One-way power type ventilation shoe
By designing the airbag body and flow channel system of the unidirectional dynamic ventilation shoe, the unidirectional flow of air inside and outside the shoe cavity is realized, which solves the problem of poor breathability of footwear and improves the user's comfort.
Patent Information
- Application Number
- CN202520528550.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Existing footwear has poor breathability, which prevents heat and moisture from being effectively released from the feet in hot and humid environments, affecting user comfort.
Design a unidirectional dynamic ventilation shoe that achieves unidirectional airflow inside and outside the shoe cavity through the airbag body and the flow channel system. The shoe includes an airbag cover, a first flow channel tube, a second flow channel tube, and an air nozzle. The unidirectional airflow is achieved by compressing and restoring the airbag, thereby improving the air circulation inside the shoe cavity.
It improves airflow within the shoe cavity, reduces foot dampness and stuffiness, and enhances user comfort.
Smart Images

Figure CN223667364U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a footwear technical field especially one -way power formula ventilation shoes. BACKGROUND
[0002] With the development of the times, footwear technology has broken through the traditional function of protecting the feet, and evolved towards performance enhancement, personalization and sustainability, becoming an intersection of material science, data engineering and user experience. At present, footwear has the problem of poor air permeability. Some shoes use synthetic materials such as plastic or artificial leather. These materials may have poor air permeability, and there may also be environmental factors. In hot and humid weather, the heat in the shoe cavity cannot be immediately and directly discharged, which may cause the heat and moisture of the feet to be unable to discharge, making the user feel hot and unable to meet the user's experience. SUMMARY
[0003] To solve the above problems, the utility model provides a one -way power formula ventilation shoes.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme: the utility model relates to a one -way power formula ventilation shoes, and its characterized in that: including sole, vamp, foot bed, insole plate, air bag cover, first flow channel pipe, second flow channel pipe and air cock, the vamp is located on the sole and forms a shoe cavity with it, the foot bed, insole plate are sequentially located on the sole and are located in the shoe cavity, the air cock is located on the side of the sole, the sole includes first heel part and first sole part, the first heel part is equipped with air bag groove, the air bag cover is covered on the air bag groove and forms air bag body, the first sole part is equipped with a plurality of grid-shaped flow guide grooves, a plurality of first air holes are arranged on the foot bed, a plurality of second air holes are arranged on the insole plate, the shoe cavity is communicated with the air bag body through the first air hole, the second air hole, the first flow channel pipe and the air cock, the air bag body is communicated with the outside of the shoe through the second flow channel pipe and the air cock.
[0005] Preferably, the air bag body has a one-way air inlet and a one-way air outlet, when the first flow channel pipe is inserted into the one-way air inlet and the second flow channel pipe is inserted into the one-way air outlet, the air bag body is used to extract the air in the shoe, when the first flow channel pipe is inserted into the one-way air outlet and the second flow channel pipe is inserted into the one-way air inlet, the air bag body is used to provide fresh air to the shoe. That is, the air in the shoe cavity enters the air bag body through the first air hole, the second air hole and the first flow channel pipe in one way, the airflow in the air bag body is discharged to the outside of the shoe through the second flow channel pipe and the air cock in one way, or the air outside the shoe enters the air bag body through the second flow channel pipe and the air cock in one way, and the air in the air bag body enters the shoe cavity through the first flow channel pipe, the second air hole and the first air hole in one way.
[0006] Preferably, the shoe sole is integrally formed with a first flow channel groove, a second flow channel groove and a grid-shaped flow guide groove, the first flow channel pipe is embedded in the first flow channel groove, the second flow channel pipe is embedded in the second flow channel groove, the air bag body is communicated with the grid-shaped flow guide groove through the first flow channel pipe, and the air bag body is communicated with the outside through the second flow channel pipe.
[0007] Preferably, the side surface of the shoe sole is provided with an air outlet hole, the air nozzle is fixed in the air outlet hole, the air nozzle is a one-way valve structure, and the air nozzle is communicated with the air bag body for air exchange through the second flow channel pipe. The air nozzle is used for preventing water from entering the shoe.
[0008] Preferably, the air bag cover comprises a fitting ring and a pressing part, and the pressing part is outwardly raised on the surface of the fitting ring.
[0009] Preferably, the air bag cover is integrally formed with a first one-way air duct and a second one-way air duct, the first one-way air duct is a one-way air inlet duct, the second one-way air duct is a one-way air outlet duct, or the first one-way air duct is a one-way air outlet duct, and the second one-way air duct is a one-way air inlet duct.
[0010] Preferably, the insole plate comprises a second heel part and a second instep part, the second heel part is provided with an air bag avoiding hole, and the second air permeable hole is arranged on the second instep part.
[0011] Preferably, a plurality of the second air permeable holes are arranged in an array on the second instep part, and adjacent two rows of the second air permeable holes are arranged in a staggered mode.
[0012] Preferably, the foot bed comprises a third heel part and a third instep part, the bottom of the third heel part is provided with a pressing groove matched with the pressing part of the air bag cover, the top of the third heel part is provided with a pressing part corresponding to the pressing groove in position, and the first air permeable hole is arranged on the third instep part.
[0013] Preferably, the bottom of the third instep part is provided with a plurality of air permeable grooves, each of the air permeable grooves is arranged in a longitudinal and transverse staggered mode, and the first air permeable hole is arranged at the intersection of the air permeable grooves.
[0014] The utility model discloses a one-way power type air exchange shoe, the air bag cover covers the air bag groove of shoe sole and forms the air bag body, the air bag body is communicated with shoe cavity and outside through first flow channel pipe and second flow channel pipe, so that the user realizes the flow and exchange of the air in shoe cavity in the process of walking, improves the air circulation in shoe cavity, reduces the problem of foot damp or stuffy, and improves the more comfortable feeling of foot. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the whole structure schematic diagram of the utility model shoe.
[0016] Figure 2 is the explosion structure schematic view of the shoe of the utility model.
[0017] Figure 3 is the structure schematic view of the sole of the utility model.
[0018] Figure 4 is the structure schematic view of the air cock of the utility model.
[0019] Figure 5 is the structure schematic view of the internal structure of the air cock of the utility model.
[0020] Figure 6 is the connection schematic view of the air cock and the second flow channel pipe of the utility model.
[0021] Figure 7 is the structure schematic view of the air bag cover of the utility model.
[0022] Figure 8 is the back partial section schematic view of the air bag cover of the utility model.
[0023] Figure 9 is the structure schematic view of the middle bottom plate of the utility model.
[0024] Figure 10 is the top structure schematic view of the foot bed of the utility model.
[0025] Figure 11 is the back structure schematic view of the foot bed of the utility model.
[0026] Figure 12 is the structure schematic view of the air bag cover, the first flow channel pipe, the second flow channel pipe and the air cock installed in the sole of the utility model.
[0027] Reference signs
[0028] 1, sole; 11, first heel part; 12, first palm part; 13, air bag groove; 14, grid-shaped flow guide groove; 141, flow guide sub-groove; 142, flow guide air inlet; 15, first flow channel groove; 16, second flow channel groove; 17, air outlet hole; 18, installation groove;
[0029] 2, upper;
[0030] 3, foot bed; 31, third heel part; 32, third palm part; 33, pressing groove; 34, treading part; 35, first air hole; 36, air groove;
[0031] 4, middle bottom plate; 41, second heel part; 42, second palm part; 43, air bag avoiding hole; 44, second air hole;
[0032] 5, air bag cover; 51, pressing part; 52, fit ring;
[0033] 53, first one-way air passage; 531, air inlet channel; 532, air inlet closing ring; 533, first air bead movable section; 5331, first air vent limiting column; 534, air inlet connecting section; 535, first air bead;
[0034] 54, second one-way air passage; 541, air outlet channel; 542, air outlet connecting section; 543, second air bead movable section; 5431, second air vent limiting column; 544, air outlet closing ring; 545, second air bead;
[0035] 6, first flow channel pipe; 7, second flow channel pipe;
[0036] 8, air nozzle; 81, air nozzle connecting part; 82, air nozzle fixing part; 83, air nozzle exposed part; 84, air nozzle flow channel; 841, first air nozzle flow channel; 842, second air nozzle flow channel; 8421, air nozzle air vent limiting column; 843, third air nozzle flow channel; 85, air nozzle air bead;
[0037] 100, shoe cavity. DETAILED DESCRIPTION
[0038] Referring to Figures 1-12 The utility model relates to a one-way power type air exchange shoe, including sole 1, vamp 2, foot bed 3, midsole plate 4, air bag cover 5, first flow channel pipe 6, second flow channel pipe 7 and air nozzle 8, vamp 2 sets up on sole 1 and with its constitution one for the foot department contains shoe cavity 100, foot bed 3, midsole plate 4 are sequentially set up on sole 1 and are located in shoe cavity 100, air nozzle 8 sets up on the side of sole 1, sole 1 includes first heel part 11 and first sole part 12, first heel part 11 is equipped with air bag groove 13, air bag cover 5 covers on air bag groove 13 and forms air bag body, first sole part 12 is equipped with several grid-like flow guide grooves 14, the first air-permeable hole 35 of several is equipped on foot bed 3, the second air-permeable hole 44 of several is equipped on midsole plate 4, shoe cavity 100 is communicated with air bag body through first air-permeable hole 35, second air-permeable hole 44, first flow channel pipe 6, and air bag body is communicated with shoe outside through second flow channel pipe 7, air nozzle 8.
[0039] In the embodiment, the sole 1 is provided with a first flow channel groove 15 and a second flow channel groove 16, the air bag groove 13 is communicated with the grid-like flow guide groove 14 through the first flow channel groove 15, and the first flow channel pipe 6 is arranged in the first flow channel groove 15. The side of the sole 1 is provided with an air outlet hole 17, the air bag groove 13 is communicated with the air outlet hole 17 through the second flow channel groove 16, and the second flow channel pipe 7 is arranged in the second flow channel groove 16.
[0040] In the embodiment, the grid-shaped flow guide groove 14 includes several flow guide sub-grooves 141 arranged in a longitudinal and transverse staggered manner on the first instep portion 12. The grid-shaped flow guide groove 14 is provided with a flow guide air inlet 142 which is in communication with the first flow channel groove 15.
[0041] In the embodiment, the air bag cover 5 is fixed on the air bag groove 13 by adhesion to form an air bag body on the first instep portion 12 of the shoe sole 1. The air bag cover 5 includes a fitting ring 52 and a pressing portion 51 which is raised outward on the surface of the fitting ring 52. The air bag cover 5 is made of elastic material and has good elasticity. When the pressing portion 51 is pressed, the pressing portion 51 is deformed under pressure to compress the air bag cover 5. When the pressure on the pressing portion 51 is removed, the pressing portion 51 elastically returns to the original position to restore the air bag cover 5 to its original state.
[0042] Further, the periphery of the air bag groove 13 of the shoe sole 1 is provided with a mounting groove 18, and the fitting ring 52 is mounted in the mounting groove 18.
[0043] Further, the air bag cover 5 is provided with a first one-way air passage 53 and a second one-way air passage 54. The first one-way air passage 53 is an air inlet passage, and the two ends of the first one-way air passage 53 are in communication with the pressing portion 51 and the first flow channel pipe 6, respectively. The second one-way air passage 54 is an air outlet passage, and the two ends of the second one-way air passage 54 are in communication with the pressing portion 51 and the second flow channel pipe 7, respectively.
[0044] Further, the first one-way air passage 53 includes an air inlet passage 531, an air inlet closing ring 532, a first air bead movable section 533, and an air inlet connecting section 534 arranged in sequence from the first flow channel pipe 6 to the pressing portion 51. The cross-sectional area of the air inlet closing ring 532 is smaller than that of the air inlet passage 531 and the first air bead movable section 533, and the cross-sectional area of the air inlet connecting section 534 is smaller than that of the first air bead movable section 533. A first air bead 535 is arranged in the first air bead movable section 533. The diameter of the first air bead 535 is smaller than that of the first air bead movable section 533 and larger than that of the air inlet closing ring 532 and the air inlet connecting section 534. The first air bead 535 slides in the first air bead movable section 533. A first air passage limiting column 5331 is arranged on the inner wall surface of the first air bead movable section 533. The first air passage limiting column 5331 is recessed on the inner wall surface of the first air bead movable section 533 and is arranged close to the air inlet connecting section 534 to prevent the first air bead 535 from blocking the air inlet connecting section 534.
[0045] Further, the second one-way air passage 54 comprises an air outlet channel 541, an air outlet connecting section 542, a second air bead movable section 543 and an air outlet closing ring 544 arranged in sequence from the second flow channel pipe 7 to the pressing part 51. The cross-sectional area of the air outlet connecting section 542 is smaller than that of the air outlet channel 541 and the second air bead movable section 543, and the cross-sectional area of the air outlet closing ring 544 is smaller than that of the second air bead movable section 543. The second air bead movable section 543 is provided with a second air bead 545, which has a diameter smaller than that of the second air bead movable section 543 and larger than that of the air outlet connecting section 542 and the air outlet closing ring 544. The second air bead 545 moves in the second air bead movable section 543. The inner wall of the second air bead movable section 543 is provided with a second air vent limiting column 5431, which is recessed in the inner wall of the second air bead movable section 543 and arranged close to the air outlet connecting section 542 to prevent the second air bead 545 from blocking the air outlet connecting section 542.
[0046] When the air bag body is pressed, the volume of the air bag body decreases, and the air in the air bag body pushes the first air bead 535 against the air inlet closing ring 532 to close the first one-way air passage 53, thereby preventing the gas in the first flow channel pipe 6 from entering the air bag body. At the same time, the air pushes the second air bead 545 away from the air outlet closing ring 544, and the second air bead 545 abuts against one side of the second air vent limiting column 5431. At this time, the air can flow smoothly from the air outlet closing ring 544 to the air outlet connecting section 542, and then from the air outlet connecting section 542 to the second flow channel pipe 7. The air flows along the second flow channel pipe 7 to the air nozzle 8 and is finally discharged outward from the air nozzle 8.
[0047] When the air bag body recovers, the air bag body absorbs air, and the suction force blocks the second air bead 545 against the air outlet closing ring 544. At the same time, the suction force pushes the first air bead 535 away from the air inlet closing ring 532, so that the air in the shoe cavity 100 flows into the first one-way air passage 53 from the first flow channel pipe 6. The air in the shoe cavity 100 first pushes the first air bead 535 located in the first air bead movable section 533, so that the first air bead 535 is away from the air inlet closing ring 532 and abuts against one side of the first air vent limiting column 5331. At this time, the air can flow smoothly from the air inlet closing ring 532 to the air inlet connecting section 534, and then from the air inlet connecting section 534 to the air bag body, thereby realizing the one-way flow of air and filling the air bag body with air.
[0048] In the embodiment, the air outlet hole 17 is provided with an air nozzle 8, and the air nozzle 8 is in communication with the second flow channel pipe 7. The air nozzle 8 comprises an air nozzle connecting portion 81, an air nozzle fixing portion 82 and an air nozzle exposed portion 83 connected in sequence, the air nozzle fixing portion 82 is arranged in the air outlet hole 17, the air nozzle connecting portion 81 is exposed to the second flow channel groove 16, and the air nozzle exposed portion 83 is exposed to the surface of the sole 1. The air nozzle connecting portion 81 is provided with an air nozzle flow channel 84 penetrating to the air nozzle exposed portion 83, and the air nozzle connecting portion 81 is connected with the second flow channel pipe 7, so that the air nozzle flow channel 84 is in communication with the second flow channel pipe 7.
[0049] Further, the air nozzle flow channel 84 comprises a first air nozzle flow channel 841, a second air nozzle flow channel 842 and a third air nozzle flow channel 843 in sequence from the air nozzle connecting portion 81 to the air nozzle exposed portion 83, the diameter D1 of the first air nozzle flow channel 841 is greater than the diameter D2 of the second air nozzle flow channel 842, the diameter D2 of the second air nozzle flow channel 842 is greater than the diameter D3 of the third air nozzle flow channel 843, and D1>D2>D3.
[0050] The second air nozzle flow channel 842 is provided with an air nozzle ventilation limiting column 8421 at one end close to the third air nozzle flow channel 843, the second air nozzle flow channel 842 is provided with an air nozzle ball 85, and the diameter D4 of the air nozzle ball 85 is smaller than the diameter D2 of the second air nozzle flow channel 842 and greater than the diameter D3 of the third air nozzle flow channel 843. When the air nozzle connecting portion 81 is connected with the second flow channel pipe 7, the second flow channel pipe 7 enters the first air nozzle flow channel 841, and the inner diameter of the second flow channel pipe 7 is smaller than the diameter D4 of the air nozzle ball 85, so that the air nozzle ball 85 only moves in the second air nozzle flow channel 842.
[0051] When the air in the air bag body is discharged from the second flow channel pipe 7, the air pushes the air nozzle ball 85 to move to the third air nozzle flow channel 843, the air nozzle ventilation limiting column 8421 prevents the air nozzle ball 85 from blocking the third air nozzle flow channel 843, at this time, the air can normally flow to the third air nozzle flow channel 843 and be discharged to the outside. When the air bag body inhales, the air bag body provides suction to adsorb and block the second flow channel pipe 7 with the air nozzle ball 85, so as to prevent the problem of air leakage.
[0052] In the embodiment, the midsole plate 4 comprises a second heel portion 41 and a second instep portion 42, the second heel portion 41 is provided with an air bag avoiding hole 43, and the second instep portion 42 is provided with a plurality of second air holes 44. When the midsole plate 4 is arranged on the sole 1, the second heel portion 41 is located on the first heel portion 11, the second instep portion 42 is located on the first instep portion 12, the pressing portion 51 of the air bag cover 5 is exposed to the midsole plate 4 through the air bag avoiding hole 43, and the second air holes 44 are in communication with the grid-shaped flow guide groove 14.
[0053] Further, a plurality of the second air vents 44 are arranged in an array on the second instep portion 42, and adjacent two rows of the second air vents 44 are arranged staggeredly.
[0054] In the embodiment, the footbed 3 comprises a third heel portion 31 and a third instep portion 32, the bottom of the third heel portion 31 is provided with a pressing groove 33 matched with the pressing portion 51 of the air bag cover 5, the top of the third heel portion 31 is provided with a pressing portion 34 corresponding to the pressing groove 33 in position, and the third instep portion 32 is provided with a plurality of first air vents 35. When the footbed 3 is arranged on the midsole plate 4, the third heel portion 31 is located on the second heel portion 41, the third instep portion 32 is located on the second instep portion 42, at the same time, the pressing groove 33 covers the pressing portion 51 of the air bag cover 5, and the first air vents 35 are communicated with the second air vents 44.
[0055] Further, the bottom of the third instep portion 32 is provided with a plurality of air grooves 36, each of the air grooves 36 is arranged in a longitudinal and transverse staggered manner, and the first air vents 35 are arranged at the intersection of the air grooves 36.
[0056] When a user wears the shoe, the user's foot is located in the shoe cavity 100, when the user lifts the foot, the air bag body generates suction to adsorb the air in the shoe cavity 100, the air in the shoe cavity 100 will pass through the first air vents 35, the second air vents 44 and then enter the grid-shaped flow guide groove 14 in sequence, and then pass through the first flow channel pipe 6 to enter the air bag body, when the user walks, the heel of the foot will press the pressing portion 34, the pressing portion 34 is pressed to the pressing portion 51, due to the deformation of the air bag body, the air in the air bag body is pressed to flow from the second one-way air duct 54 to the second flow channel pipe 7, and finally is discharged from the air nozzle 8.
[0057] The utility model relates to a kind of one-way power type ventilation shoes, in the utility model, the air bag cover 5 is covered on the air bag groove 13 of sole 1 to form air bag body, air bag body is communicated with shoe cavity 100, outside by first flow channel pipe 6, second flow channel pipe 7, to make user realize the flow and exchange of air in shoe cavity 100 in the process of walking, improve the air flow in shoe cavity 100, reduce the problem of foot damp or stuffy, improve the more comfortable feeling of foot.
[0058] The above implementation is only to describe the preferred implementation of the utility model, and does not limit the scope of the utility model, without departing from the design spirit of the utility model, various deformations and improvements of the technical solutions of the utility model made by ordinary engineering technicians in the art should fall within the protection scope determined by the claims of the utility model.
Claims
1. A unidirectional, power-assisted, ventilated shoe, characterized by: The shoe sole, the vamp, the footbed, the insole, the airbag cover, the first flow channel pipe, the second flow channel pipe and the air nozzle, the vamp is arranged on the shoe sole and constitutes a shoe cavity with the shoe sole, the footbed and the insole are sequentially arranged on the shoe sole and located in the shoe cavity, the air nozzle is arranged on the side of the shoe sole, the shoe sole comprises a first heel part and a first sole part, the first heel part is provided with an airbag groove, the airbag cover covers the airbag groove to form an airbag body, a plurality of first air holes are arranged on the footbed, a plurality of second air holes are arranged on the insole, the shoe cavity is in air exchange communication with the airbag body through the first air holes, the second air holes, the first flow channel pipe and the second flow channel pipe, and the airbag body is in air exchange communication with the outside through the second flow channel pipe and the air nozzle.
2. The unidirectional, power-assisted ventilated shoe of claim 1, wherein: The airbag body has a one-way air inlet channel and a one-way air outlet channel, when the first flow channel pipe is inserted into the one-way air inlet channel and the second flow channel pipe is inserted into the one-way air outlet channel, the airbag body is used for extracting air in the shoe, when the first flow channel pipe is inserted into the one-way air outlet channel and the second flow channel pipe is inserted into the one-way air inlet channel, the airbag body is used for providing fresh air into the shoe.
3. The unidirectional, power-assisted ventilated shoe of claim 1, wherein: The shoe sole is integrally formed with a first flow channel groove, a second flow channel groove and a grid-shaped flow guide groove, a plurality of grid-shaped flow guide grooves are located in the first sole part, the first flow channel pipe is embedded in the first flow channel groove, the second flow channel pipe is embedded in the second flow channel groove, the airbag body is in communication with the grid-shaped flow guide groove through the first flow channel pipe, and the airbag body is in communication with the outside through the second flow channel pipe.
4. The unidirectional, power-assisted ventilated shoe of claim 2, wherein: The side of the shoe sole is provided with an air outlet hole, the air nozzle is fixed in the air outlet hole, the air nozzle is a one-way valve structure, and the air nozzle is in air exchange communication with the airbag body through the second flow channel pipe.
5. The unidirectional, power-assisted ventilated shoe of claim 1, wherein: The airbag cover comprises a fitting ring and a pressing part, and the pressing part is outwardly raised on the surface of the fitting ring.
6. A unidirectional, power-assisted aerating shoe according to claim 5, characterized in that: The airbag cover is integrally formed with a first one-way channel and a second one-way channel, the first one-way channel is a one-way air inlet channel, and the second one-way channel is a one-way air outlet channel, or the first one-way channel is a one-way air outlet channel, and the second one-way channel is a one-way air inlet channel.
7. The unidirectional, power-assisted pneumatic shoe of claim 1, wherein: The insole comprises a second heel part and a second sole part, the second heel part is provided with an airbag avoiding hole, and the second air hole is arranged on the second sole part.
8. A unidirectional, power-assisted aerating shoe according to claim 7, characterized in that: A plurality of second air holes are arranged in an array on the second sole part, and adjacent two rows of second air holes are arranged staggered.
9. The unidirectional, power-assisted pneumatic shoe of claim 1, wherein: The footbed comprises a third heel part and a third sole part, the bottom of the third heel part is provided with a pressing groove matched with the pressing part of the airbag cover, the top of the third heel part is provided with a pressing part corresponding to the pressing groove in position, and the first air hole is arranged on the third sole part.
10. A unidirectional, power-assisted aerating shoe according to claim 9, characterized in that: The bottom of the third sole part is provided with a plurality of air permeation grooves, each air permeation groove is arranged in a longitudinal and transverse interlaced manner, and the first air hole is arranged at the intersection of the air permeation grooves.