Solid wood furniture wardrobe with moisture-proof function

By introducing a dual-axis motor-driven dehumidification mechanism and multi-stage bevel gear transmission into solid wood wardrobes, the problem of moisture prevention in humid environments is solved, achieving efficient and convenient moisture prevention and stable power transmission.

CN120959519APending Publication Date: 2025-11-18QINGDAO JIAXISHUN WOOD IND CO LTD
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Patent Information

Application Number
CN202511191532.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-25
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing solid wood wardrobes are prone to swelling, deformation, and cracking in humid environments, causing clothes inside to become damp and moldy. Furthermore, existing moisture-proofing methods are complex to operate, costly, and ineffective. The sliding door limit and moisture-proofing operation are not coordinated, and the power transmission stability is poor.

Method used

The dehumidification mechanism, driven by a dual-axis motor, combines an exhaust fan, desiccant blocks, and a stirring rod. Through a linkage component, it achieves automatic sliding door limiting and automatic stirring of the desiccant blocks. Equipped with quick-assembly components and multi-stage bevel gear transmission, it ensures stable power transmission.

Benefits of technology

It achieves efficient moisture protection, is easy to operate, automatically limits the sliding door after closing, makes it easy to replace the desiccant block, and has stable power transmission, thus improving the moisture protection performance and ease of use of the wardrobe.

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Abstract

The invention discloses a solid wood furniture wardrobe with a damp-proof function, and belongs to the field of wardrobes, the solid wood furniture wardrobe comprises a solid wood wardrobe body, sliding grooves are transversely formed in the inner top wall and the inner bottom wall of the solid wood wardrobe body, a first sliding door and a second sliding door are slidably connected to the inner walls of the sliding grooves respectively, and a dehumidification mechanism is installed on the side edge of the solid wood wardrobe body. The whole wardrobe is moistureproof during use; the dehumidification mechanism comprises a first through hole and a second through hole which are formed in the surfaces of the two sides of the solid wood cabinet body, and the dehumidification mechanism composed of a double-shaft motor, an exhaust fan, a drying agent block, a stirring rod and stirring blades is arranged, so that the beneficial effect of efficient moisture prevention is achieved; when the double-shaft motor runs, one output end drives the exhaust fan to exhaust humid air in the solid wood cabinet body, and the other output end drives the stirring rod and the stirring blades to rotate through the linkage assembly to stir the drying agent blocks, so that the drying agent blocks can be in more sufficient contact with air entering the cabinet body, and the drying effect is enhanced.
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Description

Technical Field

[0001] This invention relates to the field of wardrobe technology, and more particularly to a solid wood wardrobe with moisture-proof function. Background Technology

[0002] Solid wood wardrobes are widely used in homes and hotels for clothing storage due to their natural materials and beautiful texture. However, solid wood is highly absorbent and is prone to swelling, deformation, and cracking in humid environments. This not only damages the wardrobe's appearance and lifespan but also causes the clothes inside to become damp, moldy, and produce odors, resulting in economic losses and inconvenience for users. Therefore, the need for moisture-proofing is urgent.

[0003] Current common methods of moisture control have many shortcomings. In terms of ventilation, regularly opening wardrobe doors for ventilation is difficult to control in terms of time. Short periods are ineffective, while long periods can worsen internal moisture in humid weather. Furthermore, it lacks sustainability and cannot regulate humidity in real time.

[0004] Traditional desiccants are also inconvenient to use. When placed in a fixed position, their contact area with the air is limited, resulting in uneven drying. They also need to be replaced regularly after absorbing moisture, which is a cumbersome process. Removing items from the wardrobe can easily damage or mess up the items.

[0005] Existing moisture-proof wardrobes have complex structures, some employing intricate electronic control systems. Installation and debugging are costly and difficult, and repairs are challenging, requiring professional personnel and considerable time. Furthermore, operation is inconvenient, requiring users to manually activate or deactivate the moisture-proof function through multiple steps. When using sliding door solid wood wardrobes for moisture protection, the sliding door's limiting mechanism and the moisture-proofing operation are not coordinated. After the sliding door is closed, it can easily slide open again due to external force or gravity, disrupting the moisture-proof environment; the activation of dehumidification equipment and other moisture-proofing operations are not effectively linked to the closing of the sliding door, increasing the number of steps required to use the wardrobe.

[0006] For moisture-proof wardrobes with automatic desiccant mixing functions, the power transmission stability is poor. Belt or chain drives are prone to loosening and wear, resulting in high power loss, low transmission efficiency, uneven rotation speed of the mixing device, affecting the desiccant mixing effect, reducing moisture-proof performance, shortening equipment lifespan, and increasing maintenance costs. Therefore, we propose a solid wood wardrobe with moisture-proof function. Summary of the Invention

[0007] The purpose of this invention is to solve the problems in the prior art by proposing a solid wood wardrobe with moisture-proof function.

[0008] To achieve the above objectives, the present invention adopts the following technical solution: A solid wood wardrobe with moisture-proof function includes a solid wood cabinet body. The inner top wall and inner bottom wall of the solid wood cabinet body are horizontally provided with sliding grooves. Sliding door one and sliding door two are slidably connected to the inner wall of the sliding grooves respectively. A dehumidification mechanism is installed on the side of the solid wood cabinet body for moisture-proofing during the use of the entire wardrobe. The dehumidification mechanism includes through holes one and two on both sides of the solid wood cabinet. A cross plate is fixedly installed on the inner wall of through hole one, and a dual-axis motor is fixedly installed at the center of the cross plate. An exhaust fan is fixedly connected to one output end of the dual-axis motor to work with through hole one to exhaust the air inside the solid wood cabinet. A filter disc is fixedly installed on the inner wall of the second through hole, and a filter disc is placed on the inner wall of the second through hole. A desiccant block is placed inside the second through hole for drying the air as it passes through the cross plate into the solid wood cabinet. A stirring rod is rotatably connected to the center of the filter disc via a bearing, and stirring blades are fixedly installed around the stirring rod to stir the desiccant block and achieve a better dehumidification effect. The solid wood cabinet, the dual-axis motor, and the stirring rod are connected by a linkage component, which is used to simultaneously stir the desiccant block during the operation of the exhaust fan; The solid wood cabinet body, sliding door one, and sliding door two are connected by a limiting component, which is used to limit the sliding door one and sliding door two after they are slid closed, so as to prevent them from accidentally sliding open due to external force.

[0009] Preferably, the linkage assembly includes a bevel gear one fixedly installed at the other output end of the dual-axis motor and a fixing block one fixedly installed on the inner side wall of the solid wood cabinet. The fixing block one is rotatably connected to a shaft rod one via a bearing. The upper and lower ends of the shaft rod one are respectively fixedly installed with bevel gear two and bevel gear three. One end of the stirring rod is fixedly installed with bevel gear four. The inner bottom wall of the solid wood cabinet is fixedly installed with a fixing block two. The fixing block two is rotatably connected to a shaft rod two via a bearing. Both ends of the shaft rod two are fixedly installed with bevel gear five. A clothes hanging rod is installed between the two fixing blocks one for hanging clothes hangers.

[0010] Preferably, the limiting component includes a grooved box fixedly installed on the bottom wall of the solid wood cabinet, a connecting rod fixedly welded to the back of the sliding door one and the sliding door two, a ball one fixedly welded to one end of the connecting rod, a plug-in rod extending transversely through the grooved box, and a ball two fixedly welded to one end of the plug-in rod for contacting the ball one and driving the displacement of the plug-in rod; A socket block is fixedly installed on the periphery of the plug rod, and the socket block is slidably connected to the inner wall of the groove box. A spring is sleeved on the periphery of the plug rod, and a switch control structure is connected between the plug rod and the dual-axis motor.

[0011] Preferably, the switch control structure includes a control switch fixedly installed on the inner wall of the solid wood cabinet and a touch rod fixedly connected to the other end of the plug rod. The control switch and the dual-axis motor are electrically connected by a wire, and the wire is laid on the inner wall of the solid wood cabinet.

[0012] Preferably, a quick-release assembly is connected between the solid wood cabinet and the second filter tray, which is used to quickly disassemble the second filter tray to replace the desiccant block; The quick-assembly assembly includes a placement slot on the side of the solid wood cabinet and an iron block fixedly installed around the second filter disc. A strong magnet is embedded in the inner bottom wall of the placement slot.

[0013] Preferably, there are two bevel gears, one of which meshes with the first bevel gear, and the other meshes with the fourth bevel gear.

[0014] Preferably, there are two bevel gears (two second-order and two bevel gears (two fifth-order), with one bevel gear two and one bevel gear five arranged as a group, and the group of bevel gear two and bevel gear five meshing together.

[0015] Preferably, the iron block is placed on the inner wall of the placement groove, and the size of the placement groove is adapted to the design size of the iron block, and the strong magnetic block is attracted and connected to the iron block.

[0016] Preferably, one end of the spring is fixedly connected to the inner end wall of the groove box, and the other end of the spring is fixedly connected to one end surface of the sleeve block.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. By setting up a dehumidification mechanism consisting of a dual-shaft motor, an exhaust fan, desiccant blocks, and a stirring rod and blades, a highly efficient moisture-proof effect is achieved. When the dual-shaft motor is running, one output end drives the exhaust fan to expel the humid air inside the solid wood cabinet, while the other output end drives the stirring rod and blades to rotate through a linkage component, stirring the desiccant blocks. This allows the desiccant blocks to come into more full contact with the air entering the cabinet, enhancing the drying effect and thus comprehensively improving the moisture-proof performance of the wardrobe, effectively protecting the solid wood cabinet and the clothes inside from moisture damage.

[0018] 2. By setting up a limit and switch control structure consisting of a connecting rod, ball one, plug-in rod, ball two, socket block, spring, control switch, and touch rod, the beneficial effects of convenient and safe operation are achieved. When the sliding door slides closed, ball one pushes ball two, causing the plug-in rod to move. The socket block compresses the spring, and at the same time, the touch rod touches the control switch, starting the dual-axis motor. The spring force keeps the plug-in rod in position, limiting the sliding door. When the sliding door is opened, pushing the sliding door causes ball one to pass ball two. At this time, the spring pushes the plug-in rod back to its original position. The touch rod touches the control switch again during the period when ball one passes ball two, thus disconnecting the power supply to the dual-axis motor. This design closely links the opening and closing of the sliding door with the operation of the dual-axis motor, making operation simple and convenient, and preventing damage to the moisture-proof environment inside the wardrobe due to accidental sliding opening of the sliding door.

[0019] 3. By incorporating a quick-release assembly consisting of a placement slot, an iron block, and a strong magnet, the desiccant block replacement is made convenient. When the desiccant block needs replacing, simply pull the filter tray two to separate the iron block from the strong magnet, allowing for quick removal of the filter tray two and replacement of the desiccant block. After replacement, place the iron block back into the placement slot; the strong magnet will attract the iron block, securing the filter tray two in place. This quick-release structure greatly simplifies the desiccant block replacement process, saving time and effort and ensuring the wardrobe maintains excellent moisture-proof performance.

[0020] 4. By setting up a linkage assembly composed of multiple meshing bevel gears, a stable and efficient power transmission effect is achieved. When the dual-shaft motor is running, the power is stably transmitted to the stirring rod through the meshing transmission between bevel gears one, three, two, and five, allowing the stirring rod to rotate accurately at the set speed to stir the desiccant blocks. This multi-stage bevel gear transmission structure effectively reduces power loss during transmission, improves transmission efficiency, ensures the synchronization and stability of the exhaust fan operation and desiccant block stirring, and further enhances the moisture-proof performance of the wardrobe. Attached Figure Description

[0021] Figure 1 This is a three-dimensional schematic diagram of a solid wood wardrobe with moisture-proof function proposed in this invention; Figure 2 This is a three-dimensional first view of a solid wood wardrobe with moisture-proof function after the sliding door has been removed, as proposed in this invention. Figure 3 This is a two-dimensional second view of a solid wood wardrobe with moisture-proof function after the sliding door has been removed, as proposed in this invention. Figure 4 This is a three-dimensional third view of a solid wood wardrobe with moisture-proof function after the sliding door has been removed, as proposed in this invention. Figure 5This is a side sectional view of the structure of a solid wood wardrobe with moisture-proof function proposed in this invention; Figure 6 This invention proposes a solid wood wardrobe with moisture-proof function. Figure 2 Enlarged view of the structure at point A in the middle; Figure 7 This invention proposes a solid wood wardrobe with moisture-proof function. Figure 3 Enlarged view of the structure at point B; Figure 8 This invention proposes a solid wood wardrobe with moisture-proof function. Figure 3 Enlarged view of the structure at point C; Figure 9 This invention proposes a solid wood wardrobe with moisture-proof function. Figure 4 Enlarged view of the structure at point D; Figure 10 This invention proposes a solid wood wardrobe with moisture-proof function. Figure 5 Enlarged view of the structure at point E in the middle.

[0022] In the diagram: 1. Solid wood cabinet; 2. Sliding groove; 3. Sliding door one; 4. Sliding door two; 5. Through hole one; 6. Through hole two; 7. Cross plate; 8. Dual-shaft motor; 9. Exhaust fan; 10. Filter disc one; 11. Filter disc two; 12. Desiccant block; 13. Stirring rod; 14. Stirring blade; 15. Bevel gear one; 16. Fixing block one; 17. Shaft rotating rod one; 18. Bevel gear two; 19. Cone... 20. Bevel gear 3; 21. Fixed block 2; 22. Shaft rotating rod 2; 23. Bevel gear 5; 24. Groove box; 25. Connecting rod; 26. Ball 1; 27. Insert rod; 28. Ball 2; 29. ​​Sleeve block; 30. Spring; 31. Contact rod; 32. Control switch; 33. Wire; 34. Placement slot; 35. Iron block; 36. Strong magnetic block; 37. Clothes hanging rod. Detailed Implementation

[0023] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0024] Example, refer to Figure 1-10A moisture-proof solid wood wardrobe includes a solid wood cabinet body 1. The inner top and bottom walls of the cabinet body 1 have horizontally opening sliding grooves 2. Sliding doors 3 and 4 are slidably connected to the inner walls of the sliding grooves 2. A dehumidification mechanism is installed on the side of the cabinet body 1, specifically as follows: through holes 5 and 6 are opened on both sides of the cabinet body 1. A cross plate 7 is fixedly installed on the inner wall of through hole 5. A dual-axis motor 8 is fixedly installed at the center of the cross plate 7. One output end of the dual-axis motor 8 is fixedly connected to an exhaust fan 9. The exhaust fan 9, in conjunction with through hole 5, exhausts the air inside the cabinet body 1. A filter disc 10 and a filter disc 11 are fixedly installed on the inner wall of through hole 6. A desiccant block 12 is placed inside through hole 6, allowing the air to be dried as it passes through the cross plate 7 into the cabinet body 1. A stirring rod 13 is rotatably connected to the center of the filter disc 10 via a bearing. Stirring blades 14 are fixedly installed around the stirring rod 13 to stir the desiccant block 12 for better dehumidification. A linkage assembly is connected between the solid wood cabinet 1, the dual-axis motor 8, and the stirring rod 13 to synchronously stir the desiccant block 12 during the operation of the exhaust fan 9. A limiting component is connected between the solid wood cabinet 1, sliding door 3, and sliding door 4 to limit the sliding doors after they are closed, preventing accidental opening due to external force. Through this structure, the wardrobe achieves its moisture-proof function, and the sliding doors are limited after closing, ensuring the stability of the moisture-proof environment inside the wardrobe.

[0025] Furthermore, the linkage assembly includes a bevel gear 15 fixedly installed at the other output end of the dual-axis motor 8 and a fixing block 16 fixedly installed on the inner side wall of the solid wood cabinet 1. The fixing block 16 is rotatably connected to the shaft rotating rod 17 via bearings. Bevel gears 18 and 19 are fixedly installed at the upper and lower ends of the shaft rotating rod 17, respectively. A bevel gear 20 is fixedly installed at one end of the stirring rod 13. A fixing block 21 is fixedly installed on the inner bottom wall of the solid wood cabinet 1. The fixing block 21 is rotatably connected to the shaft rotating rod 22 via bearings. Bevel gears 23 are fixedly installed at both ends of the shaft rotating rod 22. A clothes hanging rod 37 is installed between the two fixing blocks 16 for hanging clothes hangers. When the dual-axis motor 8 is running, the bevel gear 15 drives the bevel gear 19 to rotate, which in turn drives the shaft rotating rod 17 to rotate. The bevel gear 18 on the shaft rotating rod 17 drives the bevel gear 23 to rotate, which in turn drives the stirring rod 13 to rotate. This allows for simultaneous stirring of the desiccant block 12 during the operation of the exhaust fan 9, thereby improving the dehumidification effect.

[0026] Furthermore, the limiting component includes a groove box 24 fixedly installed on the bottom wall of the solid wood cabinet 1; a connecting rod 25 fixedly welded to the back of sliding door 3 and sliding door 4; a ball 26 fixedly welded to one end of the connecting rod 25; a plug-in rod 27 extending transversely through the groove box 24; a ball 28 fixedly welded to one end of the plug-in rod 27 for contacting the ball 26 and driving the displacement of the plug-in rod 27; a sleeve block 29 fixedly installed on the periphery of the plug-in rod 27, and the sleeve block 29 slidably connected to the inner wall of the groove box 24; a spring 30 sleeved on the periphery of the plug-in rod 27; and a switch control structure connecting the plug-in rod 27 and the dual-axis motor 8. When sliding doors 3 and 4 are closed, ball 26 pushes ball 28, causing the connecting rod 27 to move. The sleeve block 29 compresses the spring 30. Once the sliding doors are fully closed, the dual-axis motor 8 stops operating via a switch control structure. At this point, the spring force of spring 30 keeps the connecting rod 27 in position, limiting the sliding doors. This achieves the limitation of sliding doors 3 and 4 after they are closed, preventing accidental opening due to external force.

[0027] Furthermore, the switch control structure includes a control switch 32 fixedly installed on the inner wall of the solid wood cabinet 1 and a contact rod 31 fixedly connected to the other end of the plug-in rod 27. An electrical connection wire 33 connects the control switch 32 and the dual-axis motor 8, and the wire 33 is laid on the inner wall of the solid wood cabinet 1. When the sliding door is closed, the plug-in rod 27 moves, causing the contact rod 31 to touch the control switch 32. The control switch 32 turns on the power to the dual-axis motor 8, causing it to start running. When the sliding door needs to be opened, pushing the door causes ball 1 26 to pass over ball 2 28. The contact rod 31 then touches the control switch 32 again, and under the action of the spring 30, the plug-in rod 27 resets, thus disconnecting the power to the dual-axis motor 8. This achieves control of the operation of the dual-axis motor 8 through the open / closed state of the sliding door, facilitating the use of the wardrobe and controlling its moisture-proof function.

[0028] Furthermore, a quick-release assembly connects the solid wood cabinet 1 and the filter tray 2 11. Specifically, this includes a placement groove 34 on the side of the solid wood cabinet 1 and an iron block 35 fixedly installed around the filter tray 2 11. A strong magnet 36 is embedded in the inner bottom wall of the placement groove 34. When the desiccant block 12 needs to be replaced, the filter tray 2 11 is pulled forcefully to separate the iron block 35 from the strong magnet 36, allowing the filter tray 2 11 to be removed for replacement of the desiccant block 12. After replacement, the iron block 35 is placed back into the placement groove 34, where the strong magnet 36 attracts the iron block 35, thus securing the filter tray 2 11. This enables quick disassembly and installation of the filter tray 2 11, facilitating the replacement of the desiccant block 12 and ensuring the wardrobe's moisture-proof effect.

[0029] Furthermore, two bevel gears 19 are provided. One bevel gear 19 meshes with bevel gear 15, and the other bevel gear 19 meshes with bevel gear 20. When the dual-shaft motor 8 operates, bevel gear 15 drives bevel gear 19, which in turn drives shaft rod 17, which in turn drives bevel gear 20, which in turn drives stirring rod 13. This achieves the goal of stirring desiccant block 12 by rotating stirring rod 13 driven by the operation of dual-shaft motor 8, thereby improving dehumidification effect.

[0030] Furthermore, two bevel gears 18 and two bevel gears 23 are provided. Each bevel gear 18 and each bevel gear 23 is designed as a pair, and the pair of bevel gears 18 and 23 are meshed together. When the shaft rod 17 rotates, it drives the bevel gear 18 to rotate, which in turn drives the meshing bevel gear 23 to rotate. The bevel gear 23 then drives the shaft rod 22 to rotate, and the bevel gear 23 at the other end of the shaft rod 22 can drive other related components to rotate (if there is a further connecting structure), thus achieving linkage. This improves the transmission structure of the linkage assembly, enabling the power of the dual-shaft motor 8 to be transmitted more effectively to each component, achieving synchronous operation of the exhaust fan 9 and stirring of the desiccant block 12.

[0031] Furthermore, the iron block 35 is placed on the inner wall of the placement groove 34, and the size of the placement groove 34 is adapted to the design size of the iron block 35. The strong magnet 36 is attracted and connected to the iron block 35. When the filter disc 2 11 is installed on the solid wood cabinet 1, the iron block 35 is accurately placed into the placement groove 34. Because the size of the placement groove 34 is adapted to the iron block 35, and the strong magnet 36 is attracted to the iron block 35, the filter disc 2 11 can be stably fixed on the solid wood cabinet 1. This ensures the stability and accuracy of the installation of the filter disc 2 11, facilitates the replacement of the desiccant block 12, and maintains the moisture-proof function of the wardrobe.

[0032] Furthermore, one end of the spring 30 is fixedly connected to the inner end wall of the recessed box 24, and the other end of the spring 30 is fixedly connected to one end surface of the socket block 29. When the sliding door is closed, the insertion rod 27 moves, causing the socket block 29 to compress the spring 30, and the spring 30 generates elastic force; when it is necessary to open the sliding door, the elastic force of the spring 30 pushes the socket block 29, causing the insertion rod 27 to return to its original position. The elastic force of the spring 30 achieves the automatic return of the insertion rod 27, facilitating the opening and closing of the sliding door, while ensuring the limiting effect after the sliding door is closed.

[0033] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A solid wood wardrobe with moisture-proof function, comprising a solid wood cabinet body (1), wherein the inner top wall and inner bottom wall of the solid wood cabinet body (1) are provided with horizontal sliding grooves (2), and sliding doors one (3) and two (4) are slidably connected to the inner wall of the sliding grooves (2), characterized in that, The solid wood cabinet (1) is equipped with a dehumidification mechanism on its side for moisture prevention during the use of the entire wardrobe; The dehumidification mechanism includes through holes one (5) and through holes two (6) on both sides of the solid wood cabinet (1). A cross plate (7) is fixedly installed on the inner wall of the through hole one (5). A dual-axis motor (8) is fixedly installed at the center of the cross plate (7). An exhaust fan (9) is fixedly connected to one output end of the dual-axis motor (8) to cooperate with the through hole one (5) to exhaust the air inside the solid wood cabinet (1). A filter plate (10) is fixedly installed on the inner wall of the second through hole (6), a filter plate (11) is placed on the inner wall of the second through hole (6), and a desiccant block (12) is placed inside the second through hole (6) for drying the air as it passes through the cross plate (7) into the solid wood cabinet (1). A stirring rod (13) is rotatably connected to the center of the filter disc (10) via a bearing. A stirring blade (14) is fixedly installed around the stirring rod (13) to stir the desiccant block (12) and achieve a better dehumidification effect. A linkage assembly is connected between the solid wood cabinet (1), the dual-axis motor (8), and the stirring rod (13) to synchronously stir the desiccant block (12) during the operation of the exhaust fan (9); Limiting components are connected between the solid wood cabinet (1), sliding door one (3) and sliding door two (4) to limit the sliding of sliding door one (3) and sliding door two (4) after they are closed, so as to prevent them from being accidentally opened due to external force.

2. A solid wood wardrobe with moisture-proof function according to claim 1, characterized in that, The linkage component includes a bevel gear 1 (15) fixedly installed at the other output end of the dual-axis motor (8) and a fixing block 1 (16) fixedly installed on the inner side wall of the solid wood cabinet (1). The fixing block 1 (16) is rotatably connected to a shaft rod 1 (17) via a bearing. The upper and lower ends of the shaft rod 1 (17) are respectively fixedly installed with bevel gear 2 (18) and bevel gear 3 (19). One end of the stirring rod (13) is fixedly installed with bevel gear 4 (20). The inner bottom wall of the solid wood cabinet (1) is fixedly installed with fixing block 2 (21). The fixing block 2 (21) is rotatably connected to shaft rod 2 (22) via a bearing. Both ends of the shaft rod 2 (22) are fixedly installed with bevel gear 5 (23). A clothes rack (37) is installed between the two fixing blocks 1 (16) for hanging clothes hangers.

3. A solid wood wardrobe with moisture-proof function according to claim 1, characterized in that, The limiting component includes a groove box (24) fixedly installed on the bottom wall of the solid wood cabinet (1), a connecting rod (25) fixedly welded to the back of the sliding door one (3) and sliding door two (4), a ball one (26) fixedly welded to one end of the connecting rod (25), a plug rod (27) passing through the groove box (24) laterally, and a ball two (28) fixedly welded to one end of the plug rod (27) for contacting the ball one (26) and driving the displacement of the plug rod (27); A socket block (29) is fixedly installed on the periphery of the plug rod (27), and the socket block (29) is slidably connected to the inner wall of the groove box (24). A spring (30) is sleeved on the periphery of the plug rod (27), and a switch control structure is connected between the plug rod (27) and the dual-axis motor (8).

4. A solid wood wardrobe with moisture-proof function according to claim 3, characterized in that, The switch control structure includes a control switch (32) fixedly installed on the inner wall of the solid wood cabinet (1) and a touch rod (31) fixedly connected to the other end of the plug rod (27). The control switch (32) and the dual-axis motor (8) are electrically connected by a wire (33), and the wire (33) is laid on the inner wall of the solid wood cabinet (1).

5. A solid wood wardrobe with moisture-proof function according to claim 1, characterized in that, A quick-release assembly is connected between the solid wood cabinet (1) and the filter tray (11) to quickly disassemble the filter tray (11) and replace the desiccant block (12). The quick-assembly assembly includes a placement slot (34) on the side of the solid wood cabinet (1) and an iron block (35) fixedly installed on the periphery of the filter tray (11). The inner bottom wall of the placement slot (34) is inlaid with a strong magnet (36).

6. A solid wood wardrobe with moisture-proof function according to claim 2, characterized in that, There are two bevel gears (19). One bevel gear (19) meshes with the first bevel gear (15), and the other bevel gear (19) meshes with the fourth bevel gear (20).

7. A solid wood wardrobe with moisture-proof function according to claim 2, characterized in that, There are two bevel gears (18) and two bevel gears (23). One bevel gear (18) and one bevel gear (23) are designed as a group, and the bevel gears (18) and the bevel gears (23) of the group are meshed together.

8. A solid wood wardrobe with moisture-proof function according to claim 5, characterized in that, The iron block (35) is placed on the inner wall of the placement groove (34), and the size of the placement groove (34) is adapted to the design size of the iron block (35). The strong magnetic block (36) is attracted to the iron block (35).

9. A solid wood wardrobe with moisture-proof function according to claim 3, characterized in that, One end of the spring (30) is fixedly connected to the inner end wall of the groove box (24), and the other end of the spring (30) is fixedly connected to one end surface of the sleeve block (29).