Shoes with antibacterial and deodorizing functions

By introducing antibacterial insoles, antibacterial midsoles, and antibacterial deodorizing components into the shoes, a comprehensive antibacterial and deodorizing effect is achieved, solving the shortcomings of existing shoes in antibacterial and deodorizing aspects, and improving wearing comfort and foot health.

CN223653306UActive Publication Date: 2025-12-12温州德豪鞋业有限公司
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Patent Information

Application Number
CN202520201017.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2025-12-12
Estimated Expiration
2035-02-07

AI Technical Summary

Technical Problem

Existing shoes have limited effectiveness in antibacterial and deodorizing properties, failing to effectively inhibit the growth of bacteria and fungi, leading to odor and potentially causing foot diseases.

Method used

It adopts an antibacterial inner bottom, antibacterial midsole and antibacterial deodorizing components, including an antibacterial fabric layer, a core antibacterial layer, a support layer, an airbag, an antibacterial deodorizing container and a breathable channel, to achieve all-round antibacterial deodorization through gas circulation and diffusion of antibacterial ingredients.

Benefits of technology

It effectively kills bacteria and fungi inside shoes, breaks down odor molecules, keeps the inside of shoes fresh, improves wearing comfort, reduces stuffiness, and prevents foot health problems.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223653306U_ABST
    Figure CN223653306U_ABST
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Abstract

The utility model belongs to the technical field of shoe manufacturing, and particularly relates to a pair of shoes with antibacterial and deodorant functions. Comprising a vamp and an outsole arranged below the vamp, a foot cavity is formed between the vamp and the outsole, and the antibacterial insole is arranged above the outsole; the antibacterial middle sole is arranged between the antibacterial inner sole and the outer sole; the antibacterial deodorization assembly comprises a containing groove formed in the position, corresponding to the heel, of the antibacterial insole, a pressurizing part arranged in the containing groove, an antibacterial deodorization container arranged below the pressurizing part and communicated with the pressurizing part, exhaust holes formed in the position, corresponding to the toes, of the antibacterial insole, and an exhaust channel formed between the exhaust holes and the antibacterial deodorization container; wherein the accommodating groove is communicated to the upper surface of the antibacterial inner sole. The shoe provided by the utility model has the functions of antibiosis and deodorization.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of footwear manufacturing, and particularly relates to a shoe with antibacterial and deodorizing functions. BACKGROUND

[0002] Shoes are indispensable wearing items in people's daily life and have a wide range of uses. Whether it is daily walking, long-time standing in work, or participating in various sports such as running, basketball, and mountaineering, people need to rely on shoes to protect the feet, provide comfortable support, and adapt to different ground environments. A pair of high-quality shoes not only can improve the comfort of walking, but also can reduce the risk of foot fatigue and injury to a certain extent, which is of great importance to people's quality of life and activity ability.

[0003] However, in the prior art, most conventional shoes have serious deficiencies in terms of antibacterial and deodorizing. With the acceleration of people's life pace and the increase of exercise amount, foot sweating becomes more and more frequent, which provides a breeding ground for bacteria and fungi. For example, after a high-intensity exercise, a large amount of sweat will accumulate in ordinary sports shoes. Due to the lack of effective antibacterial mechanism, bacteria such as Staphylococcus aureus and Escherichia coli, and fungi such as Candida albicans will rapidly multiply. These microorganisms will produce unpleasant odors such as sour smell and moldy smell during the metabolic process, which not only affects the wearing experience, but also can cause foot skin infections such as athlete's foot and paronychia, causing many troubles to the users. Even some shoes try to use simple deodorizing measures, such as adding activated carbon insoles, but activated carbon can only adsorb part of the odor, and the antibacterial and deodorizing effect is very limited, which is difficult to meet people's pursuit of healthy and comfortable wearing environment. SUMMARY

[0004] The shoe of the utility model has antibacterial and deodorizing functions.

[0005] The utility model discloses a kind of shoes with antibacterial and deodorizing functions, including vamp and outer bottom being located below vamp, the vamp and outer bottom are formed with foot chamber, further comprising:

[0006] Antibacterial insole, is located above outer bottom;

[0007] Antibacterial midsole, is located between antibacterial insole and outer bottom;

[0008] Antibacterial and deodorizing assembly, including accommodating slot being opened in antibacterial midsole corresponding to heel, pressurizing portion being located in accommodating slot, antibacterial and deodorizing container being located below pressurizing portion and being communicated with pressurizing portion, exhaust hole being opened in antibacterial insole corresponding to toe and exhaust passage being opened between exhaust hole and antibacterial and deodorizing container;

[0009] Wherein, the accommodating slot is communicated to the upper surface of antibacterial insole.

[0010] The utility model further sets up, the antibacterial insole includes:

[0011] Antibacterial fabric layer, with the foot directly contacts, the antibacterial fabric layer is natural fiber material;

[0012] Core antibacterial layer, be located antibacterial fabric layer below, the core antibacterial layer is the antibacterial material containing metal ion;

[0013] Supporting layer, be located core antibacterial layer below, the supporting layer is thermoplastic elastomer material.

[0014] The utility model further sets up, the pressurizing portion includes:

[0015] Air bag, be located in the containing groove, the air bag protrudes on the upper surface of antibacterial insole;

[0016] Elastic wall, cover in the air bag outside, the elastic wall is fixed in the containing groove;

[0017] Air inlet channel, be used for the communication between foot chamber and air bag and the communication between antibacterial deodorization container and air bag.

[0018] The utility model further sets up, the antibacterial deodorization container includes:

[0019] Container shell, be located below the elastic wall;

[0020] Antibacterial material, fill in the container shell inside;

[0021] Channel interface, be located in the air inlet channel and exhaust passage, the channel interface is communicated to in the container shell.

[0022] The utility model further sets up, be equipped with check valve in the channel interface for preventing gas backflow.

[0023] The utility model further sets up, the exhaust hole sets up four, four the exhaust hole corresponds four finger joint of toe, and the antibacterial insole is opened with the gas chamber that exhaust hole and exhaust passage are linked together.

[0024] The utility model further sets up, be equipped with connecting assembly between the containing groove and container shell, the connecting assembly includes:

[0025] Connecting protrusion, correspond to the bottom of container shell and evenly arrange in the bottom of containing groove;

[0026] Connecting groove, from the bottom of container shell to container shell inside extension, the connecting groove and connecting protrusion one to one.

[0027] The utility model further sets up, still include:

[0028] The air-permeable assembly comprises a first air-permeable groove opened from both sides of the upper surface of the antibacterial insole to the lower surface of the antibacterial insole along the height direction of the shoe and a second air-permeable groove opened from the side wall of the antibacterial insole and the antibacterial insole to the opposite side wall along the width direction of the shoe;

[0029] The first air-permeable groove and the second air-permeable groove cooperate with each other to make the air in the shoe unobstructed.

[0030] By adopting the technical scheme, the utility model can obtain the beneficial effects:

[0031] 1. The antibacterial and deodorizing container in the antibacterial and deodorizing assembly is filled with antibacterial materials. When the air bag is compressed by the pressure of the heel, the gas enters the container through the air inlet channel, the antibacterial components diffuse in the shoe through the channel interface, the air outlet channel and the air outlet hole, the antibacterial treatment is carried out in all directions in the shoe space, the bacteria and fungi are effectively killed, and the odor molecules are decomposed, so that the odor in the shoe and the foot health problem caused by microorganisms are relieved.

[0032] 2. The first air-permeable groove and the second air-permeable groove cooperate with each other to make the air in the shoe unobstructed, the sweat and hot air generated by the foot are discharged in time, the foot is kept dry, the stuffy feeling is reduced, and the comfort of wearing is greatly improved. Whether it is daily walking, long-time standing or high-intensity exercise, the foot can be in a more comfortable state.

[0033] 3. The air bag of the pressurizing part protrudes above the upper surface of the antibacterial insole. When a person walks, the heel exerts pressure, the air bag is compressed, the gas enters the antibacterial and deodorizing container through the air inlet channel, and the gas in the container is discharged through the air outlet channel and the air outlet hole. Such a design makes the gas circulation more smooth and reasonable. On the one hand, the antibacterial components in the antibacterial and deodorizing container can be evenly diffused to every corner in the shoe, and the uniformity of the antibacterial effect is improved. On the other hand, the odor gas in the shoe, such as ammonia, hydrogen sulfide and other odors generated after exercise, can be efficiently discharged, and the air in the shoe is kept fresh through continuous gas circulation. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 It is a three-dimensional structure explosion schematic view of the utility model;

[0035] Figure 2 It is a sectional structure schematic view of the utility model in the first direction;

[0036] Figure 3 It is an enlarged structure schematic view of A part of the utility model Figure 2 ;

[0037] Figure 4 It is a sectional structure schematic view of the antibacterial insole of the utility model.

[0038] The figure mark is: 1, vamp; 2, outsole; 3, antibacterial insole; 30, antibacterial fabric layer; 31, core antibacterial layer; 32, support layer; 4, antibacterial midsole; 5, antibacterial and deodorizing assembly; 50, containing groove; 51, pressurizing part; 510, air bag; 511, elastic wall; 512, air inlet channel; 52, antibacterial and deodorizing container; 520, container shell; 521, antibacterial material; 522, channel interface; 53, exhaust hole; 54, exhaust channel; 6, check valve; 7, air chamber; 8, connecting assembly; 80, connecting protrusion; 81, connecting groove; 9, air permeable assembly; 90, first air permeable groove; 91, second air permeable groove. DETAILED DESCRIPTION

[0039] The utility model will be further described below with specific examples in combination with the drawings, referring to Figures 1-4 :

[0040] Example 1

[0041] The embodiment provides a shoe with antibacterial and deodorizing functions, comprising a vamp 1 and an outsole 2 arranged below the vamp 1, a foot cavity is formed between the vamp 1 and the outsole 2, and further comprising:

[0042] An antibacterial insole 3 is arranged above the outsole 2.

[0043] An antibacterial midsole 4 is arranged between the antibacterial insole 3 and the outsole 2.

[0044] An antibacterial and deodorizing assembly 5 comprises a containing groove 50 arranged at the corresponding heel of the antibacterial midsole 4, a pressurizing part 51 arranged in the containing groove 50, an antibacterial and deodorizing container 52 arranged below the pressurizing part 51 and in communication with the pressurizing part 51, an exhaust hole 53 arranged at the corresponding toe of the antibacterial insole 3, and an exhaust channel 54 arranged between the exhaust hole 53 and the antibacterial and deodorizing container 52.

[0045] The containing groove 50 is in communication with the upper surface of the antibacterial insole 3.

[0046] The vamp 1 wraps the upper part of the foot, provides protection, blocks dust and sundries from the outside world into the shoe, and has a certain decorative effect, showing the appearance style of the shoe. The vamp 1 is located at the outermost layer of the shoe, directly contacts with the outside environment, and is connected with the outsole 2 through glue sticking, sewing reinforcement or special riveting process along the edge of the shoe periphery, to ensure that the vamp 1 and the outsole 2 are fixed tightly, forming a closed foot containing space.

[0047] The outsole 2 directly contacts with the ground, provides friction, prevents slipping, bears the body weight and impact force during walking and moving, and protects the foot from being injured by hard objects on the ground.

[0048] The foot cavity is surrounded by the upper 1 and the outsole 2, and is used for accommodating the foot, providing a comfortable moving space for the foot, and allowing the foot to stretch naturally during walking and movement, thereby avoiding excessive compression.

[0049] The antibacterial insole 3 is in direct contact with the foot, and can play multiple roles such as antibacterial, sweat absorption, and cushioning. The antibacterial insole 3 can inhibit the breeding of bacteria on the foot, reduce the generation of odor, alleviate the pressure on the foot, and improve the wearing comfort.

[0050] The antibacterial midsole 4 supports the antibacterial insole 3 and enhances the overall cushioning performance of the sole. The antibacterial midsole 4 also carries the antibacterial and deodorizing assembly 5 to realize air circulation and antibacterial and deodorizing functions in the shoe. The antibacterial midsole 4 is tightly connected with the antibacterial insole 3 and the outsole 2 by adhesion to form a stable sole structure.

[0051] The antibacterial and deodorizing assembly 5 is a key part for realizing the antibacterial and deodorizing core function of the shoe. The antibacterial and deodorizing assembly 5 diffuses the antibacterial components to all parts of the shoe through air circulation, and discharges odor gas to keep the air in the shoe fresh and inhibit the growth of bacteria and fungi.

[0052] The air outlet hole 53 is the outlet of the gas discharge channel, and discharges the gas and odor gas in the shoe after antibacterial and deodorizing treatment to the outside of the shoe to keep the air in the shoe fresh. The air outlet hole 53 is provided in the antibacterial insole 3 corresponding to the toes, and is connected with the air discharge channel 54 through an internal pipeline or cavity, and is integrally formed during the manufacturing process of the antibacterial insole 3.

[0053] The air discharge channel 54 connects the air outlet hole 53 and the antibacterial and deodorizing container 52, guides air circulation, and makes the gas in the antibacterial and deodorizing container 52 flow to the air outlet hole 53 to realize directional flow of air in the shoe and ensure antibacterial and deodorizing effect. The air discharge channel 54 is generally a tubular or slot-shaped channel provided in the antibacterial midsole 4, and connects the antibacterial and deodorizing container 52 and the air outlet hole 53. The air discharge channel 54 is connected with the air outlet hole 53 and the antibacterial and deodorizing container 52 by adhesion, welding or integral molding to ensure smooth gas flow path.

[0054] Embodiment 2:

[0055] The embodiment provides a shoe with antibacterial and deodorizing functions, which has the following technical features in addition to the technical solutions of the above embodiments.

[0056] The antibacterial insole 3 comprises:

[0057] The antibacterial fabric layer 30 is in direct contact with the foot, and the antibacterial fabric layer 30 is a natural fiber material;

[0058] The core antibacterial layer 31 is located below the antibacterial fabric layer 30, and the core antibacterial layer 31 is a metal ion-containing antibacterial material;

[0059] The support layer 32, located below the core antibacterial layer 31, is a thermoplastic elastomer material.

[0060] The antibacterial fabric layer 30 is in direct contact with the foot and plays an antibacterial role while also having the functions of absorbing sweat and being breathable, etc., thereby reducing the odor caused by the growth of bacteria due to foot sweat and creating a relatively clean and dry contact environment for the foot, thereby improving the comfort of wearing. The antibacterial fabric layer 30 is woven from natural fiber materials, and the fibers are interwoven to form a fabric structure with certain porosity, which is conducive to air circulation and sweat absorption. For example, if bamboo fiber is used, the internal microstructure contains components that can inhibit bacteria, and the fiber itself is soft, making the fabric layer comfortable to the touch. The overall shape of the antibacterial fabric layer 30 is adapted to the shape of the upper surface of the antibacterial insole 3, and is generally a flat sheet that covers the entire foot contact area. The antibacterial fabric layer 30 and the core antibacterial layer 31 below are usually tightly connected together by adhesive or hot pressing.

[0061] The core antibacterial layer 31 is used to inhibit the reproduction of bacteria and fungi, and by releasing specific antibacterial components or creating an environment that is not conducive to the growth of microorganisms, it reduces the number of bacteria and fungi in the shoe from the source, protects the health of the feet, and prevents foot diseases caused by the growth of microorganisms. The core antibacterial layer 31 is made of metal ion-containing antibacterial materials, which can be in the form of uniform distribution in a certain carrier material, such as nano-silver antibacterial material, in which nano-silver particles are uniformly dispersed in a polymer matrix to form a whole structure with antibacterial function; or a composite material form that allows slow release of metal ions, continuously exerting antibacterial effect. The core antibacterial layer 31, like the antibacterial fabric layer 30, is a flat sheet that matches the shape of the antibacterial fabric layer 30 and the support layer 32. The core antibacterial layer 31 is bonded to the antibacterial fabric layer 30 above by adhesive or hot pressing, and the support layer 32 below also uses a similar tight connection method to ensure the stability of the antibacterial insole 3 structure composed of the three layers.

[0062] The support layer 32 is used to support and stabilize the structure of the antibacterial insole 3, and can maintain the shape of the antibacterial insole 3 when bearing the weight of the human body and the pressure and impact force generated during walking and movement, prevent excessive deformation, and ensure that each layer of material, especially the core antibacterial layer 31, can continuously and effectively exert the antibacterial effect, and also provide a certain buffer for the foot to improve the comfort of wearing. The support layer 32 is made of thermoplastic elastomer material, which can elastically deform under stress and return to its original shape after the force disappears. For example, a thermoplastic elastomer of styrene type, which is composed of hard segments and soft segments, the hard segments provide rigidity and shape retention ability, and the soft segments impart elasticity and flexibility. The support layer 32 is also a planar sheet matching the shape of the antibacterial fabric layer 30 and the core antibacterial layer 31. The support layer 32 is also attached to the underlying antibacterial insole 4 by means of adhesion or the like, so that the antibacterial insole 3 can be stably installed in the sole structure.

[0063] Example 3:

[0064] The embodiment provides a shoe with antibacterial and deodorizing functions, in addition to the technical solutions of the above-mentioned embodiments, further having the following technical features.

[0065] The pressurizing part 51 comprises:

[0066] The air bag 510 is arranged in the accommodating groove 50, and the air bag 510 protrudes from the upper surface of the antibacterial insole 3;

[0067] The elastic wall 511 is wrapped outside the air bag 510, and the elastic wall 511 is fixed in the accommodating groove 50;

[0068] The air inlet channel 512 is used for communication between the foot chamber and the air bag 510, and communication between the antibacterial and deodorizing container 52 and the air bag 510.

[0069] The air bag 510 serves to store and compress gas, and when subjected to external pressure, can quickly change its volume and extrude the internal gas to provide gas power for the antibacterial and deodorizing container 52, drive the circulation of the gas in the shoe, and then realize the antibacterial and deodorizing function. The air bag 510 is usually designed as a circle or an ellipse to match the shape of the accommodating groove 50, and protrudes from the upper surface of the antibacterial insole 3, so that it can be subjected to pressure as soon as possible when the heel is on the ground. The air bag 510 is arranged in the accommodating groove 50 and located at the corresponding heel position of the antibacterial insole 4, and from the vertical direction, it is located at the position close to the foot in the rear half of the sole, which is the starting power source of the gas circulation. The air bag 510 and the elastic wall 511 are usually connected by means of adhesion or hot pressing.

[0070] The elastic wall 511 is covered outside the air bag 510, which plays a protective role for the air bag 510, prevents the air bag 510 from being damaged due to friction with the wall of the accommodating groove 50 or being impacted by external force during compression, and on the other hand, assists the air bag 510 to maintain a stable shape, enhances the compression resistance of the air bag 510, ensures that the air bag 510 can still work normally under multiple compression, and guarantees the continuity of the gas circulation. The shape of the elastic wall 511 is matched with the air bag 510, which is a circular or elliptical sleeve, and the height is slightly higher than that of the air bag 510, so as to provide sufficient deformation space when the air bag 510 is compressed, and the outer wall is tightly fitted with the inner wall of the accommodating groove 50 and fixed in the accommodating groove 50.

[0071] The air inlet channel 512 is used for communication between the foot chamber and the air bag 510 and communication between the antibacterial and deodorizing container 52 and the air bag 510, which enables external air to enter the air bag 510, ensures that the gas can flow smoothly to the antibacterial and deodorizing container 52 when the air bag 510 is compressed, maintains the dynamic balance of the gas, and guarantees the effective operation of the antibacterial and deodorizing system. The air inlet channel 512 is usually an elongated tubular structure, and the air inlet channel 512 can be connected with the air bag 510 by means of rubber sealing glue, and can be connected with the antibacterial and deodorizing container 52 by means of hot melt welding.

[0072] Embodiment 4:

[0073] The embodiment provides a shoe with antibacterial and deodorizing functions, which has the following technical features in addition to the technical solutions of the above embodiments.

[0074] The antibacterial and deodorizing container 52 comprises:

[0075] The container shell 520 is arranged below the elastic wall 511.

[0076] The antibacterial material 521 is filled in the container shell 520.

[0077] The channel interface 522 is arranged in the air inlet channel 512 and the air outlet channel 54, and the channel interface 522 is communicated to the inside of the container shell 520.

[0078] The container shell 520 plays a role of protecting the internal antibacterial material 521, provides a relatively closed and stable space for the antibacterial and deodorizing process, prevents the antibacterial material 521 from scattering and failing due to external collision, friction or other physical factors, and ensures that the antibacterial and deodorizing function can be continuously and effectively exerted. The container shell 520 is usually a cuboid, a cylinder or other structure matched with the accommodating groove 50, and the container shell 520 is connected with the antibacterial insole 4 through the connecting assembly 8.

[0079] The antibacterial material 521 is a key substance for achieving antibacterial and deodorization. It directly acts on bacteria, fungi and odor molecules in the shoe, and achieves the purpose of purifying the air in the shoe, eliminating odor and inhibiting the growth of microorganisms through adsorption, chemical reaction, inhibition of microbial growth and reproduction, etc. It creates a healthy and fresh environment for the feet. The antibacterial material 521 has various forms. The activated carbon is in the form of porous particles or powder. The nano-silver antibacterial particles are usually uniformly dispersed in the carrier material to form a composite antibacterial material. The plant extract can be in a liquid state and fixed on the carrier after adsorption, or in the form of microcapsules for slow release of effective components to meet the antibacterial needs during long-term use of the shoe sole. The antibacterial material 521 is directly filled in the container shell 520.

[0080] The channel interface 522 ensures that the gas can smoothly enter and exit the antibacterial and deodorization container 52, realizes sufficient mixing and exchange of the gas and the antibacterial material 521, and is the hub for the smooth circulation of the gas in the shoe, which is directly related to the advantages and disadvantages of the antibacterial and deodorization effect. The channel interface 522 is generally in the form of a short and small tube structure, and the number is two. One end of one channel interface 522 is communicated with the inside of the container shell 520, and the opening faces the antibacterial material 521, which is convenient for gas diffusion, and the other end is arranged in the gas inlet channel 512. One end of the other channel interface 522 is also communicated with the inside of the container shell 520, and the other end is arranged in the gas outlet channel 54. The channel interface 522, the gas inlet channel 512 and the gas outlet channel 54 are connected by means of glue, hot melt welding or special pipe fitting.

[0081] Embodiment 5:

[0082] The embodiment provides a shoe with antibacterial and deodorization functions. In addition to the technical solutions of the above-mentioned embodiments, the shoe has the following technical features.

[0083] The channel interface 522 is provided with a check valve 6 for preventing gas backflow.

[0084] The check valve 6 can be installed in the channel interface 522 by means of glue, threaded connection or clamping groove cooperation. The core function of the check valve 6 is to control the flow direction of the gas, allowing the gas to flow only in one direction and preventing the gas from flowing back, so as to ensure that the gas circulation in the antibacterial and deodorization container 52 is carried out in the predetermined direction, and to ensure the efficient and stable operation of the entire antibacterial and deodorization system.

[0085] Embodiment 6:

[0086] The embodiment provides a shoe with antibacterial and deodorization functions. In addition to the technical solutions of the above-mentioned embodiments, the shoe has the following technical features.

[0087] The gas outlet holes 53 are arranged as four, corresponding to the four finger joints of the toes. The antibacterial insole 4 is provided with a gas chamber 7 communicated with the gas outlet holes 53 and the gas outlet channel 54.

[0088] The exhaust holes 53 are arranged as four circular small holes corresponding to the positions of the four finger joints of the toes, and are uniformly distributed at the front end of the antibacterial insole 3 close to the toes, so as to fit the physiological structure of the foot, facilitate the rapid exhaust of gas from the surrounding area of the toes, and not affect the normal activity of the foot.

[0089] The air chamber 7 serves as a temporary storage and buffer space for the gas, balances the gas pressure, and optimizes the gas distribution, so that the gas flowing out of the antibacterial and deodorizing container 52 can flow more uniformly and smoothly to the exhaust holes 53, improving the efficiency of gas circulation, and further enhancing the antibacterial and deodorizing effect. The air chamber 7 is generally a rectangular or cylindrical cavity structure. The air chamber 7 is integrally formed when the antibacterial insole 4 is manufactured.

[0090] Embodiment 7:

[0091] The embodiment provides a shoe with antibacterial and deodorizing function, in addition to the technical solutions of the above embodiments, further having the following technical features.

[0092] The connection assembly 8 is arranged between the accommodating groove 50 and the container shell 520, and the connection assembly 8 comprises:

[0093] The connecting protrusions 80 are arranged uniformly on the bottom of the accommodating groove 50 corresponding to the bottom of the container shell 520.

[0094] The connecting grooves 81 extend from the bottom of the container shell 520 to the inside of the container shell 520, and the connecting grooves 81 correspond to the connecting protrusions 80 one by one.

[0095] The connecting protrusions 80 are used to enhance the connection stability between the accommodating groove 50 and the container shell 520, and form a structure similar to a mortise and tenon through cooperation with the connecting grooves 81, so as to prevent displacement and looseness of the container shell 520 during frequent stress on the sole, and ensure the integrity and reliability of the antibacterial and deodorizing assembly 5. The connecting protrusions 80 are generally short and small columnar protrusions arranged according to the bottom of the container shell 520, and are generally symmetrically distributed to ensure uniform stress, so that the container shell 520 can be stably and firmly fixed in the accommodating groove 50. The connecting protrusions 80 can be arranged at the bottom of the accommodating groove 50 by gluing or integrally formed with the accommodating groove 50.

[0096] The connecting grooves 81 are used as the corresponding structure of the connecting protrusions 80, and together with the connecting protrusions 80 to build a stable connection system, provide accurate positioning for the container shell 520, and are mutually clamped with the connecting protrusions 80, further enhancing the stability of the antibacterial and deodorizing container 52 in the sole structure. The connecting grooves 81 extend from the bottom of the container shell 520 to the inside of the container shell 520, and are generally a groove-shaped structure matched with the connecting protrusions. The connecting grooves 81 are integrally formed with the container shell 520.

[0097] Embodiment 8:

[0098] The embodiment provides a shoe with antibacterial and deodorizing functions.

[0099] Further comprising:

[0100] The air permeation assembly 9 comprises first air permeation grooves 90 opened from both sides of the upper surface of the antibacterial insole 3 to the lower surface of the antibacterial midsole 4 in the height direction of the shoe and second air permeation grooves 91 opened from the side walls of the antibacterial insole 3 and the antibacterial midsole 4 to the opposite side walls in the width direction of the shoe.

[0101] The first air permeation grooves 90 and the second air permeation grooves 91 cooperate with each other, so that the air in the shoe is smooth.

[0102] The air permeation assembly 9 aims to promote the smooth circulation of the air in the shoe, enable the air in the shoe to exchange with the air outside, timely discharge the moisture and odor gas generated in the shoe due to foot sweating and bacterial breeding, simultaneously introduce fresh air from outside, maintain the dry and comfortable environment in the shoe, help the antibacterial and deodorizing functions to better play, and improve the comfort of wearing.

[0103] The first air permeation grooves 90 are mainly responsible for realizing the air exchange between the shoe bottom and the outside in the vertical direction, enabling the hot air, moisture and odor gas accumulated in the shoe bottom to be discharged upwards, and enabling fresh air from outside to enter the shoe from below the shoe bottom, adjusting the air environment in the shoe and improving the antibacterial and deodorizing effects in cooperation with other components. The first air permeation grooves 90 are vertical groove-shaped channels located on both sides of the upper surface of the antibacterial insole 3. The first air permeation grooves 90 are integrally formed with the antibacterial insole 3 and the antibacterial midsole 4 in the shoe bottom manufacturing process, are naturally communicated internally, meet the second air permeation grooves 91 at the corresponding positions, and form a coherent air flow channel.

[0104] The second air permeation grooves 91 focus on realizing the flow of the air in the shoe in the horizontal direction, enabling the air in different regions in the shoe to exchange and mix with each other, enabling the antibacterial components to be more uniformly distributed in the shoe, further strengthening the air exchange efficiency between the shoe and the outside, promoting the overall optimization of the air environment in the shoe, and improving the dry and comfortable feeling of wearing. The second air permeation grooves 91 are groove-shaped structures penetrating the side walls of the antibacterial insole 3 and the antibacterial midsole 4 in the horizontal direction, and the manufacturing process is similar to that of the first air permeation grooves 90 and can be integrally formed in the forming process.

[0105] The above embodiment is only a preferred embodiment of the utility model, and does not limit the protection scope of the utility model, so that: equivalent changes made according to the structure, shape and principle of the utility model should be covered in the protection scope of the utility model.

Claims

1. A shoe with antibacterial and deodorizing functions, comprising a vamp (1) and an outsole (2) arranged below the vamp (1), a foot chamber being formed between the vamp (1) and the outsole (2), characterized in that Also comprising: The antibacterial inner sole (3) is arranged above the outer sole (2); The antibacterial middle sole (4) is arranged between the antibacterial inner sole (3) and the outer sole (2); The antibacterial deodorization assembly (5) comprises a containing groove (50) opened at the corresponding heel of the antibacterial middle sole (4), a pressurizing part (51) arranged in the containing groove (50), an antibacterial deodorization container (52) arranged below the pressurizing part (51) and communicated with the pressurizing part (51), an exhaust hole (53) opened at the corresponding toe of the antibacterial inner sole (3), and an exhaust passage (54) opened between the exhaust hole (53) and the antibacterial deodorization container (52); The containing groove (50) is communicated to the upper surface of the antibacterial inner sole (3).

2. The shoe with antibacterial and deodorizing functions according to claim 1, characterized in that, The antibacterial inner sole (3) comprises: The antibacterial fabric layer (30) is in direct contact with the foot, and the antibacterial fabric layer (30) is a natural fiber material; The core antibacterial layer (31) is located below the antibacterial fabric layer (30), and the core antibacterial layer (31) is a metal ion-containing antibacterial material; The support layer (32) is located below the core antibacterial layer (31), and the support layer (32) is a thermoplastic elastomer material.

3. The shoe with antibacterial and deodorizing functions according to claim 1, characterized in that, The pressurizing part (51) comprises: The air bag (510) is arranged in the containing groove (50), and the air bag (510) protrudes from the upper surface of the antibacterial inner sole (3); The elastic wall (511) is wrapped outside the air bag (510), and the elastic wall (511) is fixed in the containing groove (50); The air inlet passage (512) is used for communication between the foot cavity and the air bag (510) and communication between the antibacterial deodorization container (52) and the air bag (510).

4. The shoe with antibacterial and deodorizing functions according to claim 3, characterized in that, The antibacterial deodorization container (52) comprises: The container shell (520) is arranged below the elastic wall (511); The antibacterial material (521) is filled in the container shell (520); The channel interface (522) is arranged in the air inlet passage (512) and the exhaust passage (54), and the channel interface (522) is communicated to the container shell (520).

5. The shoe with antibacterial and deodorizing functions according to claim 4, characterized in that, The check valve (6) is arranged in the channel interface (522) to prevent gas backflow.

6. The shoe with antibacterial and deodorizing functions according to claim 1, wherein, The exhaust hole (53) is provided as four, and the four exhaust holes (53) correspond to the four finger gaps of the toes, and the antibacterial middle sole (4) is provided with an air chamber (7) communicated with the exhaust hole (53) and the exhaust passage (54).

7. The shoe with antibacterial and deodorizing functions according to claim 4, wherein the shoe is characterized by, The connecting assembly (8) is arranged between the containing groove (50) and the container shell (520), and the connecting assembly (8) comprises: The connecting protrusions (80) are arranged uniformly on the bottom of the containing groove (50) corresponding to the bottom of the container shell (520); The connecting grooves (81) extend from the bottom of the container shell (520) to the inside of the container shell (520), and the connecting grooves (81) correspond one-to-one to the connecting protrusions (80).

8. The shoe with antibacterial and deodorizing functions according to claim 1, wherein, Also comprising: The air permeable assembly (9) comprises a first air permeable groove (90) opened from both sides of the upper surface of the antibacterial inner sole (3) to the lower surface of the antibacterial middle sole (4) along the height direction of the shoe, and a second air permeable groove (91) opened from the side walls of the antibacterial inner sole (3) and the antibacterial middle sole (4) to the opposite side walls along the width direction of the shoe. The first air-permeable groove (90) and the second air-permeable groove (91) cooperate with each other to make the air in the shoe unobstructed.