Domestic clothes moisture-removing and quick-drying dryer and after-drying quick-cooling control system

Through the design of rotating and expanding components, clothes revolve and rotate within the household dryer. Combined with internal and external hot air exchange, this solves the problems of clothes tangling and airflow dead zones, achieving a fast and even drying effect. The rapid cooling system ensures that clothes remain flat and saves energy.

CN120967650AInactive Publication Date: 2025-11-18YU GARDEN INTELLIGENT TECH (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202511424606.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2025-11-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing household dryers have problems such as clothes getting tangled, airflow dead zones, uneven heat penetration, long drying time, and high energy consumption.

Method used

The device employs a rotating and expanding component design, allowing clothes to revolve and rotate during the drying process. Combined with internal and external hot air exchange, this achieves all-around drying of the clothes. After drying, the device utilizes a rapid cooling system with forced convection cooling and auxiliary refrigeration to quickly cool the clothes.

Benefits of technology

It shortens drying time, improves drying efficiency, reduces clothing wrinkles and energy waste, enhances user experience, and leaves clothes smooth and comfortable to the touch.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a household clothes moisture-removing and quick-drying dryer and a quick cooling control system after drying. The quick-drying dryer comprises a dryer body. A rotating assembly is arranged in the drying machine body, and multiple sets of opening assemblies are arranged at the bottom of the rotating assembly. The rotating assembly is used for driving multiple sets of clothes to be subjected to rotating treatment, the rotating assembly comprises a rotating frame rotationally connected to the top end of the interior of the drying machine body, the top of the rotating frame is fixedly connected with the driving end of a first driving motor, and the first driving motor is fixedly connected with the drying machine body. The rotating assembly enables the opened clothes to move continuously, hot air can impact and penetrate through the opened clothes from all angles in all directions, a three-dimensional and dead-corner-free efficient drying environment is formed, the clothes are in the rotating and opened state while top-speed drying is carried out, severe friction between the clothes and the wall of the cavity or other clothes is avoided, and the clothes can be dried rapidly. The fabric of the clothes is cared.
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Description

Technical Field

[0001] This invention belongs to the field of dryer technology, specifically relating to a household clothes dehumidifying and quick-drying dryer and a rapid cooling control system after drying. Background Technology

[0002] Clothes dryers have become an indispensable household appliance for modern families, especially in high-humidity areas, rainy seasons, or urban homes with limited living space. They not only free clothes from the constraints of weather, providing the convenience of washing and drying immediately, but also effectively kill bacteria and mites, improving quality of life and health.

[0003] Currently, the mainstream household drying equipment on the market is mainly divided into three categories: exhaust type, condenser type, and heat pump type. Although their working principles and energy efficiency levels differ, their core drying mechanisms are largely the same: they all generate dry hot air through a heating device, use a fan to blow the hot air into the drying chamber, so that it exchanges heat with the damp clothes, removes moisture, and finally removes the moisture from the machine through condensation or exhaust.

[0004] Existing equipment mostly uses tumbling or static hanging drying methods. In tumbling dryers, clothes easily clump together, preventing the clothes inside the clump from fully contacting the hot air, resulting in a "dry outside, wet inside" phenomenon. For cabinet dryers, clothes are usually hung statically inside the cabinet, and the hot air circulation path is fixed, easily creating airflow dead zones. This causes clothes near the air outlet to be over-dried, while those further away or in areas where multiple items overlap remain undried. This not only significantly prolongs the overall drying time and causes unnecessary energy waste but also affects the user experience, requiring improvement. During the drying process, especially in tumbling dryers, clothes are in a chaotic state of continuous tumbling and shaking, with fibers rubbing and squeezing against each other, easily causing severe wrinkles, deformation, and even pilling, especially in delicate fabrics such as shirts, silk, and wool. Users often need to spend a lot of time ironing after drying, which goes against the original intention of home appliances to "reduce the burden" of life. The traditional hot air drying method is "surface drying". The hot air mainly comes into contact with the outer surface of the clothes. The heat needs to slowly penetrate the fabric layer from the outside to the inside. This mode has low heat transfer efficiency. A lot of heat energy is not effectively utilized and is discharged with the moisture, resulting in high energy consumption. This is contrary to the current green and low-carbon consumption concept. Therefore, it is of great importance to design a household clothes dehumidifying and quick-drying dryer and a rapid cooling control system after drying to solve the above defects. Summary of the Invention

[0005] (1) Technical problems to be solved In view of the shortcomings of the prior art, the purpose of this invention is to provide a household clothes dehumidifying and quick-drying dryer and a rapid cooling control system after drying, which solves the problems of clothes easily tangling in traditional drum dryers and the dead airflow in cabinet dryers, which prevent heat from penetrating all clothes evenly, resulting in "dry outside and wet inside" and long drying time.

[0006] (2) Technical solution To solve the above-mentioned technical problems, the present invention provides a household clothes dehumidifying and quick-drying dryer and a rapid cooling control system after drying. The quick-drying dryer includes a dryer body; a rotating component is provided inside the dryer body, and multiple sets of supporting components are provided at the bottom of the rotating component. The rotating assembly is used to drive multiple sets of clothes to rotate. The rotating assembly includes a rotating frame rotatably connected to the top of the dryer body. The top of the rotating frame is fixedly connected to the drive end of a first drive motor. The first drive motor is fixedly connected to the dryer body. The stretching assembly is used to stretch the clothes. The stretching assembly includes a rotating rod rotatably connected to the bottom of the rotating frame. A connecting frame is fixedly connected to the bottom of the rotating rod. A connecting shell is rotatably connected to the bottom of the connecting frame. A rotating disk is rotatably connected inside the connecting shell. Moving rods are slidably connected to the four sides inside the connecting shell and to the bottom of the rotating disk. The moving rods extend to the outside of the connecting shell and are fixedly connected to the stretching block.

[0007] When using the dryer body of this technical solution, the clothes are placed over the outside of the connecting shell, and then the collar is contacted with the clips to fix the collar, thus securing the clothes. The first drive motor is started to rotate the rotating frame, causing multiple sets of clips to move in an arc around the rotating frame. Simultaneously, the rotating frame moves, driving multiple sets of drive gears to move in an arc around the rotating frame. The meshing connection between the drive gears and the internal gear ring causes the drive gears to rotate, driving the rotating rod to rotate. The rotating rod then drives the connecting frame to rotate, causing multiple sets of guide grooves to move in an arc around the rotating rod, increasing the range of hot air jets and improving the drying efficiency of the clothes. The second drive motor is then started to rotate the second synchronous pulley, which, through the synchronous... The step belt drives the first synchronous wheel to rotate, causing the rotating disk to rotate. This causes multiple sets of drive grooves to move in an arc around the rotating disk, displacing the drive rod and the moving rod. The moving rod moves outward from the connecting shell, causing the spreading block to move and spread the clothes. The drying hot air generated by the heating device is introduced into the hot air pipe and then into the connecting groove. It is then introduced into the cavity through the conveying pipe. When the drying hot air enters the cavity inside the rotating rod, it comes into contact with the inside of the clothes through the through groove, effectively dehumidifying and quickly drying the clothes. When the clothes are dried, they are taken out from the inside of the dryer and hung on the hanging rod. The cooling unit cools the clothes.

[0008] Preferably, the interior of the rotating disk has multiple sets of drive grooves, which are designed with an arc shape. The moving rod extends into the interior of the drive groove and is fixedly connected to the drive rod, which is slidably connected to the drive groove.

[0009] Furthermore, a first synchronous pulley is rotatably connected to the top of the connecting housing, a synchronous belt is provided on the outside of the first synchronous pulley, a second synchronous pulley is provided at the end of the synchronous belt away from the first synchronous pulley, and the drive end of the second drive motor is fixedly connected to the top of the second synchronous pulley and extending to the top of the connecting housing.

[0010] Furthermore, the rotating rod has a cavity inside, multiple through slots at the bottom of the rotating rod, and guide slots are provided around the inside of the connecting frame.

[0011] Furthermore, two sets of clamps are provided around the bottom of the rotating frame. An internal gear ring is fixedly connected to the top of the dryer body and above the rotating frame. The rotating rod extends into the inside of the internal gear ring and is fixedly connected to a drive gear, which meshes with the internal gear ring.

[0012] Furthermore, the drive gear and the rotating frame are rotatably connected, and a conveying pipe is rotatably connected to the top of the drive gear. Multiple sets of conveying pipes are connected by connecting blocks.

[0013] Furthermore, the connecting block has a connecting groove inside, which is connected to multiple sets of conveying pipes. A hot air pipe is rotatably connected to the top of the connecting block, and the hot air pipe is connected to the connecting groove.

[0014] Furthermore, a receiving groove is provided inside the main body of the dryer and outside the multiple sets of conveying pipes. The connecting block is rotatably connected to the receiving groove, and the hot air pipe is fixedly connected to the receiving groove.

[0015] The present invention also provides a rapid cooling control system after drying, including any of the above-mentioned household clothes dehumidifying and quick-drying dryers, and further including a cooling machine body, characterized in that the cooling machine body is fixedly connected to the top of the dryer body, a hanging rod is fixedly connected to the top of the inside of the cooling machine body, and multiple sets of clothes hangers are provided on the outside of the hanging rod.

[0016] The cooling method implemented by the rapid cooling control system after drying of the present invention includes: S1. When the clothes drying program in the dryer body is finished, the main control system will automatically send a "drying complete" signal. After the user transfers the clothes to the cooling chamber, the user can manually press the cooling start button. S2. The system confirms that the main body door of the cooler is closed and ready. This system mainly achieves rapid cooling by combining forced convection cooling with auxiliary refrigeration. S3. The system starts the cooling fan located inside the main body of the cooler. The fan draws in room temperature air from inside and outside the cooling chamber, forming a stable airflow with a temperature lower than that of the clothes. This airflow is guided by a carefully designed air duct and blows from top to bottom or evenly over each piece of clothing hanging on the hanging rod. S4. It makes full contact with the surface of high-temperature clothing, and continuously removes the heat from the clothing through heat conduction and convection, and exhausts it outside the chamber through the exhaust vent. When the user opens the door of the main body of the cooling machine, the clothes taken out are dry, flat and at a comfortable temperature, and can be folded and stored or worn directly. Beneficial effects

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. The dryer body of this invention features a design with an openable assembly. A first drive motor rotates the entire rotating frame, causing the suspended clothes to revolve with the frame. Simultaneously, due to the meshing of the drive gear with a fixed internal gear ring, the rotating rod rotates on its own axis while revolving, forming a planetary gear transmission structure. This combined motion ensures that the clothes not only rotate as a whole within the dryer but also rotate individually, significantly increasing the frequency and uniformity of contact between hot air and the clothing surface. The simultaneous revolution and rotation of the clothes prevents localized overheating or undrying. Dynamic drying accelerates moisture evaporation and shortens drying time. The gear transmission achieves multiple movements, saving space and making it suitable for home use. Clothes are dried in an open state, allowing the fibers to stretch and shape rather than curl and tangle. After drying, the clothes are smoother.

[0018] 2. The main body of the dryer of this invention features a rotating component design. A second drive motor drives a rotating disc to rotate via a synchronous belt. The arc-shaped drive groove on the rotating disc pushes a drive rod, which in turn moves the moving rod radially, pushing the stretching block outward. This stretches the clothes from the inside, creating a hollow channel that allows hot air to penetrate from within, achieving simultaneous drying from the inside and outside. The stretched clothes form an air duct, allowing hot air to directly penetrate the fabric, significantly increasing the drying speed. Drying clothes in the stretched state reduces wrinkles and improves the smoothness of the clothes. The stretching force is adjustable, making it suitable for various types of clothing such as shirts, sweaters, and trousers. Targeted airflow reduces heat waste and improves energy efficiency. The rotating component keeps the stretched clothes moving, allowing hot air to impact and penetrate the stretched clothes from all angles and directions, creating a three-dimensional, efficient drying environment without dead angles. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the device of the present invention; Figure 2 This is a schematic diagram of the dryer body and cooler body of the device of the present invention; Figure 3 This is a schematic diagram of the hot gas pipe structure of the device of the present invention; Figure 4 This is a schematic diagram of the connecting block structure of the device of the present invention; Figure 5 This is a schematic diagram of the gear ring structure inside the device of the present invention; Figure 6 This is a schematic diagram of the rotating frame structure of the device of the present invention; Figure 7 This is a schematic diagram of the structure of the expansion component of the device of the present invention; Figure 8 This is a schematic diagram of the synchronous belt structure of the device of the present invention; Figure 9 This is a schematic diagram of the rotating disk structure of the device of the present invention; Figure 10 This is a schematic diagram of the rotating rod structure of the device of the present invention; The labels in the attached diagram are as follows: 1. Dryer body; 2. Rotating assembly; 3. Spreading assembly; 4. Rotating frame; 5. First drive motor; 6. Rotating rod; 7. Connecting frame; 8. Connecting shell; 9. Rotating disc; 10. Moving rod; 11. Spreading block; 12. Drive groove; 13. Drive rod; 14. First synchronous pulley; 15. Synchronous belt; 16. Second synchronous pulley; 17. Second drive motor; 18. Cavity; 19. Through groove; 20. Guide groove; 21. Clamp; 22. Internal gear ring; 23. Drive gear; 24. Conveying pipe; 25. Connecting block; 26. Connecting groove; 27. Hot air pipe; 28. Cooler body; 29. ​​Hanging rod; 30. Clothes hanger. Detailed Implementation

[0020] This specific embodiment is a household clothes dehumidifying and quick-drying dryer, the structural diagram of which is shown below. Figure 1-10 As shown, the quick-drying dryer includes a dryer body 1; the dryer body 1 is equipped with a rotating component 2 inside, and the bottom of the rotating component 2 is equipped with multiple sets of supporting components 3; The rotating assembly 2 is used to drive multiple sets of clothes to rotate. The rotating assembly 2 includes a rotating frame 4 rotatably connected to the top of the dryer body 1. The top of the rotating frame 4 is fixedly connected to the drive end of the first drive motor 5. The first drive motor 5 is fixedly connected to the dryer body 1. The stretching assembly 3 is used to stretch the clothes. The stretching assembly 3 includes a rotating rod 6 rotatably connected to the bottom of the rotating frame 4. A connecting frame 7 is fixedly connected to the bottom of the rotating rod 6. A connecting shell 8 is rotatably connected to the bottom of the connecting frame 7. A rotating disk 9 is rotatably connected inside the connecting shell 8. Movable rods 10 are slidably connected to the four sides inside the connecting shell 8 and to the bottom of the rotating disk 9. The movable rods 10 extend to the outside of the connecting shell 8 and are fixedly connected to the stretching block 11.

[0021] In this embodiment, the rotating disk 9 has multiple sets of drive grooves 12 inside, each with an arc-shaped structure. A moving rod 10 extends into the drive groove 12 and is fixedly connected to a drive rod 13. The drive rod 13 is slidably connected to the drive groove 12. A first synchronous pulley 14 is rotatably connected to the top of the connecting shell 8. A synchronous belt 15 is provided on the outer side of the first synchronous pulley 14. A second synchronous pulley 16 is provided at the end of the synchronous belt 15 away from the first synchronous pulley 14. The top of the second synchronous pulley 16, extending to the top of the connecting shell 8, is fixedly connected to the drive end of a second drive motor 17. The rotating disk 9 is fixedly connected to the first synchronous pulley 14. When the second drive motor 17 is started, it transmits power through the input... The output shaft drives the second synchronous pulley 16 to rotate. The second synchronous pulley 16 transmits power to the first synchronous pulley 14 through the synchronous belt 15. The first synchronous pulley 14 drives the rotating disk 9 fixed thereto to rotate inside the connecting shell 8. The arc-shaped drive groove 12 on the rotating disk 9 rotates accordingly. The drive rod 13 nested in the drive groove 12 is pushed by the groove wall, generating radial displacement. The drive rod 13 drives the moving rod 10 to slide outward along the slide rail inside the connecting shell 8. The expansion block 11 fixed to the outer end of the moving rod 10 is thus pushed outward, gently and powerfully expanding the garment from the inside to form a stable cylindrical air duct. This process can adjust the degree of expansion according to the size of the garment to avoid overstretching. Secondly, in this embodiment, the rotating rod 6 has a cavity 18 inside, and the bottom end of the rotating rod 6 has multiple sets of through grooves 19. The connecting frame 7 has guide grooves 20 on all four sides. When the drying hot air is introduced into the cavity 18 inside the rotating rod 6, the drying hot air can come into contact with the inside of the clothes through the through grooves 19, effectively dehumidifying and drying the clothes. In addition, in this embodiment, two sets of clamps 21 are provided around the bottom of the rotating frame 4. An internal gear ring 22 is fixedly connected to the top of the dryer body 1 and above the rotating frame 4. A drive gear 23 is fixedly connected to the rotating rod 6 extending into the interior of the internal gear ring 22. The drive gear 23 meshes with the internal gear ring 22 and is rotatably connected to the rotating frame 4. A conveying pipe 24 is rotatably connected to the top of the drive gear 23. Multiple sets of conveying pipes 24 are connected by connecting blocks 25. The clothes are put on the outside of the connecting shell 8, and then the collar is brought into contact with the clamps 21. The collar is fixed by the clamps 21, thus securing the clothes. The first drive motor 5 is started, driving the rotating frame 4. The rotating frame 4 begins to rotate inside the dryer body 1, and all the clothes fixed by the clips 21 revolve accordingly, avoiding the accumulation of clothes. At the same time as the revolve, a delicate mechanical process occurs simultaneously. The inner gear ring 22 fixed at the top of the drying chamber meshes with the drive gear 23 installed at the top of each rotating rod 6. When the rotating frame 4 revolves, the drive gear 23 is forced to roll along the fixed inner gear ring 22, thus rotating. The rotation of the drive gear 23 drives the rotating rod 6 and the entire spreading assembly 3 at its bottom, as well as the spread clothes, to rotate together. Thus, the clothes are simultaneously in a state of compound motion of revolution and rotation, and every surface of them is dynamically and without dead angles exposed to the hot air. Furthermore, in this embodiment, a connecting groove 26 is provided inside the connecting block 25, which is interconnected with multiple sets of conveying pipes 24. A hot air pipe 27 is rotatably connected to the top of the connecting block 25, and the hot air pipe 27 is interconnected with the connecting groove 26. A receiving groove is provided inside the dryer body 1 and outside the multiple sets of conveying pipes 24. The connecting block 25 is rotatably connected to the receiving groove, and the hot air pipe 27 is fixedly connected to the receiving groove. The hot air pipe 27 is connected to the heating device of the dryer body 1, and the water supply pipe is interconnected with the cavity 18. The drying hot air generated by the heating device of the dryer is sent into the hot air pipe 27, and the hot air passes through the rotating connecting block 25. The connecting slots 26 evenly distribute the hot air to each conveying pipe 24. The conveying pipes 24 guide the hot air into the cavity 18 of the hollow rotating rod 6. The hot air is then precisely sprayed into the air duct inside the opened garment through the through slot 19 at the bottom of the rotating rod 6 and the guide slot 20 on the connecting frame 7. The hot air no longer just blows on the surface of the garment from the outside, but penetrates directly from the inside of the garment to the outside. Combined with the complex compound rotational motion of the garment, the hot air can carry out all-round and efficient heat exchange with the inner and outer surfaces of the garment and the gaps between fibers. The moisture is quickly evaporated and carried away, achieving rapid and uniform drying from both inside and outside, and greatly reducing energy waste. Furthermore, in this embodiment, the cooling machine body 28 is fixedly connected to the top of the dryer body 1. A hanging rod 29 is fixedly connected to the top of the interior of the cooling machine body 28. Multiple clothes hangers 30 are provided on the outside of the hanging rod 29. After the drying program is completed, the user opens the drying chamber door and removes the clothes that are dry but still warm from the clips 21 and the support block 11. The clothes are then hung directly on the clothes hangers 30 inside the cooling machine body 28 located at the top of the dryer. The cooling machine door is closed, the cooling program is started, and the cooling system begins to work, quickly and evenly cooling the hot clothes. In a short time, the clothes can be cooled to room temperature, making them comfortable to the touch. They can be worn directly or stored away without waiting for natural cooling, thus avoiding the risk of burns.

[0022] When using the device of this technical solution, the user inserts the bottom opening of the clothes to be dried onto the outside of the connecting shell 8 of the expansion component, and fixes the collar or shoulder of the clothes to the bottom of the rotating frame 4 with the clips 21. The design of the clips 21 ensures that the clothes will not fall off during high-speed rotation and that the force is evenly distributed, avoiding localized stretching damage to the clothes. The user closes the door, selects and starts the drying program on the control panel, and the second drive motor 17 starts, driving the second synchronous pulley 16 to rotate through the output shaft. The second synchronous pulley 16 transmits power to the first synchronous pulley 14 through the synchronous belt 15. The first synchronous pulley 14 drives the rotating disk 9 fixed to it to rotate inside the connecting shell 8. The arc-shaped drive groove 12 on the rotating disk 9 rotates accordingly, nested within the drive groove 12. The drive rod 13 is pushed by the groove wall, generating radial displacement. The drive rod 13 drives the moving rod 10 to slide outward along the slide rail inside the connecting shell 8. The expansion block 11 fixed to the outer end of the moving rod 10 is thus pushed outward, gently and forcefully expanding the clothes from the inside to form a stable cylindrical air duct. This process can adjust the degree of expansion according to the size of the clothes to avoid overstretching. The first drive motor 5 starts, driving the rotating frame 4 to start rotating inside the dryer body 1. All the clothes fixed by the clips 21 revolve accordingly, avoiding the accumulation of clothes. At the same time as the rotation, a delicate mechanical process occurs simultaneously. The internal gear ring 22 fixed to the top of the drying chamber meshes with the drive gear 23 installed at the top of each rotating rod 6. When the rotating frame 4 revolves, the drive gear Forced to roll along the fixed internal gear ring 22, the drive gear 23 rotates, causing the rotating rod 6 and its entire bottom spreading assembly 3, along with the spread clothes, to rotate together. Thus, the clothes are simultaneously in a combined motion of revolution and rotation, with every surface dynamically and without blind spots exposed to the hot air. At the same time, the drying hot air generated by the dryer's heating device is sent into the hot air pipe 27. The hot air is evenly distributed to each conveying pipe 24 through the connecting groove 26 inside the rotating connecting block 25. The conveying pipe 24 guides the hot air into the cavity 18 of the hollow rotating rod 6. Finally, the hot air is precisely sprayed into the internal air duct of the spread clothes through the through groove 19 at the bottom of the rotating rod 6 and the guide groove 20 on the connecting frame 7. Instead of simply blowing air onto the surface of the clothes from the outside, the hot air penetrates directly from the inside out. Combined with the complex rotational motion of the clothes, the hot air can achieve all-round, high-efficiency heat exchange with the inner and outer surfaces of the clothes and the gaps between the fibers. Moisture is quickly evaporated and carried away, achieving rapid and uniform drying from both inside and outside, and greatly reducing energy waste. After the drying cycle is over, the user opens the drying chamber door, removes the thoroughly dried but still warm clothes from the clips 21 and the support blocks 11, and hangs them directly on the hangers 30 inside the cooling unit 28 located at the top of the dryer. The cooling door is closed, and the cooling program is started. The cooling system begins to work, quickly and evenly cooling the hot clothes. In a short time, the clothes are cooled to a comfortable temperature.It can be worn directly or stored away without waiting for it to cool naturally, thus avoiding the risk of burns.

[0023] The cooling method implemented by the rapid cooling control system after drying of the present invention includes: Step 1: When the clothes drying program in the dryer body 1 is finished, the main control system will automatically send a "drying complete" signal. After the user transfers the clothes to the cooling chamber, the user can manually press the cooling start button. Step 2: The system confirms that the door of the main body 28 of the cooling unit is closed and ready. The system mainly achieves rapid cooling by combining forced convection cooling with auxiliary refrigeration. Step 3: The system starts the cooling fan located inside the main body 28 of the cooling machine. The fan draws in room temperature air from inside and outside the cooling chamber, forming a stable airflow with a temperature lower than that of the clothes. This airflow is guided by a carefully designed air duct and blows from top to bottom or evenly over each piece of clothing hanging on the hanging rod 29. Step 4: Make full contact with the surface of the hot clothing. Through heat conduction and convection, the heat on the clothing will be continuously removed and discharged outside the chamber through the exhaust vent. When the user opens the door of the cooling machine body 28, the clothing will be dry, flat and at a comfortable temperature. It can be folded and stored immediately or worn directly.

[0024] All standard parts used in this application can be purchased from the market. The specific connection methods of each part are all conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment are all conventional models in the prior art. In addition, the circuit connection adopts conventional connection methods in the prior art. The contents not described in detail in the description are prior art known to those skilled in the art, and will not be described in detail here.

[0025] The above embodiments are preferred implementations of the present invention. In addition, the present invention can be implemented in other ways. Any obvious substitutions without departing from the concept of the present technical solution are within the protection scope of the present invention.

Claims

1. A household clothes dehumidifying and quick-drying dryer, comprising a dryer body (1); characterized in that, The dryer body (1) is provided with a rotating component (2) inside, and the bottom of the rotating component (2) is provided with multiple sets of spreading components (3). The rotating component (2) is used to drive multiple sets of clothes to rotate. The rotating component (2) includes a rotating frame (4) rotatably connected to the top of the dryer body (1). The top of the rotating frame (4) is fixedly connected to the driving end of a first drive motor (5). The first drive motor (5) is fixedly connected to the dryer body (1). The stretching assembly (3) is used to stretch the clothes. The stretching assembly (3) includes a rotating rod (6) rotatably connected to the bottom of the rotating frame (4). A connecting frame (7) is fixedly connected to the bottom of the rotating rod (6). A connecting shell (8) is rotatably connected to the bottom of the connecting frame (7). A rotating disk (9) is rotatably connected inside the connecting shell (8). Moving rods (10) are slidably connected to the four sides inside the connecting shell (8) and to the bottom of the rotating disk (9). The moving rods (10) extend to the outside of the connecting shell (8) and are fixedly connected to a stretching block (11).

2. A household clothes dehumidifying and quick-drying dryer according to claim 1, characterized in that, The rotating disk (9) has multiple sets of drive grooves (12) inside. The drive grooves (12) are designed with an arc shape. The moving rod (10) extends into the drive groove (12) and is fixedly connected to the drive rod (13). The drive rod (13) is slidably connected to the drive groove (12).

3. A household clothes dehumidifying and quick-drying dryer according to claim 1, characterized in that, The top of the inside of the connecting shell (8) is rotatably connected to a first synchronous wheel (14). A synchronous belt (15) is provided on the outside of the first synchronous wheel (14). A second synchronous wheel (16) is provided at the end of the synchronous belt (15) away from the first synchronous wheel (14). The top of the second synchronous wheel (16) and extending to the top of the connecting shell (8) are fixedly connected to the drive end of a second drive motor (17).

4. A household clothes dehumidifying and quick-drying dryer according to claim 1, characterized in that, The rotating rod (6) has a cavity (18) inside, and multiple through slots (19) are opened at the bottom end of the rotating rod (6). Guide slots (20) are opened around the inside of the connecting frame (7).

5. A household clothes dehumidifying and quick-drying dryer according to claim 1, characterized in that, Two sets of clamps (21) are provided around the bottom of the rotating frame (4). An internal gear ring (22) is fixedly connected to the top of the dryer body (1) and above the rotating frame (4). The rotating rod (6) extends into the interior of the internal gear ring (22) and is fixedly connected to a drive gear (23). The drive gear (23) meshes with the internal gear ring (22).

6. A household clothes dehumidifying and quick-drying dryer according to claim 5, characterized in that, The drive gear (23) is rotatably connected to the rotating frame (4), and the top of the drive gear (23) is rotatably connected to the conveying pipe (24). Multiple sets of the conveying pipes (24) are connected by connecting blocks (25).

7. A household clothes dehumidifying and quick-drying dryer according to claim 6, characterized in that, The connecting block (25) has a connecting groove (26) inside, which is connected to multiple sets of conveying pipes (24). A hot air pipe (27) is rotatably connected to the top of the connecting block (25), and the hot air pipe (27) is connected to the connecting groove (26).

8. A household clothes dehumidifying and quick-drying dryer according to claim 7, characterized in that, The dryer body (1) has a receiving groove inside and outside the multiple sets of conveying pipes (24). The connecting block (25) is rotatably connected to the receiving groove, and the hot air pipe (27) is fixedly connected to the receiving groove.

9. A rapid cooling control system after drying, characterized in that: The household clothes dehumidifying and quick-drying dryer as described in any one of claims 1-9 also includes a cooling machine body (28), characterized in that the cooling machine body (28) is fixedly connected to the top of the dryer body (1), and a hanging rod (29) is fixedly connected to the top of the interior of the cooling machine body (28), and multiple sets of clothes hangers (30) are provided on the outside of the hanging rod (29).

10. A rapid cooling control system after drying according to claim 5, characterized in that, The cooling method includes the following steps: S1. When the clothes drying program in the dryer body (1) ends, the main control system will automatically send a "drying complete" signal. After the user transfers the clothes to the cooling chamber, the user can manually press the cooling start button. S2. The system confirms that the door of the main body of the cooler (28) is closed and ready. The system mainly achieves rapid cooling by combining forced convection cooling with auxiliary refrigeration. S3. The system starts the cooling fan located inside the main body (28) of the cooling machine. The fan draws in the ambient temperature air inside and outside the cooling chamber to form a stable airflow with a temperature lower than that of the clothes. This airflow is guided by a carefully designed air duct and blows from top to bottom or evenly over each piece of clothing hanging on the hanging rod (29). S4. It makes full contact with the surface of the high-temperature clothing, and continuously removes the heat from the clothing through heat conduction and convection, and discharges it outside the chamber through the exhaust port. When the user opens the door of the main body of the cooling machine (28), the clothing taken out is dry, flat and has a comfortable temperature, and can be folded and stored or worn directly.