Intelligent compact shelf inner circulation dust collection system
Patent Information
- Application Number
- CN202522375229.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-10
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-10
AI Technical Summary
[0003]密封架包括柜体、底盘和轨道一些结构,柜体能够沿着轨道运动,若一些灰尘积聚在轨道沟槽内,当架体移动时,滑轮滚过这些区域,会将这些积聚的灰尘碾压、搅动起来,使其重新悬浮在空气中,增加了灰尘的飘散区域,影响处理该区域灰尘的效果
通过设置的负压吸力产生组件包括负压吸力盒、连接杆和活塞块,在使用柜体位于导轨上移动时,会带动连接杆跟随移动,此时活塞块会在负压吸力盒内部运动而产生吸力,使吸引腔一部分区域产生负压区,倾斜相对板与导轨相对,若一些灰尘积聚在轨道沟槽内,通过外侧的吸引孔产生吸力打开弹性片,将灰尘吸引至负压吸力盒内排出,靠近导轨产生吸引灰尘的作用,降低该位置灰尘的飘散区域,利于循环处理因导轨滑轮移动飘出的灰尘。
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Figure CN224807989U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mobile shelving technology, specifically relating to an intelligent mobile shelving internal circulation dust collection system. Background Technology
[0002] Intelligent mobile shelving is a file storage device that integrates manual, electric, and computer control. It has remote control, automatic positioning functions, and multiple security protection systems. Currently, small, quiet fans and high-efficiency filters are installed in the channels reserved on the top or side of the mobile shelving. The fans draw air from inside the mobile shelving, and the air passes through the filter screen to capture micron-sized dust particles. The purified clean air is then sent back into the mobile shelving, forming a closed, continuously purified internal circulation.
[0003] The sealing rack consists of a cabinet, a chassis, and a track. The cabinet can move along the track. If some dust accumulates in the track grooves, when the rack moves, the pulleys roll over these areas, crushing and agitating the accumulated dust, causing it to resuspend in the air. This increases the dust dispersion area and affects the effectiveness of dust treatment in that area. Utility Model Content
[0004] This utility model provides an intelligent mobile shelving internal circulation dust collection system. If some dust accumulates in the track groove, the suction hole on the outside generates suction to open the elastic sheet, drawing the dust into the negative pressure suction box for discharge. The system attracts dust near the guide rail, reducing the dust dispersion area at that location and facilitating the circulation and handling of dust that floats out due to the movement of the guide rail pulleys.
[0005] This utility model provides the following technical solution: an intelligent mobile shelving internal circulation dust collection system, including a cabinet and a guide rail for moving the cabinet. A chassis is fixedly connected to the bottom of the cabinet. A suction pipe that generates suction force through a fan is provided at the bottom of the cabinet. A negative pressure suction generating component is provided on the outside of the guide rail. The negative pressure suction generating component includes a negative pressure suction box, a connecting rod, and a piston block. One end of the connecting rod is fixed to the bottom of the chassis, and the other end of the connecting rod is fixedly connected to the piston block. The piston block is slidably connected inside the negative pressure suction box. An inclined plate opposite to the guide rail is fixedly connected to the top of the negative pressure suction box. The inclined plate has a plurality of suction holes.
[0006] The suction hole is fixedly connected to several elastic plates, and several connecting rods seal the suction hole, with the opposite ends of the several connecting rods in contact with each other.
[0007] An outer limiting ring is fixedly connected inside the suction hole, and the outer limiting ring is attached to the outside of the fixed end of the elastic sheet.
[0008] One end of the suction tube is sealed to the negative pressure suction box, and the other end of the suction tube extends to the outside.
[0009] The negative pressure suction box has a suction cavity, and the piston block is slidably connected inside the suction cavity.
[0010] The negative pressure suction box has a sealing groove, and the connecting rod is located inside the sealing groove.
[0011] A sealing baffle is fixedly connected to the outer wall of the connecting rod, and the sealing baffle is always located outside the sealing groove.
[0012] The beneficial effects of this utility model are: The negative pressure suction generating component includes a negative pressure suction box, a connecting rod, and a piston block. When the cabinet moves on the guide rail, the connecting rod moves accordingly. At this time, the piston block moves inside the negative pressure suction box to generate suction, creating a negative pressure zone in a part of the suction chamber. The inclined plate is opposite to the guide rail. If some dust accumulates in the track groove, the suction hole on the outside generates suction to open the elastic sheet, drawing the dust into the negative pressure suction box for discharge. It attracts dust near the guide rail, reducing the dust dispersion area at that location and facilitating the recycling of dust that floats out due to the movement of the guide rail pulleys.
[0013] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the bottom structure of the cabinet in this utility model; Figure 3 This is a schematic diagram of the suction hole structure in this utility model; Figure 4 This is a schematic diagram of the inclined opposing plates in this utility model; Figure 5 This is a schematic diagram of the negative pressure suction box in this utility model; In the diagram: 1. Cabinet; 11. Chassis; 12. Guide rail; 2. Negative pressure suction generating component; 21. Negative pressure suction box; 211. Inclined opposing plate; 212. Suction hole; 213. Elastic sheet; 214. Outer limit retaining ring; 215. Suction cavity; 216. Sealing groove; 22. Sealing baffle; 23. Connecting rod; 24. Piston block; 3. Suction tube. Detailed Implementation
[0015] Please see Figures 1-5The present invention provides the following technical solution: including a cabinet 1 and a guide rail 12 for moving the cabinet 1, a base 11 is fixedly connected to the bottom of the cabinet 1, a suction pipe 3 for generating suction force through a fan is provided at the bottom of the cabinet 1, a negative pressure suction generating component 2 is provided on the outside of the guide rail 12, the negative pressure suction generating component 2 includes a negative pressure suction box 21, a connecting rod 23 and a piston block 24, one end of the connecting rod 23 is fixed to the bottom of the base 11, the other end of the connecting rod 23 is fixedly connected to the piston block 24, the piston block 24 is slidably connected in the negative pressure suction box 21, and an inclined plate 211 is fixedly connected to the top of the negative pressure suction box 21, which is opposite to the guide rail 12, and the inclined plate 211 has a plurality of suction holes 212.
[0016] In this implementation scheme: the negative pressure suction generating component 2 includes a negative pressure suction box 21, a connecting rod 23, and a piston block 24. One end of the connecting rod 23 is fixed to the bottom of the chassis 11, and the other end of the connecting rod 23 is fixedly connected to the piston block 24. The piston block 24 is slidably connected inside the negative pressure suction box 21. To ensure that suction is always generated in the area of the negative pressure suction box 21, two piston blocks 24 can be set at the bottom of one cabinet 1. That is, when the cabinet 1 moves to one side, one piston block 24 generates suction, and the other piston block 24 generates thrust. When the cabinet 1 moves to the other side, one piston block 24 generates thrust, and the other piston block 24 generates suction. The top of the negative pressure suction box 21 is fixedly connected to an inclined plate 211 that is opposite to the guide rail 12. The inclined plate 211 has several suction holes 212. When the cabinet 1 moves on the guide rail 12, it will drive the connecting rod 23 to move accordingly. At this time, the piston block 24 will move inside the negative pressure suction box 21 and generate suction. This creates a negative pressure zone in a portion of the suction chamber 215. The inclined plate 211 is opposite to the guide rail 12. If dust accumulates in the track groove, suction is generated through the outer suction hole 212, opening the elastic sheet 213 and drawing the dust into the negative pressure suction box 21 for discharge. The plate, close to the guide rail 12, attracts dust, reducing the dust dispersion area at that location and facilitating the recycling of dust dissipated by the movement of the guide rail 12 pulleys. The elastic sheet 213 is made of plastic and is perpendicular to the guide rail 12 when not under stress. The inner wall of the suction hole 212 is sealed by multiple elastic plates 213. Under the action of the outer limit ring 214, if the piston block 24 generates a thrust, the gas cannot push open the multiple elastic plates 213. The elastic plates 213 can only be opened towards the inside of the negative pressure suction box 21 under the action of suction. Under the action of the suction tube 3, the suction cavity 215 can have a suction force to draw the dust flow inside the negative pressure suction box 21, and the dust inside the negative pressure suction box 21 is concentrated and discharged.
[0017] Several elastic plates 213 are fixedly connected inside the suction hole 212, and several connecting rods 23 seal the suction hole 212. The opposite ends of the several connecting rods 23 are in contact with each other. When the elastic plates 213 are not under force, they are perpendicular to the inner wall of the suction hole 212, so that multiple elastic plates 213 seal the suction hole 212. When subjected to attraction, they are inclined to the inner wall of the hole.
[0018] One end of the suction tube 3 is sealed and connected to the negative pressure suction box 21, and the other end of the suction tube 3 extends to the outside. The suction tube 3 generates suction through a fan. This technology is existing technology. The purpose is to make the suction chamber 215 have suction to draw in the dust flowing inside the negative pressure suction box 21, and to concentrate and discharge the dust inside the negative pressure suction box 21 to the outside. A dust collection box can be set up outside to collect the dust.
[0019] The negative pressure suction box 21 has a sealing groove 216. The connecting rod 23 is located inside the sealing groove 216. A sealing baffle 22 is fixedly connected to the outer wall of the connecting rod 23. The sealing baffle 22 is always located outside the sealing groove 216. When the connecting rod 23 moves, the sealing groove 216 provides space for the connecting rod 23 to move. The sealing baffle 22 can be made of Teflon and is always attached to the outer surface of the negative pressure suction box 21. As the connecting rod 23 moves, it moves along the outer surface of the negative pressure suction box 21 to seal the sealing groove 216.
[0020] The working principle and usage process of this utility model: When the cabinet 1 moves on the guide rail 12, it will drive the connecting rod 23 to move accordingly. At this time, the piston block 24 will move inside the negative pressure suction box 21 to generate suction, creating a negative pressure zone in a part of the suction chamber 215. The inclined plate 211 is opposite to the guide rail 12. If some dust accumulates in the track groove, the suction generated by the outer suction hole 212 opens the elastic sheet 213, drawing the dust into the negative pressure suction box 21 for discharge. The dust is attracted to the guide rail 12, reducing the dust dispersion area at that location. In the circulation process, the dust that is blown out by the movement of the pulley of the guide rail 12 is perpendicular to the inner wall of the suction hole 212 in the unloaded state, so that multiple elastic plates 213 seal the suction hole 212. Under the action of the outer limit ring 214, if the piston block 24 generates a thrust, the gas cannot push open the multiple elastic plates 213. The elastic plates 213 can only be opened towards the inside of the negative pressure suction box 21 under the action of suction. Under the action of the suction tube 3, the suction chamber 215 can have a suction force to draw the dust flow inside the negative pressure suction box 21, and the dust inside the negative pressure suction box 21 is concentrated and discharged.
Claims
1. An intelligent mobile shelving internal circulation dust collection system, comprising a cabinet (1) and a guide rail (12) for moving the cabinet (1), wherein a chassis (11) is fixedly connected to the bottom of the cabinet (1), and a suction pipe (3) for generating suction force by a fan is provided at the bottom of the cabinet (1), characterized in that: The guide rail (12) is provided with a negative pressure suction generating component (2). The negative pressure suction generating component (2) includes a negative pressure suction box (21), a connecting rod (23) and a piston block (24). One end of the connecting rod (23) is fixed to the bottom of the chassis (11), and the other end of the connecting rod (23) is fixedly connected to the piston block (24). The piston block (24) is slidably connected inside the negative pressure suction box (21). The top of the negative pressure suction box (21) is fixedly connected to an inclined plate (211) relative to the guide rail (12). The inclined plate (211) has several suction holes (212).
2. The intelligent mobile shelving internal circulation dust collection system according to claim 1, characterized in that: A plurality of elastic plates (213) are fixedly connected inside the suction hole (212), and a plurality of connecting rods (23) seal the suction hole (212), with the opposite ends of the plurality of connecting rods (23) in contact with each other.
3. The intelligent mobile shelving internal circulation dust collection system according to claim 2, characterized in that: An outer limiting ring (214) is fixedly connected inside the suction hole (212), and the outer limiting ring (214) is attached to the outside of the fixed end of the elastic sheet (213).
4. The intelligent mobile shelving internal circulation dust collection system according to claim 1, characterized in that: One end of the suction tube (3) is sealed and connected to the negative pressure suction box (21), and the other end of the suction tube (3) extends to the outside.
5. The intelligent mobile shelving internal circulation dust collection system according to claim 1, characterized in that: The negative pressure suction box (21) has a suction cavity (215), and the piston block (24) is slidably connected in the suction cavity (215).
6. The intelligent mobile shelving internal circulation dust collection system according to claim 1, characterized in that: The negative pressure suction box (21) has a sealing groove (216), and the connecting rod (23) is located in the sealing groove (216).
7. The intelligent mobile shelving internal circulation dust collection system according to claim 6, characterized in that: A sealing baffle (22) is fixedly connected to the outer wall of the connecting rod (23), and the sealing baffle (22) is always located outside the sealing groove (216).