Slow-release medicine sterilization and deodorization sole

CN224747556UActive Publication Date: 2026-09-15DONGGUAN SUSCONG HEALTHCARE CO LTD
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Patent Information

Application Number
CN202521894048.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2026-09-15
Estimated Expiration
2035-09-03

AI Technical Summary

Technical Problem

为了解决鞋底内部药效挥发较快,鞋子内部除臭的效果不够持久,使用时长较短,实用性不高的问题

Benefits of technology

与现有技术相比,本实用新型的有益效果在于:该设计使用时通过在储药壳体内设置缓释材料和杀菌除臭药剂,并将装有药剂的储药壳体嵌设在后跟部位置,使得其内设置的药剂材料通过纳米分子渗透层控制释放速度,延长药剂材料的药效,通过鞋底本体内部的连通孔道将药剂分子通过散药孔分散开,对足部整体起到很好的抗菌除臭效果,并配合安装组件,当需要对储药壳体内进行更换时,先通过转动储药壳体使限位块在限位槽内横向转动,然后上拉储药壳体将其从鞋底本体内取出,结构简单,操作方便,可以对储药壳体内的药剂进行更换,安装方便,实用性好。

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Abstract

The utility model relates to sole sterilization technical field especially, more particularly to a slow -release formula medicine sterilization deodorization sole. In order to solve the problem that the inside medicine effect of sole volatilizes faster, the effect of deodorization in the inside of shoes is not enough lasting, the service time is shorter, and the practicality is not high. The design uses the slow -release material and sterilization deodorization reagent by setting in the storage shell, and the storage shell that is equipped with reagent is embedded in the heel position, so that the reagent material set up in it controls the release speed through the nanometer molecule penetration layer, prolongs the medicine effect of reagent material, and the reagent molecule is dispersed through the medicine hole through the communication hole in the sole body, and the whole foot is well antibacterial and deodorization, when needing to replace in the storage shell, first through the rotation storage shell makes the limit block transverse rotation in the limit slot, then pulls up the storage shell and takes out it from the sole body, simple structure, convenient operation can replace the reagent in the storage shell, and the installation is convenient.
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Description

Technical Field

[0001] This utility model relates to the field of shoe sole sterilization technology, and in particular to a slow-release drug sterilization and deodorization shoe sole. Background Technology

[0002] Diabetic foot is a common chronic complication of diabetes. Patients experience reduced blood flow to the feet due to narrowing or blockage of blood vessels in the lower limbs, leading to slow wound healing and ultimately causing foot pain, deep skin ulcers, and gangrene in the extremities. In severe cases, amputation may be necessary. Simultaneously, peripheral neuropathy in the extremities causes a dulled response to external stimuli, making it difficult for patients to promptly perceive coldness, inflammation, or injury in their feet. Therefore, foot care is crucial for diabetic patients. While sandals, slippers, and some specially designed breathable shoes can alleviate these symptoms to some extent, they cannot effectively cure foot problems. Furthermore, sandals and slippers are not suitable for certain occasions or situations, so relying solely on ventilation to relieve and treat foot problems is not an effective solution.

[0003] Currently, the common method for sterilizing and deodorizing the inside of shoes is to place the agent directly inside the sole, the upper layer, or the insole layer. This traditional method cannot maintain a slow and continuous effect inside the shoe, the agent evaporates quickly, the deodorizing effect inside the shoe is not long-lasting, the usage time is short, and the practicality is not high. Utility Model Content

[0004] (1) Technical problems to be solved To address the issues of rapid evaporation of the medicinal properties inside the shoe sole, insufficient long-lasting deodorizing effect, short usage time, and low practicality.

[0005] (2) Technical solution The technical solution of this utility model is as follows: a slow-release drug sterilization and deodorization shoe sole, including a shoe sole body, including an insole, a vent A, a deodorization and sterilization component, an installation component, a drug dispersing hole, and a connecting channel. The deodorization and sterilization component is disposed inside the shoe sole body, and the installation component is disposed on the surface of the deodorization and sterilization component. Multiple interconnected connecting channels are opened in the shoe sole body, and multiple drug dispersing holes of varying lengths are opened on the surface of the shoe sole body. An insole is disposed on the upper surface of the shoe sole body. The side of the insole that is in contact with the shoe sole body is made of rubber material, and the surface of the insole has a vent A. By placing a slow-release material inside the drug storage shell... This shoe incorporates antibacterial and deodorizing agents, with a storage shell containing the agent embedded in the heel. The agent's release rate is controlled through a nano-molecular penetration layer, extending its efficacy. The agent molecules are dispersed through dispersing holes within the shoe sole's internal channels, providing excellent antibacterial and deodorizing effects on the entire foot. With the accompanying installation components, when the agent storage shell needs replacement, the limiting block rotates laterally within the limiting groove by rotating the shell, and then the shell is pulled upwards to remove it from the shoe sole. The structure is simple, the operation is convenient, and the agent inside the storage shell can be easily replaced.

[0006] Furthermore, the bottom surface of the sole is provided with water-guiding grooves, which can improve the adhesion of the sole to wet ground on rainy days.

[0007] Furthermore, the deodorizing and sterilizing component includes a drug storage shell, a first placement cavity, a second placement cavity, a slow-release material, a sterilizing and deodorizing agent, and a vent B. The drug storage shell is located inside the sole body. First placement cavities are located at both ends of the drug storage shell. A second placement cavity is located between the two first placement cavities within the drug storage shell. Slow-release material is placed within the first placement cavity of the drug storage shell. A sterilizing and deodorizing agent is placed between the two slow-release materials. A partition separates the slow-release material and the sterilizing and deodorizing agent. Ventilation holes B are provided on the surface of the partition inside the drug storage shell, and ventilation holes B are also provided at both ends of the surface of the drug storage shell. By setting up the deodorizing and sterilizing component, by placing slow-release material and a sterilizing and deodorizing agent within the drug storage shell, and embedding the drug storage shell containing the agent in the heel position, the release rate of the agent material within is controlled through a nano-molecular permeation layer, thus prolonging the efficacy of the agent material.

[0008] Furthermore, the sole has three anti-slip pads of different sizes and shapes installed on its bottom surface. Each anti-slip pad has multiple rubber bumps on its surface. By installing the anti-slip pads, the friction between the sole and the ground can be increased, further improving the anti-slip effect.

[0009] Furthermore, the installation component includes a limiting block, a limiting groove, and a recess. The surface of the sole body has a recess adapted to the drug storage shell, and the drug storage shell is inserted into the recess. The limiting block is symmetrically installed on the surface of the drug storage shell. The inside of the sole body has a limiting groove adapted to the limiting block. The drug storage shell is installed in the sole body through the limiting block and the limiting groove. By setting the installation component, when it is necessary to replace the drug inside the drug storage shell, first rotate the drug storage shell to make the limiting block rotate laterally in the limiting groove, and then pull up the drug storage shell to remove it from the sole body. The structure is simple, the operation is convenient, and the drug inside the drug storage shell can be replaced. The installation is convenient.

[0010] Furthermore, the limiting groove is designed in an L-shape, which can restrict the position of the medicine storage shell. After the medicine storage shell is inserted into the groove, the limiting block slides in the limiting groove. When the medicine storage shell reaches the bottom, the limiting block can be rotated laterally in the limiting groove by rotating the medicine storage shell, thereby realizing the installation of the medicine storage shell and making disassembly and replacement convenient.

[0011] (3) Beneficial effects Compared with the prior art, the beneficial effects of this utility model are as follows: When in use, this design sets a slow-release material and a bactericidal and deodorizing agent inside the drug storage shell, and embeds the drug storage shell containing the agent in the heel position. The drug material inside is released at a controlled rate through a nano-molecular penetration layer, prolonging the efficacy of the drug material. The drug molecules are dispersed through the dispersing holes through the connecting channels inside the sole body, which has a good antibacterial and deodorizing effect on the entire foot. With the installation components, when it is necessary to replace the drug storage shell, first rotate the drug storage shell to make the limiting block rotate laterally in the limiting groove, and then pull up the drug storage shell to remove it from the sole body. The structure is simple, the operation is convenient, the drug inside the drug storage shell can be replaced, the installation is convenient, and the practicality is good. Attached Figure Description

[0012] Figure 1 The diagram shown is a schematic representation of the overall structure of this utility model. Figure 2 The diagram shown is a structural schematic of the mounting components in this utility model; Figure 3 The diagram shown is a schematic representation of the internal structure of the medicine storage shell in this utility model. Figure 4 The image shown is a detailed enlarged view of the bactericidal and deodorizing agent of this utility model; Figure 5 The image shown is a bottom view of the overall structure of this utility model; Figure 6 The image shown is an enlarged view of the installation component structure in this utility model.

[0013] Explanation of reference numerals in the attached drawings: 1-Shoe sole body, 2-Insole, 3-Ventilation hole A, 4-Deodorizing and sterilizing component, 41-Medicine storage shell, 42-First placement cavity, 43-Second placement cavity, 44-Slow-release material, 45-Bactericidal and deodorizing agent, 46-Ventilation hole B, 5-Installation component, 51-Limiting block, 52-Limiting groove, 53-Groove, 6-Anti-slip pad, 7-Rubber protrusion, 8-Medicine dispersing hole, 9-Connecting channel. Detailed Implementation

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0015] Example 1: Please see Figure 1-6 This utility model provides an embodiment: a slow-release drug sterilization and deodorization shoe sole, including a shoe sole body 1, including an insole 2, a ventilation hole A3, a deodorization and sterilization component 4, an installation component 5, a drug dispersing hole 8, and a connecting channel 9. The deodorization and sterilization component 4 is disposed inside the shoe sole body 1, and the installation component 5 is disposed on the surface of the deodorization and sterilization component 4. Multiple interconnected connecting channels 9 are opened inside the shoe sole body 1, and multiple drug dispersing holes 8 of different lengths are opened on the surface of the shoe sole body 1. The insole 2 is disposed on the upper surface of the shoe sole body 1. The side of the insole 2 that is in contact with the sole body 1 is made of rubber. The surface of the insole 2 has ventilation holes A3. The deodorizing and sterilizing component 4 includes a drug storage shell 41, a first placement cavity 42, a second placement cavity 43, a slow-release material 44, a sterilizing and deodorizing agent 45, and ventilation holes B46. The sole body 1 has a drug storage shell 41 inside. The drug storage shell 41 has first placement cavities 42 at both ends. A second placement cavity 43 is located between the two first placement cavities 42 within the drug storage shell 41. The drug storage shell 41 is located in the first... Slow-release material 44 is placed inside the cavity 42, and bactericidal and deodorizing agent 45 is placed between two slow-release materials 44. The slow-release material 44 and the bactericidal and deodorizing agent 45 are separated by a partition. The surface of the partition installed inside the medicine storage shell 41 is provided with vent holes B46, and vent holes B46 are also provided at both ends of the surface of the medicine storage shell 41. By placing the slow-release material 44 and the bactericidal and deodorizing agent 45 inside the medicine storage shell 41, and embedding the medicine storage shell 41 containing the agent in the rear position, the agent material inside can be released through nano-molecules. The permeation layer controls the release rate and prolongs the efficacy of the drug material. The drug molecules are dispersed through the dispersing holes 8 via the connecting channels 9 inside the sole body 1, providing a good antibacterial and deodorizing effect on the entire foot. With the installation component 5, when it is necessary to replace the drug storage shell 41, first rotate the drug storage shell 41 to make the limiting block 51 rotate laterally within the limiting groove 52, and then pull up the drug storage shell 41 to remove it from the sole body 1. The structure is simple, the operation is convenient, and the drug inside the drug storage shell 41 can be replaced easily.

[0016] The bottom surface of the sole body 1 is provided with a water-guiding groove, which can improve the adhesion of the sole body 1 to wet ground on rainy days.

[0017] The sole body 1 has three anti-slip pads 6 of different sizes and shapes installed on its bottom surface. Each anti-slip pad 6 has multiple rubber protrusions 7 installed on its surface. By installing the anti-slip pads 6, the friction between the sole and the ground can be increased, and the anti-slip effect can be further improved.

[0018] Example 2: Please see Figure 1-6 In this embodiment, the installation component 5 includes a limiting block 51, a limiting groove 52, and a recess 53. The surface of the shoe sole body 1 has a recess 53 adapted to the medicine storage shell 41. The medicine storage shell 41 is inserted into the recess 53. Limiting blocks 51 are symmetrically installed on the surface of the medicine storage shell 41. The inside of the shoe sole body 1 has a limiting groove 52 adapted to the limiting block 51. The medicine storage shell 41 is installed inside the shoe sole body 1 via the limiting block 51 and the limiting groove 52. By setting the installation component 5, when it is necessary to replace the contents of the medicine storage shell 41, the limiting block 51 is first moved by rotating the medicine storage shell 41. 1. Rotate laterally within the limiting groove 52, then pull up the medicine storage shell 41 to remove it from the shoe sole body 1. The structure is simple and easy to operate. The medicine in the medicine storage shell 41 can be replaced. Installation is convenient. The limiting groove 52 is set in an L-shape, which can limit the position of the medicine storage shell 41. After inserting the medicine storage shell 41 into the groove 53, the limiting block 51 slides in the limiting groove 52. When the medicine storage shell 41 reaches the bottom, rotate the medicine storage shell 41 to make the limiting block 51 rotate laterally within the limiting groove 52, thereby realizing the installation of the medicine storage shell 41. Disassembly and replacement are convenient.

[0019] Through the above steps, during use, a slow-release material 44 and a bactericidal and deodorizing agent 45 are placed inside the drug storage shell 41, and the drug storage shell 41 containing the agent is embedded in the heel position. The drug material inside is released at a controlled rate through the nano-molecular penetration layer, prolonging the efficacy of the drug material. The drug molecules are dispersed through the dispersing holes 8 through the connecting channels 9 inside the sole body 1, which has a good antibacterial and deodorizing effect on the entire foot. With the help of the installation component 5, when it is necessary to replace the drug storage shell 41, first rotate the drug storage shell 41 to make the limiting block 51 rotate laterally in the limiting groove 52, and then pull up the drug storage shell 41 to remove it from the sole body 1. The structure is simple, the operation is convenient, and the agent inside the drug storage shell 41 can be replaced. The installation is convenient.

[0020] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A slow-release drug-based antibacterial and deodorizing shoe sole, comprising a sole body (1), characterized in that: The shoe includes an insole (2), a ventilation hole A (3), a deodorizing and sterilizing component (4), an installation component (5), a medicine dispersing hole (8), and a connecting channel (9). The deodorizing and sterilizing component (4) is provided inside the shoe sole body (1), and the installation component (5) is provided on the surface of the deodorizing and sterilizing component (4). Multiple interconnected connecting channels (9) are provided inside the shoe sole body (1), and multiple medicine dispersing holes (8) of different lengths are provided on the surface of the shoe sole body (1). The insole (2) is provided on the upper surface of the shoe sole body (1). The side of the insole (2) that is in contact with the shoe sole body (1) is made of rubber material, and the surface of the insole (2) is provided with a ventilation hole A (3). The deodorizing and sterilizing component (4) includes a drug storage shell (41), a first placement cavity (42), a second placement cavity (43), a slow-release material (44), a sterilizing and deodorizing agent (45), and a vent hole B (46). The drug storage shell (41) is provided inside the sole body (1). The drug storage shell (41) has first placement cavities (42) at both ends inside the drug storage shell (41). The second placement cavity (43) is provided inside the drug storage shell (41) between the two first placement cavities (42). The cavity (43) is provided with a slow-release material (44) in the first placement cavity (42) of the medicine storage shell (41). A bactericidal and deodorizing agent (45) is provided between the two slow-release materials (44). The slow-release material (44) and the bactericidal and deodorizing agent (45) are separated by a partition. The surface of the partition installed in the medicine storage shell (41) is provided with a vent hole B (46). Vent holes B (46) are also provided at both ends of the surface of the medicine storage shell (41). The installation component (5) includes a limiting block (51), a limiting groove (52), and a recess (53). The surface of the shoe sole body (1) is provided with a recess (53) that is compatible with the medicine storage shell (41). The medicine storage shell (41) is inserted into the recess (53). The surface of the medicine storage shell (41) is symmetrically equipped with limiting blocks (51). The inside of the shoe sole body (1) is provided with a limiting groove (52) that is compatible with the limiting block (51). The medicine storage shell (41) is installed in the shoe sole body (1) through the limiting block (51) and the limiting groove (52). The limiting groove (52) is L-shaped.

2. The slow-release drug-based antibacterial and deodorizing shoe sole according to claim 1, characterized in that: The bottom surface of the sole body (1) is provided with a water-guiding groove.

3. The slow-release drug-based antibacterial and deodorizing shoe sole according to claim 1, characterized in that: The bottom surface of the sole body (1) is equipped with three anti-slip pads (6) of different sizes and shapes, and the surface of each anti-slip pad (6) is equipped with multiple rubber protrusions (7).