Intelligent Yao nationality traditional clothes dehumidification protection device and method

Through the intelligently designed dehumidification protection device, the problem that the existing technology cannot effectively protect traditional Yao clothing is solved, efficient dehumidification and protection are achieved, and the quality of clothing preservation and inheritance are ensured.

CN120006502AInactive Publication Date: 2025-05-16HEZHOU UNIV
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Patent Information

Application Number
CN202510071464.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-05-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing dehumidification protection device cannot effectively provide dehumidification protection against the special materials of traditional Yao clothing, resulting in the clothing being easily damp and moldy in a humid environment, affecting its preservation and inheritance.

Method used

An intelligent dehumidification protection device is designed. By separating the inner part of the protection box into a dehumidification chamber and a storage chamber, the dehumidification component of a porous dehumidification plate and heating wire is used, combined with the intelligent management of the ultraviolet lamp and hygrometer, it can achieve efficient dehumidification and protection of clothing.

Benefits of technology

By separating the dehumidification and storage areas, the device avoids direct interference to clothing by the dehumidification process, improves the dehumidification efficiency and space utilization, ensures the dryness and safety of clothing during storage, and extends the storage life of clothing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of dehumidification equipment, in particular to an intelligent Yao-nationality traditional clothes dehumidification protection device and method.The device comprises a protection box, a dehumidification cavity and a storage cavity are formed in the protection box, and a dehumidification assembly is arranged in the dehumidification cavity; a storage frame is arranged at the bottom of the partition plate, a lifting frame is arranged below the storage frame, a plurality of lifting rods are arranged on the lifting frame and hinged to the storage frame, a driving part is arranged in the storage cavity, a driving gear is arranged on an output shaft of the driving part, and a driving rack is arranged on the lifting frame; a plurality of sliding rods are arranged on the lifting frame, sliding blocks are arranged on the sliding rods, and sliding rails are symmetrically arranged in the storage cavity; and a guide assembly and an extrusion assembly are arranged on the storage frame. The method comprises the four steps of humidity monitoring, clothes dehumidification, sterilization and disinfection and storage. The interior of the protection box is divided into different cavities, interference to clothes in the dehumidification process is reduced, the storage humidity is monitored in real time, intelligent management is provided, and it is ensured that the clothes are in a good storage environment.
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Description

Technical Field

[0001] The invention relates to the technical field of dehumidification equipment, and in particular to an intelligent dehumidification protection device and method for traditional Yao clothing. Background Art

[0002] With the development of science and technology, intelligent technology has been widely used in various fields, and it has also played an important role in the protection of cultural relics. Since the traditional costumes of the Yao people are mostly made of natural fiber materials, such as cotton, linen, silk, etc., these materials are easily affected by moisture, mold, and deterioration in a humid environment, thus affecting the preservation and inheritance of the costumes. Therefore, how to effectively protect the traditional costumes of the Yao people and prevent them from getting damp and moldy has become an urgent problem to be solved.

[0003] Although the existing dehumidification protection devices can achieve a certain degree of dehumidification effect, since the traditional Yao costumes are made of special materials, higher requirements are placed on the dehumidification protection devices, and the existing dehumidification protection devices may not be able to provide effective dehumidification protection for these special materials.

[0004] In summary, the problem that existing dehumidification protection devices may not be able to provide effective dehumidification protection for special materials has become a difficult problem that needs to be solved urgently in this field. Therefore, it is necessary to propose an intelligent dehumidification protection device and method for traditional Yao clothing. Summary of the invention

[0005] To solve the above problems, the present invention provides an intelligent dehumidification protection device and method for traditional Yao clothing. By dividing the interior of the protection box into different chambers, the interference to the clothing during the dehumidification process is reduced, and the storage humidity is monitored in real time. Intelligent management is provided to ensure that the clothing is in a good storage environment.

[0006] In order to achieve the above-mentioned purpose, the technical solution of the present invention is as follows: an intelligent dehumidification and protection device for traditional Yao clothing, including a protection box and a controller, an opening and closing door is hinged on the upper part of one side of the protection box, and a partition is fixedly connected to the inner wall of the protection box. The partition divides the interior of the protection box from top to bottom into a dehumidification chamber and a storage chamber, and a dehumidification component for dehumidifying the traditional Yao clothing is provided in the dehumidification chamber.

[0007] Dehumidification holes are provided on the surface of the partition, and a storage frame is slidably fitted on the bottom of the partition. A lifting frame is provided under the storage frame, and a plurality of lifting rods are symmetrically hinged on the side walls of the lifting frame. The ends of the lifting rods away from the lifting frame are hinged to the side walls of the storage frame. A driving member is fixedly connected to the inner side wall of the storage chamber. The controller is used to control the rotation of the output shaft of the driving member. A driving gear is fixedly connected to the output shaft of the driving member, and a driving rack is fixedly connected to the bottom of the lifting frame, and the driving gear is meshed with the driving rack.

[0008] The lifting frame side wall is symmetrically fixedly connected with a plurality of sliding rods, and the sliding rods are fixedly connected with a slider at one end away from the lifting frame. The inner side wall of the storage cavity is symmetrically fixedly connected with a slide rail, and the slide rails are slidably matched with the slide rails adjacent thereto.

[0009] A guide component for guiding the storage frame is provided on one side of the storage frame, and an extrusion component for extruding the dehumidification component is provided on the outer side wall of the storage frame.

[0010] The technical principles of the above scheme are as follows:

[0011] The user first places the traditional Yao costumes in the storage frame, closes the door, and controls the output shaft of the driving member to rotate through the controller, which drives the driving gear to rotate, which drives the driving rack to move horizontally, and the driving rack drives the lifting frame to move horizontally through the lifting rod. In this process, the lifting frame drives the sliding rod to move horizontally, and the sliding rod drives the slider to slide horizontally in the slide rail.

[0012] The storage frame is guided to the dehumidification chamber by the guide component, and the dehumidification component dehumidifies the clothes therein. At the same time, when the storage frame moves to the dehumidification chamber, the dehumidification component is squeezed by the squeezing component to further accelerate its dehumidification efficiency.

[0013] The above scheme has the following beneficial effects:

[0014] 1. In the present invention, the protective box is cleverly divided into a dehumidification chamber and a storage chamber by a partition. This design not only separates the dehumidification operation from the clothing storage area, avoiding direct interference with the clothing during the dehumidification process, but also improves the space utilization of the entire device.

[0015] 2. In the present invention, the setting of the guide component enables the storage frame to maintain a stable moving track during the movement, effectively reducing the shaking and tilting of the storage frame, and the extrusion component can appropriately squeeze the dehumidification component during the dehumidification process, thereby improving the dehumidification effect.

[0016] 3. In the present invention, the design of the lifting frame and the lifting rod enhances the mobility of the storage frame. The storage frame can be easily lifted or lowered by the rotation of the output shaft of the driving member and the meshing of the driving gear and the driving rack, thereby facilitating the user to store and retrieve clothing.

[0017] Furthermore, the dehumidification component includes a porous dehumidification plate fixedly connected to the top of the partition, and the inner wall of the dehumidification chamber is fixedly connected to a pump component, and the controller is used to control the suction of the pump component.

[0018] A plurality of protective cylinders are fixedly connected inside the porous dehumidification plate, and heating wires are detachably connected inside the protective cylinders. The controller is used to control the heating operation of the heating wires.

[0019] Beneficial effects: The porous structure of the porous dehumidification plate increases the contact area between moisture and the porous dehumidification plate, thereby improving its dehumidification efficiency. At the same time, the heating wire can be heated under the control of the controller, thereby further improving the dehumidification capacity of the porous dehumidification plate, and the design of the protection cylinder effectively protects the heating wire from interference and damage from the external environment, thereby extending its service life.

[0020] Furthermore, the guide assembly includes a guide plate fixedly connected to the bottom of the partition, the guide plate is provided with an L-shaped guide groove, a guide rod is slidably fitted in the guide groove, and the end of the guide rod away from the guide groove is fixedly connected to the side wall of the lifting rod adjacent to it.

[0021] Beneficial effect: The design of the L-shaped guide groove enables the guide rod to move along a predetermined track during movement, effectively reducing the shaking and tilting of the storage frame during movement, thereby protecting the clothing.

[0022] Furthermore, the squeezing assembly includes an extension rod fixedly connected to one side of the storage frame, the extension rod extends into the dehumidification chamber through the dehumidification hole, and one end of the extension rod away from the storage frame is rotatably connected to a squeezing roller.

[0023] Beneficial effect: The squeezing roller is connected to the storage frame through an extension rod. When the storage frame moves, the squeezing roller will physically squeeze the porous dehumidification plate in the dehumidification chamber, accelerating the adsorption and release process of the porous dehumidification plate, thereby improving its dehumidification efficiency.

[0024] Furthermore, a sterilization plate is fixedly connected to the top of the porous dehumidification plate, and a plurality of ultraviolet lamps are fixedly connected to the bottom of the sterilization plate. The controller is used to control the switching operation of the ultraviolet lamps.

[0025] Beneficial effects: The ultraviolet light on the sterilization board provides the device with sterilization and disinfection capabilities, enabling it to kill bacteria, viruses and other microorganisms in the air, providing more comprehensive protection for clothing. At the same time, when the ultraviolet light is running, it can not only kill microorganisms, but also generate a certain amount of heat, which further accelerates the adsorption and release process of the porous dehumidification board to the air, thereby improving its dehumidification efficiency.

[0026] Furthermore, an insecticide frame is fixedly connected to the inner wall of the storage frame, and solid insecticide is placed in the insecticide frame.

[0027] Beneficial effects: The solid insecticide in the insect repellent frame has a long effective period, can continuously provide protection for clothing, continuously release active ingredients, effectively kill or repel pests, thereby protecting clothing from pests. At the same time, the design of the insect repellent frame makes the replacement of the solid insecticide more convenient. Users only need to open the insect repellent frame regularly and replace the new solid insecticide without complicated operations.

[0028] Furthermore, a hygrometer is fixedly connected to the inner wall of the storage frame, and the controller is used to receive a humidity signal sent by the hygrometer and control the operation of the driving member, the pump assembly, the heating wire and the ultraviolet lamp based on the humidity signal.

[0029] Beneficial effects: The hygrometer can monitor the humidity changes in the storage frame in real time, ensuring the accuracy and real-time nature of the data, so that the controller can accurately control the various components in the device based on the latest humidity data.

[0030] Further, the protection cylinder is made of copper.

[0031] Beneficial effects: Copper has excellent thermal conductivity and can quickly conduct the heat generated by the heating wire in the protective cylinder to the porous dehumidification plate.

[0032] Furthermore, a drainage groove is provided at the bottom of the porous dehumidification plate, a drainage port is provided on the side wall of the protection box, a one-way valve is connected to the drainage port, and the drainage groove is connected to the one-way valve.

[0033] Beneficial effects: When the porous dehumidification plate absorbs a certain amount of moisture, the moisture can be quickly discharged through the drainage groove at the bottom, so that the porous dehumidification plate can continue to maintain its dehumidification capacity. At the same time, the design of the one-way valve makes it difficult for external moisture, dust and other harmful substances to enter the protection box, thereby further protecting the safety of clothing.

[0034] Furthermore, an intelligent dehumidification and protection method for traditional Yao clothing includes the following steps:

[0035] Step 1: Humidity monitoring: Set the humidity threshold through the controller, and monitor the humidity in the storage box in real time through the hygrometer. When the humidity in the storage box exceeds the set humidity threshold, the clothing is transferred from the storage chamber to the dehumidification chamber.

[0036] Step 2: Dehumidification of clothing: The air in the dehumidification chamber is sucked through the pump assembly, and the air in the dehumidification chamber is dehumidified through the porous dehumidification plate, and then the dried air is transported back to the dehumidification chamber. The clothing is dehumidified through the humidity difference principle, and the cycle is repeated until the humidity drops below the humidity threshold.

[0037] Step three: disinfection and sterilization: irradiate the clothing with ultraviolet light to disinfect and sterilize the clothing.

[0038] Step 4: Storage and preservation: Put the clothing back into the storage chamber for preservation.

[0039] Beneficial effects: The humidity in the storage frame is monitored in real time through a hygrometer, and the clothing is quickly transferred to the dehumidification chamber when the humidity exceeds the set threshold, ensuring that the clothing can be dehumidified in time; at the same time, through the cooperation of the pump assembly and the porous dehumidification plate, air circulation dehumidification in the dehumidification chamber is achieved. This method not only has high dehumidification efficiency, but also can continuously maintain a dry environment in the dehumidification chamber, ensuring that the clothing will not be secondary contaminated during the dehumidification process.

[0040] Additional aspects and advantages of the present invention will be given in part in the following description and in part will be obvious from the following description, or will be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 This is an axonometric schematic diagram of the intelligent Yao ethnic traditional clothing dehumidification protection device of the present invention.

[0042] Figure 2 It is an axonometric schematic diagram of the dehumidification component in the intelligent Yao traditional clothing dehumidification protection device of the present invention.

[0043] Figure 3 for Figure 1 Schematic diagram of the cross section along AA.

[0044] Figure 4 It is a schematic cross-sectional view from above of the intelligent dehumidification protection device for traditional Yao clothing of the present invention.

[0045] Figure 5 It is a top view schematic diagram of the storage frame in the intelligent Yao traditional clothing dehumidification protection device of the present invention.

[0046] Figure 6 It is a front cross-sectional schematic diagram of the intelligent Yao ethnic traditional clothing dehumidification protection device of the present invention.

[0047] Figure 7 This is a schematic diagram of the method steps of the intelligent Yao ethnic traditional clothing dehumidification protection method of the present invention.

[0048] The figure marks in the drawings of the specification include: 1. protection box; 2. opening and closing door; 3. partition; 4. porous dehumidification plate; 5. sterilization plate; 6. ultraviolet lamp; 7. storage frame; 8. sliding rod; 9. slide rail; 10. lifting frame; 11. lifting rod; 12. driving gear; 13. driving rack; 14. guide plate; 15. guide rod; 16. extension rod; 17. squeezing roller; 18. insecticide; 19. hygrometer; 20. drainage trough. DETAILED DESCRIPTION

[0049] The following is further described in detail through specific implementation methods:

[0050] Embodiment 1:

[0051] As attached Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown: an intelligent dehumidification protection device for traditional Yao clothing, including a protection box 1 and a controller, an opening and closing door 2 is hinged on the upper part of one side of the protection box 1, and a partition 3 is welded on the inner wall of the protection box 1. The partition 3 divides the interior of the protection box 1 into a dehumidification chamber and a storage chamber from top to bottom, and a dehumidification component for dehumidifying the traditional Yao clothing is arranged in the dehumidification chamber.

[0052] The dehumidification assembly includes a porous dehumidification plate 4 bolted to the top of the partition 3, a sterilization plate 5 bolted to the top of the porous dehumidification plate 4, a plurality of ultraviolet lamps 6 screwed to the bottom of the sterilization plate 5, and a controller for controlling the switching operation of the ultraviolet lamps 6.

[0053] like Figure 6 As shown, a pump assembly is fixedly connected to the left inner wall of the dehumidification chamber with bolts, and the controller is used to control the suction of air by the pump assembly. In this embodiment, the pump assembly includes a negative pressure pump and an air pipe, and the pump assembly is connected to the air pipe.

[0054] A plurality of copper protective cylinders are embedded and installed inside the porous dehumidification plate 4, and heating wires are detachably connected with screws in the protective cylinders. The controller is used to control the heating operation of the heating wires.

[0055] The surface of the partition 3 is provided with dehumidification holes, and the bottom of the partition 3 is slidably matched with a storage frame 7, and a lifting frame 10 is provided below the storage frame 7. The side wall of the lifting frame 10 is symmetrically hinged with a plurality of lifting rods 11, such as Figure 3 As shown, the upper ends of the lifting rods 11 are hinged to the side walls of the storage frame 7, and the inner side walls of the storage chamber are fixedly connected with the driving members by bolts. The controller is used to control the rotation of the output shaft of the driving member. In this embodiment, the driving member is a stepper motor, and a driving gear 12 is fixedly clamped on the output shaft of the stepper motor. A driving rack 13 is welded to the bottom of the lifting frame 10, and the driving gear 12 is meshed with the driving rack 13.

[0056] A plurality of sliding rods 8 are symmetrically welded to the side wall of the lifting frame 10, and a slider is integrally formed at one end of the sliding rod 8 away from the lifting frame 10. The inner side wall of the storage cavity is symmetrically bolted and fixed with a sliding rail 9, and the sliding rails are slidably matched with the adjacent sliding rails 9.

[0057] A guide component for guiding the storage frame 7 is provided on one side of the storage frame 7, an extrusion component for extruding the dehumidification component is provided on the outer wall of the storage frame 7, a hygrometer 19 is fixedly connected with screws on the inner wall of the storage frame 7, and a controller is used to receive a humidity signal sent by the hygrometer 19, and control the operation of the driving part, pump assembly, heating wire and ultraviolet lamp 6 based on the humidity signal.

[0058] The guide assembly includes a guide plate 14 welded to the bottom of the partition 3, and an L-shaped guide groove is formed on the guide plate 14. A guide rod 15 is slidably fitted in the guide groove. Figure 3 As shown, the left end of the guide rod 15 is welded to the side wall of the lifting rod 11 adjacent thereto.

[0059] The extrusion assembly includes an extension rod 16 welded to one side of the storage frame 7, and the extension rod 16 extends into the dehumidification chamber through the dehumidification hole. Figure 2 As shown, the upper end of the extension rod 16 is rotatably connected to a squeezing roller 17 .

[0060] The specific implementation process is as follows: the user opens the opening and closing door 2 and places the traditional Yao ethnic clothing in the storage frame 7. In this embodiment, the initial position of the storage frame 7 is at the dehumidification hole. After placing the clothing, the user closes the opening and closing door 2, and controls the output shaft of the stepper motor to reverse through the controller, so that it drives the driving gear 12 to reverse, and the driving gear 12 drives the driving rack 13 to move horizontally, and the driving rack 13 drives the lifting frame 10 to move horizontally. The lifting frame 10 drives the storage frame 7 to move horizontally through the lifting rod 11. In this process, the lifting frame 10 also drives the sliding rod 8 to move horizontally, and the sliding rod 8 drives the slider to slide horizontally in the slide rail 9 to provide stable support for the lifting frame 10. Under the guidance of the guide groove and the guide rod 15, the storage frame 7 is lowered so that it is stored in the storage chamber for storage. At this time, the user resets the initial position of the storage frame 7, and sets the state of the device at this time to the initial state, and then sets the humidity threshold for clothing storage through the controller.

[0061] During the clothing storage process, the hygrometer 19 will monitor the humidity inside the storage frame 7 in real time and continuously send a humidity signal to the controller. When the humidity inside the storage frame 7 exceeds the set humidity threshold, the controller simultaneously sends a start signal to the negative pressure pump, the heating wire and the ultraviolet lamp 6, and sends a forward signal to the stepper motor. At this time, the output shaft of the stepper motor rotates forward, driving the driving gear 12 to rotate forward, and the driving gear 12 drives the driving rack 13 to move horizontally, so that it drives the lifting frame 10 to move horizontally, and the lifting frame 10 drives the sliding rod 8 to move horizontally, and the sliding rod 8 drives the slider to slide horizontally in the slide rail 9. At the same time, the lifting frame 10 drives the storage frame 7 to move horizontally through the lifting rod 11. At this time, the storage frame 7 moves to the bottom of the dehumidification hole. Under the guiding effect of the guide rod 15 on the lifting rod 11, the lifting rod 11 lifts the storage frame 7, so that the clothing in the storage frame 7 is transported to the dehumidification chamber.

[0062] At this time, since the negative pressure pump and the heating wire are both in the activated state, when the clothes are transported to the dehumidification chamber, the negative pressure pump will suck the air in the dehumidification chamber, so that it will be dehumidified through the porous dehumidification plate 4, and the heating effect of the heating wire will further improve the dehumidification efficiency. The negative pressure pump will transport the dehumidified air back to the dehumidification chamber, and repeat this process until the humidity signal received by the controller returns to below the humidity threshold.

[0063] When the humidity signal received by the controller returns to below the humidity threshold, the controller controls the stepper motor output shaft to reverse, stores the storage frame 7 back into the storage chamber for storage, and sends a stop signal to the negative pressure pump, heating wire and ultraviolet lamp 6 after 10 minutes to ensure the dryness of the dehumidification chamber.

[0064] The storage frame 7 will drive the extension rod 16 to move during the movement, and the extension rod 16 will drive the squeezing roller 17 to move together with it. When the storage frame 7 moves toward the dehumidification chamber under the action of the guide rod 15 and the guide groove, the squeezing roller 17 will squeeze the porous dehumidification plate 4, so that the porous dehumidification plate 4 accelerates the adsorption and release process of the air, thereby achieving a better dehumidification effect. The porous dehumidification plate 4 in this embodiment is a silica gel dehumidification plate. When the squeezing roller 17 squeezes it, the heating wire therein can still operate normally under the action of the protective tube.

[0065] The interior of the protection box 1 is divided into a dehumidification chamber and a storage chamber by the partition 3, so that the dehumidification operation is separated from the clothing storage area, avoiding direct interference with the clothing during the dehumidification process. At the same time, the storage humidity is monitored in real time and equipped with an intelligent management design to ensure that the clothing can be kept in a good storage environment during the storage process.

[0066] Embodiment 2:

[0067] As attached Figure 5 As shown, the difference from the first embodiment is that an insecticide frame is integrally formed on the inner wall of the storage frame 7, and a solid insecticide 18 is placed in the insecticide frame.

[0068] The specific implementation process is as follows: when termites and moths enter the storage frame 7, the solid insecticide 18 can effectively prevent them from corroding the clothing, thereby better protecting the clothing.

[0069] Embodiment 3:

[0070] As attached Figure 2 and Figure 3 As shown, the difference from Example 2 is that a drainage groove 20 is opened at the lower part of the porous dehumidification plate 4, a drainage port is opened on the side wall of the protection box 1, a one-way valve is connected to the drainage port, and the drainage groove 20 is connected to the one-way valve.

[0071] The specific implementation process is as follows: when the porous dehumidification plate 4 absorbs too much moisture, the drainage groove 20 will guide the excess moisture to flow out of the protection box 1 through the one-way valve, thereby keeping the dehumidification chamber dry.

[0072] Embodiment 4:

[0073] As attached Figure 7 As shown, the difference from Example 3 is that an intelligent dehumidification protection method for traditional Yao clothing includes the following steps:

[0074] Step 1, humidity monitoring: set the humidity threshold through the controller, and monitor the humidity in the storage frame 7 in real time through the hygrometer 19. When the humidity in the storage frame 7 exceeds the set humidity threshold, the clothing is transferred from the storage chamber to the dehumidification chamber.

[0075] Step 2: Dehumidification of clothing: The air in the dehumidification chamber is sucked by a negative pressure pump, and the air in the dehumidification chamber is dehumidified through the porous dehumidification plate 4, and then the dried air is transported back to the dehumidification chamber, and the clothing is dehumidified by the humidity difference principle, and the cycle is repeated until the humidity drops below the humidity threshold.

[0076] Step three, disinfection and sterilization: irradiate the clothing with ultraviolet light 6 to disinfect and sterilize the clothing.

[0077] Step 4: Storage and preservation: Put the clothing back into the storage chamber for preservation.

[0078] The specific implementation process is as follows: the staff first sets the threshold value of the storage humidity of the Yao traditional clothing through the controller, and monitors the humidity conditions in the storage frame 7 in real time through the hygrometer 19. When the humidity conditions in the storage frame 7 exceed the humidity threshold, the controller sends a forward signal to the stepper motor to rotate its output shaft in the forward direction, driving the drive gear 12 to rotate, and the drive gear 12 drives the drive rack 13 to move horizontally, driving the lifting frame 10 to move horizontally together, and the lifting frame 10 drives the storage frame 7 to move horizontally together, and under the guidance of the guide plate 14 and the guide rod 15, the storage frame 7 is guided to the dehumidification hole, so that the clothing is located in the dehumidification chamber.

[0079] When the clothes are transferred to the dehumidification chamber, the controller sends a start signal to the negative pressure pump and the heating wire, so that the negative pressure pump sucks the air in the dehumidification chamber and dehumidifies it through the porous dehumidification plate 4, and then transports the dehumidified air back to the dehumidification chamber, and the cycle repeats until the humidity drops below the humidity threshold.

[0080] After the clothes are transferred into the dehumidification chamber, the controller also sends a start signal to the ultraviolet lamp 6 at the same time, so that the ultraviolet lamp 6 irradiates the clothes to disinfect and sterilize the clothes.

[0081] After the disinfection and sterilization is completed, the controller sends a reverse signal to the stepper motor to store the storage frame back into the storage chamber for storage.

[0082] Obviously, the above embodiments are merely examples for the purpose of clear explanation, and are not intended to limit the implementation methods. For those skilled in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation methods here. The obvious changes or modifications derived therefrom are still within the scope of protection of the invention.

Claims

1. An intelligent dehumidification protection device for traditional Yao ethnic clothing, comprising a protection box (1), an opening and closing door (2) is hingedly connected to the upper part of one side of the protection box (1), characterized in that: It also includes a controller, and the inner wall of the protection box (1) is fixedly connected to a partition (3), and the partition (3) divides the interior of the protection box (1) into a dehumidification chamber and a storage chamber from top to bottom in sequence; The dehumidification chamber is provided with a dehumidification component for dehumidifying the traditional Yao costumes; The surface of the partition (3) is provided with dehumidification holes; the bottom of the partition (3) is slidably matched with a storage frame (7); a lifting frame (10) is provided below the storage frame (7); a plurality of lifting rods (11) are symmetrically hinged to the side wall of the lifting frame (10); and the ends of the lifting rods (11) away from the lifting frame (10) are hinged to the side wall of the storage frame (7); A driving member is fixedly connected to the inner wall of the storage chamber, and a controller is used to control the rotation of an output shaft of the driving member. A driving gear (12) is fixedly connected to the output shaft of the driving member, and a driving rack (13) is fixedly connected to the bottom of the lifting frame (10), and the driving gear (12) is meshed with the driving rack (13); The side wall of the lifting frame (10) is symmetrically fixedly connected with a plurality of sliding rods (8), and one end of the sliding rod (8) away from the lifting frame (10) is fixedly connected with a sliding block, and the inner side wall of the storage chamber is symmetrically fixedly connected with a sliding rail (9), and the sliding blocks are slidably matched with the adjacent sliding rail (9); A guide component for guiding the storage frame (7) is provided on one side of the storage frame (7); The outer side wall of the storage frame (7) is provided with an extrusion component for extruding the dehumidification component.

2. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 1 is characterized in that: The dehumidification component comprises a porous dehumidification plate (4) fixedly connected to the top of the partition (3), a pump component is fixedly connected to the inner wall of the dehumidification chamber, and a controller is used to control the suction of the pump component; A plurality of protective cylinders are fixedly connected inside the porous dehumidification plate (4), and heating wires are detachably connected inside the protective cylinders. The controller is used to control the heating operation of the heating wires.

3. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 2 is characterized in that: The guide assembly comprises a guide plate (14) fixedly connected to the bottom of the partition (3), an L-shaped guide groove is formed on the guide plate (14), a guide rod (15) is slidably fitted in the guide groove, and the end of the guide rod (15) away from the guide groove is fixedly connected to the side wall of the lifting rod (11) adjacent to it.

4. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 3 is characterized in that: The squeezing assembly comprises an extension rod (16) fixedly connected to one side of the storage frame (7), the extension rod (16) extending into the dehumidification chamber through the dehumidification hole, and one end of the extension rod (16) away from the storage frame (7) is rotatably connected to a squeezing roller (17).

5. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 4 is characterized in that: A sterilization plate (5) is fixedly connected to the top of the porous dehumidification plate (4), and a plurality of ultraviolet lamps (6) are fixedly connected to the bottom of the sterilization plate (5). The controller is used to control the switching operation of the ultraviolet lamps (6).

6. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 5 is characterized in that: The inner wall of the storage frame (7) is fixedly connected with an insect removal frame, and a solid insecticide (18) is placed in the insect removal frame.

7. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 6 is characterized in that: A hygrometer (19) is fixedly connected to the inner wall of the storage frame (7), and the controller is used to receive a humidity signal sent by the hygrometer (19) and control the operation of the driving member, the pump assembly, the heating wire and the ultraviolet lamp (6) based on the humidity signal.

8. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 7 is characterized in that: The protective tube is made of copper.

9. The intelligent Yao ethnic group traditional clothing dehumidification protection device according to claim 8 is characterized in that: A drainage groove (20) is provided at the bottom of the porous dehumidification plate (4), a drainage port is provided on the side wall of the protection box (1), a one-way valve is connected to the drainage port, and the drainage groove (20) is connected to the one-way valve.

10. An intelligent dehumidification protection method for traditional Yao clothing, implemented based on the intelligent dehumidification protection device for traditional Yao clothing according to any one of claims 1 to 9, characterized in that: The following steps are involved: Step 1, humidity monitoring: a humidity threshold is set by a controller, and the humidity condition in the storage frame (7) is monitored in real time by a hygrometer (19); when the humidity condition in the storage frame (7) exceeds the set humidity threshold, the clothing is transferred from the storage chamber to the dehumidification chamber; Step 2, dehumidifying the clothes: the air in the dehumidification chamber is sucked by the pump assembly, and the air in the dehumidification chamber is dehumidified through the porous dehumidification plate (4), and the dried air is then transported back to the dehumidification chamber to dehumidify the clothes according to the humidity difference principle, and the cycle is repeated until the humidity drops below the humidity threshold; Step 3: disinfection and sterilization: irradiating the clothing with an ultraviolet lamp (6) to disinfect and sterilize the clothing; Step 4: Storage and preservation: Put the clothing back into the storage chamber for preservation.