Antibacterial breathable insole containing wormwood

By introducing mugwort filling and air circulation channels into the insole, combined with a speed-regulating structure, the problems of low antibacterial strength and poor breathability of traditional insoles are solved, achieving efficient antibacterial and air circulation, and improving the hygiene and comfort performance of the insole.

CN224098861UActive Publication Date: 2026-04-10YONGJIA HUIHAO SHOE MATERIAL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YONGJIA HUIHAO SHOE MATERIAL CO LTD
Filing Date
2025-04-16
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Traditional insoles have low antibacterial strength, poor breathability and air circulation efficiency, making it difficult for heat and moisture to evaporate from the feet, which easily breeds bacteria and produces odors, affecting health and comfort.

Method used

An insole filled with mugwort was designed, which combines an air circulation channel and a speed regulation structure between the upper and lower insoles. By utilizing the antibacterial properties of mugwort and the air circulation structure, the air circulation rate is adjusted by a spring to improve the air circulation efficiency. An air collection groove and an air outlet groove are set to accelerate the discharge of heat and moisture.

Benefits of technology

Significantly reduces bacterial growth, keeps insoles clean and hygienic, reduces odor, keeps feet dry and comfortable, and enhances health and wearing comfort, especially keeping feet fresh during high-intensity exercise or prolonged standing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224098861U_ABST
    Figure CN224098861U_ABST
Patent Text Reader

Abstract

The utility model discloses an antibacterial breathable insole containing wormwood, which comprises an upper-layer insole and a lower-layer insole which are stacked, and an air circulation channel is arranged between the upper-layer insole and the lower-layer insole. A speed regulating structure which is used for being matched with the air circulation structure so as to improve the air circulation rate in the air circulation channel when the upper-layer pad is pressed is arranged on the lower-layer pad, a filling cavity is formed in the upper-layer pad, and the filling cavity is filled with filler made of wormwood materials. The utility model solves the problems that the traditional insoles are low in antibacterial strength and poor in ventilation effect and air circulation efficiency, so that hot air and moisture on feet are difficult to volatilize, and bacteria are easy to breed to generate peculiar smell.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of insoles, in particular to an antibacterial and breathable insole containing wormwood. BACKGROUND

[0002] In daily life, as an article directly contacting with the feet, the performance of the insole has a vital influence on the health and comfort of the feet. The traditional insole has many drawbacks in terms of antibacterial property, breathability and air circulation. On the one hand, the ordinary insole usually does not have effective antibacterial function or has low antibacterial strength. During wearing, the feet will continuously sweat, creating a warm and humid environment which is extremely suitable for the breeding of bacteria. The large number of bacteria not only produces a foul odor, but also may cause skin problems of the feet and affect the health of the feet. On the other hand, the breathability design of the traditional insole is usually simple and cannot form a good air circulation channel, so that the heat and moisture generated by the feet cannot be quickly dissipated, resulting in the feet being in a hot and humid state all the time, which greatly reduces the comfort of wearing. In addition, the pressure generated by the human body on the insole cannot be effectively converted into power to promote air circulation when walking or standing, and the air circulation efficiency in the insole is poor, further aggravating the accumulation of heat and moisture. SUMMARY

[0003] In view of the deficiencies of the prior art, the utility model provides an antibacterial and breathable insole containing wormwood to solve the problems of low antibacterial strength of the traditional insole, poor breathability and air circulation efficiency, difficult evaporation of heat and moisture of the feet and easy breeding of bacteria to produce odor.

[0004] To achieve the above-mentioned purpose, the utility model provides an antibacterial and breathable insole containing wormwood, comprising an upper layer pad and a lower layer pad stacked, an air circulation channel is arranged between the upper layer pad and the lower layer pad, a speed regulating structure for cooperating with an air circulation structure to increase the air circulation rate in the air circulation channel when the upper layer pad is pressed is arranged on the lower layer pad, a filling cavity is formed in the inside of the upper layer pad, and a filler made of wormwood material is filled in the filling cavity.

[0005] The above technical scheme has the advantages that: the upper layer pad is internally provided with a filling cavity filled with fillers made of artemisia materials, and the artemisia has natural antibacterial properties, and contains volatile oil components such as eucalyptol and thujone, which have strong antibacterial ability and can effectively inhibit the growth and reproduction of various common bacteria such as escherichia coli and staphylococcus aureus, that is, the growth and reproduction of various common bacteria can be effectively inhibited, compared with ordinary insoles, the number of bacteria breeding on the surface of the insole is significantly reduced in the same time, thereby keeping the insole clean and hygienic, reducing the phenomenon of odor caused by bacterial breeding, at the same time, a healthy microenvironment is provided for the feet, reducing the risk of diseases caused by bacterial infection of the feet, greatly improving the hygiene performance of the insole, and from the perspective of traditional medicine, the odor emitted is absorbed through the foot acupoints, which may help to relieve fatigue, improve blood circulation, and improve overall health experience; in the above technology, an air circulation channel is arranged between the upper layer pad and the lower layer pad, and an efficient air circulation structure is constructed, in a normal wearing state, air can flow naturally in the channel between the upper layer pad and the lower layer pad, and the heat and humidity generated by the feet can be brought out in time, so that the feet can be kept dry at all times, greatly improving the wearing experience, avoiding the discomfort caused by hot and humid feet, and providing comfortable wearing feeling for users whether in daily activities or during long-term exercise; and the unique speed regulating structure on the lower layer pad can closely cooperate with the air circulation structure, when the upper layer pad is subjected to pressure generated by human walking, standing and the like, the speed regulating structure will automatically start, so that the air circulation rate in the air circulation channel is greatly increased, the efficient air circulation in the pressure state further accelerates the emission of heat and humidity, effectively preventing the accumulation of heat and humidity in the insole, even after high-intensity exercise or long-time standing, the feet can still remain cool and dry, significantly improving the performance of the insole in actual use scenarios, and providing a more excellent wearing experience for users.

[0006] The utility model further sets up: lower layer pad is divided into forefoot area, mid region and rear heel area, air circulation channel includes the gas collection groove of forefoot area and rear heel area position, two gas collection groove between intercommunication has the air passage and the air passage is in the mid region position setting, the air passage radial section is arc setting, two gas collection groove respectively to each other's adjacent lower layer pad end direction intercommunication has the air outlet, the air outlet with adjacent lower layer pad end between arc surface connection is smooth, the air outlet opening place intercommunication to lower layer pad end and form has the first gas port, upper layer pad both ends with upper layer pad bottom wall between arc surface connection is smooth and form has the second gas port, first gas port and second gas port intercommunication combination forms has the air outlet.

[0007] The air circulation channel is formed by the air collecting groove, the air passing groove and the air outlet groove, and the air circulation channel is formed by the air collecting groove, the air passing groove and the air outlet groove.

[0008] The utility model further sets up: the speed regulation structure includes setting in two air collecting grooves spring, spring is round table state setting and spring diameter gradually increases setting from spring beginning end to spring end direction, spring end is in the air collecting groove and is located with air collecting groove bottom wall abutment cooperation setting, spring beginning end is worn out air collecting groove opening and is located with upper layer pad bottom wall abutment cooperation setting.

[0009] The technical scheme has the beneficial effects that: in the above-mentioned technical scheme, the spring in the speed regulation structure is arranged in the two gas collecting grooves, when the upper pad is pressed, the circular truncated cone-shaped spring is deformed due to the force, and because the diameter of the spring gradually increases from the beginning end to the end, the special shape enables the spring to provide greater elastic recovery force when being pressed, the upper pad is pressed by the pressure of human walking and standing, the spring is compressed, the gap between the upper pad and the lower pad is matched and a joint is formed, the joint disappears in the compression process, so that the air in the joint is extruded into the gas collecting groove, and the air in the shoe body is extruded into the gas collecting groove through the air outlet due to the change of air pressure, when the spring is reset, the force is applied to the upper pad, so that the upper pad and the lower pad are gradually separated to form a joint, due to the change of air pressure, part of the air in the gas collecting groove can be quickly extruded into the joint and part of the air is quickly discharged into the shoe body through the air outlet, thereby accelerating the air circulation speed in the whole air circulation channel and the air circulation efficiency in the shoe body, so that the heat and humidity generated by the foot can be quickly volatilized and discharged, and the foot is kept dry and comfortable, the unique structure of the circular truncated cone-shaped spring can accurately adapt to different pressures generated by the human foot in different activity states, when walking, the pressure of the forefoot and the heel changes frequently and greatly, the variable compression degree of the spring can be flexibly adjusted according to the pressure, when the pressure is small, the spring is slightly compressed, the air in the gas collecting groove is slowly discharged, and the normal air circulation is maintained, when the pressure increases, such as in high-intensity activities like running and jumping, the spring can withstand greater pressure and be greatly compressed to quickly extrude a large amount of air and improve the air circulation rate to meet the needs of heat dissipation and moisture removal of the foot in a high metabolism state.

[0010] The utility model further sets up: the gas collecting groove is provided with positioning protrusion, the positioning protrusion radial section is half round shape setting, the spring is set on the positioning protrusion and the inner wall of the axle hole of spring and the outer wall of positioning protrusion local abutment cooperation setting, the positioning protrusion is made of elastic material.

[0011] The beneficial effects of the above technical solution are that: the positioning protrusion arranged in the gas collecting groove has a semicircular radial section, the spring is sleeved on the positioning protrusion, and the inner circumferential wall of the spring shaft hole locally abuts against the outer circumferential wall of the positioning protrusion, so that the positioning protrusion provides accurate positioning for the spring, and the spring always maintains a fixed position and direction in the gas collecting groove. Even if the spring is subjected to frequent pressure changes in a long-term use process, the spring will not deviate or shake, so that the speed regulating structure can continuously and stably play a role, the stability of the air circulation rate in the air circulation channel is maintained, and the consistency of the air permeability of the insole is ensured. Meanwhile, the semicircular positioning protrusion occupies a certain space in the gas collecting groove, and the flow path of the air in the gas collecting groove is changed. When the spring is compressed to compress the air in the gas collecting groove, the air flows along the arc-shaped outer circumferential wall of the positioning protrusion. The special flow path can guide and accelerate the air to a certain extent. Compared with a flat bottom wall of the gas collecting groove, the positioning protrusion enables the air to enter the air passing groove more quickly and orderly when the air is extruded out of the gas collecting groove, and the circulation rate of the air in the entire air circulation channel is further improved.

[0012] The utility model further sets up: the upper layer pad surface is evenly distributed with a plurality of small air holes, a plurality of small air holes all are with the filling cavity intercommunication arrangement.

[0013] The beneficial effects of the above technical solution are that: the semicircular positioning protrusion occupies a certain space in the gas collecting groove, and the flow path of the air in the gas collecting groove is changed. When the spring is compressed to compress the air in the gas collecting groove, the air flows along the arc-shaped outer circumferential wall of the positioning protrusion. The special flow path can guide and accelerate the air to a certain extent. Compared with a flat bottom wall of the gas collecting groove, the positioning protrusion enables the air to enter the air passing groove more quickly and orderly when the air is extruded out of the gas collecting groove, and the circulation rate of the air in the entire air circulation channel is further improved.

[0014] The utility model further sets up: the lower layer pad is made of EVA material.

[0015] The beneficial effects of the above technical solution are that: the EVA material has good flexibility and elasticity, and can provide reliable support for the foot. In the process of daily walking, standing or exercising, the weight of the human body will continuously press the insole, and the EVA material of the lower layer pad can effectively disperse the pressure, so as to avoid discomfort caused by excessive local pressure on the foot. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1The three-dimensional view of the lower layer pad in the utility model;

[0017] Figure 2 The three-dimensional view of the upper layer pad in the utility model; Figure 1 The perspective view of the utility model;

[0018] Figure 3 The three-dimensional view of the lower layer pad in the utility model;

[0019] Figure 4 The side simple sectional view of the upper layer pad in the utility model. Specific implementation

[0020] The utility model provides a kind of containing wormwood antibacterial breathable insole, including the upper layer pad 1 and lower layer pad 2 of stacked arrangement, air circulation passage is provided between the upper layer pad 1 and lower layer pad 2, speed regulating structure for cooperating with air circulation structure to improve air circulation rate in air circulation passage when upper layer pad 1 is pressed is provided on lower layer pad 2, filling cavity 11 is opened in the inside of the upper layer pad 1, and filler 12 made of wormwood material is filled in filling cavity 11, lower layer pad 2 is divided into forefoot zone, middle zone and rear heel zone, air circulation passage includes gas collection groove 21 opened in forefoot zone and rear heel zone position, two gas collection groove 21 are communicated with air passage 22, and air passage 22 is located in middle zone position setting, the radial section of air passage 22 is arc-shaped setting, two gas collection groove 21 are respectively communicated with air outlet groove 23 towards each adjacent lower layer pad 2 end direction, air outlet groove 23 and adjacent lower layer pad 2 end are connected between smooth arc surface, air outlet groove 23 opening is communicated to lower layer pad 2 end and is formed with first gas port, the both ends of the upper layer pad 1 are connected between smooth arc surface with the bottom wall of upper layer pad 1 and are formed with second gas port, first gas port and second gas port are communicated and combined to form air outlet 24, speed regulating structure includes spring 3 arranged in two gas collection groove 21, spring 3 is round table shape setting, and spring 3 diameter gradually increases from spring 3 beginning end to spring 3 end direction setting, spring 3 end is located in gas collection groove 21 and is abutted with the bottom wall of gas collection groove 21 and is matched, spring 3 beginning end is worn out gas collection groove 21 opening and is abutted with the bottom wall of upper layer pad 1 and is matched, positioning protrusion 31 is arranged in gas collection groove 21, the radial section of positioning protrusion 31 is semicircular setting, spring 3 is set on positioning protrusion 31, and the inner peripheral wall of the shaft hole of spring 3 is locally abutted with the outer peripheral wall of positioning protrusion 31 and is matched, positioning protrusion 31 is made of elastic material, the surface of the upper layer pad 1 is uniformly distributed with several micro pores, several micro pores are communicated with filling cavity 11 and are arranged, lower layer pad 2 is made of EVA material.

[0021] The corresponding size and shape of the structure shown in the above specification are not limited, i.e. can be adjusted according to actual structure and size.

[0022] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed for protection, and the protection scope of the utility model is defined by the appended claims and equivalents thereof.

Claims

1. An antibacterial and breathable insole containing artemisia, characterized in that: The application relates to a cushioning device, which comprises upper and lower cushions arranged in a stacked mode, air circulation channels arranged between the upper and lower cushions, speed regulating structures arranged on the lower cushion and matched with the air circulation structure to increase the air circulation rate in the air circulation channels when the upper cushion is pressed, filling cavities opened in the upper cushion and filled with fillers made of artemisia, the lower cushion is divided into forefoot, midfoot and hindfoot areas, the air circulation channels comprise air collecting grooves opened at the forefoot and hindfoot positions, air passing grooves communicated between the two air collecting grooves and arranged at the midfoot position, the air passing grooves are arranged in an arc shape in the radial section, air outlet grooves communicated between the two air collecting grooves and respectively directed to the end of the adjacent lower cushion, the air outlet grooves are connected with the end of the adjacent lower cushion in a smooth arc surface mode, the air outlet grooves are communicated to the end of the lower cushion and formed with first air outlets, the two ends of the upper cushion are connected with the bottom wall of the upper cushion in a smooth arc surface mode and formed with second air outlets, the first air outlets and the second air outlets are communicated to form air outlets.

2. The antibacterial and breathable shoe insole containing artemisia vulgaris according to claim 1, characterized in that: The speed regulating structure comprises springs arranged in the two air collecting grooves, the springs are arranged in a circular truncated cone shape and gradually increased in diameter from the beginning end to the end of the spring, the end of the spring is arranged in the air collecting groove and abuts against the bottom wall of the air collecting groove, and the beginning end of the spring is arranged outside the opening of the air collecting groove and abuts against the bottom wall of the upper cushion.

3. The antibacterial and breathable shoe insole containing artemisia vulgaris according to claim 2, characterized in that: The air collecting groove is provided with a positioning protrusion arranged in a semicircular shape in the radial section, the spring is sleeved on the positioning protrusion, and the inner circumferential wall of the shaft hole of the spring locally abuts against the outer circumferential wall of the positioning protrusion, and the positioning protrusion is made of an elastic material.

4. The antibacterial and breathable shoe insole containing artemisia vulgaris according to claim 1, characterized in that: The surface of the upper cushion is uniformly provided with a plurality of micro pores, and the micro pores are communicated with the filling cavities.

5. The antibacterial and breathable shoe insole containing artemisia vulgaris according to claim 1, characterized in that: The lower cushion is made of EVA.