diagram of the structure of the fishbone anti-slip layer of the utility model;
FIG. 4 is a schematic view of a heel cushion according to the present utility model;
FIG. 5 is a schematic view of a closure structure of the present utility model;
fig. 6 is a schematic diagram of a fish bone dividing groove pattern according to the present utility model.
The sole comprises a sole, a 2-fishbone dividing groove, a 21-main longitudinal groove, a 22-sole transverse groove, a 23-heel transverse groove, a 24-sole longitudinal groove, a 25-heel longitudinal groove, a 201-tearing-proof reverse edge, a 202-ground-touching reverse edge, a 3-heel buffer block, a 31-buffer rubber seat, a 32-honeycomb hole, a 33, an air hole, a 34-closed cover, a 341, a rubber sheet, a 342-honeycomb clamping block, a 4-fishbone anti-slip layer, a 41-fishhead, a 42-fishbody, a 43-fishtail and a 44-anti-slip relief.
Detailed Description
The technical scheme in the embodiment of the application aims to solve the problems of the background technology, and the general thought is as follows:
As shown in fig. 1, the fishbone sole shoe provided in this embodiment includes a vamp and a sole 1, a heel buffer block 3, which is embedded in the heel portion of the sole 1, a fishbone anti-slip layer 4, which is embedded in the bottom surface of the sole 1, wherein, the bottom surface of the sole 1 and the corresponding fishbone anti-slip layer 4 are provided with fishbone dividing grooves 2, which are integrally in a fishbone shape, and are formed by intersecting grooves of a plurality of transverse grooves and grooves of longitudinal grooves, the fishbone dividing grooves 2 divide the sole 1 into a plurality of mutually independent block structures, and based on the above technical scheme, because each block structure can be deformed and twisted individually, the muscle form of a normal arch can be simulated according to the ground condition and walking posture, so that the whole sole 1 can be flexibly bent and stretched, the walking gait can be reduced to the greatest extent, and the comfort of the shoe when the shoe is worn and walked can be improved.
The fishbone dividing groove 2 comprises a main longitudinal groove 21, a sole transverse groove 22 and a heel transverse groove 23, wherein the main longitudinal groove 21 is communicated with the sole and heel parts of the sole 1, the sole transverse groove 22 is positioned at the sole part of the sole 1, the heel transverse groove 23 is positioned at the heel part of the sole 1, the main longitudinal groove 21, the sole transverse groove 22 and the heel transverse groove 23 can divide the sole 1 into a plurality of large blocks, so that the large blocks can deform and twist in the longitudinal direction and the transverse direction, the overall softness of the sole 1 is improved, in addition, the fishbone dividing groove 2 also comprises a sole longitudinal connecting groove 24 and a heel longitudinal connecting groove 25, wherein the sole longitudinal connecting groove 24 is positioned at the sole part of the sole 1 and is intersected with the sole transverse groove 22, the heel longitudinal connecting groove 25 is positioned at the heel part of the sole 1 and is intersected with the heel transverse groove 23, and in the structural form, the sole longitudinal connecting groove 24 and the heel longitudinal connecting groove 25 can further deform and twist the sole 1, and the sole two blocks are further improved, and the overall softness of the sole 1 is further improved, as shown in fig. 2.
As shown in fig. 3, the fishbone anti-slip layer 4 comprises a fishhead 41, a fishbody 42 and a fishtail 43, wherein the fishhead 41 is arranged at the toe part of the sole 1, the fishbody 42 is arranged at the sole part of the sole 1, the fishtail 43 is arranged at the heel part of the sole 1, the above structure forms can respectively play an anti-slip role on the toe, sole and heel parts of the ground, the fishhead 41, the fishbody 42 and the fishtail 43 are all wear-resistant rubber pads, and the bottom surfaces are all processed to form anti-slip ribs 44 which are obliquely arranged, the above structure forms can further enhance the integral anti-slip effect of the fishbone anti-slip layer 4 through the anti-slip ribs 44 which are obliquely arranged, and can ensure the wear resistance and prolong the service life.
As shown in fig. 4-5, the heel buffer block 3 comprises a buffer rubber seat 31, a plurality of honeycomb holes 32 are formed in the buffer rubber seat 31, air holes 33 communicated with the honeycomb holes 32 are formed in the bottom surface of the buffer rubber seat 31, the heel buffer block can support the heel through the buffer rubber seat 31, the comfort of the shoe during wearing and walking is improved, particularly, an air column can be formed in the honeycomb holes 32 through air to play a role in damping and buffering, in addition, a sealing cover 34 is adhered to the upper end surface of the buffer rubber seat 31, the sealing cover comprises a rubber sheet 341, a plurality of honeycomb clamping blocks 342 corresponding to the honeycomb holes 32 are arranged on the upper end surface of the rubber sheet 341, through holes corresponding to the air holes 33 are formed in the rubber sheet 341 and the honeycomb clamping blocks 342, and the sealing cover 34 can enlarge the whole contact area of the heel buffer block 3 contacted with the heel, so that the comfort of the heel during wearing is improved.
As shown in fig. 6, the bottom of the fishbone dividing groove 2 is processed to form a tearing-preventing reverse edge 201, and the notch of the fishbone dividing groove 2 is processed to form a grounding reverse edge 202, in the scheme, the tearing-preventing reverse edge 201 can prevent the block structure from tearing the bottom of the groove when the block structure is deformed and twisted, and the grounding reverse edge 202 can form a round edge, so that friction generated between the block structure and the ground when the block structure is twisted can be reduced.
The application principle and the application flow of the utility model are as follows:
The shoe is characterized in that a fishbone dividing groove 2 is formed in the sole 1, the fishbone dividing groove is formed by intersecting a plurality of grooves which are transversely arranged and grooves which are longitudinally arranged, the sole 1 is divided into a plurality of mutually independent block structures, each block structure can be deformed and twisted independently, the muscle form of a normal foot arch is simulated according to the ground condition and the walking posture, the whole sole 1 can flexibly realize bending and stretching, the walking gait is restored to the greatest extent, and the comfort of the shoe during wearing and walking is improved, wherein the sole 1 can be divided into a plurality of large blocks by the main longitudinal groove 21, the sole transverse groove 22 and the heel transverse groove 23, deformation and twisting can be carried out in the longitudinal direction and the transverse direction, the overall flexibility of the sole 1 is improved, the sole longitudinal connecting groove 24 and the heel longitudinal connecting groove 25 can further refine the distribution of blocks of two ground contact parts of the sole and the heel, and the overall flexibility of the sole 1 is further improved.
The sole 1 is also provided with a fishbone anti-slip layer 4 which is distributed on a plurality of independent block structures, and the formed block structures can deform and twist mutually independently due to the arrangement of the fishbone dividing grooves 2, so that the fishbone anti-slip layer 4 and the ground can be ensured to always have a larger contact area when walking, and the overall anti-slip effect of the shoe is further improved.
In addition, the heel part of the sole 1 is also provided with a heel buffer block 3, which comprises a buffer rubber seat 31, a plurality of honeycomb holes 32 are formed in the buffer rubber seat 31, air holes 33 communicated with the honeycomb holes 32 are formed in the bottom surface of the buffer rubber seat 31, the heel can be supported through the buffer rubber seat 31, the comfort of the shoe when the shoe is worn and walked is improved, and particularly, air columns can be formed in the honeycomb holes 32 through air, so that the effects of shock absorption and buffer are achieved.
Finally, it should be noted that the above-mentioned examples are given for the purpose of illustration only and are not intended to limit the utility model to the particular embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. And obvious variations or modifications thereof are contemplated as falling within the scope of the present utility model.

Claims (8)

1. A fishbone sole shoe, comprising:
An upper and a sole (1);
A heel buffer block (3) which is embedded in the heel part of the sole (1);
the fishbone anti-slip layer (4) is embedded on the bottom surface of the sole (1);
The sole (1) is characterized in that a fishbone dividing groove (2) is formed in the bottom surface of the sole (1) and the corresponding fishbone anti-slip layer (4), the whole fishbone dividing groove is in a fishbone shape and is formed by intersecting a plurality of grooves which are transversely arranged and grooves which are longitudinally arranged, and the fishbone dividing groove (2) divides the sole (1) into a plurality of mutually independent block structures.
2. A fish bone-textured sole shoe according to claim 1, wherein the fish bone-dividing grooves (2) comprise a main longitudinal groove (21), a sole transverse groove (22) and a heel transverse groove (23), wherein the main longitudinal groove (21) is communicated with the sole and the heel part of the sole (1), the sole transverse groove (22) is positioned at the sole part of the sole (1), and the heel transverse groove (23) is positioned at the heel part of the sole (1).
3. A fish bone-textured sole shoe according to claim 2, wherein the fish bone-dividing groove (2) further comprises a sole longitudinal groove (24) and a heel longitudinal groove (25), wherein the sole longitudinal groove (24) is located at the sole portion of the sole (1) and intersects the sole transverse groove (22), and the heel longitudinal groove (25) is located at the heel portion of the sole (1) and intersects the heel transverse groove (23).
4. The fish bone-textured sole shoe of claim 1, wherein the fish bone anti-slip layer (4) comprises a fish head portion (41), a fish body portion (42) and a fish tail portion (43), wherein the fish head portion (41) is disposed at a toe portion of the sole (1), the fish body portion (42) is disposed at a sole portion of the sole (1), and the fish tail portion (43) is disposed at a heel portion of the sole (1).
5. A fish bone-pattern sole shoe as claimed in claim 4, wherein the head (41), body (42) and tail (43) are wear-resistant rubber pads, and the bottom surfaces are formed with oblique anti-slip ridges (44).
6. The fishbone sole shoe according to claim 1, wherein the heel buffer block (3) comprises a buffer rubber seat (31) with a plurality of honeycomb holes (32) formed therein, and air holes (33) communicated with the honeycomb holes (32) are formed in the bottom surface of the buffer rubber seat (31).
7. The fishbone shoes according to claim 6, wherein the upper end surface of the cushion rubber seat (31) is adhered with a sealing cover (34) and comprises a rubber sheet (341), 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, the rubber sheet (341) and the honeycomb clamping blocks (342) are provided with through holes corresponding to the air holes (33).
8. The fish bone pattern sole shoe according to claim 1, wherein the bottom of the fish bone dividing groove (2) is provided with an anti-tearing reverse edge (201), and the notch of the fish bone dividing groove (2) is provided with a ground touching reverse edge (202).
CN202520875309.9U 2025-05-06 2025-05-06 Fishbone line sole shoes Active CN223943890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520875309.9U CN223943890U (en) 2025-05-06 2025-05-06 Fishbone line sole shoes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520875309.9U CN223943890U (en) 2025-05-06 2025-05-06 Fishbone line sole shoes

Publications (1)

Publication Number Publication Date
CN223943890U true CN223943890U (en) 2026-02-27

Family

ID=98851269

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520875309.9U Active CN223943890U (en) 2025-05-06 2025-05-06 Fishbone line sole shoes

Country Status (1)

Country Link
CN (1) CN223943890U (en)

Similar Documents

Publication Publication Date Title
US6108943A (en) Article of footwear having medial and lateral sides with differing characteristics
JP6751139B2 (en) Shoe soles for footwear and midfoot impact areas
US10561198B2 (en) Footwear including lightweight sole structure providing enhanced comfort, flexibility and performance features
CN106455749B (en) Article of footwear with inner and outer midsole layers
CN102215710B (en) Article of footwear with a midsole structure
CN102083335B (en) Outsole having grooves forming discrete lugs
EP3854250A1 (en) Sole for a shoe
KR101165793B1 (en) Shoe sole with improved shock absorption, dispersibility and flexibility
US10433615B2 (en) Sole for dispersing pressure of midfoot and metatarsal bones and shoe having same
EP0714613A2 (en) Article of footwear having multiple fluid containing members
KR101047352B1 (en) Sole with reinforced shock absorption and resilience
CN112568550B (en) Sole element
EP4643696A1 (en) Sole for a running shoe
CN218898566U (en) Cushioning structure capable of improving energy feedback, sole and shoe
KR101253208B1 (en) Article of footwear having structure for light weight and high elasticity
CN109008056B (en) Gradual change formula shock attenuation sole
CN213045583U (en) Children use anti-skidding sports shoes
CN212545819U (en) Portable anti-fatigue shoe
CN218418650U (en) Sports shoe sole and sports shoes with stable supporting function
CN219042586U (en) Anti-torsion sole
CN218773432U (en) Portable sports shoe sole and sports shoe
CN111820533A (en) Dynamic Curved Support Sneakers
CN218127214U (en) Shoes with feces treading feeling
CN219206078U (en) Functional visual sole and sports shoes
CN223640234U (en) Shock-absorbing sole with air cushion layer and sports shoes

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant