A pharmaceutical processing and storage equipment cleaning station
By installing a drive motor and gear system in the cleaning station of pharmaceutical processing and storage equipment, and adjusting the angle of the movable plate to tilt for drainage, the problem of low drainage efficiency caused by the inability of the ground floor to deflect is solved, and more efficient sewage discharge is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI PIOM PHARMA
- Filing Date
- 2025-08-04
- Publication Date
- 2026-07-21
AI Technical Summary
The existing cleaning station floor of the pharmaceutical processing and storage equipment cannot be deflected, and relies on the terrain difference near the drain for drainage, resulting in slow overall drainage efficiency.
By setting a first drive motor to drive the active gear and the driven gear, the angle of the movable plate is adjusted so that it tilts towards the side of the drain tank. Combined with the support rod and rubber strip support, the movable plate is kept horizontal, and sewage flows through the tilted movable plate to the drain tank for discharge.
It improves the drainage efficiency of the cleaning station for pharmaceutical processing and storage equipment, and solves the problem of slow drainage caused by the inability of the ground floor to deflect.
Smart Images

Figure CN224525489U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pharmaceutical cleaning stations, and more particularly to a cleaning station for pharmaceutical processing and storage equipment. Background Technology
[0002] A pharmaceutical processing and storage equipment cleaning station is a system or dedicated area in the pharmaceutical industry used to clean production equipment, containers, pipelines, and other facilities that come into contact with pharmaceuticals. Its core purpose is to ensure hygiene and safety during the pharmaceutical production process, prevent cross-contamination, residue mixing, or microbial growth, thereby ensuring drug quality and patient safety.
[0003] Existing cleaning stations for pharmaceutical processing and storage equipment have a fixed floor design that cannot be adjusted. They rely solely on the small terrain difference near the drain for drainage. Due to the lack of an active flow guiding structure, water tends to stagnate. This results in slow drainage, especially when cleaning a large number of devices, which affects work efficiency and may even lead to water accumulation and pollution risks.
[0004] Therefore, in view of the problem that the existing cleaning stations for pharmaceutical processing and storage equipment cannot be deflected during use and rely on the terrain difference near the drain for drainage, resulting in slow overall drainage efficiency, there is an urgent need to design a new type of cleaning station for pharmaceutical processing and storage equipment. Utility Model Content
[0005] To overcome the problem that the existing cleaning stations for pharmaceutical processing and storage equipment cannot deflect their floor slabs during use and rely on the terrain difference near the drain for drainage, resulting in slow overall drainage efficiency.
[0006] The technical solution of this utility model is as follows: a cleaning station for pharmaceutical processing and storage equipment, including a cleaning station body; it also includes a drive shaft, a mounting base, a movable plate, an L-shaped mounting plate, a first drive motor, a drive gear, a driven gear, a water leakage trough, and a drainage trough. One end of the drive shaft is rotatably connected to the lower right side surface of the cleaning station body, and the other end of the drive shaft is rotatably connected to the left side of the inner surface of the cleaning station body. A mounting base is installed on the outer surface of the drive shaft, and a movable plate is provided on the upper surface of the mounting base. An L-shaped mounting plate is installed on the right side of the cleaning station body above the drive shaft. A first drive motor is provided on the right side of the inner surface of the L-shaped mounting plate. The output end of the first drive motor is connected to the drive gear, and the right end of the drive shaft is connected to the driven gear. The drive gear and the driven gear mesh. A water leakage trough is provided at the rear bottom of the inner surface of the cleaning station body, and drainage troughs are provided on both the left and right sides of the water leakage trough at the bottom of the inner surface of the cleaning station body.
[0007] Preferably, by setting a first drive motor, its output end will drive the drive gear to rotate during operation. When the drive gear rotates, it can drive the driven gear meshing with it to rotate synchronously. The driven gear drives the mounting base to rotate, thereby causing the angle of the movable plate to deflect. The whole plate tilts towards one side of the drain tank. After the cleaning operation is completed, the sewage will flow through the tilted movable plate to the drain tank and be discharged, which improves the drainage efficiency. This solves the problem that the existing cleaning station for pharmaceutical processing and storage equipment cannot deflect the ground plate during use and relies on the terrain difference near the drain for drainage, resulting in slow overall drainage efficiency.
[0008] Preferably, insertion holes are provided on the lower rear side of both the left and right sides of the cleaning station body. One end of a support rod is slidably connected inside the insertion hole. A drive assembly is installed on the lower rear side of the cleaning station body, and the other end of the support rod is connected to the moving end of the drive assembly.
[0009] Preferably, the drive assembly includes a mounting frame, a second drive motor, a bidirectional lead screw, and a movable seat; the mounting frame is located on the lower rear surface of the cleaning station body, the second drive motor is located on the right side surface of the mounting frame, the output end of the second drive motor passes through the right side wall of the mounting frame and is connected to one end of the bidirectional lead screw, the other end of the bidirectional lead screw is rotatably connected to the left side of the inner surface of the mounting frame, and two symmetrical movable seats are threadedly connected to the outer surface of the bidirectional lead screw, the rear surface of the movable seats is connected to the support rod.
[0010] Preferably, a first rubber strip is installed on the rear side of the inner surface of the cleaning station body, and the bottom surface of the first rubber strip is in contact with the rear side of the upper surface of the movable plate. A second rubber strip is installed at the front position of the bottom of the inner surface of the cleaning station body, and the upper surface of the second rubber strip is in contact with the front side of the bottom surface of the movable plate. By setting the first rubber strip, when the movable plate is kept horizontal, the first rubber strip and the movable plate will remain in contact, preventing sewage from leaking into the bottom of the inner surface of the cleaning station body.
[0011] Preferably, a positioning frame is installed on the bottom surface of the cleaning station body at the position corresponding to the water leakage trough, and a filter screen is inserted into the rear surface of the positioning frame.
[0012] Preferably, sliders are installed on both the left and right surfaces of the filter screen, and the filter screen is slidably connected to the positioning frame through the sliders. Pull blocks are provided on both the left and right sides of the rear surface of the filter screen.
[0013] Preferably, heightening blocks are installed on the left and right sides and the front side of the upper surface of the movable plate.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting a first drive motor, its output end can drive the active gear to rotate. The active gear and the driven gear cooperate to drive the mounting base to rotate, thereby adjusting the deflection angle of the movable plate. The whole plate is tilted to one side of the drain tank. After the cleaning operation is completed, the sewage will flow through the tilted movable plate to the drain tank and be discharged, which improves the drainage efficiency. This solves the problem that the existing cleaning station for pharmaceutical processing and storage equipment cannot deflect the ground plate when in use and relies on the terrain difference near the drain for drainage, resulting in slow overall drainage efficiency. Attached Figure Description
[0016] Figure 1 The diagram shown is a schematic representation of the cleaning stand structure of a pharmaceutical processing and storage device according to this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional structural schematic of the movable plate of a cleaning station in a pharmaceutical processing and storage equipment according to this utility model.
[0018] Figure 3 The diagram shown is a three-dimensional structural schematic of a water leakage tank in a cleaning station of a pharmaceutical processing and storage equipment according to this utility model.
[0019] Figure 4 The diagram shown is a three-dimensional structural schematic of a drive component for a cleaning station in a pharmaceutical processing and storage equipment according to this utility model.
[0020] Figure 5 The diagram shown is a three-dimensional structural schematic of the filter screen of a cleaning station in a pharmaceutical processing and storage equipment according to this utility model.
[0021] Explanation of reference numerals in the attached drawings: 1. Cleaning station body; 2. Drive shaft; 3. Mounting base; 4. Movable plate; 5. L-shaped mounting plate; 6. First drive motor; 7. Drive gear; 8. Driven gear; 9. Leakage trough; 10. Drainage trough; 11. Insertion hole; 12. Support rod; 131. Mounting frame; 132. Second drive motor; 133. Two-way lead screw; 134. Moving base; 14. First rubber strip; 15. Second rubber strip; 16. Positioning frame; 17. Filter screen; 18. Slider; 19. Pull block; 20. Heightening block. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Please see Figures 1-5This utility model provides an embodiment of a cleaning station for pharmaceutical processing and storage equipment, comprising a cleaning station body 1; and further comprising a drive shaft 2, a mounting base 3, a movable plate 4, an L-shaped mounting plate 5, a first drive motor 6, a driving gear 7, a driven gear 8, a drain trough 9, and a drainage trough 10. One end of the drive shaft 2 is rotatably connected to the lower right side surface of the cleaning station body 1, and the other end of the drive shaft 2 is rotatably connected to the left side of the inner surface of the cleaning station body 1. The mounting base 3 is mounted on the outer surface of the drive shaft 2, and the movable plate 4 is provided on the upper surface of the mounting base 3. An L-shaped mounting plate 5 is mounted on the right side of the right side of the cleaning station body 1 above the drive shaft 2, and the first drive motor 6 is provided on the right side of the inner surface of the L-shaped mounting plate 5. The output end of the drive shaft 2 is connected to the drive gear 7, and the right end of the drive shaft 2 is connected to the driven gear 8. The drive gear 7 and the driven gear 8 mesh with each other. A drainage trough 9 is provided at the rear of the bottom of the inner surface of the cleaning station body 1. Drainage channels 10 are provided on both the left and right sides of the drainage trough 9 at the bottom of the inner surface of the cleaning station body 1. By setting the first drive motor 6, its output end will drive the drive gear 7 to rotate during operation. When the drive gear 7 rotates, it can drive the driven gear 8 that meshes with it to rotate synchronously. The driven gear 8 drives the mounting base 3 to rotate, thereby causing the angle of the movable plate 4 to deflect. The whole plate tilts to one side of the drainage trough 9. After the cleaning operation is completed, the sewage will flow through the tilted movable plate 4 to the drainage trough 9 and be discharged, which improves the drainage efficiency.
[0024] Please see Figures 1-4In this embodiment, insertion holes 11 are provided on the lower rear sides of both the left and right surfaces of the cleaning station body 1. One end of a support rod 12 is slidably connected inside the insertion hole 11. A drive assembly is installed on the lower rear surface of the cleaning station body 1. The other end of the support rod 12 is connected to the moving end of the drive assembly. By setting the drive assembly, the support rod 12 can be driven to slide left and right along the insertion hole 11. When inserted into the cleaning station body 1, it can support the rear side of the movable plate 4 to prevent it from tilting. When it is necessary to tilt the movable plate 4, the support rod 12 can be moved to support the rear side of the movable plate 4. The support rod 12 moves out, thereby releasing the restriction on the movable plate 4. The drive assembly includes a mounting frame 131, a second drive motor 132, a bidirectional lead screw 133, and a movable seat 134. The mounting frame 131 is located on the lower rear surface of the cleaning station body 1. The second drive motor 132 is located on the right side surface of the mounting frame 131. The output end of the second drive motor 132 passes through the right side wall of the mounting frame 131 and is connected to one end of the bidirectional lead screw 133. The other end of the bidirectional lead screw 133 is rotatably connected to the left side of the inner surface of the mounting frame 131. The outer surface of the bidirectional lead screw 133 is threaded with two symmetrical movable seats 134. The rear surface of the movable seats 134 is connected to the support rod 12. By setting a second drive motor 132, its output end will drive the bidirectional lead screw 133 to rotate during operation. When the bidirectional lead screw 133 rotates, it drives the two movable seats 134 that are threaded with it to move synchronously in opposite directions, thereby driving the support rod 12 to move left and right. A first rubber strip 14 is installed on the rear side of the inner surface of the cleaning station body 1. The bottom surface of the first rubber strip 14 is connected to the movable seat 12. The upper surface of the movable plate 4 is attached to the rear side. A second rubber strip 15 is installed at the front position of the bottom of the inner surface of the cleaning station body 1. The upper surface of the second rubber strip 15 is attached to the front side of the bottom surface of the movable plate 4. By setting the first rubber strip 14, when the movable plate 4 is kept horizontal, the first rubber strip 14 and the movable plate 4 will remain attached to each other, preventing sewage from leaking into the bottom of the inner surface of the cleaning station body 1. By setting the second rubber strip 15, the front position of the movable plate 4 can be supported. In cooperation with the support rod 12, the movable plate 4 can be kept horizontal.
[0025] Please see Figures 1-5In this embodiment, a positioning frame 16 is installed on the bottom surface of the cleaning station body 1 at the position corresponding to the drain trough 9. A filter screen 17 is inserted into the rear surface of the positioning frame 16. By setting the filter screen 17, the sewage discharged through the drain trough 9 will be filtered by the filter screen 17, thereby isolating some large particles of impurities and preventing blockage of the sewer. Slider blocks 18 are installed on both the left and right sides of the filter screen 17. The filter screen 17 is slidably connected to the positioning frame 16 through the sliders 18. Pull blocks 19 are set on both the left and right sides of the rear surface of the filter screen 17. By setting the sliders 18 and pull blocks 19, the filter screen 17 can be easily disassembled and installed, so as to carry out daily cleaning and replacement. Heightening blocks 20 are installed on the left and right sides and the front side of the upper surface of the movable plate 4. By setting the heightening blocks 20, sewage can be prevented from overflowing from the side of the movable plate 4 during cleaning.
[0026] During operation, the drive assembly allows the support rod 12 to slide left and right along the insertion hole 11. When inserted into the cleaning station body 1, it supports the rear side of the movable plate 4, preventing it from tilting. When tilting the movable plate 4 is necessary, the support rod 12 is moved out, thus releasing the restriction on the movable plate 4. A second drive motor 132, during operation, drives the bidirectional lead screw 133 to rotate. The rotation of the bidirectional lead screw 133 drives the two threaded moving seats 134 to move synchronously in opposite directions, thereby driving the support rod... The 12 moves left and right. By setting the second rubber strip 15, the front side of the movable plate 4 can be supported. In cooperation with the support rod 12, the movable plate 4 can be kept horizontal. By setting the filter screen 17, the sewage discharged through the drain trough 9 will be filtered by the filter screen 17, thereby isolating some large particles of impurities and preventing blockage of the sewer. By setting the slider 18 and the pull block 19, the filter screen 17 can be easily disassembled and installed for daily cleaning and replacement. By setting the heightening block 20, sewage can be prevented from overflowing from the side of the movable plate 4 during cleaning.
[0027] Through the above steps, by setting the first drive motor 6, its output end can drive the drive gear 7 to rotate. The drive gear 7 and the driven gear 8 cooperate to drive the mounting base 3 to rotate, thereby adjusting the deflection angle of the movable plate 4. The whole plate is tilted towards one side of the drain trough 9. After the cleaning operation is completed, the sewage will flow through the tilted movable plate 4 to the drain trough 9 and be discharged, which improves the drainage efficiency. This solves the problem that the existing cleaning station for pharmaceutical processing and storage equipment cannot deflect its ground plate when in use, and relies on the terrain difference near the drain for drainage, resulting in a slow overall drainage efficiency.
Claims
1. A pharmaceutical processing and storage equipment cleaning station comprising a cleaning station body (1); characterized in that: It also includes a drive shaft (2), a mounting base (3), a movable plate (4), an L-shaped mounting plate (5), a first drive motor (6), a drive gear (7), a driven gear (8), a water leakage trough (9), and a diversion trough (10). One end of the drive shaft (2) is rotatably connected to the lower right side surface of the cleaning station body (1). The other end of the drive shaft (2) is rotatably connected to the left side of the inner surface of the cleaning station body (1). A mounting base (3) is installed on the outer surface of the drive shaft (2). A movable plate (4) is provided on the upper surface of the mounting base (3). The cleaning station body (1) An L-shaped mounting plate (5) is installed on the right side of the transmission shaft (2) above the transmission shaft (2). A first drive motor (6) is installed on the right side of the inner surface of the L-shaped mounting plate (5). The output end of the first drive motor (6) is connected to a drive gear (7). A driven gear (8) is connected to the right end of the transmission shaft (2). The drive gear (7) meshes with the driven gear (8). A water leakage groove (9) is provided at the rear position of the bottom of the inner surface of the cleaning station body (1). Drainage grooves (10) are provided on both the left and right sides of the water leakage groove (9) at the bottom of the inner surface of the cleaning station body (1).
2. A pharmaceutical processing and storage apparatus cleaning station according to claim 1, wherein: The cleaning station body (1) has a socket (11) on the lower rear side of both sides of the surface. One end of a support rod (12) is slidably connected inside the socket (11). A drive assembly is installed on the lower rear side of the cleaning station body (1). The other end of the support rod (12) is connected to the moving end of the drive assembly.
3. A pharmaceutical processing and storage apparatus cleaning station according to claim 2, wherein: The drive assembly includes a mounting frame (131), a second drive motor (132), a bidirectional lead screw (133), and a movable seat (134). The mounting frame (131) is located on the lower rear surface of the cleaning station body (1). The second drive motor (132) is located on the right side surface of the mounting frame (131). The output end of the second drive motor (132) passes through the right side wall of the mounting frame (131) and is connected to one end of the bidirectional lead screw (133). The other end of the bidirectional lead screw (133) is rotatably connected to the left side of the inner surface of the mounting frame (131). The outer surface of the bidirectional lead screw (133) is threadedly connected to two symmetrical movable seats (134). The rear surface of the movable seat (134) is connected to the support rod (12).
4. A pharmaceutical processing and storage apparatus cleaning station according to claim 1, wherein: A first rubber strip (14) is installed on the rear side of the inner surface of the cleaning station body (1). The bottom surface of the first rubber strip (14) is in contact with the rear side of the upper surface of the movable plate (4). A second rubber strip (15) is installed at the front position of the bottom of the inner surface of the cleaning station body (1). The upper surface of the second rubber strip (15) is in contact with the front side of the bottom surface of the movable plate (4).
5. A pharmaceutical processing and storage apparatus cleaning station according to claim 1, wherein: A positioning frame (16) is installed on the bottom surface of the cleaning station body (1) at the position corresponding to the water leakage tank (9), and a filter screen (17) is inserted into the rear surface of the positioning frame (16).
6. A pharmaceutical processing and storage apparatus cleaning station according to claim 5, wherein: The filter screen (17) has sliders (18) installed on both the left and right sides. The filter screen (17) is slidably connected to the positioning frame (16) through the sliders (18). Pull blocks (19) are provided on both the left and right sides of the rear surface of the filter screen (17).
7. A pharmaceutical processing and storage apparatus cleaning station according to claim 1, wherein: The upper surface of the movable plate (4) is provided with high blocks (20) on both sides and the front side.