Shoemaking drying device
By designing a guide tube and rubber tube structure, the airflow is brought closer to the inner wall of the shoe and forms a flow channel, solving the problem that the airflow outlet of existing shoe drying devices is far from the inner wall of the shoe, and achieving a more efficient shoe drying effect.
Patent Information
- Application Number
- CN202511582701.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-01-02
AI Technical Summary
The airflow outlet of existing shoe drying devices is too far from the inner wall of the shoe, resulting in poor drying efficiency and the airflow failing to effectively cover the inner surface of the shoe.
It adopts a flow guide tube and rubber tube structure, and delivers airflow through nozzles to bring the airflow closer to the inner wall of the shoe. The flow channel is formed between the film and the inner wall of the shoe to improve the airflow concentration. The air pressure is used to expand the flow guide dryer and the gas linkage support to enhance the airflow proximity and flow efficiency.
It increases the flow rate and airflow concentration in the area near the inner wall of the shoe, significantly improving the shoe's drying efficiency.
Smart Images

Figure CN121242331A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of drying, and more specifically to a shoe drying apparatus. Background Technology
[0002] Existing shoe drying devices have air outlets that are far from the inner wall of the shoe, resulting in poor drying efficiency. For example, prior art patent 1, CN216983854U, discloses a Chinese invention patent document for a shoe drying device. The gas outlet of the technical solution disclosed in this patent document is located inside the shoe and is close to the shoe opening. When the airflow enters the shoe, it creates air pressure, causing a large amount of airflow to be lost without passing through the inner wall surface of the shoe, thus reducing the shoe drying efficiency. Summary of the Invention
[0003] The purpose of this invention is to provide a shoe drying device that can deliver airflow to several nozzles, allowing the airflow inside the guide tube to get closer to the inner wall of the shoe, increasing the flow velocity in the area near the inner wall of the shoe, thereby improving the drying efficiency of the shoe. On the other hand, the unfolding of the rubber tube can drive the film to unfold, thereby forming a flow channel between the film and the inner wall surface of the shoe, allowing the airflow to concentrate in the area between the shoe and the film, thereby further improving the drying efficiency of leather shoes.
[0004] To achieve the above objectives, the present invention employs the following technical solution: A shoe drying device includes a drying liner, which includes a guide tube. The guide tube is a tubular structure with both ends sealed. A pneumatic expansion guide dryer is installed on the guide tube. The pneumatic expansion guide dryer includes several rubber tubes, one end of which is connected to one end of the guide tube. The rubber tubes are located on the side of the guide tube. Several through holes are opened on the side of the guide tube. Each through hole mates with one rubber tube. The two ends of the through holes are connected to the interior of the guide tube and the interior of the rubber tube, respectively. Several nozzles are connected to the rubber tubes. The interior of the rubber tubes is connected to the inlet of the nozzles. A film is installed between two adjacent rubber tubes. The two sides of the film are connected to the two rubber tubes, respectively. To further achieve the objectives of this invention, the following technical solution may also be adopted: a gas linkage support is installed between the rubber tube and the guide tube. The gas linkage support includes an arc-shaped rod, one side of which is hinged to one side of the rubber tube. An airbag is installed between the arc-shaped rod and the guide tube. Both sides of the airbag are connected to the arc-shaped rod and the guide tube, respectively. The interior of the airbag is connected to the interior of the guide tube. The drying liner is installed inside the main chamber, which is a rectangular shell structure with openings on both sides and the top. A top cover is installed on the top of the main chamber, with one side of the top cover hinged to one side of the main chamber. A locking device is installed between the other side of the top cover and the main chamber. The locking device includes a second pipe and a first pipe. The outer side of the second pipe is connected to the top cover, and the outer side of the first pipe is connected to the main chamber. A pin is inserted into the inside of the second pipe, and one end of the pin can be inserted into the first pipe. A flow guide box is connected to the bottom of the inner side of the main chamber. One side of the flow guide box is connected to a pipe joint. Several threaded pipes and a fan are connected to the top of the flow guide box. The fan delivers airflow into the main chamber. The central axis of the threaded pipe is inclined to the side away from the fan. Each threaded pipe is fitted with a drying liner. One end of the flow guide pipe has an external thread, and the flow guide pipe is threadedly connected to the threaded pipe. The advantages of this invention are as follows: This invention adds a pneumatic expansion and flow guiding dryer. The pneumatic expansion and flow guiding dryer can deliver airflow to several nozzles, allowing the airflow inside the guide tube to get closer to the inner wall of the shoe, increasing the flow velocity in the area near the inner wall of the shoe, thereby improving the drying efficiency of the shoe. On the other hand, after the rubber tube expands, it can drive the film to expand, thereby forming a flow channel between the film and the inner wall surface of the shoe, allowing the airflow to concentrate in the area between the shoe and the film, thereby further improving the drying efficiency of leather shoes. Attached Figure Description
[0005] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the folded structure of the present invention; Figure 2 This is a schematic diagram of the unfolded structure of the present invention; Figure 3 A schematic diagram of the structure of the gas linkage support added to this invention; Figure 4 A schematic diagram showing the structure of the flow guide box added to this invention; Figure 5 This is a schematic diagram of the structure of the main housing 16 of the present invention.
[0006] Components marked: 1. Rubber hose; 2. Nozzle; 3. Membrane; 4. Guide tube; 5. Through hole; 6. Arc rod; 76. First tube; 8. Drying liner; 9. Top cover plate; 10. Threaded tube; 11. Guide box body; 12. Fan; 13. Second tube; 14. Pipe joint; 15. Pin; 16. Main box body; 17. Airbag; Detailed Implementation
[0007] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Embodiment 1: shoe drying equipment, such as Figures 1-5 As shown, the device includes a drying liner 8, which includes a guide tube 4. The guide tube 4 is a tubular structure with both ends sealed. A pneumatic expansion guide dryer is installed on the guide tube 4. The pneumatic expansion guide dryer includes several rubber tubes 1, one end of which is connected to one end of the guide tube 4. The several rubber tubes 1 are located on the side periphery of the guide tube 4. Several through holes 5 are opened on the side periphery of the guide tube 4. Each through hole 5 is matched with a rubber tube 1. The two ends of the through hole 5 are respectively connected to the interior of the guide tube 4 and the interior of the rubber tube 1. Several nozzles 2 are connected to the rubber tube 1. The interior of the rubber tube 1 is connected to the inlet of the nozzle 2. A film 3 is installed between two adjacent rubber tubes 1. The two sides of the film 3 are respectively connected to the two rubber tubes 1.
[0008] This invention adds a pneumatic expansion and flow guiding dryer. On the one hand, the pneumatic expansion and flow guiding dryer can deliver airflow to several nozzles 2, allowing the airflow inside the guide tube 4 to get closer to the inner wall of the shoe, increasing the flow velocity in the area near the inner wall of the shoe, thereby improving the drying efficiency of the shoe. On the other hand, after the rubber tube 1 expands, it can drive the film 3 to expand, thereby forming a flow channel between the film 3 and the inner wall surface of the shoe, allowing the airflow to concentrate in the area between the shoe and the film 3, thereby further improving the drying efficiency of leather shoes.
[0009] Specific material selection and feasibility analysis: The samples we actually manufactured used the accompanying drawings as blueprints, implementing the process according to the proportions and fit of each component shown in the drawings. The connections employed included common methods such as strong adhesive bonding, welding, riveting, flange connections, and integral molding. During actual manufacturing, the appropriate connection method, thickness, and strength of the connection points can be selected based on the required connection strength without creative design. During use, this device is in... Figure 1 In this state, one side of the rubber tube 1, along with the film 3, is inserted into the back of the shoe, and then air pressure is introduced through the guide tube 4 to achieve drying.
[0010] Example 2: shoe drying equipment, such as Figures 1-5As shown, the device includes a drying liner 8, which includes a guide tube 4. The guide tube 4 is a tubular structure with both ends sealed. A pneumatic expansion guide dryer is installed on the guide tube 4. The pneumatic expansion guide dryer includes several rubber tubes 1, one end of which is connected to one end of the guide tube 4. The several rubber tubes 1 are located on the side periphery of the guide tube 4. Several through holes 5 are opened on the side periphery of the guide tube 4. Each through hole 5 is matched with a rubber tube 1. The two ends of the through hole 5 are respectively connected to the interior of the guide tube 4 and the interior of the rubber tube 1. Several nozzles 2 are connected to the rubber tube 1. The interior of the rubber tube 1 is connected to the inlet of the nozzle 2. A film 3 is installed between two adjacent rubber tubes 1. The two sides of the film 3 are respectively connected to the two rubber tubes 1. A gas linkage support is installed between the rubber tube 1 and the guide tube 4. The gas linkage support includes an arc-shaped rod 6. One side of the arc-shaped rod 6 is hinged to one side of the rubber tube 1. An airbag 17 is installed between the arc-shaped rod 6 and the guide tube 4. Both sides of the airbag 17 are connected to the arc-shaped rod 6 and the guide tube 4, respectively. The interior of the airbag 17 is connected to the interior of the guide tube 4.
[0011] The gas linkage support device of the present invention can use the air pressure inside the guide tube 4 to inflate the airbag 17, thereby driving the arc rod 6 to provide auxiliary support for the rubber tube 1, so that the nozzle 2 on the arc rod 6 can be closer to the inner wall of the shoe, thereby improving the drying efficiency inside the shoe.
[0012] Example 3: shoe drying equipment, such as Figures 1-5As shown, the device includes a drying liner 8, which includes a guide tube 4. The guide tube 4 is a tubular structure with both ends sealed. A pneumatic expansion guide dryer is installed on the guide tube 4. The pneumatic expansion guide dryer includes several rubber tubes 1, one end of which is connected to one end of the guide tube 4. The several rubber tubes 1 are located on the side periphery of the guide tube 4. Several through holes 5 are opened on the side periphery of the guide tube 4. Each through hole 5 is matched with a rubber tube 1. The two ends of the through hole 5 are respectively connected to the interior of the guide tube 4 and the interior of the rubber tube 1. Several nozzles 2 are connected to the rubber tube 1. The interior of the rubber tube 1 is connected to the inlet of the nozzle 2. A film 3 is installed between two adjacent rubber tubes 1. The two sides of the film 3 are respectively connected to the two rubber tubes 1. The drying liner 8 is installed inside the main housing 16. The main housing 16 is a rectangular shell structure with openings on both sides and the top. A top cover plate 9 is installed on the top of the main housing 16. One side of the top cover plate 9 is hinged to one side of the main housing 16. A locking device is installed between the other side of the top cover plate 9 and the main housing 16. The locking device includes a second tube 13 and a first tube 7. The outer side of the second tube 13 is connected to the top cover plate 9, and the outer side of the first tube 7 is connected to the main housing 16. A pin 15 is inserted into the inside of the second tube 13. One end of 15 can be inserted into the first pipe 7. The bottom inner side of the main box 16 is connected to the guide box 11. One side of the guide box 11 is connected to the pipe joint 14. The upper part of the guide box 11 is connected to several threaded pipes 10 and a fan 12. The fan 12 delivers airflow into the main box 16. The central axis of the threaded pipe 10 is inclined to the side opposite to the fan 12. Each threaded pipe 10 is fitted with a drying liner 8. One end of the guide pipe 4 is opened with an external thread. The guide pipe 4 is threadedly connected to the threaded pipe 10. The pipe connector 14 of this invention can be connected to an air source, which can be an air pump, and the output port of the air pump is connected to the pipe connector 14. The central axis of the threaded pipe 10 is inclined to the side opposite to the fan 12, so that the drying liner 8 reaches... Figure 5 The tilted position shown allows the shoe, which mates with the drying liner 8, to be tilted, enabling some of the airflow to enter the shoe's opening and thus improving drying efficiency. The top cover 9 and the main housing 16 form a flow channel, with several drying liners 8 located inside the channel, facilitating full utilization of the airflow and further enhancing drying efficiency.
[0013] This invention provides a clear and complete description of its technical solutions in conjunction with the accompanying drawings. Obviously, the described embodiments are only a portion, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without inventive effort are within the scope of protection of this invention.
[0014] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention.
Claims
1. A shoe drying device, characterized in that: The device includes a drying liner (8), which includes a guide tube (4). The guide tube (4) is a tubular structure with both ends sealed. A pneumatic expansion guide dryer is installed on the guide tube (4). The pneumatic expansion guide dryer includes several rubber tubes (1). One end of each rubber tube (1) is connected to one end of the guide tube (4). The rubber tubes (1) are located on the side of the guide tube (4). Several through holes (5) are opened on the side of the guide tube (4). Each through hole (5) is matched with a rubber tube (1). The two ends of the through hole (5) are connected to the inside of the guide tube (4) and the inside of the rubber tube (1), respectively. Several nozzles (2) are connected to the rubber tube (1). The inside of the rubber tube (1) is connected to the inlet of the nozzle (2). A film (3) is installed between two adjacent rubber tubes (1). The two sides of the film (3) are connected to the two rubber tubes (1), respectively.
2. The shoe drying device according to claim 1, characterized in that: A gas linkage support is installed between the rubber tube (1) and the guide tube (4). The gas linkage support includes an arc rod (6). One side of the arc rod (6) is hinged to one side of the rubber tube (1). An airbag (17) is installed between the arc rod (6) and the guide tube (4). The two sides of the airbag (17) are connected to the arc rod (6) and the guide tube (4) respectively. The inside of the airbag (17) is connected to the inside of the guide tube (4).
3. The shoe drying apparatus according to claim 1, characterized in that: The drying liner (8) is installed inside the main housing (16). The main housing (16) is a rectangular shell structure with openings on both sides and the top. A top cover plate (9) is installed on the top of the main housing (16). One side of the top cover plate (9) is hinged to one side of the main housing (16). A locking device is installed between the other side of the top cover plate (9) and the main housing (16). The locking device includes a second tube (13) and a first tube (7). The outer side of the second tube (13) is connected to the top cover plate (9), and the outer side of the first tube (7) is connected to the main housing (16). A pin (15) is inserted into the inside of the second tube (13). One end of 15) can be inserted into the first pipe (7). The bottom of the inner side of the main box (16) is connected to the guide box (11). One side of the guide box (11) is connected to the pipe joint (14). The upper part of the guide box (11) is connected to several threaded pipes (10) and a fan (12). The fan (12) delivers airflow into the main box (16). The central axis of the threaded pipe (10) is inclined to the side opposite to the fan (12). Each threaded pipe (10) is fitted with a drying liner (8). One end of the guide pipe (4) is opened with an external thread. The guide pipe (4) is threadedly connected to the threaded pipe (10).
Citation Information
Patent Citations
Drying device for shoemaking
CN216983854U