A compact bookshelf with a drainage groove

By designing drainage mechanisms for drainage tanks, drain pipes and water collection boxes on the dense rack, the problem of water accumulation in the dense rack is solved, convenient water cleaning and drying inside the dense rack is achieved, and the service life of the dense rack is extended.

CN116035361BActive Publication Date: 2025-07-01JIANGXI YUANJIN SCI & TECH GRP CO LTD
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Patent Information

Application Number
CN202211499678.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-28
Publication Date
2025-07-01
Estimated Expiration
2042-11-28

AI Technical Summary

Technical Problem

The existing dense racks lack effective drainage devices, which causes water to fall into the dense rack during the rainy season, causing data damage and reducing the service life of the dense racks.

Method used

A dense rack with a drainage tank is designed to move the dense rack body through slide rails and runners, equipped with a drainage mechanism and a water collection mechanism, and the accumulated water is collected and cleaned through the drainage tank, drainage pipe and water collection box.

Benefits of technology

It realizes convenient cleaning of accumulated water on dense racks, extends the service life of dense racks, and keeps the inside of dense racks dry through gas circulation mechanisms and filter element replacement mechanisms to prevent oxidative rust.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of compact shelves, and particularly to a compact shelf with a drainage groove. The present invention provides a compact shelf with a drainage groove that facilitates the staff to clean the accumulated water on the compact shelf. A compact shelf with a drainage groove includes a slide rail fixedly connected to the ground; a compact shelf body slidably connected to the slide rail; a runner rotatably connected to the lower front side of the compact shelf body; a drainage mechanism provided on the upper part of the compact shelf body; and a water collection mechanism provided on the lower part of the compact shelf body. In the present invention, the accumulated water drips onto the top of the compact shelf body, then slides into the drainage groove, and is discharged into the lower liquid collection box through a drainage pipe for collection. Moreover, the entire row of compact shelves shares one lower liquid collection box. When the compact shelves are closely attached, the left connecting pipe fits and communicates with the right connecting pipe, enabling the accumulated water on the entire row of compact shelves to flow into one lower liquid collection box for centralized collection. In this way, it is convenient for the staff to clean the accumulated water.
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Description

Technical Field

[0001] The invention relates to the technical field of compact shelving, and in particular to a compact shelving with a drainage trough. Background Art

[0002] Most of the existing compact shelving systems do not have drainage devices. Currently, the existing compact shelving systems include a compact shelving body and a base. Multiple compact shelving systems are arranged closely together, and most of the compact shelving systems in the middle do not have cabinet doors. Therefore, when moisture seeps from the indoor ceiling during the rainy season, the accumulated water will drip onto the top of the compact shelving system, and then flow into the compact shelving system to wet the data and items stored in the compact shelving system, thereby causing damage to the data. In addition, if the water is not cleaned up in time, the compact shelving system will oxidize and rust, thereby reducing the service life of the compact shelving system.

[0003] Patent publication number CN1270653C discloses a compact shelving with a waterproof device, including a drainage groove on one side of the top plate and a drainage groove connected to a water retaining cover plate on the other side. The patent limits the water by the water retaining cover plate and drains the water through the drainage groove, but the water cannot be discharged and collected in a centralized manner, which makes it more cumbersome for the staff to clean up.

[0004] In summary, it is necessary to develop a compact shelving with drainage grooves that is convenient for workers to clean the accumulated water on the compact shelving. Summary of the invention

[0005] In order to overcome the disadvantage of the prior art that drainage is performed through drainage grooves, which requires workers to clean the compact shelving one by one, the present invention provides a compact shelving with drainage grooves that facilitates workers to clean the accumulated water on the compact shelving.

[0006] To achieve the above purpose, the present invention is implemented by the following scheme: a compact rack with a drainage trough, comprising:

[0007] Slide rail, the ground is fixedly connected with a slide rail;

[0008] A compact shelving frame body is slidably connected to the slide rail;

[0009] A rotating wheel is rotatably connected to the front lower side of the compact rack body;

[0010] A drainage mechanism is provided on the upper part of the compact rack frame for draining the accumulated water on the top of the compact rack frame. The drainage mechanisms on at least two compact rack frames are connected to each other for centralized drainage of the accumulated water on the top of other compact rack frames.

[0011] Water collection mechanism. A water collection mechanism for collecting accumulated water is provided at the lower part of the compact shelving body. The water collection mechanism is connected to the drainage mechanism, and the drainage mechanism discharges the accumulated water into the water collection mechanism for collection, which is used for centralized collection of the accumulated water.

[0012] Furthermore, the drainage mechanism includes:

[0013] Right connecting pipe. A drainage groove is formed at the rear side of the top of the compact shelving body. A filter screen for filtering dust is connected to the drainage groove, and a right connecting pipe is connected to the upper right rear part of the compact shelving body.

[0014] Right push rod. A right push rod is connected inside the right connecting pipe.

[0015] Right stopper. A right stopper is slidably connected to the right push rod.

[0016] Right spring. A right spring is sleeved on the right stopper, and the two ends of the right spring are respectively connected to the right push rod and the right stopper.

[0017] Left connecting pipe. A left connecting pipe is connected to the upper left rear part of the compact shelving body. The left side of the left connecting pipe is a double cylinder, and the left connecting pipe can perfectly fit with the right connecting pipe.

[0018] Left stopper. A left stopper is slidably connected inside the left connecting pipe, and both the left stopper and the right stopper are L-shaped.

[0019] Left spring. A left spring is sleeved on the left stopper, and the two ends of the left spring are respectively connected to the left stopper and the left connecting pipe.

[0020] Furthermore, the top of the compact shelving body is an inclined plane.

[0021] Furthermore, the water collection mechanism includes:

[0022] Drain pipe. A drain pipe is connected to the rear side inside the compact shelving body, and the top end of the drain pipe is communicated with the drainage groove.

[0023] Upper liquid collection box. The bottom of the drain pipe is connected to an upper liquid collection box. A liquid outlet is formed at the bottom of the upper liquid collection box, and the upper liquid collection box is connected to the lower rear side of the compact shelving body.

[0024] Push-pull box. A push-pull box is slidably connected to the lower part inside the upper liquid collection box.

[0025] Lower liquid collection box. A lower liquid collection box for centralized collection of the accumulated water is placed inside the push-pull box.

[0026] Furthermore, a gas circulation mechanism for accelerating air flow is further included. The gas circulation mechanism includes:

[0027] Blower. Both the left and right sides inside the compact shelving body are storage spaces. Ventilation holes are evenly formed inside the compact shelving body, and a blower for accelerating air flow is connected to the lower side inside the compact shelving body.

[0028] An air outlet pipe is connected to the front side of the blower, and an air outlet pipe is connected to the front part inside the compact storage rack. The upper part of the upper air outlet pipe communicates with the space on the right side of the compact storage rack body.

[0029] An air inlet pipe is connected to the left rear side of the blower. The air inlet pipe communicates with the space on the left side of the compact storage rack body. When the blower is started, the blower sucks air from the space on the left side of the compact storage rack body into the space on the right side of the compact storage rack body through the air outlet pipe and the air inlet pipe, driving the air to flow rapidly inside the compact storage rack body.

[0030] Furthermore, it also includes a filter element replacement mechanism for placing desiccant, and the filter element replacement mechanism includes:

[0031] A filter element box is connected to the front lower side of the compact storage rack body. The bottom of the upper air outlet pipe communicates with the top of the filter element box, and the front side of the top of the lower air outlet pipe communicates with the bottom of the filter element box.

[0032] A pull-out box is slidably connected inside the filter element box for placing desiccant. Through holes are respectively opened at the rear sides of the bottom of the pull-out box, and filter screens are connected to the through holes on the pull-out box.

[0033] Furthermore, it also includes a warning mechanism for reminding that the connection of the compact storage rack body is completed, and the warning mechanism includes:

[0034] A cross plate is slidably connected to the upper left and right sides of the compact storage rack body. The rear sides of the bottoms of the cross plates are respectively connected to the tops of the adjacent right block and left block.

[0035] Linear springs are sleeved on the front sides of the cross plates, and the two ends of the linear springs are respectively connected to the compact storage rack body and the front sides of the cross plates.

[0036] Warning signs are slidably connected to the upper left and right sides of the front of the compact storage rack body, and inclined grooves are respectively opened inside the warning signs.

[0037] Sliding rods are slidably connected to the upper left and right sides of the front of the compact storage rack body. The outer sides of the sliding rods are respectively connected to the front sides of the adjacent cross plates, and the inner sides of the sliding rods are slidably connected to the adjacent warning signs.

[0038] Limit rollers are rotatably connected to the inner sides of the sliding rods. The limit rollers slide in the inclined grooves on the adjacent warning signs. When the cross plates move inward, they drive the sliding rods and the limit rollers to move inward, and the limit rollers drive the warning signs to move downward, for reminding that the connection of the compact storage rack body is completed.

[0039] Furthermore, it also includes a water and liquid wiping mechanism for wiping dust and water on the slide rails, and the water and liquid wiping mechanism includes sponge wipes, and sponge wipes are evenly adhered to the lower left and right sides of the compact storage rack body.

[0040] The present invention has at least the following advantages: When water accumulates and drips onto the top of the compact rack body, it slides into the drainage trough and then is discharged into the lower liquid collection box through the drain pipe for centralized collection. Moreover, the entire row of compact racks shares one lower liquid collection box. When the compact racks are closely attached, the left connecting pipe fits and communicates with the right connecting pipe, enabling the accumulated water on the entire row of compact racks to flow into one lower liquid collection box for centralized collection. In this way, it is convenient for the staff to clean the accumulated water. By starting the blower, the air in the space on the left side of the compact rack body can be pumped into the space on the right side. Thus, when multiple compact rack bodies are closely attached, the air inside the compact rack bodies can flow orderly, which can accelerate the air flow speed inside the compact rack bodies and keep the inside of the compact rack bodies dry. By placing desiccant in the drawer, the desiccant can dry the humid air sufficiently multiple times, preventing the humid air from flowing inside the compact rack bodies and causing the materials inside the compact rack bodies to get damp. When the cross plate moves inward to squeeze the sliding rod and the limit roller moves inward, the warning sign is driven to move downward. In this way, it can remind the staff that the connection of the compact rack body is completed. When the compact rack bodies are separated, the warning sign moves upward to reset, warning the staff that someone is looking for materials between the compact rack bodies, thus preventing the staff from accidentally resetting the compact rack bodies. When the compact rack body moves left and right, the sponge brush is driven to move left and right, enabling the sponge brush to wipe the dust and water stains on the slide rail, preventing dust accumulation from affecting the smoothness of the movement of the compact rack body and avoiding water stains from causing oxidation and corrosion of the slide rail, thereby affecting the service life of the slide rail. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 is a three-dimensional structural diagram of the present invention.

[0042] Figure 2 is a sectional three-dimensional structural diagram of the present invention.

[0043] Figure 3 is a three-dimensional structural diagram of the slide rail, the compact rack body and the runner of the present invention.

[0044] Figure 4 is a three-dimensional structural diagram of the drainage mechanism of the present invention.

[0045] Figure 5 is a sectional three-dimensional structural diagram of the first part of the drainage mechanism of the present invention.

[0046] Figure 6 is a sectional three-dimensional structural diagram of the second part of the drainage mechanism of the present invention.

[0047] Figure 7 is a three-dimensional structural diagram of the water collection mechanism of the present invention.

[0048] Figure 8Schematic diagram of the sectional three-dimensional structure of the water collection mechanism of the present invention.

[0049] Figure 9 Schematic diagram of the three-dimensional structure of the gas circulation mechanism of the present invention.

[0050] Figure 10 Partial schematic diagram of the three-dimensional structure of the gas circulation mechanism of the present invention.

[0051] Figure 11 Schematic diagram of the three-dimensional structure of the filter element replacement mechanism of the present invention.

[0052] Figure 12 Schematic diagram of the sectional three-dimensional structure of the filter element replacement mechanism of the present invention.

[0053] Figure 13 Schematic diagram of the three-dimensional structure of the warning mechanism of the present invention.

[0054] Figure 14 Schematic diagram of the sectional three-dimensional structure of the warning mechanism of the present invention.

[0055] Figure 15 Schematic diagram of the three-dimensional structure of the first part of the warning mechanism of the present invention.

[0056] Figure 16 Schematic diagram of the three-dimensional structure of the second part of the warning mechanism of the present invention.

[0057] Figure 17 Schematic diagram of the three-dimensional structure of the water liquid erasing mechanism of the present invention.

[0058] Figure 18 Partial schematic diagram of the three-dimensional structure of the water liquid erasing mechanism of the present invention.

[0059] Names and serial numbers of components in the figure: 1 - slide rail, 2 - compact shelf body, 3 - runner, 4 - drainage mechanism, 41 - drainage groove, 42 - right connecting pipe, 43 - right block, 44 - right push rod, 45 - right spring, 46 - left connecting pipe, 47 - left block, 48 - left spring, 5 - water collection mechanism, 51 - drain pipe, 52 - push - pull box, 53 - upper liquid collection box, 54 - lower liquid collection box, 6 - gas circulation mechanism, 61 - blower, 62 - air outlet pipe, 63 - air inlet pipe, 7 - filter element replacement mechanism, 71 - filter element box, 72 - pull - out box, 8 - warning mechanism, 81 - cross - plate, 82 - linear spring, 83 - sliding rod, 84 - limit roller, 85 - warning sign, 9 - water liquid erasing mechanism, 91 - sponge eraser. Detailed implementation manners

[0060] Next, in combination with the accompanying drawings and specific implementation manners, the present invention will be further described:

[0061] Embodiment 1

[0062] A compact bookshelf with a drainage groove, as Figures 1-8 shown, comprising a slide rail 1, a compact bookshelf body 2, a runner 3, a drainage mechanism 4 and a water collection mechanism 5. Three slide rails 1 are fixedly connected to the ground, and a compact bookshelf body 2 is slidably connected to the three slide rails 1. A runner 3 is rotatably connected to the lower front side of the compact bookshelf body 2. A drainage mechanism 4 is provided at the upper part of the compact bookshelf body 2, and the drainage mechanism 4 is used for draining the accumulated water on the top of the compact bookshelf body 2. A water collection mechanism 5 is provided at the lower part of the compact bookshelf body 2, and the water collection mechanism 5 is used for collecting the accumulated water. The water collection mechanism 5 is connected to the drainage mechanism 4. The drainage mechanism 4 includes a right connecting pipe 42, a right block 43, a right push rod 44, a right spring 45, a left connecting pipe 46, a left block 47 and a left spring 48. The top of the compact bookshelf body 2 is inclined, and a drainage groove 41 is opened at the rear side of the top of the compact bookshelf body 2. A filter screen for filtering dust is connected to the drainage groove 41. The right connecting pipe 42 is welded to the upper right rear side of the compact bookshelf body 2. The right push rod 44 is welded inside the right connecting pipe 42. The right block 43 is slidably connected to the right push rod 44. The right spring 45 is sleeved on the right block 43, and the two ends of the right spring 45 are respectively connected to the right push rod 44 and the right block 43. The left connecting pipe 46 is welded to the upper left rear side of the compact bookshelf body 2. The left side of the left connecting pipe 46 is a double cylinder, and the left connecting pipe 46 can perfectly fit with the right connecting pipe 42. The left block 47 is slidably connected inside the left connecting pipe 46. Both the left block 47 and the right block 43 are L-shaped. The left spring 48 is sleeved on the left block 47, and the two ends of the left spring 48 are respectively connected to the left block 47 and the left connecting pipe 46. The water collection mechanism 5 includes a drain pipe 51, a push-pull box 52, an upper liquid collection box 53 and a lower liquid collection box 54. The drain pipe 51 is connected to the rear side inside the compact bookshelf body 2. The top end of the drain pipe 51 is communicated with the drainage groove 41. The bottom of the drain pipe 51 is connected to the upper liquid collection box 53. A liquid outlet is opened at the bottom of the upper liquid collection box 53. The upper liquid collection box 53 is connected to the lower right side of the compact bookshelf body 2. The push-pull box 52 is slidably connected to the lower part inside the upper liquid collection box 53. The lower liquid collection box 54 is placed inside the push-pull box 52, and the lower liquid collection box 54 is used for centrally collecting the accumulated water.

[0063] During use, when the indoor ceiling seeps water in humid weather, water droplets fall onto the top of the compact shelf body 2. Since the top of the compact shelf body 2 is inclined, the water dripping onto the top of the compact shelf body 2 can slide into the drainage groove 41, and then be discharged into the upper liquid collecting box 53 through the drain pipe 51 for collection, and then flow into the lower liquid collecting box 54 for collection. Subsequently, the staff regularly clears the accumulated water in the lower liquid collecting box 54, manually pulls the push-pull box 52 backward, and the front side of the top of the push-pull box 52 blocks the liquid outlet on the upper liquid collecting box 53, preventing the water in the drain pipe 51 from continuing to flow downward when the staff clears the accumulated water in the lower liquid collecting box 54. In this way, it is possible to avoid water flowing on the top of the compact shelf, resulting in oxidation and corrosion of the top of the compact shelf, thereby affecting the service life of the compact shelf. Since this compact shelf has no cabinet door, discharging the accumulated water can prevent the accumulated water from flowing into the compact shelf and damaging the materials. Multiple compact shelf bodies 2 can be slidably installed on the slide rail 1 at the same time, thus forming a whole row of compact shelves. The whole row of compact shelves shares a lower liquid collecting box 54. When multiple compact shelf bodies 2 are close to each other, the left connecting pipe 46 on the right compact shelf body 2 is connected and fitted with the right connecting pipe 42 on the adjacent compact shelf body 2, so that the right push rod 44 pushes the adjacent left block 47 to move to the right, and at the same time, the middle of the left connecting pipe 46 pushes the right block 43 to move to the left. The left spring 48 and the right spring 45 are both compressed, making the adjacent left connecting pipe 46 and right connecting pipe 42 communicate. In this way, the accumulated water on the top of the compact shelf bodies 2 in the whole row will flow to the compact shelf body 2 with the lower liquid collecting box 54, and then be discharged into the lower liquid collecting box 54 for centralized collection. In this way, the accumulated water on multiple compact shelf bodies 2 can be centrally collected, and there is no need to clear the accumulated water in multiple lower liquid collecting boxes 54, reducing the labor intensity. When the staff rotates the runner 3 to control the movement of the compact shelf body 2, the compact shelf body 2 is separated from the adjacent compact shelf body 2, so that the right connecting pipe 42 is separated from the adjacent left connecting pipe 46, and the left spring 48 and the right spring 45 reset, driving the right block 43 and the left block 47 to move backward and reset respectively, blocking the right connecting pipe 42 and the left connecting pipe 46 respectively to prevent the water in the drainage groove 41 from flowing out. In this way, the accumulated water on multiple compact shelf bodies 2 can be centrally processed at the same time, with higher efficiency.

[0064] Embodiment 2

[0065] On the basis of Embodiment 1, as Figure 2 、 Figure 9 and Figure 10As shown in the figure, it also includes a gas circulation mechanism 6. The gas circulation mechanism 6 is used to accelerate the air flow. The gas circulation mechanism 6 includes a blower 61, an air outlet pipe 62 and an air inlet pipe 63. The left and right sides inside the rack body 2 of the compact shelving are both storage spaces. The inside of the rack body 2 of the compact shelving is evenly provided with ventilation holes. The blower 61 is fixedly connected to the lower side inside the rack body 2 of the compact shelving by bolts. The blower 61 is used to accelerate the air flow. The front side of the blower 61 is connected to the air outlet pipe 62. The air outlet pipe 62 is connected to the front part inside the rack body 2 of the compact shelving. The upper part of the upper air outlet pipe 62 communicates with the space on the right side of the rack body 2 of the compact shelving. The left rear side of the blower 61 is connected to the air inlet pipe 63. The air inlet pipe 63 communicates with the space on the left side of the rack body 2 of the compact shelving. When the blower 61 is started, the blower 61 sucks the air in the space on the left side of the rack body 2 of the compact shelving into the air outlet pipe 62 through the air inlet pipe 63, and then discharges it into the space on the right side of the rack body 2 of the compact shelving, so that the air blows from bottom to top. Since the inside of the rack body 2 of the compact shelving is evenly provided with ventilation holes, the blower 61 can accelerate the air flow speed inside the rack body 2 of the compact shelving. In this way, when multiple rack bodies 2 of the compact shelving are close to each other, the air inside the rack body 2 of the compact shelving can flow orderly, so that the inside of the rack body 2 of the compact shelving can be kept dry. When not in use, just turn off the blower 61.

[0066] As Figure 1 , Figure 11 and Figure 12 shown in the figure, it also includes a filter element replacement mechanism 7. The filter element replacement mechanism 7 is used to place desiccants. The filter element replacement mechanism 7 includes a filter element box 71 and a drawer box 72. The filter element box 71 is embedded and connected to the front lower side of the rack body 2 of the compact shelving. The bottom of the upper air outlet pipe 62 communicates with the top of the filter element box 71. The front side of the top of the lower air outlet pipe 62 communicates with the bottom of the filter element box 71. Three drawer boxes 72 are slidably connected inside the filter element box 71. The drawer boxes 72 are used to place desiccants. Through holes are opened at the rear sides of the bottoms of the three drawer boxes 72. Filter meshes are connected to the through holes on the drawer boxes 72. The staff pulls the drawer box 72 forward, then puts the desiccant into the drawer box 72, and then pushes the drawer box 72 backward to reset. When the air enters the filter element box 71 through the lower air outlet pipe 62, since through holes are opened on the drawer boxes 72 and the filter element box 71 has three layers, the desiccant in the drawer box 72 can dry the humid air sufficiently for multiple times, avoiding the data inside the rack body 2 of the compact shelving from getting damp due to the flow of humid air inside the rack body 2 of the compact shelving. And the staff can put an appropriate amount of desiccant in the drawer box 72 according to the weather. During the plum rain season, desiccants can be placed in all three drawer boxes 72 to dry the humid air sufficiently. On rainy days, desiccants in two drawer boxes 72 can be placed. On normal sunny days, only desiccant in one drawer box 72 needs to be placed. In this way, desiccant can be saved and waste can be avoided.

[0067] As Figure 1 , Figure 2 , Figure 13, Figure 14 , Figure 15 and Figure 16 As shown in Figure 14 , Figure 15 and Figure 16 , it further includes a warning mechanism 8. The warning mechanism 8 is used to remind that the connection of the rack body 2 of the compact storage rack is completed. The warning mechanism 8 includes a cross plate 81, a linear spring 82, a sliding rod 83, a limiting roller 84 and a warning sign 85. The left and right sides of the upper part of the rack body 2 of the compact storage rack are both connected in a sliding manner with the cross plate 81. The rear sides of the bottoms of the two cross plates 81 are respectively fixedly connected to the tops of the adjacent right block 43 and the left block 47. Linear springs 82 are sleeved on the front sides of the two cross plates 81. The two ends of the linear spring 82 are respectively connected to the rack body 2 of the compact storage rack and the front side of the cross plate 81. Warning signs 85 are slidably connected to the left and right sides of the upper front part of the rack body 2 of the compact storage rack. Oblique grooves are opened inside the two warning signs 85. Sliding rods 83 are slidably connected to the left and right sides of the upper front part of the rack body 2 of the compact storage rack. The outer sides of the two sliding rods 83 are respectively connected to the front side of the adjacent cross plate 81. The inner sides of the two sliding rods 83 are both slidably connected to the adjacent warning sign 85. Limiting rollers 84 are rotatably connected to the inner sides of the two sliding rods 83. The two limiting rollers 84 are both slid in the oblique grooves on the adjacent warning signs 85. When multiple rack bodies 2 of the compact storage rack are close to each other, the cross plates 81 on the remaining rack bodies 2 of the compact storage rack will squeeze the cross plates 81 on this rack body 2 of the compact storage rack to move inward. At the same time, the left block 47 and the right block 43 move inward. The linear spring 82, the left spring 48 and the right spring 45 are compressed, thereby driving the sliding rod 83 and the limiting roller 84 to move inward. Under the action of the oblique grooves in the warning sign 85, the limiting roller 84 drives the warning sign 85 to move downward. In this way, it can remind the staff that the connection of the rack body 2 of the compact storage rack is completed. After the warning sign 85 moves, the linear spring 82 can play a buffering role. When people need to find information, the separation of the rack body 2 of the compact storage rack is controlled. The linear spring 82, the left spring 48 and the right spring 45 reset, driving the cross plate 81 to move outward and reset. In this way, it can avoid the cross plate 81 being too long and being stuck, thereby driving the sliding rod 83 and the limiting roller 84 to move outward and reset. The limiting roller 84 drives the warning sign 85 to move upward. In this way, it can warn the staff that someone is looking for information between the rack bodies 2 of the compact storage rack, thereby preventing the staff from accidentally resetting the rack body 2 of the compact storage rack.

[0068] As Figure 1 , Figure 2 , Figure 17 and Figure 18As shown in the figure, it further includes a water and liquid wiping mechanism 9, which is used to wipe the dust and water on the slide rail 1. The water and liquid wiping mechanism 9 includes a sponge wiper 91, and three sponge wipers 91 are evenly adhered to the lower left and right sides of the dense rack body 2. Since the dense rack body 2 often moves left and right, it is easy to cause wear to the slide rail 1. When water droplets fall on the slide rail 1, if not wiped in time, the slide rail 1 will rust. When the dense rack body 2 moves left and right, it drives the sponge wiper 91 to move left and right, so that the sponge wiper 91 can wipe the dust and water stains on the slide rail 1, avoiding the accumulation of dust from affecting the smoothness of the movement of the dense rack body 2, and also avoiding the water stains from oxidizing and rusting the slide rail 1, thus affecting the service life of the slide rail 1.

[0069] Those skilled in the art should understand that the above embodiments do not limit the present invention in any form. Any technical solutions obtained by using equivalent replacements or equivalent transformations fall within the protection scope of the present invention.

Claims

1. A compact shelving unit with a drainage groove, characterized in that, It includes: Slide rail (1), which is fixedly connected to the ground. Compact shelving body (2), which is slidably connected to the slide rail (1). Rotating wheel (3), which is rotatably connected to the lower front side of the compact shelving body (2). Drainage mechanism (4), which is provided on the upper part of the compact shelving body (2) for draining the accumulated water on the top of the compact shelving body (2). The drainage mechanisms (4) on at least two compact shelving bodies (2) are communicated to centrally drain the accumulated water on the tops of other compact shelving bodies (2). Water collection mechanism (5), which is provided on the lower part of the compact shelving body (2) for collecting the accumulated water. The water collection mechanism (5) is connected to the drainage mechanism (4), and the drainage mechanism (4) drains the accumulated water into the water collection mechanism (5) for centralized collection. The drainage mechanism (4) includes: Right connecting pipe (42), a drainage groove (41) is opened at the rear side of the top of the compact shelving body (2), a filter screen for filtering dust is connected to the drainage groove (41), and the right connecting pipe (42) is connected to the upper right rear side of the compact shelving body (2). Right push rod (44), which is connected inside the right connecting pipe (42). Right block (43), which is slidably connected to the right push rod (44). Right spring (45), which is sleeved on the right block (43), and the two ends of the right spring (45) are respectively connected to the right push rod (44) and the right block (43). Left connecting pipe (46), which is connected to the upper left rear side of the compact shelving body (2). The left side of the left connecting pipe (46) is a double cylinder, and the left connecting pipe (46) can fit with the right connecting pipe (42). Left block (47), which is slidably connected inside the left connecting pipe (46). Both the left block (47) and the right block (43) are L-shaped. Left spring (48), which is sleeved on the left block (47), and the two ends of the left spring (48) are respectively connected to the left block (47) and the left connecting pipe (46).

2. The compact shelving with a drainage groove according to claim 1, characterized in that, The top of the compact shelving body (2) is an inclined plane.

3. The compact shelving with a drainage groove according to claim 2, wherein, The water collection mechanism (5) includes: Drain pipe (51), which is connected to the rear side inside the compact shelving body (2), and the top end of the drain pipe (51) is communicated with the drainage groove (41). Upper liquid collection box (53), which is connected to the bottom of the drain pipe (51). An outlet is opened at the bottom of the upper liquid collection box (53), and the upper liquid collection box (53) is connected to the lower rear side of the compact shelving body (2). Push-pull box (52), which is slidably connected to the lower part inside the upper liquid collection box (53). Lower liquid collection box (54), and a lower liquid collection box (54) for centrally collecting the accumulated water is placed inside the push-pull box (52).

4. The multi-tier rack with a drainage groove according to claim 3, characterized in that, It also includes a gas circulation mechanism (6) for accelerating air flow. The gas circulation mechanism (6) includes: Blower (61), there are placement spaces on both the left and right sides inside the compact shelving body (2). Ventilation holes are evenly opened inside the compact shelving body (2), and a blower (61) for accelerating air flow is connected to the lower side inside the compact shelving body (2). Outlet pipe (62), an outlet pipe (62) is connected to the front side of the blower (61), and an outlet pipe (62) is connected to the inner front part of the compact shelving body (2). The upper part of the upper outlet pipe (62) communicates with the space on the right side of the compact shelving body (2). Inlet pipe (63), an inlet pipe (63) is connected to the left rear side of the blower (61), and the inlet pipe (63) communicates with the space on the left side of the compact shelving body (2). When the blower (61) is started, the blower (61) sucks air from the space on the left side of the compact shelving body (2) into the space on the right side of the compact shelving body (2) through the outlet pipe (62) and the inlet pipe (63), driving the air to flow rapidly inside the compact shelving body (2).

5. The compact shelving with a drain groove according to claim 4, characterized in that It further includes a filter element replacement mechanism (7) for placing desiccant, and the filter element replacement mechanism (7) includes: Filter element box (71), a filter element box (71) is connected to the front lower side of the compact shelving body (2). The bottom of the upper outlet pipe (62) communicates with the top of the filter element box (71), and the front side of the top of the lower outlet pipe (62) communicates with the bottom of the filter element box (71). Drawer box (72), a drawer box (72) for placing desiccant is slidably connected inside the filter element box (71). Through holes are opened at the rear sides of the bottom of the drawer box (72), and filter meshes are connected to the through holes on the drawer box (72).

6. The compact shelving with a drainage groove according to claim 5, characterized in that, It further includes a warning mechanism (8) for reminding that the connection of the compact shelving body (2) is completed, and the warning mechanism (8) includes: Cross plate (81), cross plates (81) are slidably connected to the upper left and right sides of the compact shelving body (2). The rear sides of the bottoms of the cross plates (81) are respectively connected to the tops of the adjacent right block (43) and left block (47). Linear spring (82), linear springs (82) are sleeved on the front sides of the cross plates (81), and the two ends of the linear springs (82) are respectively connected to the compact shelving body (2) and the front sides of the cross plates (81). Warning sign (85), warning signs (85) are slidably connected to the upper left and right sides of the front upper part of the compact shelving body (2), and inclined grooves are opened inside the warning signs (85). Sliding rod (83), sliding rods (83) are slidably connected to the upper left and right sides of the front upper part of the compact shelving body (2). The outer sides of the sliding rods (83) are respectively connected to the front sides of the adjacent cross plates (81), and the inner sides of the sliding rods (83) are slidably connected to the adjacent warning signs (85). Limit roller (84), limit rollers (84) are rotatably connected to the inner sides of the sliding rods (83), and the limit rollers (84) slide in the inclined grooves on the adjacent warning signs (85). When the cross plate (81) moves inward, it drives the sliding rod (83) and the limit roller (84) to move inward, and the limit roller (84) drives the warning sign (85) to move downward, for reminding that the connection of the compact shelving body (2) is completed.

7. The compact shelving unit with a drain groove according to claim 6, characterized in that, It further includes a water and liquid wiping mechanism (9) for wiping dust and water on the slide rail (1), and the water and liquid wiping mechanism (9) includes a sponge wipe (91), and sponge wipes (91) are evenly adhered to the lower left and right sides of the compact shelving body (2).

Citation Information

Patent Citations

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