Heavy-oxygen water purifying and packaging equipment
By designing heavy oxygen water purification and packaging equipment for components such as support tables, hydraulic cylinders and flip baffles, the problem of cumbersome operation of existing equipment is solved, and the automatic packaging of heavy oxygen water is realized, and the packaging efficiency and quality are improved.
Patent Information
- Application Number
- CN202422536858.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The existing weighing filling machines are cumbersome in the packaging process of heavy oxygen water, resulting in inefficient packaging and unable to meet the needs of efficient use.
A heavy oxygen water purification and packaging equipment was designed, using supporting tables, hydraulic cylinders, cap pipes and flip baffles to realize the automated process of bottle movement, filling and packaging, and reduce manual operations.
It realizes automatic packaging of heavy oxygen water, improves packaging efficiency and quality stability, reduces manual intervention, and improves the use effect.
Smart Images

Figure CN223150278U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heavy oxygen water packaging, in particular to heavy oxygen water purification packaging equipment. Background Art
[0002] Heavy oxygen water is a chemical substance. Also known as oxygen 18 water. It is a colorless, odorless and tasteless liquid. Some physical properties are slightly different from those of ordinary water. It is mainly used as a tracer in scientific research fields such as chemistry, biology, medicine, agriculture, and geology. It can also be used to prepare artificial calibration samples with isotopically pure H216O.
[0003] Heavy oxygen water is a high value-added product that can be widely used in high-end research fields such as chemical reaction mechanism, life science, pharmaceutical research, nuclear medicine, etc. It is reported that the production of heavy oxygen water uses natural water as raw material. Usually, natural water contains 0.2% heavy oxygen water. However, to extract this extremely small amount of heavy oxygen water, efficient separation technology and equipment are required.
[0004] Heavy oxygen water is usually packaged using a weighing filler. This equipment can accurately measure and fill the amount of heavy oxygen water, ensuring the accuracy of each filling. The weighing filler is a device specifically used for liquid filling, which can automatically complete the entire process from feeding, metering to filling. It is particularly suitable for chemical liquids that require precise metering, such as heavy oxygen water, to ensure that the amount of each filling is very accurate.
[0005] However, the existing weighing filling machines are cumbersome to use and require personnel to operate them at all times, which seriously reduces the packaging efficiency and use effect of heavy oxygen water. For this reason, we have designed a heavy oxygen water purification and packaging equipment to achieve the effect of convenient use when packaging the purified heavy oxygen water. Utility Model Content
[0006] The purpose of the utility model is to provide a heavy oxygen water purification packaging device to solve the problems raised in the above background technology.
[0007] To achieve the above object, the present utility model provides the following technical solutions: A heavy oxygen water purification and encapsulation device, including a support platform for purifying and encapsulating heavy oxygen water. The upper surface of the support platform is fixedly connected with a support plate. The upper surface of the support plate is fixedly connected with an equipment box. The front surface of the support plate is fixedly connected with a positioning plate. The side surface of the positioning plate is fixedly connected with a fixing plate. The upper surface of the fixing plate is provided with two hydraulic cylinders. The telescopic ends of the two hydraulic cylinders are respectively provided with an infusion tube and a pressing plate. The end surface of the infusion tube is provided with a nozzle. The side surface of the telescopic end of the hydraulic cylinder is fixedly connected with a connecting ring. The lower surface of the connecting ring is fixedly connected with a connecting rod. The side surface of the connecting rod is fixedly connected with a pressing ring. The inner ring surface of the pressing ring is movably connected with a cap conveying tube. The side surface of the cap conveying tube is provided with a driving motor. The output shaft of the driving motor is provided with a partition disk. The front surface of the support plate is movably connected with a baffle plate, and the bottom of the side surface of the baffle plate is provided with a forward and reverse motor.
[0008] On the basis of the above technical solutions, the present utility model can also be improved as follows.
[0009] Preferably, a funnel-shaped liquid storage tank is arranged on the surface of the support platform. The inner front wall of the funnel-shaped liquid storage tank is horizontally and equidistantly provided with rotatable rollers. The surface of the rollers is movably connected with liquid storage bottles. By arranging rollers on the surface of the support platform that can assist in moving the liquid storage bottles containing heavy oxygen water, it is convenient to reduce excessive contact between the operator and the liquid storage bottles, enabling the liquid storage bottles to flow to corresponding positions along with the rollers. The back of the rollers is driven by a motor through a belt to rotate the circular shafts at the centers of numerous rollers, thereby enabling the rollers to drive the bottles to move.
[0010] Preferably, the back surface of the support plate and the back surface of the support platform are in the same vertical plane. Positioning plates are fixedly connected to both sides of the front surface of the support plate. A fixing plate is fixed between the two positioning plates. By arranging the positioning plate and the fixing plate on the front surface of the support plate, it is convenient to position, support, and limit the subsequent machines.
[0011] Preferably, circular holes adapted to the telescopic ends of the hydraulic cylinders are opened on both sides of the upper surface of the fixing plate, and a hole adapted to the cap conveying tube is opened in the middle of the upper surface of the fixing plate. By arranging the equipment box on the top of the support plate, it is convenient to arrange a controller for controlling the hydraulic cylinders, a storage battery, and a vibrating disk for conveying bottle caps inside the equipment box.
[0012] Preferably, a connecting ring and a pressing ring are respectively sleeved on the surface of the cap conveying tube, and an arc groove for the partition disk to rotate is opened at the bottom of the side surface of the cap conveying tube. By arranging the connecting ring and the pressing ring, it is convenient for the connecting rod to vertically move on the conveying tube through the connecting ring and the pressing ring. At the same time, the vertically moving pressing ring is convenient for stabilizing the bottle mouth of the liquid storage bottle, aligning the bottom discharge port of the cap conveying tube with the bottle mouth of the liquid storage bottle.
[0013] Preferably, the output shaft of the forward and reverse motor is sleeved with two partition disks vertically arranged, and five arc grooves are equidistantly arranged on the circumferential surface of the partition disks, and the arc grooves are adapted to the bottle caps. By arranging the two partition disks, it is convenient to separate and partition the bottle caps inside the cap conveying pipe, and it is convenient to convey the bottle caps to the liquid storage bottle mouth.
[0014] Preferably, flip-up baffles are arranged on the right sides of the bottoms of the nozzle, the cap conveying pipe and the pressing plate, and the three baffles are arranged horizontally at equal distances. By arranging the baffles at equal distances and being flip-up, it is convenient to carry out the steps of filling, cap placing and sealing simultaneously, and reduce the quality problems caused by asynchronous packaging.
[0015] Beneficial effects
[0016] Compared with the prior art, the technical solution of the present application has the following beneficial technical effects:
[0017] In the present utility model, through the provided support table, it is convenient for the bottle body for packaging heavy oxygen water to move on the table. At the same time, by arranging two hydraulic cylinders on the fixed plate, it is convenient for the nozzles and pressing plates for filling and packaging to move downward. By arranging the cap conveying pipe between the two hydraulic cylinders, it is convenient for the bottle caps to be smoothly conveyed to the bottle mouth with the assistance of the vertically moving pressing ring. By arranging the flip-up baffles, it is convenient for the liquid storage bottle to stop at the corresponding position, facilitating subsequent packaging, thereby achieving the effect of facilitating the packaging of the purified heavy oxygen water. Description of the drawings
[0018] Figure 1 is a schematic front-sectional structure diagram of the present utility model;
[0019] Figure 2 is a schematic front view structure diagram of the present utility model;
[0020] Figure 3 is a schematic top-sectional structure diagram of the partition disk of the present utility model;
[0021] Figure 4 is Figure 1 the enlarged structure diagram at A in
[0022] In the figure: 1, support table; 2, support plate; 3, equipment box; 4, positioning plate; 5, fixed plate; 6, hydraulic cylinder; 7, infusion pipe; 8, pressing plate; 9, nozzle; 10, connecting ring; 11, connecting rod; 12, pressing ring; 13, cap conveying pipe; 14, drive motor; 15, partition disk; 16, baffle. Detailed implementation manners
[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0024] Please refer to Figures 1-4 , the present invention provides a technical solution: a heavy oxygen water purification and encapsulation device, including a support table 1 for encapsulating and purifying heavy oxygen water. A funnel-shaped liquid storage tank is arranged on the surface of the support table 1. The inner front wall of the funnel-shaped liquid storage tank is horizontally and equidistantly provided with rotatable rollers, and a liquid storage bottle is movably connected to the surface of the rollers. By arranging rollers on the surface of the support table 1 that can assist in moving the liquid bottle storing heavy oxygen water, it is convenient to reduce excessive contact between the operator and the liquid storage bottle, so that the liquid storage bottle can flow to the corresponding position along with the rollers. The back of the roller is that the motor drives the circular shaft in the center of many rollers to rotate through a belt, so that the roller can drive the bottle to move.
[0025] A support plate 2 is fixedly connected to the upper surface of the support table 1. An equipment box 3 is fixedly connected to the upper surface of the support plate 2. A positioning plate 4 is fixedly connected to the front surface of the support plate 2. A fixing plate 5 is fixedly connected to the side surface of the positioning plate 4. The back surface of the support plate 2 and the back surface of the support table 1 are in the same vertical plane, and positioning plates 4 are fixedly connected to both sides of the front surface of the support plate 2. A fixing plate 5 is fixed between the two positioning plates 4. By arranging the positioning plate 4 and the fixing plate 5 on the front surface of the support plate 2, it is convenient to position, support and limit the subsequent machines.
[0026] Two hydraulic cylinders 6 are arranged on the upper surface of the fixing plate 5. The telescopic ends of the two hydraulic cylinders 6 are respectively provided with an infusion tube 7 and a pressing plate 8. A nozzle 9 is arranged at the end surface of the infusion tube 7. A connecting ring 10 is fixedly connected to the side surface of the telescopic end of the hydraulic cylinder 6. A connecting rod 11 is fixedly connected to the lower surface of the connecting ring 10. A pressing ring 12 is fixedly connected to the side surface of the connecting rod 11. The inner ring surface of the pressing ring 12 is movably connected to an infusion cover tube 13. The infusion cover tube 13 is respectively sleeved with the connecting ring 10 and the pressing ring 12, and an arc groove for facilitating the rotation of a partition disk 15 is opened at the bottom of the side surface of the infusion cover tube 13. By arranging the connecting ring 10 and the pressing ring 12, it is convenient for the connecting rod 11 to vertically move on the conveying tube through the connecting ring 10 and the pressing ring 12. At the same time, the vertically moving pressing ring 12 is convenient for stabilizing the bottle mouth of the liquid storage bottle, so that the bottom discharge port of the infusion cover tube 13 is aligned with the bottle mouth of the liquid storage bottle.
[0027] Furthermore, circular holes adapted to the telescopic ends of the hydraulic cylinders 6 are provided on both sides of the upper surface of the fixing plate 5, and a hole adapted to the cap conveying pipe 13 is provided in the middle of the upper surface of the fixing plate 5. By providing the equipment box 3 on the top of the support plate 2, it is convenient to arrange a controller for controlling the hydraulic cylinders 6, a storage battery, and a vibrating disk for conveying the bottle caps inside the equipment box 3.
[0028] A driving motor 14 is arranged on the side of the cap conveying pipe 13. A partition disk 15 is arranged on the output shaft of the driving motor 14. A baffle 16 is movably connected to the front surface of the support plate 2. Flip-up baffles 16 are arranged at the bottom right sides of the spray head 9, the cap conveying pipe 13, and the pressing plate 8, and the three baffles 16 are arranged horizontally at equal distances. By arranging the baffles 16 at the same distance and being flip-up, it is convenient to carry out the steps of filling, capping, and sealing simultaneously, and reduce the quality problems caused by asynchronous packaging.
[0029] A forward and reverse rotation motor is arranged at the bottom of the side surface of the baffle 16. Two partition disks 15 are sleeved and vertically arranged on the output shaft of the forward and reverse rotation motor. Five arc grooves are arranged at equal distances on the circumferential surface of the partition disk 15, and the arc grooves are adapted to the bottle caps. By arranging the two partition disks 15, it is convenient to separate and partition the bottle caps inside the cap conveying pipe 13, and facilitate the conveyance of the bottle caps onto the liquid storage bottle mouth.
[0030] In this embodiment, through the provided support platform 1, it is convenient for the bottle body for packaging heavy oxygen water to move on the platform. At the same time, by arranging two hydraulic cylinders 6 on the fixing plate 5, it is convenient for the spray head 9 and the pressing plate 8 for filling and packaging to move downward. By arranging the cap conveying pipe 13 between the two hydraulic cylinders 6, it is convenient for the bottle caps to be smoothly conveyed to the bottle mouth with the assistance of the vertically moving pressing ring 12. By arranging the flip-up baffle 16, it is convenient for the liquid storage bottle to stop at the corresponding position, facilitating subsequent packaging, thereby achieving the effect of facilitating the packaging of the purified heavy oxygen water.
[0031] Working principle: When using this encapsulation device, start the motor on the back of the support platform 1, and make it drive the roller to move through the belt, so that the liquid storage bottle moves on the track with a limited width. When the photoelectric sensor on the front of the support plate 2 senses the bottle body, control the forward and reverse motor inside the support plate 2 to make it control the baffle 16 to turn over and block the bottle body. At the same time, the roller stops. Start the hydraulic cylinder 6 on the surface of the fixed plate 5, and make its telescopic end drive the infusion tube 7 and the nozzle 9 to move downward. The nozzle 9 is inserted into the bottle mouth and the circulation pump in the liquid storage tank is started, so that the liquid enters the bottle through the infusion tube 7. Then the nozzle 9 moves upward, the baffle 16 retracts, and the roller continues to rotate. The liquid storage bottle moves to the lower part of the cap feeding tube 13. The baffle 16 turns over through the photoelectric sensor. The hydraulic cylinder 6 on the left drives the side connecting ring 10, the connecting rod 11 and the pressing ring 12 to move downward, so that the pressing ring 12 sleeves the bottle mouth. At the same time, start the drive motor 14 on the side of the cap feeding tube 13, and make it drive the partition disc 15 with different outlets to rotate by an angle through the output shaft and rotate at intervals. The bottle cap steadily falls on the bottle mouth through the pressing ring 12, and through subsequent synchronous operations, make the hydraulic cylinder 6 on the right drive the pressing plate 8 to move downward, and seal and encapsulate the bottle cap and the liquid storage bottle.
[0032] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A heavy oxygen water purification and encapsulation device, characterized in that: It includes a support platform (1) for encapsulating and purifying heavy oxygen water. The upper surface of the support platform (1) is fixedly connected to a support plate (2). The upper surface of the support plate (2) is fixedly connected to an equipment box (3). The front surface of the support plate (2) is fixedly connected to a positioning plate (4). The side surface of the positioning plate (4) is fixedly connected to a fixing plate (5). On the upper surface of the fixing plate (5), there are two hydraulic cylinders (6). The telescopic ends of the two hydraulic cylinders (6) are respectively provided with an infusion tube (7) and a pressing plate (8). The end surface of the infusion tube (7) is provided with a nozzle (9). The side surface of the telescopic end of the hydraulic cylinder (6) is fixedly connected to a connecting ring (10). The lower surface of the connecting ring (10) is fixedly connected to a connecting rod (11). The side surface of the connecting rod (11) is fixedly connected to a pressing ring (12). The inner ring surface of the pressing ring (12) is movably connected to a tube for covering the infusion tube (13). The side surface of the tube for covering the infusion tube (13) is provided with a driving motor (14). The output shaft of the driving motor (14) is provided with a partition disk (15). The front surface of the support plate (2) is movably connected to a baffle plate (16), and a forward and reverse motor is arranged at the bottom of the side surface of the baffle plate (16).
2. The heavy oxygen water purification and encapsulation device according to claim 1, wherein: The surface of the support platform (1) is provided with a funnel-shaped liquid storage tank. The inner front wall of the funnel-shaped liquid storage tank is horizontally and equidistantly provided with rotatable rollers, and the surface of the rollers is movably connected to liquid storage bottles.
3. The heavy oxygen water purification and encapsulation device according to claim 1, characterized in that: The back surface of the support plate (2) and the back surface of the support platform (1) are in the same vertical plane, and positioning plates (4) are fixedly connected to both sides of the front surface of the support plate (2). A fixing plate (5) is fixed between the two positioning plates (4).
4. A heavy oxygen water purification and encapsulation device according to claim 1, characterized in that: Round holes adapted to the telescopic ends of the hydraulic cylinders (6) are respectively opened on both sides of the upper surface of the fixing plate (5), and a hole adapted to the tube for covering the infusion tube (13) is opened in the middle of the upper surface of the fixing plate (5).
5. A heavy oxygen water purification and encapsulation device according to claim 1, characterized in that: The connecting ring (10) and the pressing ring (12) are respectively sleeved on the surface of the tube for covering the infusion tube (13), and an arc groove for facilitating the rotation of the partition disk (15) is opened at the bottom of the side surface of the tube for covering the infusion tube (13).
6. A heavy oxygen water purification and encapsulation device according to claim 1, characterized in that: The output shaft of the forward and reverse motor is sleeved and vertically provided with two partition disks (15). Five arc grooves are circumferentially and equidistantly arranged on the surface of the partition disks (15), and the arc grooves are adapted to the bottle caps.
7. A heavy oxygen water purification and encapsulation device according to claim 1, characterized in that: Flip-up baffle plates (16) are arranged at the bottom right sides of the nozzle (9), the tube for covering the infusion tube (13) and the pressing plate (8), and the three baffle plates (16) are arranged horizontally and equidistantly.