Novel medicine bottle cleaning and blow-drying machine
By designing a new type of medicine bottle cleaning and drying machine, which uses high-pressure clean water, purified water and high-pressure rotating air components, the problem of low cleaning efficiency of medicine bottles is solved. It achieves efficient and thorough cleaning and drying of medicine bottles, adapts to different types of medicine bottles, and improves cleaning quality and resource utilization.
Patent Information
- Application Number
- CN202520154853.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-23
AI Technical Summary
Existing medicine bottle cleaning equipment is inefficient, the cleaning effect on the outer wall of the medicine bottle is not ideal, and manual feeding is required, which cannot achieve efficient and thorough rinsing and drying.
A novel medicine bottle washing and drying machine is designed, comprising a washing mechanism and a drying mechanism. It adopts high-pressure clean water and purified water rinsing and a high-pressure rotary air assembly, combined with a mesh belt conveyor and an adjustment mechanism, to achieve efficient washing and drying of medicine bottles, adapting to different types of medicine bottles.
It significantly improves the cleaning efficiency and drying quality of medicine bottles, achieving thorough cleaning and drying without any blind spots. It is energy-saving, environmentally friendly, and highly applicable.
Smart Images

Figure CN223847708U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of medicine bottle cleaning equipment, concretely relates to a novel medicine bottle cleaning and blow-drying machine. BACKGROUND
[0002] The medicine bottles such as ampoule bottles often have liquid medicine, impurities and the like adhered to the outer wall of the bottle body during filling, conveying and the like, at which time the bottle body of the medicine bottle needs to be effectively washed and cleaned. The existing medicine bottle cleaning equipment is generally only simply water-washing and air-blowing, and the medicine bottle cleaning feeding is also manually fed by manpower, which is not only low in efficiency, but also the cleaning effect of the outer wall of the medicine bottle is not ideal. UTILITY MODEL CONTENT
[0003] In order to solve the deficiency of the prior art, the utility model aims at providing a novel medicine bottle cleaning and blow-drying machine, which can effectively and completely wash and blow-dry the bottle body during the conveying of the medicine bottle, thereby significantly improving the cleaning efficiency of the medicine bottle and the cleaning effect of the bottle body.
[0004] In order to achieve the above-mentioned purpose, the utility model adopts the technical scheme that:
[0005] A novel medicine bottle cleaning and blow-drying machine, comprising a machine body and a mesh belt conveyor, wherein a cleaning mechanism and a blow-drying mechanism are horizontally arranged in sequence along the feeding direction on the upper part of the machine body above the mesh belt conveyor, and a water collecting pool is arranged below the mesh belt conveyor; the cleaning mechanism comprises a clean water washing assembly and a purified water washing assembly, and the clean water washing assembly is arranged in front of the purified water washing assembly; the blow-drying mechanism comprises a high-pressure pulse rotary air assembly and two high-pressure air knife assemblies which are horizontally arranged, and the high-pressure pulse rotary air assembly is arranged between the two high-pressure air knife assemblies.
[0006] Preferably, the clean water washing assembly and the purified water washing assembly respectively comprise nozzles connected with a high-pressure clean water source and a high-pressure purified water source.
[0007] Preferably, the water outlet below the water collecting pool is connected with the water inlet of a high-pressure circulating water pump through a filtering assembly, and the water outlet of the high-pressure circulating water pump is connected with the clean water washing assembly.
[0008] Preferably, the high-pressure air knife assembly comprises an air bellow connected with an external high-pressure air source, and a strip-shaped air outlet is vertically arranged on the bottom of the air bellow and is perpendicular to the feeding direction of the mesh belt conveyor; the high-pressure pulse rotary air assembly comprises a plurality of rotary air nozzles connected with an external high-pressure air source, and the rotary air nozzles are horizontally arranged in an array.
[0009] Preferably, the machine body is further provided with an adjusting mechanism for synchronously adjusting the height of the cleaning mechanism and the blow-drying mechanism.
[0010] Preferably, the adjusting mechanism comprises a longitudinal moving frame and a lifting driving assembly, the cleaning mechanism and the blow-drying mechanism are mounted on the longitudinal moving frame, the longitudinal moving frame is vertically slidingly mounted on the machine body, and the lifting driving assembly is connected with the longitudinal moving frame through an action end.
[0011] Preferably, the lifting driving assembly comprises a screw rod and a crank handle, the screw rod is vertically arranged and rotatably mounted on the machine body, a connecting block fixed on the longitudinal moving frame is threadedly sleeved on the screw rod, and the crank handle is mounted on an end of the screw rod.
[0012] Preferably, the adjusting mechanism is provided with a swinging mechanism for driving the cleaning mechanism and the blow-drying mechanism to swing transversely and reciprocally.
[0013] Preferably, the swinging mechanism comprises a horizontal driving assembly and a transverse moving plate, the cleaning mechanism and the blow-drying mechanism are fixed on the transverse moving plate arranged vertically, the transverse moving plate is slidingly mounted on the adjusting mechanism along a material conveying direction, and the horizontal driving assembly is mounted on the adjusting mechanism and connected with the transverse moving plate through an action end.
[0014] Preferably, the horizontal driving assembly is a telescopic cylinder arranged horizontally, and a piston rod of the telescopic cylinder is fixedly connected with the transverse moving plate.
[0015] The device has the following beneficial effects:
[0016] 1. In the device, the cleaning mechanism and the blow-drying mechanism clean and dry the falling water, which is collected in the water collecting pool through the mesh belt conveyor, and the water in the water collecting pool is filtered by the filtering assembly and then supplied to the clean water flushing assembly by the high-pressure circulating water pump, so as to realize continuous recycling of the cleaning water, thereby effectively improving the water resource utilization rate and being more energy-saving and environment-friendly. The purified water flushing assembly is connected with an external high-pressure purified water source, and the medicine bottle is subjected to high-pressure flushing by the purified water after being flushed by the clean water, so as to ensure the flushing quality of the medicine bottle.
[0017] 2. The medicine bottle flushed by the cleaning mechanism is conveyed by the mesh belt conveyor, is first subjected to blowing by the air knife of the first high-pressure air knife assembly, is then subjected to blowing and drying by the high-pressure rotating air blown out by the rotating air nozzle in the middle, and is finally subjected to further blowing and drying by the air knife of the second high-pressure air knife assembly, so as to significantly improve the drying efficiency and drying quality of the medicine bottle.
[0018] 3. According to the height of the clean medicine bottle, the screw rod is rotated by the crank handle, the connecting block drives the longitudinal moving frame to vertically ascend and descend under the sliding limiting action of the first sliding rail, and the distance between the cleaning mechanism and the blow-drying mechanism and the mesh belt conveyor below can be effectively adjusted, so that the device can be used for cleaning different types of medicine bottles, and the device has stronger applicability.
[0019] 4. By utilizing the reciprocating contraction and extension of the telescopic cylinder, the transverse plate can reciprocate along the conveying direction, thereby driving the cleaning and drying mechanisms to oscillate continuously above the medicine bottles. This allows for thorough rinsing and drying of the medicine bottles, avoiding problems with incomplete spraying and drying, and significantly improving the cleaning quality of the medicine bottles. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of this utility model;
[0021] Figure 2 This is a schematic diagram showing the installation of the adjusting mechanism and the swinging mechanism of this utility model;
[0022] Figure 3 This is a schematic diagram showing the installation of the cleaning mechanism and the drying mechanism of this utility model;
[0023] Figure 4 This is a schematic diagram of the high-pressure air knife assembly of this utility model. Detailed Implementation
[0024] The principles and features of this utility model are described below with reference to the accompanying drawings. The examples given are only for explaining this utility model and are not intended to limit the scope of application of this utility model.
[0025] like Figures 1-4 As shown, this utility model proposes a novel medicine bottle washing and drying machine, including a machine body 1 and a mesh belt conveyor 2. A washing mechanism 4 and a drying mechanism 3 are arranged horizontally along the conveying direction on the machine body 1, facing the medicine bottles on the mesh conveyor below. A water collection tank 5 is located below the mesh belt conveyor 2. The washing mechanism 4 includes a clean water rinsing component 41 and a purified water rinsing component 42, with the clean water rinsing component 41 located in front of the purified water rinsing component 42. The outlet of the water collection tank 5 is connected to the inlet of a high-pressure circulating water pump via a filter component, and the outlet of the high-pressure circulating water pump is connected to the clean water rinsing component 41. An overflow port 51 is provided at the top of the water collection tank 5 to prevent the water level in the water collection tank 5 from becoming too high. The filter component can be a commonly used wastewater filter on the market.
[0026] The water from the cleaning and drying processes of the cleaning and drying mechanisms 4 and 3 is collected in the water collection tank 5 via the mesh belt conveyor 2. The water in the collection tank 5 is then filtered by the filter assembly and re-supplied to the clean water rinsing assembly 41 by a high-pressure circulating water pump, thus achieving continuous recycling of the cleaning water. This effectively improves water resource utilization and is more energy-efficient and environmentally friendly. The purified water rinsing assembly 42 is connected to an external high-pressure purified water source. The medicine bottles are rinsed with clean water and then subjected to high-pressure rinsing with purified water, ensuring the quality of the rinsing process.
[0027] The clean water flushing assembly 41 comprises a plurality of clean water nozzles 410 connected to a high-pressure clean water source, which are arranged horizontally and perpendicularly to the conveying direction of the mesh belt conveyor 2 to form a clean water high-pressure flushing curtain, which can effectively clean the vials conveyed on the mesh belt conveyor 2. The purified water flushing assembly 42 comprises a plurality of purified water nozzles 420 connected to an external high-pressure purified water source, which are arranged horizontally and perpendicularly to the conveying direction of the mesh belt conveyor 2 to form a high-pressure purified water curtain, which further flushes the vials after clean water washing.
[0028] The blow-drying mechanism 3 comprises a high-pressure pulse rotary air assembly and two high-pressure air knife assemblies 31, and the high-pressure pulse rotary air assembly is arranged between the two high-pressure air knife assemblies 31. The high-pressure air knife assembly 31 comprises an air box 311 connected to an external high-pressure air source, and a strip-shaped air outlet 310 is arranged at the bottom of the air box 311 and perpendicularly to the conveying direction of the mesh belt conveyor 2. External high-pressure air is blown out through the strip-shaped air outlet 310 below the air box 311 to form a linear air knife, thereby effectively drying the vials. The high-pressure pulse rotary air assembly comprises a plurality of rotary air nozzles 32 connected to an external high-pressure air source, which are arranged in an array. The rotary air nozzle 32 adopts a commonly used rotary high-pressure air nozzle structure. Air rotates at high speed in the rotary air nozzle 32 to generate a gap impact wave airflow, which blows out pulse high-pressure gas downward. The principle of the prior art is not described in detail.
[0029] The vials washed by the washing mechanism 4 are conveyed on the mesh belt conveyor 2, first pass through the air knife of the first high-pressure air knife assembly 31 for blowing, then pass through the high-pressure rotary air blown out by the rotary air nozzle 32 in the middle for drying, and finally pass through the air knife of the second high-pressure air knife assembly 31 for further blowing and drying, thereby significantly improving the drying efficiency and drying quality of the vials.
[0030] The machine body 1 is further provided with an adjusting mechanism 8 for synchronously adjusting the height of the washing mechanism 4 and the blow-drying mechanism 3, and the adjusting mechanism 8 is further provided with a swing mechanism. The adjusting mechanism 8 comprises a longitudinal moving frame 6 and a lifting driving assembly. The rear side wall of the longitudinal moving frame 6 is slidably mounted on the machine body 1 through a vertically arranged first sliding rail 61, and the action end of the lifting driving assembly is connected to the longitudinal moving frame 6. Specifically, the lifting driving assembly comprises a screw rod 82 and a crank 81. The screw rod 82 is vertically arranged and rotatably mounted on the machine body 1, a connecting block 70 fixedly arranged on the longitudinal moving frame 6 is threadedly sleeved on the screw rod 82, and the crank 81 is mounted on the end of the screw rod 82. The connecting block 70 is further provided with a bolt locking type clamp 83 matched with the screw rod 82. After the height of the longitudinal moving frame 6 is adjusted to the right position, the screw rod 82 can be fixed and locked by adjusting the bolt locking type clamp 83, thereby improving the safety and stability of the equipment.
[0031] Depending on the height of the medicine bottle being cleaned, the screw 82 is rotated by the crank 81. Under the sliding limit action of the first slide rail 61, the connecting block 70 drives the longitudinal frame 6 to move vertically up and down. This effectively adjusts the distance between the cleaning mechanism 4 and the drying mechanism 3 and the lower mesh belt conveyor 2, thus enabling the device to adapt to the cleaning of different types of medicine bottles and making the device more versatile.
[0032] The oscillating mechanism drives the cleaning mechanism 4 and the drying mechanism 3 to oscillate laterally. The oscillating mechanism includes a horizontal drive assembly 71 and a transverse plate 7. The cleaning mechanism 4 and the drying mechanism 3 are fixed on the vertically arranged transverse plate 7. The transverse plate 7 is horizontally slidable along the conveying direction on the rear side wall of the longitudinal frame 6 via a second slide rail 62, improving the stability of the transverse plate 7's horizontal movement. The horizontal drive assembly 71 is mounted on the longitudinal frame 6, and its actuating end is connected to the transverse plate 7. In this embodiment, the horizontal drive assembly 71 is a horizontally arranged telescopic cylinder, and the piston rod of the telescopic cylinder is fixedly connected to the transverse plate 7.
[0033] By utilizing the reciprocating contraction and extension of the telescopic cylinder, the transverse plate 7 can reciprocate along the conveying direction, thereby driving the cleaning mechanism 4 and the drying mechanism 3 to oscillate continuously above the medicine bottle. This allows for thorough rinsing and drying of the medicine bottle, avoiding problems with inadequate spraying and drying, and significantly improving the cleaning quality of the medicine bottle.
[0034] When using this device, the medicine bottles are placed upright on the grid conveyor, or the drainable tray containing the medicine bottles can be placed directly on the grid conveyor, so that the medicine bottles are conveyed from right to left. After being rinsed by the high pressure of the clean water nozzles 410 and purified water nozzles 420 of the cleaning mechanism 4, they are sent to the drying mechanism 3. After being blown by the front and rear high-pressure air knife assemblies 31 and the central rotating air nozzle 32, the residual water droplets on the medicine bottles can be dried efficiently. During this process, driven by the telescopic cylinder, the cleaning mechanism 4 and the drying mechanism 3 can swing left and right above the medicine bottles, so that the medicine bottles can be rinsed and dried without dead angles.
[0035] Obviously, the embodiments described above are only some embodiments of this application, not all embodiments. The accompanying drawings show preferred embodiments of this application, but do not limit the patent scope of this application. This application can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this application's specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the scope of patent protection of this application.
Claims
1. A new type of vial cleaning and drying machine comprising a machine body and a mesh belt conveyor, characterized in that: The belt conveyor is provided with a cleaning mechanism and a blow-drying mechanism in sequence from top to bottom along the feeding direction, and a water collecting pool is arranged below the belt conveyor.
2. The novel vial washing and drying machine as claimed in claim 1, wherein: The water flushing assembly and the purified water flushing assembly are respectively provided with nozzles connected with a high-pressure clean water source and a high-pressure purified water source.
3. The novel vial washing and drying machine as claimed in claim 1, wherein: The water outlet below the water collecting pool is connected with the water inlet of a high-pressure circulating water pump through a filtering assembly, and the water outlet of the high-pressure circulating water pump is connected with the water flushing assembly.
4. The novel vial washer-blower as claimed in claim 1, wherein: The high-pressure air knife assembly is provided with an air bellow connected with an external high-pressure air source, and a strip-shaped air outlet is vertically arranged at the bottom of the air bellow along the feeding direction of the belt conveyor.
5. The novel vial washing and drying machine as claimed in claim 1, wherein: The high-pressure pulse rotating air assembly is provided with a plurality of rotating air nozzles connected with an external high-pressure air source, and the rotating air nozzles are arranged in a horizontal array.
6. The novel vial washer-blow dryer as claimed in claim 5, wherein: The machine body is further provided with an adjusting mechanism for synchronously adjusting the height of the cleaning mechanism and the blow-drying mechanism.
7. The novel vial washer-blow dryer as claimed in claim 6, wherein: The adjusting mechanism comprises a longitudinal moving frame and a lifting driving assembly, the cleaning mechanism and the blow-drying mechanism are mounted on the longitudinal moving frame, the longitudinal moving frame is vertically slidably mounted on the machine body, and the action end of the lifting driving assembly is connected with the longitudinal moving frame.
8. The novel vial washing and drying machine as claimed in claim 5 wherein: The lifting driving assembly comprises a screw rod and a crank handle, the screw rod is vertically arranged and rotatably mounted on the machine body, a connecting block fixed on the longitudinal moving frame is threadedly sleeved on the screw rod, and the crank handle is mounted on the end of the screw rod.
9. The novel vial washing and drying machine as claimed in claim 8, wherein: The adjusting mechanism is further provided with a swinging mechanism for driving the cleaning mechanism and the blow-drying mechanism to swing laterally and reciprocally.
10. The novel vial washing and drying machine as claimed in claim 9, wherein: The swinging mechanism comprises a horizontal driving assembly and a transverse moving plate, the cleaning mechanism and the blow-drying mechanism are fixed on the transverse moving plate arranged vertically, the transverse moving plate is horizontally slidably mounted on the adjusting mechanism along the feeding direction, and the horizontal driving assembly is mounted on the adjusting mechanism and its action end is connected with the transverse moving plate. The horizontal driving assembly is a horizontally arranged telescopic cylinder, and the piston rod of the telescopic cylinder is fixedly connected with the transverse moving plate.