Shoes with built-in emergency power supply in the heel

By designing a detachable built-in emergency power system in the shoe, the problems of exposed batteries and inconvenient installation are solved, achieving convenient, safe, and durable power support, meeting emergency power needs, and extending the life of the shoe.

CN119632324BActive Publication Date: 2025-11-18东莞市鑫盈环保科技有限公司
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Patent Information

Application Number
CN202510023717.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-11-18
Estimated Expiration
2045-01-07

AI Technical Summary

Technical Problem

Existing multifunctional smart shoes have issues such as battery exposure, non-reusability, and inconvenient installation when the battery is integrated into the shoe structure, which affect ease of use and durability.

Method used

Design a shoe with a detachable heel-mounted emergency power supply, including a sole, upper, detachable heel, and built-in battery assembly. The components are securely connected by studs, slots, and rubber plugs. The battery compartment features an exoskeleton design for easy disassembly and sealing, and the sole rubber layer is replaceable to extend its service life.

Benefits of technology

It provides additional power support, improves portability and safety, extends the lifespan of the shoes, enhances stability and comfort, meets users' power needs in emergency situations, and reduces the burden of carrying additional charging equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of shoes with emergency power supply in heel, including shoe sole, vamp and heel, the shoe sole includes built-in shoe sole shockproof support shoe sole body, with shoe sole integrally formed, cooperate and install the assembly seat of heel, the assembly seat is internally provided with embedded slot, integrally formed with stud mounting lug on the side of assembly seat, the heel includes with the assembly seat cooperation and install the heel body, with the fixed installation of heel body, and can be inserted into the heel shockproof support of shoe sole, be provided with in the heel body inside, and the battery compartment of the opening outward, battery pack is assembled in the inside of battery compartment, and the bottom rubber layer of clamping in the bottom of heel body, can be replaced;The application will emergency power supply function be built into shoe, consider the stability and easy replaceability of shoe sole and heel simultaneously, can improve the practical value and user experience of shoe, especially for those who need to use charging equipment frequently, it has significant attraction.
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Description

TECHNICAL FIELD

[0001] The present application relates to a kind of shoes of emergency power supply in heel. BACKGROUND

[0002] The sole of common shoe is divided into midsole and outsole, and the midsole generally needs to have certain toughness and shock-absorbing effect, and the outsole needs to have certain antiskid and wear-resistant performance.

[0003] With the emergence of multifunctional intelligent shoes, charging and power supply for such shoes greatly affect the original structure and performance of the shoes from the structure, and how to reasonably arrange the corresponding components becomes a problem restricting the production and promotion of such shoes, so that the battery cooperates with the shoes to achieve portability and convenient use, and provides convenient power support for users. However, most of the batteries cooperating with the shoes are directly implanted into the interior of the shoes, although the battery can be disassembled, but for some shoes with serious and rapid wear of the sole or heel, the battery may be exposed, and since the battery cannot be installed and used again with the sole, the battery is idle, so it is necessary to design a reusable and convenient disassembly and replacement power supply emergency shoe for the combination of battery, heel and sole. SUMMARY

[0004] In view of the deficiencies in the prior art, the purpose of the present application is to provide a shoe with emergency power supply in heel.

[0005] The technical scheme adopted by the present application to solve its technical problems is:

[0006] A shoe with emergency power supply in heel, comprising a sole, an upper arranged on the sole, and a heel detachably mounted on the sole, the sole comprising a sole body with an embedded anti-shock bracket, a mounting seat integrally formed with the sole body and cooperating with the heel, the mounting seat having an embedded groove, and a mounting ear with a stud integrally formed on the side of the mounting seat, the heel comprising a heel body cooperating with the mounting seat, an anti-shock bracket fixedly mounted on the heel body and insertable into the sole, a battery compartment opened in the heel body and having an opening facing outward, a battery assembly assembled in the battery compartment, and a detachable and replaceable bottom rubber layer clamped on the bottom of the heel body.

[0007] Preferably, U-shaped clamping grooves are arranged on both sides of the heel body and can cooperate with the mounting ear, screw holes are arranged in the U-shaped clamping grooves and can cooperate with the studs in the mounting ear, a block-shaped rubber plug is arranged at the opening of the battery compartment and connected to the heel body by a rubber band, and a silica gel connecting band is buckled on one end of the block-shaped rubber plug and the other end of the heel body.

[0008] Further, the heel body bottom is also provided with a net-shaped slot, and a plunger hole is arranged in the grid between the net-shaped slots.

[0009] Preferably, the heel shockproof support is embedded on the upper surface of the heel body, the sole insertion tooth capable of being inserted into the instep part of the sole body is integrally formed with the support body, the support side plate capable of closely contacting the heel body is integrally formed below the support body, the heel insertion tooth inserted into the heel body and fixed is integrally formed on the support side plate.

[0010] Preferably, the tooth grooves are arranged on both sides of the opening of the battery compartment.

[0011] Preferably, the battery assembly comprises a battery exoskeleton inserted into the inside of the battery compartment and fixedly installed with the heel body, and a storage battery embedded in the inside of the battery exoskeleton and convenient to insert;

[0012] Further, the battery exoskeleton comprises an exoskeleton shell, a flip cover hingedly installed at the front end of the exoskeleton shell, a bottom cover fixedly installed at the tail end of the exoskeleton shell by screws, a plurality of spring members fixed on the side of the bottom cover facing the exoskeleton shell, and a push plate assembled on the inside of the tail part of the exoskeleton shell and abutting against the spring members.

[0013] Further, the exoskeleton shell is integrally formed with a shell elastic buckle on both sides of the end facing the flip cover, a flip clamping ear integrally formed at the central part of the upper side of the exoskeleton shell, an annular groove arranged at the opening of the exoskeleton shell facing the flip cover, and a rubber ring embedded in the annular groove.

[0014] Further, the inside of the tail end of the exoskeleton shell is provided with a push plate movable cavity.

[0015] Further, the flip cover is integrally formed with a flip elastic buckle at the part corresponding to the flip clamping ear.

[0016] Further, the bottom cover is integrally formed with a plurality of convex columns assembling the spring members on the side facing the exoskeleton shell.

[0017] Preferably, the bottom adhesive layer comprises a bottom adhesive layer body, a net-shaped rib integrally formed above the bottom adhesive layer body, and a plunger head arranged in the grid between the net-shaped ribs.

[0018] The beneficial effects of the present application are as follows:

[0019] 1. The most significant advantage is the built-in emergency power supply function, which provides additional safety protection for users. In an emergency, the user can use the battery assembly in the shoes to supply power, charge the mobile phone and other devices, or use the lighting function.

[0020] 2. In addition to the battery function, this design also considers comfort and durability, for example, the detachable bottom adhesive layer design can prolong the service life of the shoes, while improving the economy;

[0021] 3. The special installation method of the heel ensures the stability of the heel, reduces the possibility of accidental falling off, in addition, the battery assembly adopts the outer skeleton design, has the sealing waterproof function, improves the safety;

[0022] 4. This design is an innovation of traditional shoes, combining intelligent technology with practical needs in daily life, providing more functions and value for users;

[0023] 5. Since the battery assembly is built into the shoes, users do not need to carry additional power banks and other equipment, improving portability and convenience. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a structure diagram of a kind of heel built-in emergency power supply shoes of the application;

[0025] Figure 2 It is Figure 1 One of the explosion structure diagram;

[0026] Figure 3 It is Figure 1 Second of the explosion structure diagram;

[0027] Figure 4 It is Figure 1 Sectional view;

[0028] Figure 5 It is Figure 1 Explosion structure diagram of heel in it;

[0029] Figure 6 It is Figure 5 Structure diagram of anti-vibration support of heel in it;

[0030] Figure 7 It is Figure 5 Structure diagram of battery assembly in it;

[0031] Figure 8 It is Figure 7 Explosion structure diagram;

[0032] Figure 9 It is sectional view after cover of battery assembly is closed;

[0033] Figure 10 It is Figure 5 Structure diagram of bottom adhesive layer in it. DETAILED DESCRIPTION

[0034] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments are not intended to limit the present invention.

[0035] Example

[0036] like Figures 1-10 As shown, a shoe with a built-in emergency power supply in the heel includes a sole 1, an upper 2 disposed on the sole 1, and a heel 3 detachably mounted on the sole 1. The sole 1 includes a sole body 11 with a built-in shock-absorbing support, an assembly seat 12 integrally formed with the sole body 11 and used to mount the heel 3, the assembly seat 12 having an embedded groove 121, and an integrally formed mounting ear 122 with a stud on the side of the assembly seat 12. The heel 3 includes a heel body 31 mounted with the assembly seat 12, a shock-absorbing support 32 fixedly mounted with the heel body 31 and inserted into the sole 1, a battery compartment 33 opened inside the heel body 31 with an outward opening, a battery assembly 34 assembled inside the battery compartment 33, and a removable and replaceable sole rubber layer 35 snapped onto the bottom of the heel body 31.

[0037] In case of emergencies or when charging is needed, the battery component in the heel provides temporary power, such as for charging a phone or other devices. The sole integrates shock-absorbing support, offering added comfort and stability, reducing impact during walking or running, and increasing wearing comfort. The heel is easily detachable and removable, allowing users to replace or maintain it as needed, improving the shoe's maintainability and durability.

[0038] The heel body 31 has U-shaped slots 311 on both sides that can cooperate with mounting ears 122, screw holes 312 in the U-shaped slots 311 that can cooperate with studs inside the mounting ears 122, a block-shaped rubber plug 313 located at the opening of the battery compartment 33 and connected to the heel body 31 by tape, and a silicone connecting strap 314 with one end fastened to the block-shaped rubber plug 313 and the other end fastened to the heel body 31.

[0039] It should be further noted that the U-shaped slot and screw hole design ensure a secure connection between the heel body and the mounting base, preventing loosening or detachment during use. The use of block-shaped rubber plugs and silicone connecting strips effectively covers the battery compartment, preventing the battery assembly from shifting or falling out during use, thus increasing product stability and safety.

[0040] The bottom of the heel body 31 is also provided with a mesh groove 315 and a plunger hole 316 in the mesh between the mesh grooves 315. Specifically, the bottom rubber layer 35 can be assembled by the mesh grooves 315 and the plunger hole 316.

[0041] The heel shock-absorbing bracket 32 ​​is embedded in the bracket body 321 on the upper surface of the heel body 31. The sole insertion teeth 322 are integrally formed with the bracket body 321 and can be inserted into the arch of the sole body 11. The bracket side plate 323 is integrally formed below the bracket body 321 and can be closely attached to the heel body 31. The heel insertion teeth 324 are integrally formed on the bracket side plate 323 and are fixed after being inserted into the heel body 31.

[0042] The one-piece molding design of the entire heel shock-absorbing support 32 makes it more robust and durable, reduces the connection between parts, lowers the risk of damage, and extends its service life. It not only provides reasonable support and cushioning based on the anatomical structure and movement patterns of the foot, conforming to the principles of ergonomics and providing a comfortable wearing experience for the wearer, but also protects the battery assembly 34 housed inside the heel body 31.

[0043] It should be further explained that after the heel insertion tooth 324 is inserted into the heel body 31, it works with the bracket body 321 and the bracket side plate 323 to form a C-shaped main support frame. This improves the structural stability of the heel body 31 and prevents it from deforming and collapsing due to pressure during use, thereby compressing the battery assembly 34 and improving the safety of the battery assembly 34. The sole insertion tooth 322 first enters the arch of the sole body 11 through the embedded groove 121 and then contacts the shock-absorbing bracket inside the sole body 11, facilitating the assembly of the heel body 31 and the sole body 11.

[0044] The battery compartment 33 has grooves 331 on both sides of the opening. Specifically, the grooves 331 facilitate the assembly and fixation of the battery assembly 34.

[0045] The battery assembly 34 includes a battery outer frame 341 that is inserted into the battery compartment 33 and fixedly installed with the heel body 31, and a battery 343 that is embedded in the battery outer frame 341 for easy insertion.

[0046] The battery outer frame 341 includes an outer frame housing 3411, a flip cover 3412 hinged to the front end of the outer frame housing 3411, a bottom cover 3413 fixed to the rear end of the outer frame housing 3411 by screws, a plurality of spring members 3414 fixed to the side of the bottom cover 3413 facing the outer frame housing 3411, and a push plate 3415 assembled on the inner side of the rear of the outer frame housing 3411 and abutting against the spring members 3414.

[0047] The outer frame shell 3411 has integrally formed shell elastic buckles 34111 on both sides facing the flip cover 3412, a flip cover mounting ear 34112 integrally formed on the upper center of the outer frame shell 3411, an annular groove 34113 opened at the opening of the outer frame shell 3411 facing the flip cover 3412, and a rubber ring 34114 embedded in the annular groove 34113.

[0048] Specifically, the outer frame housing 3411 is fixed to the toothed groove 331 by the housing elastic buckle 34111, which allows the outer frame housing 3411 to be inserted into the battery compartment 33 for fixed installation. The rubber ring 34114, together with the flip cover 3412, can achieve the sealing and waterproofing of the outer frame housing 3411, which can protect the battery 343.

[0049] It should be further explained that the outer frame, bottom cover, and flip cover form a robust outer shell that effectively protects the battery pack from external impacts and damage. The outer frame design allows for the removal and installation of the battery pack, facilitating battery replacement or maintenance and improving product maintainability. The presence of springs provides additional cushioning and support, mitigating the impact of external shocks on the battery pack and extending battery life. The push plate design ensures the battery pack is securely fixed inside the outer frame, preventing shaking or loosening during movement or motion, thus increasing product stability and safety.

[0050] The outer frame housing 3411 has a push plate movable cavity 34115 inside its tail end. Specifically, the push plate 3415 can slide in the push plate movable cavity 34115. After the battery 343 is installed into the outer frame housing 3411, the bottom of the battery 343 presses against the push plate 3415. Then, the flip cover 3412 is fixed to the outer frame housing 3411. At this time, the battery 343 is firmly fixed. When it is necessary to remove the battery 343, the flip cover 3412 is opened, and the push plate 3415 is pushed up by several springs 3414, which can push the battery 343 out of the outer frame housing 3411, so that the battery can be easily removed.

[0051] The flip cover 3412 has an integrally formed flip cover elastic buckle 34121 at the part corresponding to the flip cover mounting ear 34112, which is conducive to the snapping of the flip cover 3412 with the outer frame shell 3411.

[0052] The bottom cover 3413 has several protrusions 34131 integrally formed on the side facing the outer frame shell 3411, which are for mounting spring parts 3414. Specifically, the mounting spring parts 3414 are fitted onto the protrusions 34131 to prevent them from coming loose.

[0053] The sole rubber layer 35 includes a sole rubber layer body 351, a mesh rib 352 integrally formed on the sole rubber layer body 351, and plunger heads 353 formed in the mesh between the mesh ribs 352. Specifically, when the sole rubber layer 35 is fixedly assembled with the heel body 31, the mesh ribs 352 are embedded in the mesh grooves 315, and the plunger heads 353 are inserted into the plunger holes 316 one by one to complete the fixation. After the mesh ribs 352 are embedded in the mesh grooves 315, they can prevent the sole rubber layer 35 from shifting when rubbing against the ground, and can improve the stability of the fixed assembly of the sole rubber layer 35 and the heel body 31.

[0054] In this embodiment, the installation method of the heel 3 and the sole 1 is as follows: the sole insertion teeth 322 of the heel shock-absorbing bracket 32 ​​first enter the arch part of the sole body 11 after being inserted into the inner groove 121, and contact the sole shock-absorbing bracket inside the sole body 11. Then, the heel body 31 is pressed and the heel body 31 abuts against the mounting seat 12, while the mounting ear 122 enters the U-shaped slot 311. Then, the stud is screwed into the screw hole 312 to complete the installation of the heel 3 and the sole 1.

[0055] In this embodiment, when the sole rubber layer 35 is severely worn, it can be directly disassembled and replaced without replacing the entire heel 3. Furthermore, regardless of whether the sole 1 or the heel 3 is damaged first, only the corresponding component needs to be replaced. For example, if the heel 3 is not damaged, it can be continuously used by assembling it into a new corresponding model sole 1, and only the sole rubber layer 35 needs to be replaced.

[0056] The above embodiments of the present invention are not intended to limit the scope of protection of the present invention. The implementation of the present invention is not limited thereto. All other modifications, substitutions or alterations made to the above structure of the present invention based on the above content of the present invention, in accordance with ordinary technical knowledge and common practice in the field, without departing from the basic technical idea of ​​the present invention, shall fall within the scope of protection of the present invention.

Claims

1. A shoe with a built-in emergency power supply in the heel, characterized in that, The shoe includes a sole, an upper mounted on the sole, and a detachable heel mounted on the sole. The sole includes a sole body with a built-in shock-absorbing support, an integrally formed mounting base for mounting the heel, the mounting base having an internal groove, and mounting ears with studs integrally formed on the side of the mounting base. The heel includes a heel body that mates with the mounting base, a shock-absorbing support for the heel body that is fixedly mounted to the heel body and can be inserted into the sole, a battery compartment with an outward opening inside the heel body, a battery assembly mounted inside the battery compartment, and a removable and replaceable sole rubber layer that is snapped onto the bottom of the heel body. The heel body has U-shaped slots on both sides that mate with the mounting ears, screw holes in the U-shaped slots that mate with the studs inside the mounting ears, and a connection to the heel body via tape at the opening of the battery compartment. The shoe includes a block-shaped rubber plug, a silicone connecting strap with one end fastened to the block-shaped rubber plug and the other end fastened to the heel body, and a heel shock-absorbing bracket including a bracket body embedded in the upper surface of the heel body, a sole insertion tooth integrally formed with the bracket body and capable of being inserted into the arch of the sole body, a bracket side plate integrally formed below the bracket body and capable of closely adhering to the heel body, and a heel insertion tooth integrally formed on the bracket side plate and fixed after being inserted into the heel body. After the heel insertion tooth is inserted into the heel body, it cooperates with the bracket body and the bracket side plate to form a C-shaped support frame. The sole insertion tooth is inserted into the inner groove and enters the arch of the sole body, contacting the sole shock-absorbing bracket inside the sole body. The battery assembly includes a battery outer frame inserted into the battery compartment and fixedly installed with the heel body, and a rechargeable battery embedded in the battery outer frame for easy insertion.

2. The shoe with a built-in emergency power supply in the heel as described in claim 1, characterized in that, The bottom of the heel body also has a mesh groove, with plunger holes in the mesh between the grooves.

3. The shoe with a built-in emergency power supply in the heel as described in claim 1, characterized in that, The battery compartment opening has grooves on both sides.

4. The shoe with a built-in emergency power supply in the heel as described in claim 1, characterized in that, The battery outer frame includes an outer frame housing, a flip cover hinged to the front end of the outer frame housing, a bottom cover fixed to the rear end of the outer frame housing by screws, several spring components fixed to the side of the bottom cover facing the outer frame housing, and a push plate assembled on the inner side of the rear end of the outer frame housing and abutting against the spring components. The outer frame shell has integrally formed elastic buckles on both sides facing the flip cover end, a flip cover mounting ear integrally formed in the middle of the upper side of the outer frame shell, an annular groove opened on the outer frame shell facing the flip cover opening, and a rubber ring embedded in the annular groove.

5. The shoe with a built-in emergency power supply in the heel according to claim 4, characterized in that, The outer frame shell has a pusher plate movable cavity inside its tail end.

6. The shoe with a built-in emergency power supply in the heel according to claim 4, characterized in that, The flip cover has an integrally molded part with a flip cover snap-on buckle at the corresponding flip cover mounting ear.

7. The shoe with a built-in emergency power supply in the heel according to claim 4, characterized in that, The bottom cover has several protruding pillars integrally formed on the side facing the outer frame shell, which are used to assemble spring components.

8. The shoe with a built-in emergency power supply in the heel according to claim 1, characterized in that, The base layer includes a base layer body, a mesh rib integrally formed on top of the base layer body, and plunger heads formed in the mesh between the mesh ribs.

Citation Information

Patent Citations

  • Shoe

    CN118973428A

  • Electricity storage device arranged in shoe sole

    CN222054728U