A compact shelving unit with humidity regulation function
By introducing humidification, drying and sealing mechanisms into the compact shelving, the problem of calligraphy and painting caused by humidity discomfort inside the compact shelving is solved, and the effects of humidity regulation and environmental cleaning are achieved.
Patent Information
- Application Number
- CN202311354380.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-19
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2043-10-19
AI Technical Summary
Existing compact shelving cannot regulate internal humidity, causing calligraphy and paintings to warp and become brittle when dry or to mold when humidity is high.
A compact shelving system with humidifying and drying mechanisms is designed. The humidifying mechanism humidifies when the humidity is low, and the drying mechanism dries when the humidity is high. The sealing mechanism prevents the influence of external humidity, removes dust through shaking and electrostatic adsorption mechanisms, and removes water droplets through a cleaning mechanism.
Effectively regulate the humidity inside the compact shelving to prevent calligraphy and paintings from warping or mildew, while keeping the storage environment clean and stable.
Smart Images

Figure CN117322736B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of compact shelving, in particular to a compact shelving with a humidity regulating function. Background Art
[0002] Compact shelving is a storage cabinet with a large storage capacity and the ability to save indoor space. It is often used to store archives and other paper documents. Nowadays, with the development of the times, calligraphy and painting compact shelving has emerged. Calligraphy and paintings can be hung directly in the compact shelving. This not only does not cause bending or damage to the calligraphy and paintings, but also has a higher volume ratio and saves a lot of space. Hanging storage allows calligraphy and paintings to be preserved flat.
[0003] Patent publication number CN115005603A discloses a compact shelving system for placing calligraphy and paintings, comprising a cabinet, a base, guide rails, pulleys, etc. The guide rails are divided into two sections and are arranged front and back. Three bases are slidably connected between the guide rails. A cabinet for placing calligraphy and paintings is placed on each base. A set of pulleys are symmetrically rotated on both sides of the middle and right bases, and each pulley is in contact with the adjacent guide rails. The compact shelving system is inserted into a square groove by a clamping column. The clamping column and the guide rail cooperate to fix the base, thereby preventing the base from being displaced due to shaking after being moved to the appropriate position, making it easier to remove calligraphy and paintings. However, the compact shelving system cannot regulate the humidity inside it. If the interior of the compact shelving system is dry, it is easy for calligraphy and paintings to warp and become brittle, while high humidity can easily cause calligraphy and paintings to mold.
[0004] In order to solve the above problems in the prior art, we designed a compact shelving with humidity regulation function. Summary of the Invention
[0005] In order to overcome the shortcomings of existing compact shelving that cannot regulate the humidity inside it, if the inside of the compact shelving is dry, it is easy for calligraphy and paintings to warp and become brittle, while high humidity can easily cause calligraphy and paintings to mold, the technical problem to be solved is: to provide a compact shelving with humidity regulation function.
[0006] Technical solution: A compact shelving system with humidity regulation function, including a compact shelving system main body, cabinet doors, hanging rods, a humidifying mechanism and a drying mechanism. The front side of the compact shelving system main body is rotatably connected to the cabinet doors, and the cabinet doors are provided with glass panels. The inside of the compact shelving system main body is slidably connected to the hanging rods. The inside of the compact shelving system main body is provided with a humidifying mechanism for humidifying the inside of the compact shelving system main body when the humidity is too low. The inside of the compact shelving system main body is provided with a drying mechanism for drying the inside of the compact shelving system main body when the humidity is too high.
[0007] In one embodiment, the humidifying mechanism includes a placement frame, a water suction pipe, a water pump, and a water return pipe. Placement frames are connected to the lower side inside the main body of the compact storage rack. The upper part of the main body of the compact storage rack is a cavity. Water pumps are connected to the upper side inside the main body of the compact storage rack. A water suction pipe is connected between the right side of the placement frame and the water pump. A water return pipe is connected between the left side of the placement frame and the cavity on the upper side of the main body of the compact storage rack.
[0008] In one embodiment, the drying mechanism includes an electric push rod, a placement box, a cover plate, a first torsion spring, and an elastic cord. Electric push rods are connected to the left side inside the main body of the compact storage rack. A placement box is connected to the telescopic rod of the electric push rod. The placement box is slidably connected to the placement frame. A cover plate is rotatably connected to the upper part of the placement box. The first torsion spring is sleeved on both the front and rear sides of the cover plate. The two sides of the first torsion spring are respectively connected to the placement box and the cover plate. An elastic cord is connected between the upper side of the cover plate and the main body of the compact storage rack.
[0009] In one embodiment, a sealing mechanism for sealing the main body of the compact storage rack is further included. The sealing mechanism includes a top rod, an air cylinder, a piston, a pressure spring, an air pipe, a rotating rod, a second torsion spring, a first telescopic component, a baffle, and an airbag. The first telescopic component is connected to the rear side inside the main body of the compact storage rack. The baffle is connected to the front part of the first telescopic component. The baffle is L-shaped. The piston is connected to the rear side inside the main body of the compact storage rack. The air cylinder is slidably connected to the left side inside the main body of the compact storage rack. The air pipe is connected to the front side of the air cylinder. The air cylinder is slidably connected to the piston. The pressure spring is sleeved on the piston. The two sides of the pressure spring are respectively connected to the air cylinder and the piston. The rotating rod is rotatably connected to the right side of the air cylinder. The rotating rod contacts the baffle. The second torsion spring is sleeved on both the upper and lower sides of the rotating rod. The two sides of the second torsion spring are respectively connected to the rotating rod and the air cylinder. The airbag is connected to the cabinet door. The airbag is C-shaped. The air pipe passes through the cabinet door and is connected to the airbag. The top rod is connected to the cabinet door.
[0010] In one embodiment, a shaking mechanism for shaking off the dust on the calligraphy and painting is further included. The shaking mechanism includes a rotating frame, a fixing block, a second telescopic component, an inclined block, and a connecting rod. The fixing block is connected to the right side inside the placement frame. The rotating frame is rotatably connected to the fixing block. An extrusion block is provided at the rear part of the rotating frame. The rotating frame and the water suction pipe are rotatably connected. The second telescopic component is connected to the right side inside the placement frame. The inclined block is connected to the front part of the second telescopic component. The connecting rod is connected to the upper part of the inclined block. The connecting rod is connected to the rear part of the hanging rod.
[0011] In one embodiment, both the left and right sides of the front part of the inclined block are inclined planes.
[0012] In one embodiment, there is also an adsorption structure for adsorbing dust falling on calligraphy and paintings. The adsorption structure includes an electrostatic adsorption machine, a wire and a controller. The left and right sides of the compact shelving body are connected to the electrostatic adsorption machine, the rear of the electrostatic adsorption machine is connected to the wire, the rear side of the compact shelving body is connected to the controller, and the controller is connected to the wire.
[0013] In one embodiment, a cleaning mechanism is further included for cleaning water droplets on the glass panel of the cabinet door. The cleaning mechanism includes a cleaning wheel, a handle and a limit plate. The cabinet doors are connected to the limit plates. The cleaning wheels are slidably connected between the limit plates on the same cabinet door, and the front sides of the cleaning wheels are rotatably connected to the handles.
[0014] Compared with the prior art, the present invention has the following advantages: 1. When the humidity is low, the water in the placement box circulates in the compact shelving body through the water suction pipe and the return pipe, thereby promoting the flow of water inside the compact shelving body, humidifying the interior of the compact shelving body, and preventing calligraphy and paintings from becoming too dry and curling and becoming brittle. When the humidity is high, the desiccant in the placement box dries the interior of the compact shelving body, preventing calligraphy and paintings from becoming damp and moldy when the humidity is too high, thereby regulating the humidity inside the compact shelving body.
[0015] 2. The airbag expands to fill the gap between the cabinet door and the main body of the compact shelving unit, thereby sealing the main body of the compact shelving unit and preventing it from being affected by external humidity;
[0016] 3. Move the hanging rod and calligraphy and painting back and forth repeatedly to shake off the dust on the calligraphy and painting, and prevent dust from adhering to the calligraphy and painting and causing mold spots during humidification operation;
[0017] 4. When the calligraphy and painting are shaken, the electrostatic adsorption machine absorbs the dust shaken off the calligraphy and painting, thus preventing the dust from being raised;
[0018] 5. Wipe the water droplets on the cabinet door glass panel by moving the cleaning wheel up and down, so as to avoid the water droplets on the glass panel affecting the humidity inside the compact shelving body when the cabinet door is closed. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0020] Figure 2 It is a partial three-dimensional structural schematic diagram of the present invention.
[0021] Figure 3 This is a schematic diagram of the first three-dimensional structure of the humidifying mechanism of the present invention.
[0022] Figure 4 This is a schematic diagram of the second three-dimensional structure of the humidifying mechanism of the present invention.
[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the drying mechanism of the present invention.
[0024] Figure 6 It is a schematic diagram of the first partial three-dimensional structure of the sealing mechanism of the present invention.
[0025] Figure 7 It is a schematic diagram of the second partial three-dimensional structure of the sealing mechanism of the present invention.
[0026] Figure 8 This is a schematic diagram of the third partial three-dimensional structure of the sealing mechanism of the present invention.
[0027] Figure 9 It is a schematic diagram of the three-dimensional structure of the shaking mechanism of the present invention.
[0028] Figure 10 This is a schematic diagram of the first partial three-dimensional structure of the shaking mechanism of the present invention.
[0029] Figure 11 This is a schematic diagram of the second partial three-dimensional structure of the shaking mechanism of the present invention.
[0030] Figure 12 It is a schematic diagram of the three-dimensional structure of the adsorption structure of the present invention.
[0031] Figure 13 It is a schematic diagram of the three-dimensional structure of the cleaning mechanism of the present invention.
[0032] Figure 14 It is a schematic diagram of the three-dimensional structure of the cleaning mechanism of the present invention.
[0033] In the accompanying drawings: 1-dense shelf body, 2-cabinet door, 3-hanging rod, 4-calligraphy and painting, 5-humidification mechanism, 51-placement frame, 52-water suction pipe, 53-water pump, 54-return pipe, 6-drying mechanism, 61-electric push rod, 62-placement box, 63-cover plate, 64-first torsion spring, 65-elastic rope, 7-sealing mechanism, 71-top rod, 72-air cylinder, 73-piston, 74-pressure spring, 75-air Tube, 76-rotating rod, 77-second torsion spring, 78-first telescopic assembly, 79-baffle, 710-airbag, 8-rocking mechanism, 81-rotating frame, 82-fixed block, 83-second telescopic assembly, 84-oblique block, 85-connecting rod, 9-adsorption structure, 91-electrostatic adsorption machine, 92-wire, 93-controller, 10-cleaning mechanism, 101-cleaning wheel, 102-handle, 103-limiting plate. DETAILED DESCRIPTION
[0034] 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.
[0035] Example 1
[0036] A compact shelving with humidity control function, please refer to Figure 1-Figure 5 , including a compact shelving body 1, cabinet doors 2, hanging rods 3, a humidifying mechanism 5 and a drying mechanism 6. The compact shelving body 1 has three, and the interior of the compact shelving body 1 is slidably connected to the hanging rods 3, and the hanging rods 3 are used to hang calligraphy and paintings 4. The front side of the compact shelving body 1 is rotatably connected to the cabinet doors 2, and the cabinet doors 2 are provided with glass panels. A humidifying mechanism 5 is provided inside the compact shelving body 1, and the humidifying mechanism 5 is used to humidify the interior of the compact shelving body 1 when the humidity is too low. A drying mechanism 6 is provided inside the compact shelving body 1, and the drying mechanism 6 is used to dry the interior of the compact shelving body 1 when the humidity is too high.
[0037] Please refer to Figure 3-Figure 4 The humidifying mechanism 5 includes a placement frame 51, a water suction pipe 52, a water pump 53 and a return pipe 54. The lower side of the interior of the compact shelving body 1 is connected to the placement frame 51. The upper part of the compact shelving body 1 is a cavity. The return pipe 54 is connected between the left side of the placement frame 51 and the cavity on the upper side of the compact shelving body 1. The upper side of the interior of the compact shelving body 1 is connected to the water pump 53. The water pump 53 is located in the cavity on the upper side of the placement frame 51. The water suction pipe 52 is connected to the water pump 53. The water suction pipe 52 passes through the compact shelving body 1 and is connected to the right side of the placement frame 51.
[0038] Please refer to Figure 5 The drying mechanism 6 includes an electric push rod 61, a placement box 62, a cover plate 63, a first torsion spring 64 and an elastic rope 65. The placement box 62 is slidably connected to the left side of the placement frame 51, and the electric push rod 61 is connected to the left side of the inside of the compact shelving body 1. The telescopic rod of the electric push rod 61 is connected to the placement box 62, and the upper part of the placement box 62 is rotatably connected to the cover plate 63. An elastic rope 65 is connected between the upper side of the cover plate 63 and the compact shelving body 1. The front and rear sides of the cover plate 63 are both covered with a first torsion spring 64. One end of the first torsion spring 64 is connected to the placement box 62, and the other end is connected to the cover plate 63.
[0039] When in use, rotate the cabinet door 2 forward to open it, pour water into the placement frame 51, open the cover 63, put the desiccant into the placement box 62, loosen the cover 63, and close the cover 63. When calligraphy and painting 4 need to be stored, hang the calligraphy and painting 4 on the hanging rod 3. After placing them, rotate the cabinet door 2 backward to close it. At this time, the calligraphy and painting 4 in the compact shelving body 1 can be seen through the glass panel on the cabinet door 2. When the humidity inside the compact shelving body 1 is low, the water pump 53 automatically starts, and the water pump 53 pumps the air in the placement frame 51 into the cabinet door 2. Water is pumped to the upper part of the compact shelving main body 1 through the water suction pipe 52, and then flows downward from the return pipe 54 under pressure back into the placement frame 51, thereby promoting the flow of water inside the compact shelving main body 1, humidifying the inside of the compact shelving main body 1, and preventing the calligraphy and painting 4 from being too dry and curling and becoming brittle. When the humidity inside the compact shelving main body 1 is high, the electric push rod 61 automatically starts, and the telescopic rod of the electric push rod 61 drives the placement box 62 to move downward to block the nozzle of the return pipe 54, thereby preventing water from flowing back from the upper part of the compact shelving main body 1 When the water in the water box 51 is in the storage box 51, the water pump 53 starts for a period of time and pumps the water in the storage box 51 to the upper side of the compact shelving main body 1 and then automatically closes. At this time, the water in the storage box 51 is all on the upper side of the compact shelving main body 1, and the interior of the compact shelving main body 1 is no longer humidified. When the storage box 62 moves downward, the elastic rope 65 pulls the cover 63 upward to rotate and open, and the first torsion spring 64 is deformed. At this time, the desiccant in the storage box 62 dries the interior of the compact shelving main body 1 to prevent the calligraphy and painting 4 from getting damp and moldy when the humidity is too high. When the humidity inside the compact shelving main body 1 is low, the telescopic rod of the electric push rod 61 drives the storage box 62 to move upward, the elastic rope 65 is in a relaxed state, the first torsion spring 64 is reset, and the cover 63 is closed under the reset action of the first torsion spring 64. At this time, the storage box 62 no longer blocks the pipe opening of the return pipe 54, and the electric push rod 61 is automatically closed. Then, referring to the above operation, the water pump 53 automatically starts to start humidification treatment, so that the humidity inside the compact shelving main body 1 can be adjusted.
[0040] Example 2
[0041] Based on Example 1, please refer to Figure 6-Figure 8, further comprising a sealing mechanism 7 for sealing the main body 1 of the filing cabinet. The sealing mechanism 7 includes a top rod 71, a cylinder 72, a piston 73, a pressure spring 74, a trachea 75, a rotating rod 76, a second torsion spring 77, a first telescopic assembly 78, a baffle 79 and an airbag 710. The first telescopic assemblies 78 are connected to the inner rear sides of the main body 1 of the filing cabinet, and the front parts of the first telescopic assemblies 78 are connected to the baffles 79. The baffles 79 are L-shaped. The first telescopic assembly 78 consists of a telescopic rod and a spring. The two sides of the telescopic rod are respectively connected to the main body 1 of the filing cabinet and the baffle 79, and the spring is located inside the telescopic rod. The cylinders 72 are slidably connected to the inner left sides of the main body 1 of the filing cabinet, and the pistons 73 are slidably connected to the rear sides of the cylinders 72. The pistons 73 are connected to the inner rear sides of the main body 1 of the filing cabinet. Pressure springs 74 are connected between the cylinders 72 and the pistons 73, and the pressure springs 74 are sleeved on the pistons 73. The front sides of the cylinders 72 are all communicated with the tracheas 75. The airbags 710 are connected to the cabinet doors 2. The airbags 710 are U-shaped. The tracheas 75 pass through the cabinet doors 2 and are communicated with the airbags 710. The rotating rods 76 are rotatably connected to the right sides of the cylinders 72. The rotating rods 76 contact the baffles 79. The second torsion springs 77 are sleeved on the upper and lower sides of the rotating rods 76. The two sides of the second torsion springs 77 are respectively connected to the rotating rods 76 and the cylinders 72. The top rods 71 are connected to the cabinet doors 2, and the top rods 71 contact the baffles 79 after rotation.
[0042] When the cabinet door 2 rotates backward to close, it drives the top rod 71 to rotate backward. After the top rod 71 rotates backward, it will contact the baffle 79 and push the baffle 79 to move backward. The first telescopic assembly 78 is compressed. After the baffle 79 moves backward, it no longer blocks the rotating rod 76. The initially deformed second torsion spring 77 resets. Under the reset action of the second torsion spring 77, the rotating rod 76 rotates forward. After the rotating rod 76 rotates forward, it will contact the top rod 71, making the rotating rod 76 no longer rotate forward. The cylinder 72 will move backward under the reset action of the second torsion spring 77, and the pressure spring 74 is compressed. At this time, the piston 73 presses the gas in the cylinder 72 into the airbag 710 through the trachea 75, making the airbag 710 expand and filling the gap between the cabinet door 2 and the main body 1 of the filing cabinet, thus sealing the main body 1 of the filing cabinet and preventing the main body 1 of the filing cabinet from being affected by external humidity. When the cabinet door 2 rotates forward to open, it drives the top rod 71 to rotate forward. At this time, the top rod 71 separates from the baffle 79, and the first telescopic assembly 78 resets. Under the reset action of the first telescopic assembly 78, the baffle 79 moves forward, and the pressure spring 74 resets. Under the reset action of the pressure spring 74, the cylinder 72 moves forward. Then, manually rotate the rotating rod 76 backward to reset, making the rotating rod 76 located on the left side of the baffle 79. The baffle 79 blocks the rotating rod 76. The piston 73 pumps the gas in the airbag 710 back into the cylinder 72 through the trachea 75, and the airbag 710 returns to its initial state.
[0043] Please refer to Figures 9-11, also includes a shaking mechanism 8, the shaking mechanism 8 is used to shake off the dust on the calligraphy and painting 4, the shaking mechanism 8 includes a rotating frame 81, a fixed block 82, a second telescopic component 83, an oblique block 84 and a connecting rod 85, the second telescopic components 83 are all connected to the right side of the placement frame 51, the front of the second telescopic component 83 is connected to the oblique block 84, the left and right sides of the front of the oblique block 84 are both inclined surfaces, the second telescopic component 83 is composed of a telescopic rod and a spring, the two sides of the telescopic rod are respectively connected to the oblique block 84 and the placement frame 51, the spring is located inside the telescopic rod, the upper part of the oblique block 84 is connected to the connecting rod 85, the connecting rod 85 is connected to the rear of the hanging rod 3, the right side of the placement frame 51 is connected to the fixed block 82, the fixed block 82 is rotatably connected to the rotating frame 81, the rotating frame 81 and the water suction pipe 52 are rotatably connected, an extrusion block is provided at the rear of the rotating frame 81, and the rotating frame 81 contacts the oblique block 84 after rotation.
[0044] When the humidifying operation is performed, the water flows through the nozzle of the water suction pipe 52. Under the action of the impact force of the water flow, the rotating frame 81 rotates. After the rotating frame 81 rotates, it contacts the inclined block 84 and pushes the inclined block 84 to move backward. The second telescopic assembly 83 is compressed, and the inclined block 84 moves backward, driving the connecting rod 85 to move backward. The connecting rod 85 moves backward and drives the hanging rod 3 and the calligraphy and painting 4 to move backward. When the rotating frame 81 rotates to separate from the inclined block 84, the second telescopic assembly 83 is reset. Under the reset action of the second telescopic assembly 83, the inclined block 84 moves forward. The inclined block 84 moves forward and drives the connecting rod 85 to move forward. The connecting rod 85 moves forward and drives the hanging rod 3 and the calligraphy and painting 4 to move forward. In this way, in the process of the rotating frame 81 repeatedly contacting and separating with the inclined block 84, the hanging rod 3 and the calligraphy and painting 4 repeatedly move back and forth, thereby shaking off the dust on the calligraphy and painting 4, preventing dust from adhering to the calligraphy and painting 4 and producing mold spots during the humidifying operation.
[0045] Please refer to Figure 12 , also includes an adsorption structure 9, the adsorption structure 9 is used to adsorb dust falling on the calligraphy and painting 4, the adsorption structure 9 includes an electrostatic adsorption machine 91, a wire 92 and a controller 93, the rear side of the interior of the compact shelving body 1 is connected to the controller 93, the left and right sides of the controller 93 are connected to the electrostatic adsorption machine 91 on both sides of the interior of the compact shelving body 1, the electrostatic adsorption machine 91 is used to adsorb dust falling on the calligraphy and painting 4, and the rear of the electrostatic adsorption machine 91 is connected to the wire 92.
[0046] When the dust on the calligraphy and painting 4 is shaken off, the controller 93 turns on the switch of the electrostatic adsorption machine 91. At this time, the electrostatic adsorption machine 91 adsorbs the dust shaken off the calligraphy and painting 4 to prevent the dust from being raised. When there is no need to clean the dust, the controller 93 turns off the switch of the electrostatic adsorption machine 91.
[0047] Please refer to Figure 13-14, also includes a cleaning mechanism 10, which is used to clean water droplets on the glass panel of the cabinet door 2. The cleaning mechanism 10 includes a cleaning wheel 101, a handle 102 and a limit plate 103. Two limit plates 103 are connected to each cabinet door 2. The limit plates 103 are respectively located on both sides of the glass panel. A cleaning wheel 101 is slidably connected between the two limit plates 103 on the same cabinet door 2. The cleaning wheel 101 is used to clean water droplets on the glass panel of the cabinet door 2. The handle 102 is rotatably connected to the front side of the cleaning wheel 101.
[0048] When the cabinet door 2 is opened, due to the temperature difference between the inside and outside of the compact shelving body 1, water droplets will appear on the glass panel of the cabinet door 2. At this time, the handle 102 can be turned forward, and then the handle 102 can be manually held and pushed up and down. The up and down movement of the handle 102 drives the cleaning wheel 101 to move up and down. When the cleaning wheel 101 moves up and down, it wipes the water droplets on the glass panel of the cabinet door 2, thereby avoiding the water droplets on the glass panel when the cabinet door 2 is closed to affect the humidity inside the compact shelving body 1. After the wiping is completed, the cleaning wheel 101 is reset downward and the handle 102 is rotated to its initial state.
[0049] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the essence and scope of the technical solutions of the present invention.
Claims
1. A compact shelving unit with humidity regulation function, characterized in that: The invention comprises a compact shelving unit (1), a cabinet door (2), a hanging rod (3), a humidifying mechanism (5) and a drying mechanism (6); the front side of the compact shelving unit (1) is rotatably connected to the cabinet door (2); the cabinet door (2) is provided with a glass panel; the interior of the compact shelving unit (1) is slidably connected to the hanging rod (3); the interior of the compact shelving unit (1) is provided with a humidifying mechanism (5) for humidifying the interior of the compact shelving unit (1) when the humidity is too low; and the interior of the compact shelving unit (1) is provided with a drying mechanism (6) for drying the interior of the compact shelving unit (1) when the humidity is too high. The humidifying mechanism (5) includes a placement frame (51), a water suction pipe (52), a water pump (53) and a return pipe (54); the placement frame (51) is connected to the lower side of the compact shelving body (1); the upper part of the compact shelving body (1) is a cavity; the water pump (53) is connected to the upper side of the compact shelving body (1); the water suction pipe (52) is connected between the right side of the placement frame (51) and the water pump (53); and the return pipe (54) is connected between the left side of the placement frame (51) and the cavity on the upper side of the compact shelving body (1); The utility model also includes a shaking mechanism (8) for shaking off dust on the calligraphy and painting (4), the shaking mechanism (8) including a rotating frame (81), a fixed block (82), a second telescopic assembly (83), an inclined block (84) and a connecting rod (85), the right side of the placement frame (51) is connected to the fixed block (82), the upper portion of the fixed block (82) is rotatably connected to the rotating frame (81), the rear portion of the rotating frame (81) is provided with an extrusion block, the rotating frame (81) and the water suction pipe (52) are rotatably connected, the right side of the placement frame (51) is connected to the second telescopic assembly (83), the front portion of the second telescopic assembly (83) is connected to the inclined block (84), the upper portion of the inclined block (84) is connected to the connecting rod (85), and the connecting rod (85) is connected to the rear portion of the hanging rod (3); The cabinet door (2) further comprises a cleaning mechanism (10) for cleaning water droplets on the glass panel of the cabinet door (2). The cleaning mechanism (10) comprises a cleaning wheel (101), a handle (102) and a limiting plate (103). The cabinet door (2) is connected to the limiting plate (103). The limiting plates (103) on the same cabinet door (2) are all slidably connected to the cleaning wheel (101). The front side of the cleaning wheel (101) is rotatably connected to the handle (102).
2. The compact shelving with humidity regulating function as claimed in claim 1, characterized in that: The drying mechanism (6) includes an electric push rod (61), a placement box (62), a cover plate (63), a first torsion spring (64) and an elastic rope (65). The left side of the interior of the compact shelving body (1) is connected to the electric push rod (61), the telescopic rod of the electric push rod (61) is connected to the placement box (62), the placement box (62) is slidably connected to the placement frame (51), the upper part of the placement box (62) is rotatably connected to the cover plate (63), the front and rear sides of the cover plate (63) are both covered with the first torsion spring (64), the two sides of the first torsion spring (64) are respectively connected to the placement box (62) and the cover plate (63), and the upper side of the cover plate (63) and the compact shelving body (1) are connected with an elastic rope (65).
3. The compact shelving with humidity regulating function as claimed in claim 2, characterized in that: It further includes a sealing mechanism (7) for sealing the main body (1) of the compact shelf. The sealing mechanism (7) includes a top rod (71), a cylinder (72), a piston (73), a pressure spring (74), a trachea (75), a rotating rod (76), a second torsion spring (77), a first telescopic component (78), a baffle (79) and an airbag (710). The first telescopic components (78) are connected to the inner rear sides of the main body (1) of the compact shelf. The front parts of the first telescopic components (78) are all connected with the baffle (79). The baffle (79) is L-shaped. The pistons (73) are connected to the inner rear sides of the main body (1) of the compact shelf. The cylinders (72) are slidably connected to the inner left sides of the main body (1) of the compact shelf. The front sides of the cylinders (72) are all communicated with the trachea (75). The cylinders (72) are slidably connected with the pistons (73). The pressure springs (74) are sleeved on the pistons (73). The two sides of the pressure spring (74) are respectively connected with the cylinder (72) and the piston (73). The rotating rods (76) are rotatably connected to the right sides of the cylinders (72). The rotating rods (76) contact the baffle (79). The second torsion springs (77) are sleeved on the upper and lower sides of the rotating rods (76). The two sides of the second torsion spring (77) are respectively connected with the rotating rod (76) and the cylinder (72). The airbags (710) are connected to the cabinet doors (2). The airbags (710) are in a C shape. The trachea (75) passes through the cabinet door (2) and is communicated with the airbag (710). The top rods (71) are connected to the cabinet doors (2).
4. The compact shelving with humidity regulating function as claimed in claim 3, characterized in that: The front left and right sides of the inclined block (84) are both inclined planes.
5. The compact shelving with humidity regulating function as claimed in claim 4, characterized in that: It further includes an adsorption structure (9) for adsorbing the dust falling on the calligraphy and painting (4). The adsorption structure (9) includes an electrostatic adsorber (91), a wire (92) and a controller (93). The electrostatic adsorbers (91) are connected to the left and right sides inside the main body (1) of the compact shelf. The wires (92) are connected to the rear parts of the electrostatic adsorbers (91). The controllers (93) are connected to the inner rear sides of the main body (1) of the compact shelf. The controllers (93) are all connected with the wires (92).
Citation Information
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