Moisture-proof cabinet capable of purifying in multiple directions

By designing clamps and sliding frames in moisture-proof cabinets, the problem of limited air circulation between dishes is solved, and the rapid drying and efficient storage of dishes is achieved, which improves the use effect of moisture-proof cabinets.

CN120477498AInactive Publication Date: 2025-08-15JIANGXI YUSHUN HOME FURNISHING CO LTD
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Patent Information

Application Number
CN202510694962.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When drying dishes in existing moisture-proof cabinets, the contact surfaces between the dishes form a closed space, resulting in limited air circulation and it is difficult to completely dry water stains on the bottom and contact surfaces, reducing drying efficiency and affecting the moisture-proof effect of the cabinet.

Method used

The bowl and dish are clamped and rotated with clamped parts. Combined with the design of air cooler and air outlet parts, the bowl and dish rotation and sliding frame movement are driven by the clamps to ensure that the air cooler can evenly dry the surface of the bowl and dish. At the same time, the sliding frame is used to make room to stack the bowl and dish, and the storage capacity is increased.

Benefits of technology

It realizes rapid drying of dishes, improves drying efficiency, shortens the drying cycle, and reduces bacterial growth through uniform air circulation, improves operational portability and storage capacity of the cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of household equipment, in particular to a multi-directional purification moisture-proof cabinet which comprises a cabinet body, a cabinet door is rotatably connected to one side of the cabinet body, ventilation pieces are fixedly connected to the two sides of the cabinet body, a plurality of ventilation holes are formed in the surfaces of the ventilation pieces in a linear penetrating mode, and an air cooling machine is fixedly connected to the inner sides of the ventilation pieces. The two ends of the air cooler are connected with air outlet pieces in a penetrating mode, the sides, away from each other, of the air outlet pieces are fixedly connected to the two ends of the inner side of the cabinet body, one side in the cabinet body is fixedly connected with a first double-shaft motor, output shafts at the two ends of the first double-shaft motor are fixedly connected with reciprocating lead screws, and the outer surfaces of the reciprocating lead screws are in threaded connection with clamping pieces. One end of the clamping piece is slidably connected to the inner wall of one side of the cabinet body, the other end of the clamping piece is soft, the upper surface of the clamping piece is inclined, and when the clamping piece is used for clamping dishes, the air cooler can quickly remove most of water in the dishes, so that the drying speed of the dishes is increased, and the drying efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of household appliances, in particular to a moisture-proof cabinet capable of multi-directional purification. Background Art

[0002] Moisture-proof cabinets are smart furniture devices specially designed to improve the air quality and control humidity levels in storage environments. They are mainly used in kitchens and other places with high requirements for humidity and air quality. By integrating multiple functional modules, they provide a dry, clean and healthy storage space, thereby preventing moisture inside the cabinet.

[0003] When the washed dishes are stacked inside the cabinet, a closed space is created between the contact surfaces of the dishes, which restricts air circulation. This makes it difficult for the air-cooled machine to dry water stains on the bottom and contact surfaces, thereby reducing the drying efficiency. In addition, the parts of the stacked dishes that are not completely dried will also reduce the moisture-proof effect of the cabinet.

[0004] Therefore, the present invention proposes a moisture-proof cabinet capable of multi-directional purification to remedy and improve the deficiencies of the prior art. Summary of the Invention

[0005] In view of the defects of the prior art, the present invention provides a moisture-proof cabinet capable of multi-directional purification, which can effectively solve the above-mentioned technical problems.

[0006] The technical implementation scheme of the present invention is: a moisture-proof cabinet with multi-directional purification, including a cabinet body, one side of the cabinet body is rotatably connected to a cabinet door, and two sides of the cabinet body are fixedly connected to an air permeable member, the surface of the air permeable member is linearly penetrated and provided with a plurality of air holes, the inner side of the air permeable member is fixedly connected to an air cooler, both ends of the air cooler are penetrated and connected to an air outlet member, the sides of the air outlet member away from each other are fixedly connected to the two ends of the inner side of the cabinet body, one side of the inner side of the cabinet body is fixedly connected to a first double-axis motor, the output shafts at both ends of the first double-axis motor are fixedly connected to a reciprocating screw, the outer surface of the reciprocating screw is threadedly connected to a clamping member, one end of the clamping member is slidably connected to the inner wall of one side of the cabinet body, the other end of the clamping member is soft, and the upper surface is inclined. When the dishes are supported by the clamping member, the air cooler and the air outlet member can dry the moisture inside the dishes.

[0007] More preferably, one side of the interior of the cabinet is rotatably connected to a missing gear, the outer surface of one end of the missing gear is transmission-connected to a first belt, one end of the first belt is transmission-connected to the outer surface of a reciprocating screw on one side, the inner wall of one side of the cabinet is rotatably connected to a screw, the top of the screw is fixedly connected to a bevel gear, one side of the missing gear is meshed with the outer surface of the bevel gear, the bottom end of the screw is rotatably connected to the bottom of the inner side of the cabinet, the outer surface of the screw is threadedly connected to a sliding rack, the outer surface of the sliding rack is slidably connected to the inner side of the cabinet, and when the dishes are driven downward by the sliding rack, it can not only make room for the dishes drying on the upper side, but also allow the dishes to be stacked on each other.

[0008] More preferably, the outer surface of the bottom of the screw is transmission-connected to a second belt, one end of the second belt is transmission-connected to another screw, the bottom end of the other screw is rotationally connected to the bottom of the inner side of the cabinet, and the outer surface of the other screw is threadedly connected to one side of the sliding frame. When the screws on both sides rotate simultaneously to drive the sliding frame up and down, the stability of the sliding frame during movement can be increased.

[0009] More preferably, racks are fixedly connected to the inside of both sides of the cabinet in opposite directions, the bottom of one end of the clamping member is rotatably connected to a roller, the bottom of the roller is fixedly connected to a spur gear, the outer surface of the spur gear is meshed with the outer surface of the rack, and when the clamping member moves to the side away from each other, the roller can be caused to rub against the bottom of the dishes and cause the dishes to rotate, so that the hot air can contact every surface of the dishes more evenly, so that the dishes can be dried quickly.

[0010] More preferably, the outer surface of the top of the roller is annularly fixedly connected with a plurality of friction blocks, which can increase the friction between the roller and the dishes to avoid slipping when the dishes are rotated.

[0011] More preferably, the upper surface of the cabinet is symmetrically fixedly connected to a second double-axis motor, the output shafts at both ends of the second double-axis motor are fixedly connected to a rotating rod, the ends of the rotating rods away from each other are rotatably connected to the upper surface of the cabinet, the outer surfaces of the ends of the rotating rods away from each other are fixedly connected to a worm, the four corners of the upper surface of the cabinet are rotatably connected to turbines, the outer surface of the worm is meshed with the outer surface of the turbine, and a rotating part is fixedly connected between the two sides of the turbines close to each other, and a slide groove is provided on the inner side of the two ends of the rotating part, and fixed parts are fixedly connected to both sides of the upper surface of the cabinet, and multiple supporting racks are slidably connected to the inner side of the fixed part, and the two ends of the supporting rack are slidably connected in the slide groove of the rotating part, and the slide groove of the rotating part is squeezed and fitted with the two ends of the supporting rack. When the supporting rack moves back and forth, the stacked dishes can enter the interior of the cabinet one by one for drying.

[0012] More preferably, an elastic rubber block is fixedly connected to the upper surface of the cabinet, and the elastic rubber block can cushion the dishes when they slide downward to prevent the dishes from breaking.

[0013] More preferably, a pressing piece is fixedly connected between the outer surfaces of the rotating rods, and when the pressing piece is swung, the dishes can be squeezed so that the dishes can smoothly enter the interior of the cabinet.

[0014] Compared with the prior art, the present invention has the following advantages:

[0015] 1. When the dishes are clamped by the clamping members of the present invention, the air cooler can quickly remove most of the moisture in the dishes, thereby accelerating the drying speed of the dishes and improving the drying efficiency; as the dishes are dried, the sliding rack can drive the dishes to move downward, thereby making room for the dishes being dried on the upper surface, and when the dishes are dried, they can be stacked, thereby increasing the storage capacity inside the cabinet.

[0016] 2. When the outer surface of the spur gear meshing the rack rotates, the roller can fit the bottom of the dishes and drive the dishes to rotate, so that the hot air can contact every surface of the dishes more evenly, so that the moisture can evaporate quickly and comprehensively, thereby shortening the entire drying cycle. Comprehensive drying can also reduce the growth of bacteria caused by residual moisture.

[0017] 3. The present invention enables the stacked dishes to be moved downward one by one for drying when the receiving rack moves back and forth, so that the user only needs to place the washed dishes in the designated position, which greatly facilitates the user's daily operation and improves the portability of the operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0019] Figure 2 It is a structural schematic diagram of the supporting assembly of the present invention.

[0020] Figure 3 Schematic diagram of the structure of the stacking assembly of the present invention.

[0021] Figure 4 For the present invention Figure 3 Enlarged schematic diagram of point A in the middle.

[0022] Figure 5 It is a structural schematic diagram of the intermittent placement component of the present invention.

[0023] The markings of the components in the accompanying drawings are as follows: 1-cabinet body, 11-cabinet door, 12-ventilation part, 13-air cooler, 14-air outlet part, 2-first dual-axis motor, 21-reciprocating screw, 22-clamping part, 23-sliding frame, 24-screw, 25-bevel gear, 26-first belt, 27-second belt, 28-missing gear, 3-rack, 31-spur gear, 32-roller, 33-friction block, 4-second dual-axis motor, 41-rotating rod, 42-pressing part, 43-worm, 44-turbine, 45-rotating part, 46-receiving frame, 47-fixing part, 48-elastic rubber block. DETAILED DESCRIPTION

[0024] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0025] Next, combine the Figure 1-Figure 5 A specific embodiment of the present invention is described in detail.

[0026] Reference Attachment Figure 1 A moisture-proof cabinet with multi-directional purification includes a cabinet body 1, which is used to store dishes. The front side of the cabinet body 1 is rotatably connected to a cabinet door 11, and both sides of the cabinet body 1 are fixedly connected to air-permeable parts 12. The surface of the air-permeable part 12 is linearly penetrated with a plurality of air holes. The air-permeable part 12 is used to keep the air inside the cabinet body 1 circulating. The inner wall of the cabinet body 1 is fixedly connected to an air cooler 13, and the two ends of the air cooler 13 are through-connected with air outlet parts 14. The two ends of the air outlet part 14 are fixedly connected to the inner walls on both sides of the cabinet body 1. The air cooler 13 and the air outlet part 14 are used to dry the inside of the cabinet body 1.

[0027] When the moisture-proof cabinet is in use, the user can stack washed dishes on the inner side of the cabinet 1 , and the dishes can be dried by the air cooler 13 and the air outlet 14 , so that the interior of the cabinet 1 can be kept dry.

[0028] As described in the background technology, when the washed dishes are stacked inside the cabinet 1, a sealed space is formed between the contact surfaces of the dishes, which restricts air circulation. As a result, it is difficult for the air cooler 13 to dry the water stains on the bottom and the contact surfaces during drying, thereby reducing the drying efficiency. In addition, the parts of the dishes that are not completely dried where they are stacked will also reduce the moisture-proof effect of the cabinet 1.

[0029] refer to Figure 2-Figure 3In order to solve the problem that stacked dishes cannot be dried thoroughly, this embodiment adopts the following technical solution: a first dual-axis motor 2 is fixedly connected to the inner side of the cabinet 1, and the output shafts at both ends of the first dual-axis motor 2 are fixedly connected to a reciprocating screw 21. The first dual-axis motor 2 is used to drive the reciprocating screw 21 to rotate, and the outer surface of the reciprocating screw 21 is threadedly connected to a clamping member 22. The rear end of the clamping member 22 is slidably connected to the inner wall of the cabinet 1. The reciprocating screw 21 is used to drive the clamping member 22 to slide left and right, and the upper surface of the clamping member 22 is used to support the dishes.

[0030] The inner wall of the cabinet 1 is rotatably connected to a missing gear 28, and the outer surface of the left end of the missing gear 28 is transmission-connected to a first belt 26. The rear end of the first belt 26 is transmission-connected to the outer surface of the right reciprocating screw 21. The reciprocating screw 21 on the right is used to drive the missing gear 28 to rotate through the first belt 26. The right side of the cabinet 1 is rotatably connected to a screw rod 24, and the bottom end of the screw rod 24 is rotationally connected to the upper surface of the bottom of the cabinet 1. The top of the screw 24 is fixedly connected to a bevel gear 25. The right side of the missing gear 28 is meshed with the outer surface of the bevel gear 25. The missing gear 28 is used to rotate through The bevel gear 25 drives the screw 24 to rotate. The outer surface of the screw 24 is threadedly connected to the sliding frame 23. The outer surface of the sliding frame 23 is slidably connected to the inside of the cabinet 1. The screw 24 is used to drive the sliding frame 23 to move up and down. The outer surface of the bottom end of the screw 24 is transmission-connected to the second belt 27. The left end of the second belt 27 is transmission-connected to another screw 24. The bottom end of the other screw 24 is fixedly connected to the upper surface of the bottom of the cabinet 1. The outer surface of the other screw 24 is transmission-connected to the inner side of the sliding frame 23. The other sliding frame 23 is used to improve the stability of the sliding frame 23 during movement.

[0031] When the moisture-proof cabinet is in use, the user can place the washed dishes on the upper surface of the cabinet body 1. At this time, the dishes can fall from the upper surface of the cabinet body 1 between the upper surfaces of the clamping parts 22, so that the upper surfaces of the clamping parts 22 can support the dishes. The air cooler 13 and the air outlet part 14 can dry the inner and outer surfaces of the dishes. As the dishes are dried, the output shaft of the first dual-axis motor 2 can drive the reciprocating screw 21 to rotate. When the reciprocating screw 21 rotates, it can prompt the clamping parts 22 to move to the side away from each other, so that the dried dishes can fall from the upper surface of the clamping parts 22 to the upper surface of the sliding rack 23. When the reciprocating screw 21 drives the clamping parts 22 to expand, the rotation of the reciprocating screw 21 on the right side can drive the missing gear 28 to rotate simultaneously through the first belt 26. At this time, when the missing gear 28 rotates counterclockwise, the right side will not engage with the outer surface of the bevel gear 25.

[0032] As the reciprocating screw 21 rotates again to cause the clamping members 22 to move toward each other, the reciprocating screw 21 on the right side can drive the missing gear 28 to rotate again through the first belt 26. At this time, when the missing gear 28 rotates counterclockwise, it can drive the screw 24 to rotate through the bevel gear 25. As the screw 24 rotates, it can cause the sliding rack 23 to move downward. When the screw 24 rotates, it can drive the other screw 24 to rotate simultaneously through the second belt 27, causing the two screws 24 to drive the sliding rack 23 downward at the same time. When the sliding rack 23 moves downward on the inside of the cabinet 1, it can drive the dried dishes to move at the same time. At this time, the upper surface of the clamping member 22 can support another dish. Such reciprocating operation can quickly remove most of the moisture in the dishes, thereby accelerating the drying speed of the dishes and improving the drying efficiency. As the sliding rack 23 drives the dishes to gradually move downward, it can not only make room for the dishes being dried on the upper surface, but also allow the dried dishes to be stacked, thereby increasing the storage capacity inside the cabinet 1.

[0033] The front end of the clamping member 22 is soft, and the upper surface of the front end is inclined. Therefore, when the front end of the clamping member 22 supports dishes, it can not only prevent the dishes from being scratched or damaged during the supporting process, but also provide a certain cushioning effect when the dishes fall. The inclined front side helps the dishes to slide naturally to the center position when supporting, thereby achieving automatic centering.

[0034] When the clamping member 22 supports and dries dishes, the air cooler 13 and the air outlet 14 can only blow air toward the dishes from one direction, resulting in insufficient air circulation where the clamping member 22 contacts the dishes, thereby extending the overall drying time.

[0035] refer to Figure 3-Figure 4 In order to solve the problem that the place where the dishes contact the clamping member 22 cannot get air circulation, this embodiment adopts the following technical solution: the two ends of the inner side of the cabinet 1 are fixedly connected with racks 3 in opposite directions, and the inner side of the front end of the clamping member 22 is rotatably connected with rollers 32. The clamping member 22 is used to drive the rollers 32 to move, and the outer surfaces of the rollers 32 are used to drive the dishes to rotate. The bottom of the rollers 32 is fixedly connected with spur gears 31, which are used to drive the rollers 32 to rotate. The outer surface of the spur gear 31 is engaged with the outer surface of the rack 3, and the outer surface of the top of the friction block 33 is annular and fixedly connected with multiple friction blocks 33. The friction block 33 is used to increase the friction between the roller 32 and the dishes.

[0036] When the dishes are placed on the upper surface of the front side of the clamping member 22, the bottom of the dishes can be in contact with the outer surface of the roller 32. As the clamping member 22 drives the roller 32 to move slowly to both sides, the roller 32 can drive the spur gear 31 to move at the same time when it moves to both sides. The spur gear 31 can mesh with the outer surface of the rack 3 to move, causing the spur gear 31 to rotate during the movement. As the spur gear 31 rotates, the friction block 33 can be driven to rotate simultaneously through the roller 32. The roller 32 rotates in contact with the bottom of the dishes, so that the dishes can rotate with the roller 32. When the dishes rotate on the upper surface of the clamping member 22, the contact between the outer surface of the dishes and the upper surface of the clamping member 22 can gradually be separated. At this time, the air cooler 13 and the air outlet member 14 can more evenly contact every surface of the dishes, so that the moisture can evaporate quickly and comprehensively, thereby shortening the entire drying cycle.

[0037] It should be noted that, since the two racks 3 are fixed in opposite positions, the spur gear 31 rotates in the same direction when it wants to move to both sides and mesh with the outer surface of the rack 3 .

[0038] Since the dishes are dropped by the clamping member 22 moving to both sides, the dishes need to be placed on the upper surface of the clamping member 22 in sequence, which makes the operation more complicated.

[0039] refer to Figure 5 In order to solve the problem of needing to put the dishes in one by one, this embodiment adopts the following technical solution: the upper surface of the second dual-axis motor 4 is symmetrically fixedly connected to the second dual-axis motor 4, the output shafts at both ends of the second dual-axis motor 4 are fixedly connected to the rotating rod 41, the ends of the rotating rods 41 away from each other are rotatably connected to the upper surface of the cabinet 1, the outer surfaces of the ends of the rotating rods 41 away from each other are fixedly connected to the worm 43, the second dual-axis motor 4 is used to drive the worm 43 to rotate through the rotating rod 41, the four corners of the upper surface of the cabinet 1 are rotatably connected to the turbine 44, the outer surface of the turbine 44 is meshed with the outer surface of the worm 43, and the worm 43 is used to rotate. To drive the turbine 44 to rotate, the sides of the turbines 44 that are close to each other are fixedly connected with rotating parts 45, and the turbine 44 is used to drive the rotating part 45 to rotate. The inner sides of both ends of the rotating part 45 are provided with sliding grooves, and both sides of the upper surface of the cabinet 1 are fixedly connected with fixing parts 47. The inner sides of the fixing parts 47 are slidably connected with multiple receiving racks 46, and the receiving racks 46 are used to block dishes. The fixing parts 47 are used to limit the sliding of the receiving racks 46. Both ends of the receiving racks 46 are slidably connected in the sliding grooves of the rotating part 45. The sliding grooves of the rotating part 45 are squeezed and matched with the two ends of the receiving racks 46, and the rotating part 45 is used to drive the receiving racks 46 to slide.

[0040] When the user stacks the washed dishes together, the stacked dishes can be placed on the upper surface of the cabinet 1. During the placement of the dishes, the outer surfaces of the bottom rotating member 45 can support the bottom of the dishes, thereby preventing the dishes from sliding downward. When the dishes need to be placed inside the cabinet 1, the output shafts at both ends of the second dual-axis motor 4 can drive the worm 43 to rotate through the rotating rod 41. When the worm 43 rotates, it can cause the turbine 44 to rotate toward the side closer to the second dual-axis motor 4. When the turbine 44 rotates, it can drive the rotating member 45 to rotate. When the rotating member 45 rotates, the sliding grooves at both ends of the rotating member 45 can squeeze the receiving rack 46, causing the bottom receiving rack 46 to move away from each other, while the top receiving rack 46 can slide toward each other. When the bottom receiving rack 46 slides, the bottom dish can be moved downward into the interior of the cabinet 1. When the top receiving rack 46 moves, it can support the remaining dishes, so that the stacked dishes can slide down one by one.

[0041] Furthermore, since the worm 43 and the turbine 44 are self-locking, when the receiving rack 46 supports dishes, the receiving rack 46 will not drive the rotating member 45 and the turbine 44 to rotate due to the squeezing of the dishes, thereby increasing the stability of the receiving rack 46 when supporting dishes.

[0042] As the second dual-axis motor 4 drives the worm 43 to rotate again, the bottom receiving racks 46 can move toward each other, while the top receiving racks 46 can move away from each other. At this time, the top receiving racks 46 will stop supporting the dishes, and as the dishes slide down, the bottom receiving racks 46 can support the dishes again, thereby repeating the operation.

[0043] The upper surface of the cabinet 1 is fixedly connected with an elastic rubber block 48, which is used to cushion the dishes. A pressing piece 42 is fixedly connected between the outer surfaces of the rotating rod 41, and the rotating rod 41 is used to drive the pressing piece 42 to swing, and the pressing piece 42 is used to squeeze the dishes. As the bottom receiving rack 46 moves to both sides and the dishes slide down, the dishes can slide to the upper surface of the elastic rubber block 48, and the elastic rubber block 48 can provide cushioning for the dishes to prevent them from breaking. As the output shaft of the second dual-axis motor 4 drives the rotating rod 41 to rotate, the rotating rod 41 can drive the pressing piece 42 to swing toward the side close to each other, and the pressing piece 42 can squeeze the dishes when it swings, so that the dishes can pass through the upper surface of the elastic rubber block 48 and fall into the upper surface of the clamping piece 22, so that the dishes can be squeezed into the inner side of the cabinet 1 for drying.

[0044] As the dishes slide into the interior of the cabinet 1, the output shaft of the second dual-axis motor 4 can drive the rotating rod 41 to rotate in the opposite direction, and when the rotating rod 41 rotates in the opposite direction, it can drive the pressing member 42 to reset and swing, so that the pressing member 42 returns to its initial state, making it convenient for the pressing member 42 to squeeze the dishes later.

[0045] Although the present disclosure has been shown and described with reference to certain exemplary embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made to the present disclosure without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above-described embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.

Claims

1. A moisture-proof cabinet capable of multi-directional purification, comprising a cabinet body (1), wherein one side of the cabinet body (1) is rotatably connected to a cabinet door (11), and both sides of the cabinet body (1) are fixedly connected to air-permeable members (12), the surface of the air-permeable member (12) is provided with a plurality of air holes extending in a straight line, the inner side of the air-permeable member (12) is fixedly connected to an air-cooling machine (13), and both ends of the air-cooling machine (13) are connected to air outlet members (14), and the sides of the air outlet members (14) that are away from each other are fixedly connected to the two ends of the inner side of the cabinet body (1), characterized in that: A first dual-axis motor (2) is fixedly connected to one side of the interior of the cabinet (1), and the output shafts at both ends of the first dual-axis motor (2) are fixedly connected to a reciprocating screw (21), and the outer surface of the reciprocating screw (21) is threadedly connected to a clamping member (22), one end of the clamping member (22) is slidably connected to the inner wall of one side of the cabinet (1), and the other end of the clamping member (22) is soft, and the upper surface is inclined.

2. A moisture-proof cabinet capable of multi-directional purification according to claim 1, characterized in that: One side of the cabinet (1) is rotatably connected to a missing gear (28), the outer surface of one end of the missing gear (28) is transmission-connected to a first belt (26), one end of the first belt (26) is transmission-connected to the outer surface of one side of the reciprocating screw (21), the inner wall of one side of the cabinet (1) is rotatably connected to a screw (24), the top of the screw (24) is fixedly connected to a bevel gear (25), one side of the missing gear (28) is meshed with the outer surface of the bevel gear (25), the bottom end of the screw (24) is rotatably connected to the bottom of the inner side of the cabinet (1), the outer surface of the screw (24) is threadedly connected to a sliding frame (23), and the outer surface of the sliding frame (23) is slidably connected to the inner side of the cabinet (1).

3. The moisture-proof cabinet capable of multi-directional purification according to claim 2, characterized in that: The outer surface of the bottom of the screw rod (24) is transmission-connected to a second belt (27), one end of the second belt (27) is transmission-connected to another screw rod (24), the bottom end of the other screw rod (24) is rotationally connected to the bottom of the inner side of the cabinet (1), and the outer surface of the other screw rod (24) is threadedly connected to one side of the sliding frame (23).

4. The moisture-proof cabinet capable of multi-directional purification according to claim 1, characterized in that: The interior of both sides of the cabinet (1) is fixedly connected with racks (3) in opposite directions, the bottom of one end of the clamping member (22) is rotatably connected with a roller (32), the bottom of the roller (32) is fixedly connected with a spur gear (31), and the outer surface of the spur gear (31) is meshed with the outer surface of the rack (3).

5. The moisture-proof cabinet capable of multi-directional purification according to claim 4, characterized in that: The outer surface of the top of the roller (32) is annular and fixedly connected to a plurality of friction blocks (33).

6. The moisture-proof cabinet capable of multi-directional purification according to claim 1, characterized in that: The upper surface of the cabinet (1) is symmetrically fixedly connected to a second dual-axis motor (4), the output shafts at both ends of the second dual-axis motor (4) are fixedly connected to a rotating rod (41), the ends of the rotating rod (41) are rotatably connected to the upper surface of the cabinet (1), the outer surfaces of the ends of the rotating rod (41) are fixedly connected to a worm (43), the four corners of the upper surface of the cabinet (1) are rotatably connected to a turbine (44), the outer surface of the worm (43) and the outer surface of the turbine (44) are symmetrically fixedly connected to the upper surface of the cabinet (1), the output shafts at both ends of the second dual-axis motor (4) are fixedly connected to a rotating rod (41), the outer surface of the worm (43) and the outer surface of the turbine (44) are symmetrically connected to the upper surface of the cabinet (1), the output shafts at both ends of the second dual-axis motor (4) are fixed ... The surfaces are engaged with each other, and a rotating member (45) is fixedly connected between the sides of the two turbines (44) that are close to each other. A sliding groove is provided on the inner side of both ends of the rotating member (45). Fixed members (47) are fixedly connected to both sides of the upper surface of the cabinet (1). The inner sides of the fixed members (47) are slidably connected to multiple receiving frames (46). Both ends of the receiving frames (46) are slidably connected to the sliding grooves of the rotating member (45), and the sliding grooves of the rotating member (45) are squeezed and matched with the two ends of the receiving frames (46).

7. The moisture-proof cabinet capable of multi-directional purification according to claim 6, characterized in that: An elastic rubber block (48) is fixedly connected to the upper surface of the cabinet (1).

8. The moisture-proof cabinet capable of multi-directional purification according to claim 7, characterized in that: A pressing piece (42) is fixedly connected between the outer surfaces of the rotating rod (41).