Insole temperature regulating pipe routing structure

CN116570092BActive Publication Date: 2026-09-22ANHUI MEIBO INTELLIGENT ELECTRIC APPLIANCE GRP CO LTD
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Patent Information

Application Number
CN202310391178.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-13
Publication Date
2026-09-22
Estimated Expiration
2043-04-13

AI Technical Summary

Technical Problem

[0002]空调鞋内置调温管路主要通过集成于鞋垫底层位置,其供液循环路径分布主要存于脚底,而由于足底皮肤相较于足面更厚,该部分相较于脚面位置的温度上升速度更为缓慢,同时因血管分布面大部分处于足弓位置,受制其凹处影响,该部分与鞋底部分的贴附性较差,由于常规管式水流循环面较小,不能足弓下的脚底皮表充分受到调温管路产生的温度作用,因此造成液该部位的调温效果不够理想,影响到穿戴时的整体舒适性

Benefits of technology

[0009]与现有技术相比,本发明通过鞋内置调温管路经足踝排布型腔内填装后,使其布设缠绕于足周环绕排布型腔的内侧,进而将足侧部位实现温度循环,同时在鞋底调温管路经横置连通型腔接入储液管排布腔内侧,将鞋底调温管路弯曲折叠状排布至矩形型腔之中后,水液到达蜷缩于矩形型腔内侧的弯曲折叠状排布的鞋底调温管路之中的流通量以及覆盖面更大,进而提高足弓局部位置的温度保持效果,使足弓下的脚底皮表充分受到调温管路产生的温度作用,保证使用舒适度。

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Abstract

The application discloses a kind of shoe temperature regulating pipeline layout structure, including shoe body assembly, the inner side of shoe body assembly is equipped with the pipeline embedded arrangement part for laying heating circulation pipeline and liquid storage heating part, the outer side of shoe body assembly is equipped with heat flow discharge part, the pipeline embedded arrangement part includes foot ankle arrangement cavity and foot periphery surrounding arrangement cavity;Through the filling of foot ankle arrangement cavity after built-in shoe temperature regulating pipeline, it is arranged and wound in the inner side of foot periphery surrounding arrangement cavity, simultaneously, shoe sole temperature regulating pipeline is connected into the inner side of liquid storage tube arrangement cavity through transverse communication cavity, after being arranged into rectangular cavity in the form of bending and folding, the flow capacity and coverage of water liquid in the shoe sole temperature regulating pipeline arranged in the form of bending and folding in the inner side of rectangular cavity are larger, thereby improving the temperature maintaining effect of local position of foot arch, making the sole skin under foot arch fully subjected to the temperature effect generated by temperature regulating pipeline, and ensuring use comfort.
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Description

Technical Field

[0001] This invention relates to the field of air-conditioned shoe technology, and in particular to a structure for the layout of temperature-regulating pipes inside a shoe. Background Technology

[0002] The temperature-regulating pipes in air-conditioned shoes are mainly integrated into the bottom layer of the insole. Their fluid circulation path is primarily located on the sole of the foot. However, because the skin on the sole is thicker than on the instep, the temperature rises more slowly in this area. Furthermore, since most blood vessels are located in the arch of the foot, the concave shape of this area restricts its adhesion to the sole. Due to the small circulation area of ​​conventional tubular water systems, the skin surface under the arch of the foot cannot fully benefit from the temperature generated by the temperature-regulating pipes. Therefore, the temperature regulation effect in this area is not ideal, affecting overall comfort when wearing the shoe. To address this, we propose a new structure for the temperature-regulating pipe layout within the shoe. Summary of the Invention

[0003] The main objective of this invention is to provide a structure for the layout of temperature-regulating pipes inside shoes.

[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows: A temperature-regulating pipe layout structure inside a shoe includes a shoe assembly. The shoe assembly has an embedded pipe arrangement section and a liquid storage heating section on its inner side for arranging heated circulation pipes. The shoe assembly has a heat dissipation section on its outer side. The embedded pipe arrangement section includes an ankle-shaped cavity and a perifoot-shaped cavity. The liquid storage heating section includes a transversely connected cavity and several rectangular cavities. The ankle-shaped cavity, the perifoot-shaped cavity, the transversely connected cavity, and the rectangular cavities are all arranged inside the shoe assembly. The rectangular cavities are connected to each other through the transversely connected cavity, one end of which extends to… The ankle-shaped cavity is located inside the foot, and the other end of the transversely connected cavity extends through the through-guide cavity to the inner side of the foot-circumferential cavity. Both the transversely connected cavity and the through-guide cavity are provided with opening and closing valve heads to control the circulation path of the temperature-regulating liquid. The shoe assembly includes a wrapping storage layer and a sole storage layer. A liquid storage tube arrangement cavity is opened on the inner side of the sole storage layer. The ankle-shaped cavity and the foot-circumferential cavity are opened on the inner side of the wrapping storage layer. The rectangular cavity is opened on the inner side of the liquid storage tube arrangement cavity. The transversely connected cavity penetrates the sole storage layer and extends to the inner side of the liquid storage tube arrangement cavity. The pipes embedded inside the package storage layer and the shoe sole storage layer are respectively the shoe interior temperature regulating pipe and the shoe sole temperature regulating pipe. The end portions of the shoe sole temperature regulating pipe and the shoe interior temperature regulating pipe pass through the pipe head valve interface and are connected to the external liquid supply pipe.

[0005] A further improvement of the present invention is that a miniature power supply unit is provided on the outer side of the package storage layer, and the miniature power supply unit is fixedly connected to the outer wall of the package storage layer for liquid supply opening and closing of the opening and closing valve head.

[0006] A further improvement of the present invention is that the heat discharge section includes a diffusion groove and an inner extended heat conduction cavity, both of which are opened inside the wrapping storage layer. The inner extended heat conduction cavity extends to the foot circumferential arrangement cavity and communicates with the foot circumferential arrangement cavity. A sealing layer for sealing the diffusion groove is bonded and fixed to the shoe upper of the wrapping storage layer.

[0007] A further improvement of the present invention is that the package storage layer is fixedly connected to a tube head valve interface, and the foot and ankle arrangement cavity penetrates the package storage layer and extends to the inside of the tube head valve interface.

[0008] A further improvement of the present invention is a method of using a temperature-regulating pipe layout structure inside a shoe, comprising the following usage methods: S1. After filling the in-shoe temperature regulating pipe into the foot and ankle arrangement cavity, arrange it around the inside of the foot-circling arrangement cavity. Then, connect the in-shoe temperature regulating pipe to be placed on the sole side of the shoe through the horizontal connecting cavity to the inside of the liquid storage pipe arrangement cavity. Arrange the in-shoe temperature regulating pipe in a bent and folded manner to the inside of the rectangular cavity. Finally, pass the end of the in-shoe temperature regulating pipe through the guide cavity to the inside of the foot-circling arrangement cavity. Connect the end of the in-shoe temperature regulating pipe and the in-shoe temperature regulating pipe through the pipe head valve interface to the external liquid supply pipe. S2. During circulation, the liquid supply circulation mode of the surrounding cavity and the horizontally connected temperature-regulating pipeline in the cavity can be changed by turning the micro power supply unit on and off according to the user's needs, thereby adjusting to the required temperature mode.

[0009] Compared with existing technologies, this invention uses a temperature-regulating pipe inside the shoe, which is filled into a cavity around the ankle and arranged around the foot. This allows for temperature circulation in the foot area. Simultaneously, the temperature-regulating pipe on the sole is connected to the liquid storage pipe cavity via a horizontal connecting cavity. The pipe is arranged in a bent and folded manner within a rectangular cavity, resulting in a greater flow rate and coverage of liquid within the bent and folded pipe. This improves the temperature retention effect in the arch area, ensuring the skin under the arch receives sufficient heat from the temperature-regulating pipe and guaranteeing comfort. Attached Figure Description

[0010] Figure 1 This is a diagram illustrating the structure of a temperature-regulating pipe layout inside a shoe according to the present invention.

[0011] Figure 2This is a top view of the shoe internal temperature regulating pipe layout structure according to the present invention.

[0012] In the diagram: 1. Shoe body assembly; 11. Wrapping and storage layer; 12. Shoe sole storage layer; 13. Liquid storage tube arrangement cavity; 2. Pipeline embedded arrangement section; 21. Ankle arrangement cavity; 211. Pipe head valve interface; 22. Foot perimeter arrangement cavity; 3. Liquid storage heating section; 31. Horizontal connecting cavity; 32. Rectangular cavity; 33. Through guide cavity; 34. Opening and closing valve head; 35. Miniature power supply section; 4. Heat flow discharge section; 41. Diffusion groove; 42. Inner extended heat conduction cavity; 43. Sealing layer. Detailed Implementation

[0013] The present invention will be further described below with reference to specific embodiments. The accompanying drawings are for illustrative purposes only and are schematic diagrams, not actual pictures. They should not be construed as limiting the present invention. In order to better illustrate the specific embodiments of the present invention, some parts in the drawings may be omitted, enlarged or reduced, and do not represent the actual product size. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings. Based on the specific embodiments of the present invention, all other specific embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0014] Example

[0015] Please see Figures 1-2 A temperature-regulating pipe layout structure inside a shoe includes a shoe assembly 1. The shoe assembly 1 has an embedded pipe arrangement section 2 and a liquid storage heating section 3 on its inner side for arranging heating and circulating pipes. The shoe assembly 1 also has a heat dissipation section 4 on its outer side. The embedded pipe arrangement section 2 includes an ankle-shaped cavity 21 and a perifoot-shaped cavity 22. The liquid storage heating section 3 includes a horizontally connected cavity 31 and several rectangular cavities 32. The ankle-shaped cavity 21, the perifoot-shaped cavity 22, and the horizontally connected cavity 32 are further defined. Both the connecting cavity 31 and the rectangular cavity 32 are arranged inside the shoe body assembly 1. Several rectangular cavities 32 are connected by a transverse connecting cavity 31. One end of the transverse connecting cavity 31 extends to the inside of the ankle arrangement cavity 21, and the other end of the transverse connecting cavity 31 extends to the inside of the foot-circling arrangement cavity 22 through the through guide cavity 33. Both the transverse connecting cavity 31 and the through guide cavity 33 are provided with an opening and closing valve head 34 for controlling the circulation path of the temperature regulating liquid.

[0016] In this embodiment, the pipes embedded inside the packaging storage layer 11 and the sole storage layer 12 are respectively the in-shoe temperature regulating pipe and the sole temperature regulating pipe. During installation, the in-shoe temperature regulating pipe is first filled around the ankle arrangement cavity 21 and then placed inside the foot circumference arrangement cavity 22. The inlet and outlet water pipes of the in-shoe temperature regulating pipe are passed through the pipe valve interface 211. After completion, the liquid inlet end of the sole temperature regulating pipe is placed at the pipe valve interface 211, so that the pipe section is connected to the inside of the liquid storage pipe arrangement cavity 13 through the horizontal connecting cavity 31. The sole temperature regulating pipe is then arranged in a bent and folded manner into the rectangular cavity. Inside 32, the outlet end of the sole temperature-regulating pipe is finally passed through the guide cavity 33 and out to the inside of the surrounding cavity 22. The outlet pipe of the sole temperature-regulating pipe is then connected to the external liquid supply pipe through the pipe valve interface 211. After completion, the external circulating temperature-regulating water supply pump can be turned on to supply water to circulate in the pipe. The flow rate and coverage of the water in the curved and folded sole temperature-regulating pipes inside the rectangular cavity 32 are greater, thereby improving the temperature retention effect of the local area of ​​the arch and ensuring that the skin surface of the foot under the arch is fully affected by the temperature generated by the temperature-regulating pipe, thus ensuring the comfort of use.

[0017] The shoe assembly 1 includes a wrapping storage layer 11 and a sole storage layer 12. A liquid storage tube arrangement cavity 13 is provided on the inner side of the sole storage layer 12. Ankle arrangement cavity 21 and foot circumference arrangement cavity 22 are provided on the inner side of the wrapping storage layer 11. A rectangular cavity 32 is provided on the inner side of the liquid storage tube arrangement cavity 13. A horizontally connected cavity 31 penetrates the sole storage layer 12 and extends to the inner side of the liquid storage tube arrangement cavity 13. The liquid storage tube arrangement cavity 13 is provided on the inner side of the sole storage layer 12. In order to prevent the liquid storage tube arrangement cavity 13 from collapsing when stepped on, in this embodiment, a support top column supporting the upper and lower parts of the sole storage layer 12 is provided on the inner side of the liquid storage tube arrangement cavity 13. This preserves the space for the buried temperature regulation pipe of the sole while avoiding compression of the liquid storage tube arrangement cavity 13 caused by the patient's foot stepping on it, thus maintaining the stable flow of circulating water in the pipe.

[0018] The outer side of the storage layer 11 is provided with a miniature power supply unit 35, which is fixedly connected to the outer wall of the storage layer 11 and is used to open and close the liquid supply of the valve head 34. In this embodiment, the miniature power supply unit 35 can be a battery, and the valve head 34 is a solenoid valve. The miniature power supply unit 35 is electrically connected to the valve head 34. The shoe sole temperature regulating pipe passes through the valve end of the valve head 34. When the water circulation mode is changed, the shoe sole temperature regulating pipe in the transverse connecting cavity 31 can be blocked by the electronic valve after the microature power supply unit 35 is closed, thus stopping the water supply inside the transverse connecting cavity 31. This allows the water to complete the temperature circulation independently in the ankle arrangement cavity 21 and the foot circumference arrangement cavity 22, which can be adjusted according to the patient's needs to improve adaptability.

[0019] The heat dissipation section 4 includes a diffusion groove 41 and an inner extended heat conduction cavity 42. Both the diffusion groove 41 and the inner extended heat conduction cavity 42 are located inside the wrapping storage layer 11. The inner extended heat conduction cavity 42 extends to the foot-circling arrangement cavity 22 and communicates with it. A sealing layer 43 for sealing the diffusion groove 41 is glued and fixed to the upper of the wrapping storage layer 11. After the wrapping storage layer 11 is removed after use, the diffusion groove 41 can be opened by tearing off the sealing layer 43. This allows the inner extended heat conduction cavity 42 to quickly discharge the temperature airflow formed in the foot-circling arrangement cavity 22, preventing condensation caused by temperature difference when the outside air enters the wrapping storage layer 11 in the non-wearing state due to slow temperature dissipation, thus maintaining the dryness of the wrapping storage layer 11 when worn again.

[0020] The storage layer 11 is fixedly connected to a pipe head valve interface 211. The ankle arrangement cavity 21 passes through the storage layer 11 and extends to the inside of the pipe head valve interface 211. After the pipe head valve interface 211 limits the inlet and outlet water pipes of the shoe sole temperature regulation pipe and the shoe inner temperature regulation pipe, the water is circulated inside the storage layer 11 by connecting the external liquid supply pipe.

[0021] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A structure for the layout of temperature-regulating pipes inside a shoe, comprising a shoe body assembly (1), characterized in that, The inner side of the shoe assembly (1) is provided with a pipe embedded arrangement part (2) for laying heating circulation pipes and a liquid storage heating part (3), and the outer side of the shoe assembly (1) is provided with a heat flow discharge part (4). The embedded pipeline arrangement part (2) includes an ankle-shaped cavity (21) and a perifoot-shaped cavity (22). The liquid storage and heating part (3) includes a horizontally connected cavity (31) and several rectangular cavities (32). The ankle-shaped cavity (21), the perifoot-shaped cavity (22), the horizontally connected cavity (31), and the rectangular cavities (32) are all arranged inside the shoe assembly (1). The several rectangular cavities ( 32) are connected by the transverse connecting cavity (31), one end of the transverse connecting cavity (31) extends to the inside of the ankle arrangement cavity (21), and the other end of the transverse connecting cavity (31) extends to the inside of the foot circumference arrangement cavity (22) through the through guide cavity (33). The transverse connecting cavity (31) and the through guide cavity (33) are both provided with opening and closing valve heads (34) for controlling the circulation path of the temperature regulating liquid. The shoe assembly (1) includes a wrapping storage layer (11) and a sole storage layer (12). The inner side of the sole storage layer (12) is provided with a liquid storage tube arrangement cavity (13). The ankle arrangement cavity (21) and the foot circumference arrangement cavity (22) are opened on the inner side of the wrapping storage layer (11). The rectangular cavity (32) is opened on the inner side of the liquid storage tube arrangement cavity (13). The horizontally connected cavity (31) penetrates the sole storage layer (12) and extends to the inner side of the liquid storage tube arrangement cavity (13). The pipes buried inside the package storage layer (11) and the shoe sole storage layer (12) are respectively the shoe interior temperature regulating pipe and the shoe sole temperature regulating pipe. The end parts of the shoe sole temperature regulating pipe and the shoe interior temperature regulating pipe pass through the pipe head valve interface (211) and are connected to the external liquid supply pipe. The heat discharge section (4) includes a diffusion groove (41) and an inner extension heat conduction cavity (42). The diffusion groove (41) and the inner extension heat conduction cavity (42) are both opened inside the wrapping storage layer (11). The inner extension heat conduction cavity (42) extends to the foot circumferential arrangement cavity (22) and communicates with the foot circumferential arrangement cavity (22). A sealing layer (43) for sealing the diffusion groove (41) is bonded and fixed to the shoe upper position of the wrapping storage layer (11).

2. The shoe interior temperature-regulating pipe layout structure according to claim 1, characterized in that: The outer side of the package storage layer (11) is provided with a miniature power supply unit (35), which is fixedly connected to the outer wall of the package storage layer (11) and is used for the liquid supply opening and closing of the valve head (34).

3. The shoe interior temperature-regulating pipe layout structure according to claim 2, characterized in that: The package storage layer (11) is fixedly connected to a tube head valve interface (211), and the ankle arrangement cavity (21) penetrates the package storage layer (11) and extends to the inside of the tube head valve interface (211).

4. A method of using the shoe interior temperature-regulating pipe layout structure according to any one of claims 1-3, characterized in that, Including the following usage methods: S1. After filling the in-shoe temperature regulating pipe into the ankle arrangement cavity (21), arrange it around the inside of the foot circumference arrangement cavity (22). Then, connect the in-shoe temperature regulating pipe to be placed on the sole side through the horizontal connecting cavity (31) to the inside of the liquid storage tube arrangement cavity (13). Arrange the in-shoe temperature regulating pipe in a bent and folded manner to the inside of the rectangular cavity (32). Finally, pass the end diameter of the in-shoe temperature regulating pipe through the guide cavity (33) to the inside of the foot circumference arrangement cavity (22). Connect the end portion of the in-shoe temperature regulating pipe and the in-shoe temperature regulating pipe through the pipe head valve interface (211) to the external liquid supply pipe. S2. During circulation, the liquid supply circulation mode of the temperature-regulating pipeline in the foot-circling cavity (22) and the horizontally connected cavity (31) is changed by opening and closing the micro power supply unit (35) according to the user's needs, thereby adjusting to the required temperature mode.

Citation Information

Patent Citations

  • Shoes sole with cooling apparatus

    KR1020010008851A

  • Article of footwear with temperature regulation means

    US20070256323A1