An ultrasonic wave medicine bottle cleaning device

CN224794216UActive Publication Date: 2026-09-25SHANDONG ZONGSHENG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522255172.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-09-25
Estimated Expiration
2035-10-24

AI Technical Summary

Technical Problem

[0005]为解决现有超声波兽药瓶清洗装置,存在人工操作清洗效率低,劳动强度高,仍旧存在清洁效果差的问题,本实用新型提供一种超声波药瓶清洁装置

Benefits of technology

使用时,水槽中通过进水管加入一定的清洗水,启动超声波发生器,将药瓶整齐的排成一列,逐一从进瓶口一放入,使药瓶相互紧挨,然后沿着第一导向杆向下移动,使药瓶浸入水中,然后药瓶再经过扭转导向机构使药瓶转向到瓶口向上状态,使瓶内装满水,保证超声波通过水来对瓶内进行清洗,然后继续向后侧进行移动,使药瓶进行扭转使药瓶,通过第二导向杆从出瓶口一出去,完成对药瓶的超声波清洗。本装置通过将药瓶连续排列逐一经过水槽浸入到清洗水中,通过扭转导向机构使瓶子从水平方向转向垂直方向,将瓶内灌满水,保证超声波能够对药瓶的清洗效果,能够连续对药瓶进行清洗,提高了清洗的效率,降低了劳动强度。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ultrasonic wave medicine bottle cleaning device belongs to the veterinary drug production technical field. Including support seat, support seat upper side connection installation has the water tank, water tank inboard bottom connection installation has the ultrasonic wave generator, one side of water tank is equipped with the bottle inlet no.
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Description

Technical Field

[0001] This utility model belongs to the field of veterinary drug production technology, specifically an ultrasonic medicine bottle cleaning device. Background Technology

[0002] After the veterinary drugs are produced, they need to be bagged or bottled to facilitate sales and long-term storage. When bottling veterinary drugs, the bottles need to be cleaned beforehand to prevent the drugs from being contaminated by dirty bottles.

[0003] In the prior art, application number CN202421444001.0, entitled "Ultrasonic Veterinary Drug Bottle Cleaning Device," discloses an ultrasonic veterinary drug bottle cleaning device, comprising: a base on which a cleaning tank is fixedly connected; an ultrasonic generator installed at the lower end of the interior of the cleaning tank; and multiple rows of supports equidistantly arranged above the cleaning tank.

[0004] The aforementioned patent utilizes an ultrasonic generator to clean veterinary drug bottles, but it has some drawbacks in its application: when immersing the veterinary drug bottles in water for ultrasonic cleaning, the bottles need to be manually placed and removed from the clamping plate. This manual operation is inefficient, labor-intensive, and unsuitable for large-scale cleaning. If the veterinary drug bottles are not placed properly, the corresponding technical effect cannot be achieved, and the ultrasonic waves cannot thoroughly clean the inside of the veterinary drug bottles through the water. As a result, impurities will remain inside the bottles after cleaning, leading to poor cleaning results. Utility Model Content

[0005] To address the problems of low efficiency, high labor intensity, and poor cleaning effect associated with existing ultrasonic veterinary drug bottle cleaning devices, which rely on manual operation, this invention provides an ultrasonic drug bottle cleaning device.

[0006] This utility model is achieved through the following technical solution: An ultrasonic medicine bottle cleaning device includes a support base, a water tank connected to the upper side of the support base, an ultrasonic generator connected to the bottom of the inner side of the water tank, a bottle inlet on one side of the water tank and a bottle outlet on the other side, a plurality of first guide rods that can guide the medicine bottle to move downward are connected and installed around the bottle inlet, a plurality of torsion guide mechanisms connected end to end are connected and installed on the other side of the first guide rods, and a plurality of second guide rods that can guide the medicine bottle to move upward are connected and installed on the other side of the torsion guide mechanisms. The torsion guide mechanism includes two parallel and opposite mounting plates, each with an opening corresponding to a medicine bottle. The two openings form a corresponding torsion angle, and a third guide rod that enables the medicine bottle to be torsion by the corresponding angle is connected and installed on the two mounting plates. A water inlet pipe is connected to the side wall of the sink, and a water outlet pipe is connected to its bottom.

[0007] A further improvement of this utility model is that a rinsing tank is connected and installed on the side of the water tank. The side wall of the rinsing tank is respectively provided with an inlet and an outlet corresponding to the first outlet. A nozzle is connected and installed at the bottom of the inner side of the rinsing tank. Several fourth guide rods and fifth guide rods are respectively connected and installed at the inlet and the outlet. A torsion guide mechanism that can make the medicine bottle mouth face down is connected and installed on the other side of the fourth guide rod. A torsion guide mechanism that can make the medicine bottle turn to a horizontal state is connected and installed on the other side of the fifth guide rod. A translation guide mechanism corresponding to the nozzle is connected and installed between the two torsion guide mechanisms. The bottom plate of the rinsing tank is equipped with a drainage hole, and a water storage tank is connected and installed on the lower side of the rinsing tank.

[0008] A further improvement of this utility model is that an overflow hole is provided on the side wall of the water tank.

[0009] A further improvement of this utility model is that the inlet pipe and the outlet pipe are arranged diagonally opposite each other.

[0010] A further improvement of this utility model is that a circulation pump capable of pumping the water from the storage tank to the water tank is connected and installed on the side wall of the rinsing tank.

[0011] A further improvement of this utility model is that a support plate is connected and installed on the first guide rod, the second guide rod, the fourth guide rod, and the fifth guide rod.

[0012] A further improvement of this utility model is that the outer sides of the first guide rod, the second guide rod, the third guide rod, the fourth guide rod, and the fifth guide rod are all wrapped with a polytetrafluoroethylene layer.

[0013] As can be seen from the above technical solutions, the beneficial effects of this utility model are: In use, a certain amount of cleaning water is added to the water tank through the inlet pipe. The ultrasonic generator is then activated. The medicine bottles are neatly arranged in a row and placed one by one into the inlet, ensuring they are close together. They are then moved downwards along the first guide rod, immersing the bottles in water. The bottles are then rotated by a torsion guide mechanism to an upward-facing position, filling them with water to ensure the ultrasonic waves effectively clean the inside. The device continues to move backwards, rotating the bottles to exit through the outlet via the second guide rod, completing the ultrasonic cleaning of the medicine bottles. This device, by continuously immersing medicine bottles one by one into the cleaning water tank and using a torsion guide mechanism to rotate the bottles from a horizontal to a vertical position and fill them with water, ensures effective ultrasonic cleaning. It allows for continuous cleaning, improving efficiency and reducing labor intensity. Attached Figure Description

[0014] To more clearly illustrate the technical solution of this utility model, the drawings used in the description will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0016] Figure 2 This is a schematic diagram of the guiding structure of the water tank part of this utility model.

[0017] Figure 3 This is a schematic diagram of the guiding structure of the rinsing tank part of this utility model.

[0018] Figure 4 This is a schematic diagram of the mounting plate of this utility model.

[0019] In the attached diagram: 1. Support base; 2. Water tank; 3. Ultrasonic generator; 4. Bottle inlet 1; 5. Bottle outlet 1; 6. First guide rod; 7. Torsional guide mechanism; 8. Second guide rod; 9. Water inlet pipe; 10. Water outlet pipe; 11. Rinsing tank; 12. Bottle inlet 2; 13. Bottle outlet 2; 14. Nozzle; 15. Fourth guide rod; 16. Fifth guide rod; 17. Translational guide mechanism; 18. Leakage hole; 19. Water storage tank; 20. Overflow hole; 21. Circulation pump; 22. Support plate; 71. Mounting plate; 72. Opening; 73. Third guide rod. Detailed Implementation

[0020] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the specific embodiments. Obviously, the embodiments described below are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this patent, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this patent.

[0021] like Figure 1-4As shown, an ultrasonic medicine bottle cleaning device includes a support base 1, a water tank 2 connected to the upper side of the support base 1, an ultrasonic generator 3 connected to the bottom of the inner side of the water tank 2, a bottle inlet 4 on one side of the water tank 2 and a bottle outlet 5 on the other side, six parallel first guide rods 6 connected around the bottle inlet 4 to guide the medicine bottle downwards, the first guide rods 6 are straight rods on both sides with an arc in the middle, and several torsion guide mechanisms 7 connected end to end are connected to the other side of the first guide rods 6, the torsion guide mechanisms 7 can twist the medicine bottle 90 degrees, and several second guide rods 8 connected to the other side of the torsion guide mechanisms 7 to guide the medicine bottle upwards. The torsion guide mechanism 7 includes two parallel and opposite mounting plates 71. The two mounting plates 71 are provided with openings 72 corresponding to the medicine bottles. The two openings 72 form corresponding torsion angles. A third guide rod 73 that can make the medicine bottle torsion at the corresponding angle is connected and installed on the two mounting plates 71. The third guide rod 73 is a spiral bent rod. A water inlet pipe 9 is connected and installed on the side wall of the water tank 2, and a water outlet pipe 10 is connected and installed at its bottom. The water outlet pipe 10 is connected to the drain pipe to discharge sewage.

[0022] In use, a certain amount of cleaning water is added to the water tank 2 through the water inlet pipe 9. The ultrasonic generator 3 is started, and the medicine bottles are neatly arranged in a row by the bottle unscrambler and pushed in one by one from the bottle inlet 4, so that the medicine bottles are close to each other. Then, the bottles move downward along the channel formed by the six first guide rods 6, so that the medicine bottles are completely immersed in the water. Then, the medicine bottles pass through the torsion channel formed by the third guide rod 73 in the torsion guide mechanism 7, so that the medicine bottles are turned to the bottle opening upward, and the bottles are filled with water. The effect of ultrasonic cleaning depends on the "cavitation effect" in the liquid. As long as the object is completely immersed in the cleaning liquid, the ultrasonic waves can be used to clean the inside of the bottle through the water. Then, the bottle continues to move backward, so that the medicine bottle is twisted and exits from the bottle outlet 5 through the second guide rod 8, completing the ultrasonic cleaning of the medicine bottle. After cleaning for a period of time, the water outlet pipe 10 is opened to change the cleaning water to ensure the cleaning effect. This device involves immersing medicine bottles one by one in a water tank, arranged in a continuous sequence. The bottle is then rotated from a horizontal to a vertical position by a torsion guide mechanism 7, filling the bottle with water. This ensures that the ultrasonic waves can effectively clean the medicine bottles, allowing for continuous cleaning and improving cleaning efficiency while reducing labor intensity.

[0023] The water tank 2 is connected to a rinsing tank 11 on its side. The side wall of the rinsing tank 11 is provided with an inlet 12 and an outlet 13 corresponding to the outlet 5. A nozzle 14 is connected to the bottom of the inner side of the rinsing tank 11. Several fourth guide rods 15 and fifth guide rods 16 are connected to the inlet 12 and the outlet 13 respectively. A torsion guide mechanism 7 that can make the medicine bottle mouth face down is connected to the other side of the fourth guide rod 15. A torsion guide mechanism 7 that can make the medicine bottle turn to a horizontal state is connected to the other side of the fifth guide rod 16. A translation guide mechanism 17 corresponding to the nozzle 14 is connected between the two torsion guide mechanisms 7. The translation guide mechanism 17 includes two mounting plates 71 on both sides and six straight rods installed in the middle to enable the medicine bottle to move horizontally. The bottom plate of the rinsing tank 11 is provided with a water leakage hole 18, and a water storage tank 19 is connected and installed on the lower side of the rinsing tank 11.

[0024] During use, after ultrasonic cleaning, the medicine bottle enters the rinsing tank 11 through the inlet 12. The medicine bottle moves downward along the fourth guide rod 15, and then the bottle opening is turned downward by the twisting guide mechanism 7. This allows the cleaning water inside the bottle to be discharged, and also aligns the bottle opening with the nozzle 14. As the medicine bottle moves along the translation guide mechanism 17, the nozzle 14 sprays clean water into the bottle, completely cleaning any impurities that may still be present inside. Finally, the medicine bottle flows out through the outlet 13 through the fifth guide rod 16 and enters the next process for drying.

[0025] The water tank 2 has an overflow hole 20 on its side wall. This prevents the water in the water tank 2 from overflowing to the outside due to excessive water being added. When the washing water exceeds the overflow hole 20, the excess water will flow out from the overflow hole 20.

[0026] The inlet pipe 9 and the outlet pipe 10 are arranged diagonally opposite each other. This diagonal arrangement allows the water from the inlet pipe 9 to flow into the outlet pipe 10 when the cleaning water needs to be changed, thus effectively cleaning the impurities remaining at the bottom of the water tank 2.

[0027] The rinsing tank 11 is equipped with a circulation pump 21 connected to its side wall, which pumps water from the storage tank 19 to the water tank 2. Water in the rinsing tank 11 flows into the storage tank 19 through the drain hole 18. Since the water is relatively clean, it can be pumped back into the water tank 2 to clean the medicine bottles, which greatly saves water resources. At the same time, it can refresh the water in the water tank 2 at any time, keeping the cleaning water in the water tank 2 clean and ensuring the cleaning effect of the medicine bottles.

[0028] Support plates 22 are connected and installed on the first guide rod 6, the second guide rod 8, the fourth guide rod 15, and the fifth guide rod 16. The support plates 22 can reinforce the corresponding guide rods to prevent deformation and affect the guidance of the medicine bottle.

[0029] The first guide rod 6, the second guide rod 8, the third guide rod 73, the fourth guide rod 15, and the fifth guide rod 16 are all covered with a polytetrafluoroethylene (PTFE) layer. The PTFE layer protects the medicine bottle from wear by the guide rods, reduces friction, and decreases the resistance when the medicine bottle passes through the guide rods, making the flow of the medicine bottle smoother.

[0030] It should be noted that an ultrasonic vibration isolation pad can be added between the water tank 2 and the rinsing tank 11 to reduce the transmission of ultrasonic waves, ensure the intensity of ultrasonic waves, and improve the cleaning efficiency of ultrasonic waves; both the water tank 2 and the rinsing tank 11 are equipped with transparent protective covers on the upper side to prevent water from splashing out.

[0031] In use, a certain amount of cleaning water is added to the water tank 2 through the water inlet pipe 9. The ultrasonic generator 3 is started, and the medicine bottles are neatly arranged in a row and placed one by one into the bottle inlet 4, so that the medicine bottles are close to each other. Then, they are moved downward along the first guide rod 6, so that the medicine bottles are immersed in the water. Then, the medicine bottles are turned to the bottle opening upward by the torsion guide mechanism 7, so that the bottles are completely submerged in the water and there is no air in the bottles, which can ensure that the ultrasonic waves can clean the inside of the bottles through the water. Then, they continue to move to the rear, so that the medicine bottles are twisted and exit from the bottle outlet 5 through the second guide rod 8. Then, they enter the rinsing tank 11 through the bottle inlet 12. The medicine bottles are moved downward along the fourth guide rod 15, and then the bottle opening is turned downward by the torsion guide mechanism 7, so that the nozzle 14 sprays clean water into the bottle to completely clean any impurities that may still exist in the medicine bottles. Finally, they flow out from the bottle outlet 13 through the fifth guide rod 16. This device involves immersing medicine bottles one by one in a water tank, arranged in a continuous line. The bottle is then rotated from a horizontal to a vertical position by a torsion guide mechanism 7, filling the bottle with water to ensure the ultrasonic waves can effectively clean the medicine bottles. The remaining impurities are then washed away by the nozzle 14. This not only allows for continuous cleaning of medicine bottles, improving cleaning efficiency and reducing labor intensity, but also ensures that the water quality remains clean by regularly changing the cleaning water, guaranteeing a thorough cleaning of the medicine bottles.

[0032] To further improve automation, the controller can be electrically connected to the solenoid valves of the circulating pump 21, inlet pipe 9, and outlet pipe 10. A water quality detection device can also be added, using a common PLC controller, such as the Siemens S7-200SMART series, to continuously clean the medicine bottles, ensuring the cleanliness of the cleaning water and improving the cleaning effect of the medicine bottles.

[0033] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An ultrasonic medicine bottle cleaning device, comprising a support base (1), characterized in that, A water tank (2) is connected and installed on the upper side of the support base (1). An ultrasonic generator (3) is connected and installed on the bottom of the inner side of the water tank (2). A bottle inlet (4) is provided on one side of the water tank (2), and a bottle outlet (5) is provided on the other side. Several first guide rods (6) that can guide the medicine bottle to move downward are connected and installed around the bottle inlet (4). Several torsion guide mechanisms (7) that are connected end to end are connected and installed on the other side of the first guide rods (6). Several second guide rods (8) that can guide the medicine bottle to move upward are connected and installed on the other side of the torsion guide mechanism (7). The torsion guide mechanism (7) includes two parallel and opposite mounting plates (71), with openings (72) corresponding to the medicine bottles on the two mounting plates (71), the two openings (72) forming corresponding torsion angles, and a third guide rod (73) that can make the medicine bottle torsion at the corresponding angle connected to the two mounting plates (71). A water inlet pipe (9) is connected and installed on the side wall of the water tank (2), and a water outlet pipe (10) is connected and installed at its bottom.

2. The ultrasonic medicine bottle cleaning device according to claim 1, characterized in that, A rinsing tank (11) is connected to the side of the water tank (2). The side wall of the rinsing tank (11) is provided with an inlet (12) and an outlet (13) corresponding to the outlet (5). A nozzle (14) is connected to the bottom of the inner side of the rinsing tank (11). Several fourth guide rods (15) and fifth guide rods (16) are connected to the inlet (12) and outlet (13) respectively. A torsion guide mechanism (7) that can make the medicine bottle mouth face down is connected to the other side of the fourth guide rod (15). A torsion guide mechanism (7) that can make the medicine bottle turn to a horizontal state is connected to the other side of the fifth guide rod (16). A translation guide mechanism (17) corresponding to the nozzle (14) is connected between the two torsion guide mechanisms (7). The bottom plate of the rinsing tank (11) is provided with a water leakage hole (18), and a water storage tank (19) is connected and installed on the lower side of the rinsing tank (11).

3. The ultrasonic medicine bottle cleaning device according to claim 1, characterized in that, An overflow hole (20) is provided on the side wall of the water tank (2).

4. The ultrasonic medicine bottle cleaning device according to claim 3, characterized in that, The inlet pipe (9) and the outlet pipe (10) are arranged diagonally opposite each other.

5. The ultrasonic medicine bottle cleaning device according to claim 2, characterized in that, A circulation pump (21) is connected to the side wall of the rinsing tank (11) and is capable of pumping the circulation pump in the water storage tank (19) to the water tank (2).

6. The ultrasonic medicine bottle cleaning device according to claim 5, characterized in that, Support plates (22) are connected and installed on the first guide rod (6), the second guide rod (8), the fourth guide rod (15) and the fifth guide rod (16).

7. The ultrasonic medicine bottle cleaning device according to claim 6, characterized in that, The first guide rod (6), the second guide rod (8), the third guide rod (73), the fourth guide rod (15) and the fifth guide rod (16) are all wrapped with a polytetrafluoroethylene layer on the outside.

Citation Information

Patent Citations

  • Ultrasonic veterinary medicine bottle cleaning device

    CN222739886U