Heel structure of high-heeled shoe
Through the design of the detachable connecting table and cylindrical connecting rod, the problem of unstable heel structure of high heels is solved, convenient replacement and stable connection are achieved, and service life and comfort are improved.
Patent Information
- Application Number
- CN202422546333.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The existing high heel structure of the heel of the high heel shoe is not stable enough when connected, and is prone to deform or fall off, affecting service life and comfort.
The connecting table and heel design with a removable structure is designed with a cylindrical connecting rod and coaxially arranged mating holes to enhance connection stability and disperse pressure through the uniform arc of the connecting screws and the top plate to provide uniform support.
It realizes convenient replacement and stable connection of the heel, reduces the risk of shedding, improves service life and comfort, and enhances the durability and reliability of the overall structure.
Smart Images

Figure CN223169251U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of high heels, in particular to a high heel shoe heel structure. Background Art
[0002] High heels are a type of footwear characterized by a heel that is significantly higher than the front part of the sole. They are commonly used to increase the wearer's height, improve posture, and add a sense of style. High heels come in a variety of designs, from thin heels to thick heels, from pointed toes to round toes, and from flat soles to wedge heels, to meet the needs of different occasions and personal preferences. Wearing high heels can enhance a woman's temperament and make them appear more elegant and confident. However, wearing inappropriate high heels for a long time may cause foot pain, foot deformation, and other problems. Therefore, it is very important to choose the right high heels and wear them moderately.
[0003] The high heel shoe heel is an important part of high heels. It not only affects the overall beauty of the shoes but also directly relates to the comfort and walking stability of the wearer. There are many types of high heel shoe heels, such as thin heels, thick heels, conical heels, wedge heels, and so on. Choosing the right height and style of high heel shoe heels can enhance personal temperament and show an elegant posture. However, wearing inappropriate high heels for a long time may cause foot fatigue or even health problems. Therefore, when choosing high heels, personal foot shape, working environment, and comfort needs should be considered.
[0004] The existing Chinese patent with the reference publication number CN221355942U discloses a high heel with a replaceable heel. Its structure includes a high heel shoe upper, a high heel shoe sole, a high heel shoe heel connecting component, a high heel shoe heel connecting device, and a high heel shoe heel. The sole is adhered to the bottom of the high heel shoe upper, and the heel is connected to the bottom of the high heel shoe sole through the heel connecting component and the heel connecting device. The heel is connected and fixed to the heel connecting part through the heel connecting device, and it is tightly combined using the principle of the mortise and tenon structure. The heel can be effectively replaced quickly by pulling the connecting device. It is convenient for people to change the style and height of the heel according to their own needs at any time.
[0005] Although this patent has the effect of replacement, it does not have a structure that provides stable connection. As shown in the structure of this patent, the connecting column has a shape with thick ends and a thin middle. The stress area of this structure is uneven. When the connecting column is externally squeezed, due to the special shape and structure, deformation may occur, resulting in the phenomenon that the heel cannot be disassembled or replaced. When in use, its structure needs to be processed and improved again, which increases the process and reduces the work efficiency. Therefore, the inventor has proposed a high heel shoe heel structure to solve the above-mentioned technical problems. Figure 3 Summary of the Utility Model
[0006] The utility model aims to overcome the above deficiencies and provide a technical solution that can solve the above problems.
[0007] A high - heel shoe heel structure includes a connecting platform, a top plate and a heel. The connecting platform and the top plate are integrally formed structures, and the connecting platform and the heel are detachable structures. The surface of the connecting platform is provided with a number of connecting rods, which are arranged in a matrix on the surface of the connecting platform. One end of the heel is installed with a connecting screw, and a mating hole for use with the connecting screw is opened in the middle of the connecting platform. The mating hole penetrates the surface of the connecting platform, the inner wall of the mating hole is smooth, and the highest point of the connecting screw is higher than the surface of the connecting platform.
[0008] Adopting this structure facilitates the user to replace the heel. Since the connecting platform and the heel are detachable structures, users can easily replace heels of different heights or styles according to personal preferences or the needs of different occasions. The matrix arrangement of the connecting rods can provide additional support, enhance the stability between the connecting platform and the high - heel shoe body, reduce the risk of the heel falling off, and the smooth inner wall of the mating hole can reduce the friction when the connecting screw contacts the connecting platform, reducing the risk of damage, thereby protecting the wearer's feet from harm. When the connecting screw passes through the surface of the connecting platform, the stability between the connecting platform and the high - heel shoe body is increased through the connecting screw, reducing the probability of the heel falling off.
[0009] Furthermore, the surface of the connecting platform is arc - shaped. One end of the connecting rod is fitted with the surface of the connecting platform, and the other end of the connecting rod extends beyond the surface of the connecting platform. The connecting rod is cylindrical.
[0010] Adopting a cylindrical structure can provide uniform strength and stability, and at the same time facilitate smooth fitting on the arc - shaped surface of the connecting platform. Using this design helps to disperse pressure and reduce stress concentration, thereby improving the durability and reliability of the overall structure. In addition, the part of the cylindrical connecting rod that extends beyond the surface of the connecting platform can be conveniently connected to the high - heel shoe body, providing flexible assembly options.
[0011] Furthermore, the top plates are located at the left and right ends of the connecting platform. The top plates are used to support and bear the weight of the connecting rods, and the radian of the top plates is the same as the radian of the surface of the connecting platform. The top plates are located at the left and right ends of the connecting platform, and their main function is to support and bear the weight of the connecting rods. The radian of the top plates is the same as the radian of the surface of the connecting platform, which can ensure a good contact area between the top plates and the connecting platform. When the heel and the high - heel shoe body are integrally fitted, the overall structure stability can be improved. When the radian of the top plates matches the radian of the surface of the connecting platform, the supporting force can be evenly distributed on the connecting platform, avoiding damage caused by excessive local stress. In addition, the consistency of the radian helps the top plates better disperse and bear the pressure from the connecting rods, thereby improving the load - bearing capacity of the entire structure.
[0012] Furthermore, one end of the connecting platform is connected with a saddle piece. The saddle piece and the connecting platform are of a detachable structure. A clamping groove is formed at one end of the saddle piece. The clamping grooves are annularly distributed on the surface of the saddle piece, penetrate through the surfaces at both ends of the saddle piece respectively, and extend into the interior of the connecting platform.
[0013] The detachable structure design of the saddle piece and the connecting platform enables the saddle piece to be easily installed or disassembled, thus facilitating maintenance and replacement. The annular distribution and penetration design of the clamping grooves not only enhance the connection strength between the saddle piece and the connecting platform, but also allow external clamping components to be connected through the clamping grooves for additional fixation or adjustment to ensure the stability and accuracy of the connection. In addition, the clamping grooves extending into the interior of the connecting platform can provide more fixing points and fixing forces, further improving the reliability of the connection and ensuring the safety and durability of the heel during use.
[0014] Furthermore, the mating hole penetrates through the surfaces at both ends of the saddle piece. The saddle piece and the mating hole are coaxially arranged. This arrangement can ensure that the saddle piece can be evenly stressed in the mating hole, avoiding stress concentration caused by eccentricity or asymmetry. This design helps to improve the structural stability and load-bearing capacity, while reducing wear and extending the service life. Moreover, the coaxial arrangement is also beneficial for alignment during the assembly process, simplifying the installation steps and improving the assembly efficiency.
[0015] Furthermore, one end of the saddle piece is connected with a gasket. A clamping block paired with the clamping groove is arranged on the surface of the gasket. The clamping block is in a convex shape. The gasket and the saddle piece are of a detachable structure.
[0016] This arrangement provides flexibility and convenience for maintenance. This design allows users to easily disassemble the gasket for inspection, cleaning or replacement when needed without disassembling the entire heel. In addition, the detachable structure also facilitates the replacement of gaskets of different specifications or materials according to different usage requirements, thereby improving the overall adaptability of the user and the service life of the heel.
[0017] Furthermore, the gasket and the saddle piece are coaxially arranged. This arrangement can ensure that they maintain the same movement trajectory during movement, reduce offset and wear, and at the same time reduce the probability of the gasket falling off the surface of the saddle piece. At the same time, this design helps to improve the centering accuracy between components, facilitates the simplification of the assembly process, improves the assembly efficiency and accuracy. In addition, the tight fit can also reduce vibration and noise, playing a role in extending the service life.
[0018] Compared with the prior art, the beneficial effects of the present utility model are as follows: The detachable structure is adopted to facilitate the connection between the connecting platform and the heel. This structure enables users to replace the heel easily. Users can, according to their personal preferences or the needs of different occasions, effortlessly replace heels of different heights or styles. Moreover, a connecting screw is added at one end of the heel. This structure not only increases the connection stability between the connecting platform and the heel through the connecting screw but also facilitates the connection of the connecting screw to the shoe body itself, achieving the effect of changing or adjusting the height of the heel by replacement and enhancing the flexible adaptability.
[0019] In addition, the consistency of the radian helps the top plate better disperse and bear the pressure from the connecting rod, thereby improving the load-bearing capacity of the entire structure. The connecting rod assists in connecting the connecting screw and the high-heel shoe body from multiple directions, reducing the problem of detachment caused by uneven stress points, improving the traditional connection method, achieving the effect of position limitation through multi-point positioning, and enhancing the anti-deformation function. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a perspective view of a high-heel shoe heel structure;
[0021] Figure 2 is an exploded view of a high-heel shoe heel structure;
[0022] Figure 3 is a perspective view of the connecting platform in a high-heel shoe heel structure;
[0023] Figure 4 is Figure 3 a schematic enlarged view of the partial structure of A in
[0024] Figure 5 is another perspective view of the connecting platform in a high-heel shoe heel structure;
[0025] Figure 6 is a cross-sectional view of the connecting platform in a high-heel shoe heel structure;
[0026] Figure 7 is Figure 6 a schematic enlarged view of the partial structure of B in
[0027] Figure 8 is a perspective view of the gasket in a high-heel shoe heel structure;
[0028] In the figure: connecting platform - 1, top plate - 2, heel - 3, connecting rod - 4, connecting screw - 5, mating hole - 6, saddle piece - 7, card slot - 8, gasket - 9, block - 10. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] The present utility model will be further described in detail below in conjunction with the drawings and the specific embodiments.
[0030] For this embodiment, please refer to Figures 1-8 , a heel structure of a high - heel shoe in a specific implementation thereof, includes a connecting platform 1, a top plate 2 and a heel 3. The connecting platform 1 and the top plate 2 are integrally formed structures, and the connecting platform 1 and the heel 3 are detachable structures. A number of connecting rods 4 are provided on the surface of the connecting platform 1, and the connecting rods 4 are arranged in a matrix on the surface of the connecting platform 1. One end of the heel 3 is installed with a connecting screw 5, and a mating hole 6 for use with the connecting screw 5 is provided in the middle of the connecting platform 1. The mating hole 6 penetrates the surface of the connecting platform 1, the inner wall of the mating hole 6 is smooth, and the highest point of the connecting screw 5 is higher than the surface of the connecting platform 1;
[0031] Adopting this structure facilitates the user to replace the heel. Since the connecting platform 1 and the heel 3 are detachable structures, users can easily replace heels of different heights or styles according to personal preferences or the needs of different occasions. The matrix arrangement of the connecting rods 4 can provide additional support, enhance the stability between the connecting platform 1 and the high - heel shoe body, and reduce the risk of the heel 3 falling off. Moreover, the smooth inner wall of the mating hole 6 can reduce the friction when the connecting screw 5 contacts the connecting platform 1, reducing the risk of damage, thereby protecting the wearer's feet from harm. When the connecting screw 5 passes through the surface of the connecting platform 1, the stability between the connecting platform 1 and the high - heel shoe body is increased through the connecting screw 5, reducing the probability of the heel 3 falling off.
[0032] The surface of the connecting platform 1 is arc - shaped, one end of the connecting rod 4 is fitted with the surface of the connecting platform 1, and the other end of the connecting rod 4 extends beyond the surface of the connecting platform 1. The connecting rod 4 is cylindrical; [[ID=!0]]
[0033] Adopting a cylindrical structure can provide uniform strength and stability, and at the same time facilitate smooth fitting on the arc - shaped surface of the connecting platform 1. Adopting this design helps to disperse pressure and reduce stress concentration, thereby improving the durability and reliability of the overall structure. In addition, the part of the cylindrical connecting rod 4 that extends beyond the surface of the connecting platform 1 can be conveniently connected to the high - heel shoe body, providing flexible assembly options.
[0034] The top plate 2 is located at the left and right ends of the connecting platform 1. The top plate 2 is used to support and bear the weight of the connecting rods 4. The radian of the top plate 2 is the same as the radian of the surface of the connecting platform 1. Adopting the top plate 2 located at the left and right ends of the connecting platform 1, its main function is to support and bear the weight of the connecting rods 4, and the radian of the top plate 2 is the same as the radian of the surface of the connecting platform 1, which can ensure a good contact area between the top plate 2 and the connecting platform 1. When the heel and the high - heel shoe body are integrally matched, the stability of the overall structure can be improved. When the radian of the top plate 2 matches the radian of the surface of the connecting platform 1, the supporting force can be evenly distributed on the connecting platform 1, avoiding damage caused by excessive local stress. In addition, the consistency of the radian helps the top plate 2 to better disperse and bear the pressure from the connecting rods 4, thereby improving the load - bearing capacity of the entire structure.
[0035] One end of the connecting platform 1 is connected with a saddle piece 7. The saddle piece 7 and the connecting platform 1 are of a detachable structure. A clamping groove 8 is formed at one end of the saddle piece 7. The clamping grooves 8 are annularly distributed on the surface of the saddle piece 7. The clamping grooves 8 respectively penetrate through the surfaces at both ends of the saddle piece 7 and extend into the interior of the connecting platform 1.
[0036] The detachable structure design of the saddle piece 7 and the connecting platform 1 enables the saddle piece 7 to be easily installed or disassembled, thus facilitating maintenance and replacement. The annular distribution and penetration design of the clamping grooves 8 not only enhance the connection strength between the saddle piece 7 and the connecting platform 1, but also can be connected to an external clamping component through the clamping grooves 8 for additional fixation or adjustment to ensure the stability and accuracy of the connection. In addition, the clamping grooves 8 extending into the interior of the connecting platform 1 can provide more fixing points and fixing forces, further improving the reliability of the connection and ensuring the safety and durability of the heel during use.
[0037] The mating hole 6 penetrates through the surfaces at both ends of the saddle piece 7. The saddle piece 7 and the mating hole 6 are coaxially arranged. This arrangement can ensure that the saddle piece 7 can be evenly stressed in the mating hole 6, avoiding stress concentration caused by eccentricity or asymmetry. This design helps to improve the stability and load-bearing capacity of the structure, while reducing wear and extending the service life. Moreover, the coaxial arrangement is also beneficial for alignment during the assembly process, simplifying the installation steps and improving the assembly efficiency.
[0038] One end of the saddle piece 7 is connected with a gasket 9. A clamping block 10 paired with the clamping groove 8 is arranged on the surface of the gasket 9. The clamping block 10 is in a convex shape. The gasket 9 and the saddle piece 7 are of a detachable structure.
[0039] This arrangement provides flexibility and convenience for maintenance. This design allows users to easily disassemble the gasket 9 for inspection, cleaning or replacement when needed, without disassembling the entire heel. In addition, the detachable structure also facilitates the replacement of gaskets 9 of different specifications or materials according to different usage requirements, thereby improving the overall adaptability of users and the service life of the heel.
[0040] The gasket 9 and the saddle piece 7 are coaxially arranged. This arrangement can ensure that they maintain the same movement trajectory during movement, reduce offset and wear, and at the same time reduce the probability of the gasket 9 falling off the surface of the saddle piece 7. At the same time, this design helps to improve the centering accuracy between components, helps to simplify the assembly process, improve the assembly efficiency and accuracy. In addition, the tight fit can also reduce vibration and noise, playing a role in extending the service life.
[0041] The design key point of the present utility model lies in: adopting a detachable structure to facilitate the connection between the connecting platform 1 and the heel 3. This structure facilitates users to replace the heel. Users can easily replace heels of different heights or styles according to personal preferences or the needs of different occasions. Moreover, a connecting screw 5 is added at one end of the heel 3. This structure increases the connection stability between the connecting platform 1 and the heel 3 through the connecting screw 5, and at the same time, facilitates the connecting screw 5 to connect to the shoe body itself, achieving the effect of changing or adjusting the height of the heel 3 by replacement, and enhancing the flexible adaptability.
[0042] In addition, the consistency of the radian helps the top plate 2 better disperse and bear the pressure from the connecting rod 4, thereby improving the load-bearing capacity of the entire structure. The connecting rod 4 assists in connecting the connecting screw 5 to the high-heel shoe body from multiple directions, reducing the problem of detachment caused by uneven stress points.
[0043] The operation process of the present utility model is as follows: Put the end of the heel 3 with the connecting screw 5 into the inner part of the mating hole 6, so that the mating hole 6 limits the connecting screw 5, thereby enabling the connecting platform 1 to limit the heel 3. The high-heel shoe body can be provided with a threaded hole for mating installation with the connecting screw 5, so as to facilitate the locking of the connecting screw 5 and reduce the situation of the heel 3 falling off. The high-heel shoe body can be provided with a hole for mating connection with the connecting rod 4, facilitating the insertion of the connecting rod 4 to increase the connection stability between the connecting platform 1 and the high-heel shoes.
[0044] When replacing or removing the heel 3, since the middle part of the mating hole 6 is a hollow structure, it is easy for stones or soil to enter and cause blockage. Connect the saddle piece 7 with the gasket 9, so that the gasket 9 plays a protective role. Connect the raised-shaped block 10 into the card slot 8 on the surface of the saddle piece 7, which plays a role in limiting the position of the gasket 9, thereby reducing the probability of the gasket 9 falling off. Since one end of the gasket 9 is a flat surface, the gasket 9 forms a temporary heel after being connected to the connecting platform 1, reducing the height while increasing the use comfort of the high-heel shoes, and avoiding inconvenience in movement or spraining the ankle caused by the high height of the heel.
[0045] The above content is a further detailed description of the present utility model in combination with specific preferred embodiments. It cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. For those of ordinary skill in the technical field to which the present utility model belongs, without departing from the concept of the present utility model, several simple deductions or replacements can still be made, which should all be regarded as the protection scope of the present utility model.
Claims
1. A high - heel shoe heel structure, comprising a connecting platform, a top plate and a heel, characterized in that: The connecting platform and the top plate are of an integrally formed structure. The connecting platform and the heel are of a detachable structure. The surface of the connecting platform is provided with a plurality of connecting rods, and the connecting rods are arranged in a matrix on the surface of the connecting platform. One end of the heel is installed with a connecting screw, and a mating hole for use in pairing with the connecting screw is provided in the middle of the connecting platform. The mating hole penetrates the surface of the connecting platform, the inner wall of the mating hole is smooth, and the highest point of the connecting screw is higher than the surface of the connecting platform.
2. The heel structure of a high - heeled shoe according to claim 1, characterized in that: The surface of the connecting platform is arc-shaped. One end of the connecting rod is fitted with the surface of the connecting platform, and the other end of the connecting rod extends beyond the surface of the connecting platform. The connecting rod is cylindrical.
3. The high-heel shoe heel structure according to claim 2, characterized in that: The top plates are located at the left and right ends of the connecting platform. The top plates are used to support and bear the connecting rods, and the radian of the top plates is the same as that of the surface of the connecting platform.
4. A high heel shoe heel structure according to any one of claims 1-3, characterized in that: One end of the connecting platform is connected with a saddle piece. The saddle piece and the connecting platform are of a detachable structure. A clamping groove is provided at one end of the saddle piece. The clamping grooves are annularly distributed on the surface of the saddle piece. The clamping grooves respectively penetrate the surfaces at both ends of the saddle piece and extend into the interior of the connecting platform.
5. The high heel shoe heel structure according to claim 4, characterized in that: The mating hole penetrates the surfaces at both ends of the saddle piece, and the saddle piece and the mating hole are coaxially arranged.
6. The heel structure of a high - heeled shoe according to claim 4, characterized in that: One end of the saddle piece is connected with a gasket. The surface of the gasket is provided with a clamping block for mating installation with the clamping groove. The clamping block is convex-shaped. The gasket and the saddle piece are of a detachable structure.
7. A high heel shoe heel structure according to claim 6, characterized in that: The gasket and the saddle piece are coaxially arranged.
Citation Information
Patent Citations
High-heeled shoes with replaceable heels
CN221355942U