Partitioned adjustment anti-rollover structure and shoes

CN120021822AActive Publication Date: 2025-05-23QUANZHOU HUANQIU SHOES & GARMENTS CO LTD
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Patent Information

Application Number
CN202510507463.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-05-23
Estimated Expiration
2045-04-22

AI Technical Summary

Technical Problem

When existing shoes provide foot support, it is difficult to achieve support adjustments to different areas such as the arch and forefoot, resulting in insufficient support of the shoes on the side of the foot, which can easily lead to rollover and sprains.

Method used

The anti-roll structure of the zone adjustment is adopted, including suspension cables and straps. The suspension cables are wavy on both sides of the shoe body. Through the coordination of the receiving grooves and traction lines, targeted support is provided, and the elastic adjustment of the straps is achieved to achieve support adjustment in different areas.

Benefits of technology

Effectively disperse foot pressure, improve overall support effect, reduce shoe shaking and offset, reduce rollover risk, and improve fit and comfort during wear.

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Abstract

The invention relates to the technical field of shoes, and discloses a partitioned adjustment anti-rollover structure and a shoe, comprising a suspension cable and a bandage; the suspension cable is of a closed structure; a plurality of receiving grooves which are arranged in parallel and penetrate through the two ends of the midsole are evenly distributed in the bottom face of the midsole in the length direction of the midsole, the front end of the suspension cable is located in the first receiving groove close to the toe cap, and the rear end of the suspension cable is arranged to be a heel part on the rear side of the shoe body and wraps the heel part of the shoe body; the suspension cable is of a wave structure on the two sides of the shoe body respectively, concave parts of the wave structures are located at the two ends of the other containing grooves except the first containing groove respectively, and the concave parts located on the two sides of the same containing groove are connected through a pull wire of a closed structure. The protruding parts located on the two sides of the top of the shoe body are sequentially connected in a penetrating mode through one or more than one binding band. The supporting performance and wrapping performance of the shoe are enhanced.
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Description

Technical Field

[0001] The present invention relates to the technical field of shoes, and in particular to a zone-adjustable rollover prevention structure and shoes. Background Art

[0002] Footwear usually includes two main components: the body and the sole. Current shoes usually provide shock absorption through a large sole and are in direct contact with the outside world. At the same time, the body set on the large sole fully wraps the foot, effectively improving the integrity of the shoe and foot, and providing better wearing comfort through the shock absorption effect of the large sole. The fit between the shoe and the foot is mainly achieved by pulling the laces set on the body to make the body shrink inward, thereby fitting the shape of the user's foot. However, the pulling area of ​​the laces is limited, so that the lateral support pressure of the shoe body on the foot is insufficient, and it is impossible to provide sufficient lateral support to the side of the foot, which makes the foot easy to roll over and cause sprains. In addition, traditional shoes often find it difficult to achieve support and adjustment in different areas such as the arch and forefoot, and there is a situation where some parts of the foot are not properly wrapped and supported. Summary of the invention

[0003] In view of this, an object of the present invention is to provide a zone-adjustable anti-rollover structure and a shoe to solve the problems mentioned in the above background technology.

[0004] In order to achieve the above-mentioned purpose, the present invention adopts such a technical scheme: a partitioned adjustment anti-rollover structure, applied to shoes, the shoes include a shoe body, a midsole and an outsole, the midsole is arranged at the bottom of the shoe body, the outsole is arranged at the bottom of the midsole, and includes a suspension cable and a strap; the suspension cable is a closed structure; the bottom surface of the midsole is evenly distributed along its length with a plurality of receiving grooves arranged in parallel and passing through the two ends of the midsole, the front end of the suspension cable is located in the first receiving groove close to the toe, and the rear end of the suspension cable is set as the heel part on the rear side of the shoe body to wrap the heel part of the shoe body; the suspension cable is a wave structure on both sides of the shoe body, wherein the concave parts of the wave structure are respectively located at the two ends of the remaining receiving grooves except the first receiving groove, and the concave parts located on both sides of the same receiving groove are connected by a traction line of a closed structure, and the traction line is located in the corresponding receiving groove, and its convex parts are located on both sides of the top of the shoe body, and are cross-threaded and connected in sequence by one or more straps.

[0005] Furthermore, the suspension cable between the outsole and the shoe body is fixedly connected to the outsole and the shoe body.

[0006] Furthermore, a suspension cable located between the outsole and the shoe body is movably connected to the outsole and the shoe body, and the suspension cable can move between the outsole and the shoe body.

[0007] Furthermore, a movable groove is provided on the side of the outsole, and the suspension cable is movably arranged in the movable groove.

[0008] Furthermore, the movable groove is in a straight line structure or a V-shaped structure corresponding to the connection state of the suspension cable.

[0009] Furthermore, the shoe body is provided with one or more fixers, and the suspension cable passes through the fixers.

[0010] Further, the fixer includes a shell, and threading holes are respectively provided on both sides of the center line of the shell, and the suspension cable passes through the fixer through the threading holes, and a connecting arm is passed through the top surface of the shell, a push block is provided at the inner end of the connecting arm, and a cover cap is fixed to the outer end of the connecting arm, and a positioning seat surrounding the push block is provided at the inner top of the shell, and one or more clamping blocks are provided on the outer side wall of the push block, and the positioning seat is provided with a clamping slot connected to the clamping block by insertion; a spring is provided around the connecting arm, one end of the spring is fixedly connected to the top of the shell, and the other end of the spring is rotatably connected to the push block; the spring is located inside the positioning seat; elastic arms are symmetrically provided on two opposite side walls of the inner cavity of the shell, and the elastic arms are in a downward arc structure, the ends of the two elastic arms are close, and a stop block is provided on the bottom surface of the end of the elastic arm; the positioning seat is respectively provided with limit blocks on both sides of the top of the clamping slot; a positioning groove is formed between two adjacent limit blocks.

[0011] Furthermore, the push block includes a hollow cylinder; the top of the cylinder is connected to a push head with a truncated cone structure, the connecting arm is inserted into the cylinder and connected to the bottom of its push head, and the clamping block is arranged on the outer wall of the cylinder.

[0012] Furthermore, a protrusion having an arc-shaped longitudinal cross section is convexly provided on the bottom of the shell.

[0013] The present invention also provides a pair of shoes, comprising the aforementioned zone-adjustable anti-rollover structure. Beneficial Effects

[0014] Compared with the prior art, the present invention has at least the following advantages: the present invention can adjust the tightness of the straps to flexibly adjust the different foot positions and sports requirements. For example, the straps at the forefoot or arch can be tightened during exercise to enhance support and stability; the straps can be loosened appropriately during leisure time to reduce the restraint on the foot and improve comfort. The suspension cable of the present invention is in a wave structure on both sides of the shoe body, and is positioned by the receiving groove and the traction line, so that different areas of the shoe can be supported in a targeted manner. The toe, both sides of the shoe body and the heel and other parts all obtain corresponding support forces due to the layout of the suspension cable, which can effectively disperse the pressure of the foot, evenly distribute the pressure, reduce the local pressure burden of the foot, improve the overall support effect, and reduce the shaking and deviation of the shoe during walking, running and other actions. The present invention effectively limits the excessive lateral movement of the shoe body, reduces the risk of rollover, provides better safety protection for the wearer, reduces the possibility of accidents such as sprains during exercise, wraps and restrains the foot from the heel, both sides and the top, keeps the foot in a relatively fixed position in the shoe, and improves the fit and comfort of wearing. The wave structure and connection method of the suspension cable play a certain buffering role, reducing the impact force on the feet.

[0015] The suspension cable is fixedly connected to the outsole and the shoe body, forming a stable support network on the shoe body, dispersing the pressure to multiple fixed points and connected suspension cables, effectively limiting excessive foot movement, providing stable support for exercise, and reducing the risk of injury. The suspension cable is flexibly connected to the outsole and the shoe body, making it more flexible when adjusting, and can better adapt to the dynamic changes of the foot in different movement states. The support strength and angle can be adjusted in real time according to the specific movement and pressure distribution, better fit the foot shape and movement trajectory, and maintain support stability in complex movements. The suspension cable is flexibly connected to the outsole and the shoe body, and with the fixator, the suspension cable is fixed at a specific position on the shoe body, which can limit the movement of the suspension cable in this area, provide more direct and stable support for the side of the foot, and effectively enhance the anti-rollover ability. The fixator allows the user to quickly adjust the performance of the shoe according to the movement state, and realize the transition from leisure state to movement state. It has strong practicality and operability. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural schematic diagram of an embodiment of the present invention.

[0017] Figure 2 It is a schematic diagram of the connection structure between the midsole, the suspension cable and the binding strap of the present invention.

[0018] Figure 3 It is a structural schematic diagram of an embodiment of the outsole of the present invention.

[0019] Figure 4 It is a schematic diagram of the connection structure of the suspension cable, the bottom of the midsole and the traction line of the present invention.

[0020] Figure 5 It is a structural schematic diagram of another embodiment of the present invention.

[0021] Figure 6 It is a schematic diagram of the longitudinal cross-sectional structure of the fixator of the present invention.

[0022] Figure 7 It is a schematic diagram of the transverse cross-sectional structure of the fixator of the present invention.

[0023] Figure 8 For the present invention Figure 7 Schematic diagram of the local enlarged structure.

[0024] Fig. 9 It is a schematic structural diagram of the rotatable connection between the spring and the push head of the present invention.

[0025] Fig.10 It is a structural schematic diagram of an implementation manner of the fixing seat of the present invention.

[0026] Fig.11 The figure is a schematic structural diagram of an implementation mode of a pusher head of the present invention.

[0027] Fig.12 It is a structural schematic diagram of another embodiment of the fixing seat of the present invention.

[0028] Fig.13 It is a schematic structural diagram of another embodiment of the pusher head of the present invention.

[0029] Fig.14 It is a structural schematic diagram of another embodiment of the fastener of the present invention.

[0030] Labels in the figure: 1-shoe body; 2-outsole; 20-movable groove; 200-V-shaped structure; 201-straight structure; 3-suspension cable; 30-convex part; 31-recessed part; 32-front end; 33-heel; 4-binding strap; 40-first binding strap area; 41-second binding strap area; 5-spring buckle; 6-midsole; 60-receiving groove; 7-traction line; 8-fixer; 80-housing; 800-inner cavity; 801-threading hole; 802 - protrusion; 81-elastic arm; 810-stop block; 82-positioning seat; 820-movable cavity; 821-card slot; 822-limit block; 823-positioning slot; 83-push block; 830-cylinder; 831-card block; 832-push head; 8320-slide groove; 8321-slip ring; 8322-connecting plate; 8323-connecting hole; 84-connecting arm; 85-spring; 86-cap; 87-decorative layer; 9-through pipe. DETAILED DESCRIPTION

[0031] To make the objectives, technical solutions and advantages of the present invention more clear, the following provides a detailed description in conjunction with the accompanying drawings and specific embodiments. A lot of specific details are set forth in the following description to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways different from those described herein. Those skilled in the art can make similar improvements without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.

[0032] It should be noted that when an element is referred to as "fixedly provided on" another element, it can be directly on the other element or there may also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to an element or there may be intermediate elements at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation.

[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present invention belongs. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items. Embodiment 1

[0034] Refer to Figure 1 、 Figure 2 and Figure 3 , the present invention is applied to shoes. The shoes include a shoe body 1, a midsole 6 and an outsole 2. The midsole 6 is provided at the bottom of the shoe body 1, and the outsole 2 is provided at the bottom of the midsole 6. This embodiment proposes a partition adjustment anti-rollover structure, including a suspension cable 3 and a lace 4; the suspension cable 3 is a closed structure formed by fixedly connecting the head and the tail; a plurality of parallel receiving grooves 60 that penetrate both ends of the midsole 6 are evenly distributed along the length of the bottom surface of the midsole 6. The front end 32 of the suspension cable 3 is located in the first receiving groove 60 near the toe of the shoe. The rear end of the suspension cable 3 is set as a heel part 33 at the rear side of the shoe body, wrapping the heel part of the shoe body 1. In this embodiment, a through tube 9 is fixed to the shoe body 1 at the heel part, and the suspension cable 3 passes through the through tube 9; the suspension cable 3 forms a wave structure on both sides of the shoe body 1 respectively. Among them, the respective recessed parts 31 of the wave structure are sequentially located at both ends of the remaining receiving grooves 60 except the first receiving groove 60 in the direction from the toe to the heel of the shoe, and the recessed parts 31 located on both sides of the same receiving groove 60 are connected by a traction line 7 of the closed structure, and the traction line 7 is located in the receiving groove 60; the respective protruding parts 30 are located on both sides of the top of the shoe body 1 and are sequentially cross-connected by one or more laces 4 in cooperation. It should be noted that when the midsole and the outsole are fixedly connected, the traction line 7 and the suspension cable 3 are movably arranged in the receiving groove.

[0035] The suspension cable 3 located between the outsole 2 and the shoe body 1 is fixedly connected to the outsole and the shoe body 1 by gluing.

[0036] In use, the strap 4 is used in conjunction with the spring buckle 5 to adjust the wrapping of the shoe in different areas, such as Figure 1 As shown, all the protrusions 30 are tied by a strap, and four spring buckles 5 are provided on the strap, which divides the strap into two parts in terms of position, namely, a first strap area 40 and a second strap area 41, which respectively correspond to adjusting the tightness of the suspension cable 3 at the forefoot of the shoe and the suspension cable 3 at the arch of the shoe to adjust the tightness of the foot wrapping.

[0037] In other embodiments, there may be two straps 4, one for tying the raised portion 30 of the cable 3 at the forefoot of the shoe and the other for tying the raised portion 30 of the cable 3 at the arch of the shoe, so that the tightness of the shoe at the forefoot and the arch can be adjusted separately, and the two ends of the strap are connected by lacing or by a spring buckle.

[0038] Or, there are four straps, such as Figure 2 As shown, the six raised portions 30 of the suspension cables 3 located at the forefoot of the shoe are cross-bound and connected by two straps 4, and the two ends of the two straps 4 are connected by spring buckles 5 respectively; the six raised portions 30 of the suspension cables 3 located at the arch of the shoe are cross-bound and connected by another two straps 4, and the two ends of the two straps 4 are connected by spring buckles 5 respectively.

[0039] Of course, in other feasible implementations, the number of straps 4 may be 4, 6 or other numbers, and the forefoot and arch positions of the shoe may be more finely divided to adjust the tightness of the shoe body wrapping to adapt to different foot shapes, which is not limited to the content shown in this embodiment.

[0040] It should be noted that the binding belt 4 can be tied in a commonly used lacing manner, or can be tied with the aid of multiple spring buckles 5.

[0041] Working principle of the first embodiment: The suspension cable 3 of the present embodiment is in a wave structure on both sides of the shoe body 1 and is fixedly connected to the outsole 2 and the shoe body 1, which can limit the excessive lateral displacement of the shoe body 1, provide lateral support for the shoe, effectively prevent rollover during exercise, and reduce the risk of injury such as sprains. The front end of the suspension cable 3 is in the toe receiving groove 60, the rear end wraps the heel, and the middle part is connected to the traction line 7 through multiple receiving grooves 60. Different parts of the foot obtain corresponding support due to the layout of the suspension cable 3, which can effectively disperse the pressure of the foot, improve the overall support effect, and reduce the local burden. The heel wrapping of the suspension cable and the cross connection of the top straps can bind and fix the foot from multiple directions, making it difficult for the foot to slide in the shoe, and enhancing the overall wrapping feeling and stability. By tying the suspension cable with the strap 4 and the cross connection of the strap 4, the tightness of different areas of the shoe can be adjusted according to different sports needs and personal preferences to adapt to various sports scenes. For example, when exercising, you can tighten the straps at the forefoot or arch to enhance support and stability; when relaxing, you can loosen the straps appropriately to reduce the restraint on the foot and improve comfort. The wave structure of the suspension cable and the connection with each part can play a certain buffering role when the shoe is impacted, absorb and disperse the impact force, and improve the comfort of wearing. The suspension cable is fixedly connected between the outsole and the shoe body, which can more effectively transfer the force generated by the movement of the foot to the outsole, so that the outsole can better contact and interact with the ground, provide better energy feedback to the foot during exercise, help the wearer complete the movement more easily, and improve sports performance. Embodiment 2

[0042] See also Figure 1-Figure 4 The present embodiment discloses a partitioned adjustable anti-rollover structure, and the remaining components are the same as those in the first embodiment, and are not described one by one here; the difference from the first embodiment is that the suspension cable 3 located between the outsole 2 and the shoe body 1 is movably connected to the outsole 2 and the shoe body 1, and the suspension cable 3 can move between the outsole 2 and the shoe body 1.

[0043] Preferably, a movable groove 20 is formed on the inner side of the outsole 2, and the movable groove 20 is in a straight line structure 201 or a V-shaped structure 200 corresponding to the connection state of the suspension cable 3. The suspension cable 3 is movably arranged in the movable groove 20.

[0044] Principle of the second embodiment: The active connection of the suspension cable 3 with the outsole 2 and the shoe body 1, combined with the fixing effect of the strap 4, forms a relatively flexible and stable support system. The suspension cable 3 is fixed and formed into a wave structure through the receiving groove 60, the traction line 7 and the strap 4, and is movably connected with the outsole 2 and the shoe body 1, which can provide support at multiple points, disperse pressure, keep the shoes stable in various sports, and reduce the risk of rollover. The movably connected suspension cable can move and deform accordingly with the changes of the foot in different sports movements, provide good flexibility support, reduce restrictions on foot movement, and reduce fatigue. For example, when running, it can adapt to the bending and stretching of the foot, so that the shoe fits the movement of the foot more closely, reduce movement obstacles, and make the wearer feel more natural and comfortable. When playing basketball, badminton, etc., which require frequent multi-directional movements such as horizontal, vertical and rotation, the active connection of the suspension cable 3 can better conform to the various movement trajectories of the foot, provide more flexible support for the foot, and improve the agility of movement. The heel of the suspension cable 3 wraps around the heel of the shoe body 1, and cooperates with the top strap 4 to fully wrap the foot from the heel to the sides and top of the shoe body. By adjusting the tightness of the strap 4, the wrapping and fixation of the foot can be enhanced when necessary. When performing actions that are prone to rollover, tightening the strap can enable the suspension cable to better restrain the foot, limit excessive lateral displacement of the foot, and improve the anti-rollover performance.

[0045] As the foot is in different states during movement, the movably connected suspension cable 3 can adjust the wrapping force on the foot and the fit in real time by cooperating with the straps.

[0046] The wave structure of the suspension cable 3 and the connection with various parts can play a certain buffering role during exercise, absorb impact force and reduce the burden on the feet. Embodiment 3

[0047] See also Figure 5-Figure 13 The partition-adjustable anti-rollover structure disclosed in this embodiment is based on the second embodiment, in which one or more fixers 8 are provided on the shoe body 1, and the suspension cable 3 passes through the fixer 8.

[0048] The fixing device 8 comprises a housing 80, and threading holes 801 are respectively provided at the bottom of both sides of the center line of the housing 80. The suspension cable 3 passes through the fixing device 8 through the threading holes 801, and the suspension cable 3 is close to the bottom of the housing 80. A connecting arm 84 is vertically penetrated on the top surface of the housing 80, and a push block 83 is provided at the inner end of the connecting arm 84, and a cap 86 is fixed at the outer end of the connecting arm 84. A decorative layer 87 with a pattern is provided on the top of the cap 86. The push block includes a hollow cylinder 830; a push head 832 of a truncated cone structure is connected to the top of the cylinder; the connecting arm 84 is inserted into the cylinder 830 and connected to the bottom of the push head 832; the outer wall of the cylinder 830 is provided with one or more clamping blocks 831; a spring 85 is arranged around the connecting arm 84; one end of the spring 85 is fixedly connected to the top of the shell 80, and the other end of the spring 85 is rotatably connected to the push head 832; a positioning seat 82 surrounding the push block 83 is arranged on the inner top of the shell 80, and the spring 85 is located inside the positioning seat 82. The positioning seat 82 is provided with a card slot 821 connected to the card block 831. The positioning seat 82 is provided with limited blocks 822 on both sides of the top of the card slot; a positioning slot 823 is formed between two adjacent limited blocks 822. Elastic arms 81 are symmetrically arranged on two opposite side walls of the shell cavity. The elastic arms 81 are located above the suspension cable 3 and are in a downward arc structure. The ends of the two elastic arms 81 are close to each other, and a stop block 810 is arranged on the bottom surface of the end of the elastic arm 81.

[0049] In the technical solution of this embodiment, the spring 85 is rotatably connected with the push head 832, mainly by providing a circular slide groove 8320 on the side where the push head 832 is connected with the connecting arm 84, and a sliding ring 8321 adapted thereto is slidably connected in the slide groove 8320, and the sliding ring 8321 is coaxial with the connecting arm 84, and its outer side wall is evenly connected with a plurality of circularly arranged connecting pieces 8322, and the connecting piece 8322 is provided with a connecting hole 8323 for the spring 85 to pass through, and one end of the spring 85 is passed through and installed in the connecting hole 8323. The other end of the spring 85 is fixed to the inner top of the housing 80, and when the cap is rotated, the push block 83 rotates accordingly, and the spring 85 will not be twisted because it is rotatably connected with the push block 83.

[0050] According to the technical solution of this embodiment, when the suspension cable 3 needs to be fixed, the cap 86 is pressed downward to make the spring 85 in a stretched state, and the block 831 is disengaged from the slot 821. Then, the cap 86 is rotated to make the block 831 pass over the limit block 822 and enter the positioning slot 823. At this time, the push head 832 presses the elastic arm 81 downward to increase the bending degree of the elastic arm 81, and the end of the elastic arm 81 moves downward, so that the stop block 810 presses the suspension cable 3 downward to limit the movement of the suspension cable 3. When the suspension cable 3 needs to be released, the cap 86 is pressed and rotated to make the block 831 pass over the limit block 822 and disengage from the positioning slot 823, and the block 831 is aligned with the slot 821, and the cap 86 is released. Under the action of the spring 85, the block 831 enters the slot 821, thereby releasing the suspension cable 3. In this embodiment, two fixing devices 8 are respectively arranged on both sides of the shoe body, of which two are arranged on both sides above the heel, and two are arranged on both sides of the middle part of the shoe body 1. In other feasible implementations, multiple fixing devices 8 are arranged, which can be distributed at one or more places of the forefoot, heel, and arch of the shoe body, and are not limited to the contents shown in this embodiment.

[0051] like Fig.10 and Fig.11 As shown, the card block 831 and the corresponding card slot 821 are respectively provided with two. Fig.12 and Fig.13 As shown, there are four card blocks 831 and four corresponding card slots 821. In other feasible implementations, the number of card blocks 831 and four corresponding card slots 821 may be set differently, which is not limited to the content shown in this embodiment.

[0052] The fixing device 8 added to the second embodiment fixes the suspension cable 3 at a specific position of the shoe body 1, which can limit the movement of the suspension cable 3 in this area, provide more direct and stable support for the side of the foot, and effectively enhance the anti-rollover capability. When the fixing device 8 is not working, the suspension cable 3 can move to provide dynamic support. When the fixing device is working, the anti-rollover capability and support can be enhanced. The fixing device 8 allows the user to quickly adjust the performance of the shoe according to the sports state, and realize the conversion from the leisure state to the sports state, which has strong practicality and operability. Embodiment 4

[0053] See also Fig.14The present embodiment discloses a partitioned adjustment anti-rollover structure. On the basis of the third embodiment, a protrusion 802 with an arc-shaped longitudinal cross section is provided at the center of the bottom of the housing 80, and the suspension cable 3 is located on the surface of the protrusion 802. When the fixer 8 works, the elastic arm 81 and the stopper 810 press the suspension cable 3 downward and are located on both sides of the protrusion 802 respectively. The structure between the elastic arm 81, the protrusion 801 and the suspension cable 3 forms a more stable triangular structure, which can enhance the rigidity and strength of the fixer, thereby more effectively fixing the suspension cable 3 and improving the overall performance of the shoe anti-rollover structure.

[0054] The present invention also proposes a shoe, comprising a shoe body 1, a midsole 6 and an outsole 2, wherein the midsole 6 is arranged at the bottom of the shoe body 1, and the outsole 2 is arranged at the bottom of the midsole 6; and also comprises a zoned adjustment anti-rollover structure as described in the previous embodiments.

[0055] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A zone-adjustable rollover prevention structure, applied to shoes, the shoes comprising a shoe body, a midsole and an outsole, the midsole being arranged at the bottom of the shoe body, the outsole being arranged at the bottom of the midsole, characterized in that: It includes a suspension cable and a strap; the suspension cable is a closed structure; the bottom surface of the midsole is evenly distributed along its length with a plurality of receiving grooves arranged in parallel and passing through both ends of the midsole, the front end of the suspension cable is located in the first receiving groove close to the toe, and the rear end of the suspension cable is set as the heel part on the rear side of the shoe body to wrap the heel part of the shoe body; the suspension cable is respectively in a wave structure on both sides of the shoe body, wherein the recessed parts of the wave structure are respectively located at the two ends of the remaining receiving grooves except the first receiving groove, and the recessed parts located on both sides of the same receiving groove are connected by a traction line of a closed structure, and the traction line is located in the corresponding receiving groove, and its raised parts are located on both sides of the top of the shoe body, and are cross-threaded and connected in sequence by one or more straps.

2. The partition-adjustable anti-rollover structure according to claim 1, characterized in that: The suspension cable between the outsole and the shoe body is fixedly connected to the outsole and the shoe body.

3. The partition-adjustable anti-rollover structure according to claim 1, characterized in that: The suspension cable located between the outsole and the shoe body is movably connected to the outsole and the shoe body, and the suspension cable can move between the outsole and the shoe body.

4. The partition-adjustable anti-rollover structure according to claim 3 is characterized in that: A movable groove is provided on the side of the large bottom, and the suspension cable is movably arranged in the movable groove.

5. The partition-adjustable anti-rollover structure according to claim 4 is characterized in that: The movable groove is in a straight line structure or a V-shaped structure corresponding to the connection state of the suspension cable.

6. The partition-adjustable anti-rollover structure according to claim 5, characterized in that: The shoe body is provided with one or more fixers, and the suspension cable passes through the fixers.

7. The partition-adjustable anti-rollover structure according to claim 6, characterized in that: The fixer comprises a shell, and threading holes are respectively arranged on both sides of the center line of the shell, and the suspension cable passes through the fixer through the threading holes. A connecting arm is passed through the top surface of the shell, and a push block is arranged at the inner end of the connecting arm, and a cover cap is fixed at the outer end of the connecting arm. A positioning seat surrounding the push block is arranged at the inner top of the shell, and one or more clamping blocks are arranged on the outer side wall of the push block, and the positioning seat is provided with a clamping groove connected with the clamping block by insertion; a spring is arranged around the connecting arm, one end of the spring is fixedly connected to the inner top of the shell, and the other end of the spring is rotatably connected to the push block; the spring is located inside the positioning seat; Elastic arms are symmetrically arranged on two opposite side walls of the shell cavity, and the elastic arms are in a downward arc structure. The ends of the two elastic arms are close to each other, and stop blocks are arranged on the bottom surfaces of the ends of the elastic arms; the positioning seat is respectively provided with limit blocks on both sides of the top of the card slot; and a positioning groove is formed between two adjacent limit blocks.

8. The partition-adjustable anti-rollover structure according to claim 7, characterized in that: The push block comprises a hollow cylinder; a push head with a truncated cone structure is connected to the top of the cylinder, the connecting arm is inserted into the cylinder and connected to the bottom of the push head, and the clamping block is arranged on the outer side wall of the cylinder.

9. The partition-adjustable anti-rollover structure according to claim 7, characterized in that: The bottom of the shell is provided with a protrusion with an arc-shaped longitudinal cross section.

10. A shoe, characterized in that: It comprises a partition-adjustable anti-rollover structure as described in any one of claims 1-9.

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