Gastrodin injection sterilization equipment
By designing a sterilization equipment containing a circulation component, uniform heating of gastrodin injection and effective removal of condensed water were achieved, solving the problem of condensed water affecting the sterilization effect and improving the quality and safety of the sterilization process.
Patent Information
- Application Number
- CN202510393812.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2045-03-31
AI Technical Summary
During the high-temperature and high-pressure sterilization process of Gastrodia elata injection, condensed water droplets formed on the outer wall of the glass bottle affect the sterilization effect and product quality, and there is a risk of contamination.
A sterilization equipment was designed to achieve the flow of water vapor and the recovery of condensed water through a circulation component, including a combination of a circular plate, a fixed tube, fan blades and suction holes, to ensure that the glass bottles are evenly heated and the condensed water is effectively removed during the sterilization process.
It improves the uniformity and safety of the sterilization effect, reduces the risk of condensed water residue and contamination, and ensures the high quality and safety of the product.
Smart Images

Figure CN120114624B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of sterilization equipment, and more particularly to a sterilization equipment for gastrodin injection. Background Art
[0002] Gastrodin injection is a traditional Chinese medicine injection whose main ingredient is gastrodin, an active ingredient extracted from the orchid plant Gastrodia elata. Gastrodin has sedative, tranquilizing, and memory-enhancing properties. It is clinically used to treat symptoms such as neurasthenia, headaches, and insomnia, as well as as an adjunctive treatment for some cerebrovascular diseases. To ensure the drug's safety and efficacy and to avoid the risk of infection caused by microbial contamination, sterilization is a critical step in its production process.
[0003] The sterilization methods for Gastrodia elata injection are usually hot pressure sterilization and filtration sterilization. For hot pressure sterilization, by heating water vapor to a certain temperature (usually 121°C) under high pressure conditions and maintaining it for a certain time (for example, 15-30 minutes), it can effectively kill bacteria, spores and other microorganisms.
[0004] The prepared and filtered gastrodin injection is usually filled and sealed in glass bottles. However, during the sterilization process of the packaged gastrodin injection using high-temperature and high-pressure steam, due to the low surface temperature of the glass bottle, the water vapor will form condensation droplets on the outer wall of the bottle when it cools down. These condensed water will not only affect the sterilization effect, but long-term contact with moisture will also cause the label to become blurred or fall off, affecting subsequent identification and traceability. At the same time, the residual condensed water will directly affect the appearance quality of the product, increase the risk of product contamination, reduce the sterilization effect, and thus lower the overall quality standards. Summary of the Invention
[0005] In response to the problems existing in the prior art, the purpose of the present invention is to provide a sterilization equipment for Gastrodia elata injection, which can realize the circulation of water vapor and blow off and recover the water droplets formed on the outside of the glass bottle. It can not only significantly improve the temperature uniformity during the sterilization process, but also effectively solve the problem of residual condensed water, thereby ensuring the high quality and high safety of the final product.
[0006] To solve the above problems, the present invention adopts the following technical solutions.
[0007] A sterilization device for gastrodin injection, comprising a sterilization tank, wherein a circular plate is rotatably mounted on the inner cavity wall of the sterilization tank;
[0008] Also includes:
[0009] A circulation component, which includes a fixed tube rotatably mounted on the top of the circular plate, a groove connected to the fixed tube is provided on the top of the circular plate, a protective frame is fixedly installed in the inner cavity of the fixed tube, a gear rotatably mounted with the protective frame is provided in the groove, the inner cavity of the groove is evenly installed with teeth, the gear is meshed with adjacent teeth, a fan blade rotatably mounted with the protective frame is provided in the fixed tube, a belt is installed for transmission between the gear and the fan blade, a circular frame is sleeved on the top of the fixed tube, and the circular frame is fixedly installed on the inner cavity wall of the sterilization tank, air intake holes are evenly provided on the top of the circular plate, exhaust holes are evenly provided on the bottom of the circular frame, and a protective component is provided on the outside of the fixed tube.
[0010] Furthermore, the protective assembly includes a placement plate sleeved on the outside of the fixed tube, the placement plate is fixedly installed on the top of the circular plate, storage openings are evenly opened on the placement plate, a cross rod is fixedly installed on the bottom wall of the inner cavity of each group of the storage openings, a protective pad is fixedly installed on the top of each group of the cross rods, a protective cover is fixedly installed on the inner cavity wall of each group of the storage openings, and leakage holes are evenly opened on the placement plate;
[0011] A water storage tank is fixedly installed on the bottom of the sterilization tank, a heating plate is fixedly installed on the bottom wall of the inner cavity of the water storage tank, a U-shaped pipe is fixedly installed on the water storage tank and one side of the sterilization tank, and the two ends of the U-shaped pipe are respectively connected to the sterilization tank and the water storage tank. A motor is fixedly installed on the bottom of the sterilization tank, and the output end of the motor is fixedly installed on the bottom of the circular plate. The bottom of the circular plate is evenly provided with air intakes connected to the groove.
[0012] Furthermore, the outer wall of the fixed tube is evenly provided with movable grooves, the inner cavity of each group of the movable grooves is slidably installed with a slider, a reset spring is fixedly installed between each group of the sliders and the inner cavity wall of the adjacent movable groove, each group of the sliders is rollingly installed with ball 1 on the side close to the placement plate, and each group of the placement plates is evenly provided with a semicircular groove compatible with ball 1 on the side close to the fixed tube.
[0013] Furthermore, an elastic rod is fixedly installed on the bottom of the protective frame, a second ball is rollingly installed on the bottom end of the elastic rod, and a semicircular rod is fixedly installed on the bottom wall of the inner cavity of the groove.
[0014] Furthermore, a cross plate is provided in the circular frame, and the cross plate is fixedly mounted to the fan blade.
[0015] Furthermore, an L-shaped scraper is fixedly mounted on one side of the top of the circular plate, and the top wall and side walls of the L-shaped scraper are respectively in contact with the bottom of the circular frame and the inner wall of the sterilization tank.
[0016] Furthermore, a U-shaped plate is fixedly mounted on the bottom inclined surface of the L-shaped scraper.
[0017] Furthermore, an inclined plate is fixedly mounted on the bottom wall of the inner cavity of the sterilization tank, and the output shaft of the motor is rotatably mounted on the sterilization tank and the inclined plate.
[0018] Furthermore, a drainage pipe is provided on the lower side of the inclined plate, and the drainage pipe is fixedly installed with the sterilization tank.
[0019] Furthermore, the reset spring and the elastic rod are both in a compressed state in their initial states.
[0020] Compared with the prior art, the present invention has the following beneficial effects:
[0021] (1) This solution uses the rapid rotation of the fan blades to absorb the water vapor on the lower side of the circular plate and blow it upward. The water vapor will be discharged into the circular frame and blown downward through each group of exhaust holes, blowing and heating the glass bottles during the rotation process, so that the glass bottles can continuously change their positions during the sterilization process, better cover those corner areas that were originally difficult to reach, and ensure that all items to be sterilized can fully contact the high-temperature and high-pressure water vapor, thereby improving the consistency of the overall sterilization effect. At the same time, the downward blowing force of the exhaust holes can blow the condensed water droplets on the outer wall of the glass bottle downward. The condensed water droplets will be blown to the top of the placement plate and discharged downward through the leakage hole, or directly discharged through the bottom of the storage port, which can help remove the condensed water droplets attached to the surface of the glass bottle, thereby reducing the pollution or other adverse effects caused by the residual condensed water, and can effectively improve the sterilization effect.
[0022] (2) When the fan blades in this solution suck the gas in the sterilization tank below the circular plate and blow it upward, the sterilization tank below the circular plate will absorb the gas in the sterilization tank above the circular plate through each group of suction holes. At this time, the water vapor in the sterilization tank is circulated. The reciprocating circulation of the gas up and down can significantly improve the fluidity of the water vapor, help to reduce the local temperature difference, and ensure that the temperature in the entire sterilization room is more uniform. At the same time, suction is generated above it through each group of suction holes, which can make it easier to suck the condensed water discharged to the top of the circular plate into the bottom wall of the inner cavity of the sterilization tank, which can effectively improve the fluidity of the suction holes, thereby effectively improving the efficiency of condensed water recovery.
[0023] (3) In the process of rotating the placement plate, the ball bearings can reciprocate and hit the inner cavity of the semicircular groove to generate vibrations on the placement plate. The shock waves will be transmitted to the glass bottle in the storage port, which can improve the fluidity of the residual condensed water on the outer wall of the glass bottle. With the cooperation of the downward blowing of the round frame, the condensed water can be urged to flow faster along the surface of the glass bottle and eventually gather at the bottom of the bottle or other locations where it is easy to discharge. At the same time, it can prevent the condensed water from gathering in a certain area for a long time to form larger water droplets, thereby reducing the sagging phenomenon caused by excessively large water droplets and further reducing the possibility of residue. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic diagram of the overall structure of the front side of the present invention;
[0025] Figure 2 is a cross-sectional view of the sterilization tank of the present invention;
[0026] Figure 3 It is an overall cross-sectional view of the present invention;
[0027] Figure 4 For the present invention Figure 3 A magnified view of the structure of the middle part A;
[0028] Figure 5 For the present invention Figure 3 A magnified view of the structure of the middle B section;
[0029] Figure 6 For the present invention Figure 3 Enlarged view of the structure of part C in the middle.
[0030] Description of the numbers in the figure:
[0031] 1. Sterilization tank; 2. Round plate; 3. Fixed tube; 4. Groove; 5. Protective frame; 6. Gear; 7. Teeth; 8. Fan blades; 9. Cross plate; 10. Air intake; 11. Round frame; 12. Air intake hole; 13. Exhaust hole; 14. Motor; 15. Water storage tank; 16. Heating plate; 17. U-shaped tube; 18. Placement plate; 19. Storage port; 20. Cross rod; 21. Protective pad; 22. Protective cover; 23. Leakage hole; 24. Movable groove; 25. Slider; 26. Reset spring; 27. Ball 1; 28. Semicircular groove; 29. Elastic rod; 30. Ball 2; 31. Semicircular rod; 32. L-shaped scraper; 33. U-shaped plate; 34. Inclined plate; 35. Drain pipe. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0033] See also Figures 1 to 6 A sterilization device for gastrodin injection, comprising a sterilization tank 1, wherein a circular plate 2 is rotatably mounted on the inner wall of the sterilization tank 1;
[0034] Also includes:
[0035] The circulation component includes a fixed tube 3 rotatably mounted on the top of the circular plate 2, a groove 4 connected to the fixed tube 3 is opened on the top of the circular plate 2, a protective frame 5 is fixedly installed in the inner cavity of the fixed tube 3, a gear 6 rotatably mounted with the protective frame 5 is provided in the groove 4, and teeth 7 are evenly installed in the inner cavity of the groove 4. The gear 6 is meshed with adjacent teeth 7, and a fan blade 8 rotatably mounted with the protective frame 5 is provided in the fixed tube 3. A belt is installed for transmission between the gear 6 and the fan blade 8, a circular frame 11 is sleeved on the top of the fixed tube 3, and the circular frame 11 is fixedly installed on the inner cavity wall of the sterilization tank 1, air intake holes 12 are evenly opened on the top of the circular plate 2, and exhaust holes 13 are evenly opened on the bottom of the circular frame 11. A protective component is provided on the outside of the fixed tube 3.
[0036] The protection assembly includes a placement plate 18 sleeved on the outside of the fixed tube 3, the placement plate 18 is fixedly installed on the top of the circular plate 2, and storage openings 19 are evenly opened on the placement plate 18. The bottom wall of the inner cavity of each group of storage openings 19 is fixedly installed with a cross rod 20, and the top of each group of cross rods 20 is fixedly installed with a protective pad 21. The inner cavity wall of each group of storage openings 19 is fixedly installed with a protective sleeve 22. Leakage holes 23 are evenly opened on the placement plate 18;
[0037] A water storage tank 15 is fixedly installed at the bottom of the sterilization tank 1, and a heating plate 16 is fixedly installed on the bottom wall of the inner cavity of the water storage tank 15. A U-shaped pipe 17 is fixedly installed on one side of the water storage tank 15 and the sterilization tank 1. The two ends of the U-shaped pipe 17 are respectively connected to the sterilization tank 1 and the water storage tank 15. A motor 14 is fixedly installed at the bottom of the sterilization tank 1, and the output end of the motor 14 is fixedly installed on the bottom of the circular plate 2. The bottom of the circular plate 2 is evenly provided with an air intake 10 connected to the groove 4.
[0038] First, the prepared and filtered gastrodin injection is filled into glass bottles and the glass bottles are sealed intact. Then, the sealed door on the front side of the sterilization tank 1 is opened and the motor 14 is turned on. The output end of the motor 14 will drive the circular plate 2 to rotate slowly. When the circular plate 2 rotates, it will drive the placement plate 18 to rotate synchronously. At this time, the packaged glass bottles can be placed vertically in the protective sleeve 22 in turn. The vertical placement can reduce the risk of rupture caused by thermal stress. The bottom of the glass bottle will be placed on the top of the protective pad 21. The provision of the protective sleeve 22 and the protective pad 21 can protect the glass bottles. The provision of multiple groups of storage ports 19 can separate each glass bottle, which is convenient for water vapor to penetrate and prevents them from moving or colliding during the sterilization process.
[0039] After storage is completed, close the sealed door, then add water to the heating plate 16, turn on the heating plate 16 to heat the water in the water tank 15, and when the water is heated and boiled, water vapor will be generated. The water vapor will flow upward through the U-shaped pipe 17 and be discharged into the sterilization tank 1 and placed on the lower side of the circular plate 2. When the circular plate 2 rotates, it will drive the various groups of teeth 7 in the groove 4 to move synchronously. During the slow rotation of the circular plate 2, the various groups of teeth 7 can drive the gear 6 to rotate rapidly, and the gear 6 will drive the fan blade 8 to rotate synchronously and rapidly through the belt. At this time, the fan blade 8 can realize upward suction on the fixed tube 3 on the lower side thereof, and the air intake will act on the sterilization tank 1 on the lower side of the circular plate 2 through the groove 4 and the air intake port 10. The fan blades 8 can absorb the water vapor on the lower side of the circular plate 2 into the fixed tube 3 and blow it upwards. The water vapor will be blown into the circular frame 11 by the fan blades 8 and blown downwards through the groups of exhaust holes 13, so as to heat the groups of glass bottles with injection solution encapsulated on the placement plate 18 and achieve sterilization. At the same time, since the circular plate 2 drives the placement plate 18 to rotate synchronously during the rotation process, the glass bottles in the rotating process are blown and heated through the groups of exhaust holes 13, so that the glass bottles can continuously change their positions during the sterilization process, which can better cover those corner areas that were originally difficult to reach and ensure that all items to be sterilized can fully contact with high-temperature and high-pressure water vapor, thereby improving the consistency of the overall sterilization effect. ; However, during the sterilization process, due to the low surface temperature of the glass bottle, the water vapor will cool down and form condensed water droplets on the outer wall of the bottle. The downward blowing force of the exhaust hole 13 can blow the condensed water droplets on the outer wall of the glass bottle downward, and the condensed water droplets will be blown to the top of the placement plate 18 and discharged downward through the leakage hole 23, or directly discharged through the bottom of the storage port 19, which can help remove the condensed water droplets attached to the surface of the glass bottle, thereby reducing the pollution or other adverse effects caused by the residual condensed water, and effectively improving the sterilization effect; the discharged condensed water will fall to the top of the circular plate 2, and finally be discharged to the bottom wall of the inner cavity of the sterilization tank 1 through each group of suction holes 12 for recovery. The steam sterilization process is a sealed setting. When the fan blades 8 absorb the gas in the sterilization tank 1 below the circular plate 2 and blow it upward, the sterilization tank 1 below the circular plate 2 will absorb the gas in the sterilization tank 1 above the circular plate 2 through each group of suction holes 12. At this time, the circulation of water vapor in the sterilization tank 1 is realized. The up and down reciprocating circulation of gas can significantly improve the fluidity of water vapor, help to reduce local temperature differences, and ensure that the temperature in the entire sterilization chamber is more uniform. At the same time, suction is generated above it through each group of suction holes 12, which can make it easier to suck the condensed water discharged to the top of the circular plate 2 into the bottom wall of the inner cavity of the sterilization tank 1, which can effectively improve the fluidity of the suction holes 12, thereby effectively improving the efficiency of condensed water recovery.
[0040] like Figure 5As shown, the outer wall of the fixed tube 3 is evenly provided with movable grooves 24, and the inner cavity of each group of movable grooves 24 is slidably installed with a slider 25, and a reset spring 26 is fixedly installed between each group of sliders 25 and the inner cavity wall of the adjacent movable groove 24, and each group of sliders 25 is rollingly installed with a ball 27 on the side close to the placement plate 18, and each group of placement plates 18 is evenly provided with a semicircular groove 28 compatible with the ball 27 on the side close to the fixed tube 3.
[0041] When the circular plate 2 drives the placement plate 18 to rotate, the placement plate 18 will rotate around the outer side of the fixed tube 3. During the rotation process, the placement plate 18 drives the semicircular groove 28 to move, which will squeeze the ball 1 27 and push the slider 25 to move into the inner cavity of the movable groove 24. During the movement of the slider 25 into the movable groove 24, the return spring 26 will be squeezed. At this time, the ball 1 27 can be moved out of the inner cavity of the semicircular groove 28. During the rotation process of the placement plate 18, the ball 1 27 will roll on the inner wall of the placement plate 18. When the ball 1 27 moves into the position of the next set of semicircular grooves 28, under the action of the return spring 26, the return spring 26 returns to its initial state and pushes the slider 25 to drive the ball 1 27 Move and get stuck into the inner cavity of the semicircular groove 28, and the ball 1 27 will hit the inner cavity of the semicircular groove 28. At this time, during the rotation of the placement plate 18, the ball 1 27 will reciprocate and hit the inner cavity of the semicircular groove 28, which can generate vibrations on the placement plate 18. The shock wave will be transmitted to the glass bottle in the storage port 19, which can improve the fluidity of the residual condensed water on the outer wall of the glass bottle. With the cooperation of the downward blowing of the round frame 11, the condensed water can be prompted to flow faster along the surface of the glass bottle, and finally gather at the bottom of the bottle or other positions that are easy to discharge. At the same time, it can prevent the condensed water from gathering in a certain area for a long time to form larger water droplets, thereby reducing the sagging phenomenon caused by excessively large water droplets, and further reducing the possibility of residue.
[0042] like Figure 3 and Figure 4 As shown, an elastic rod 29 is fixedly installed on the bottom of the protective frame 5, a ball 30 is rollingly installed on the bottom end of the elastic rod 29, and a semicircular rod 31 is fixedly installed on the bottom wall of the inner cavity of the groove 4.
[0043] A cross plate 9 is provided in the circular frame 11 , and the cross plate 9 and the fan blades 8 are fixedly installed.
[0044] When the motor 14 drives the circular plate 2 to rotate, the circular plate 2 will drive the semicircular rod 31 in the groove 4 to move synchronously. When the arc surface of the semicircular rod 31 contacts the lower arc surface of the ball 2, the semicircular rod 31 continues to move, pushing the ball 2 30 and bending the elastic rod 29. When the elastic rod 29 is bent to a certain extent, it will separate from the arc surface of the semicircular rod 31. At this time, under the action of the elastic rod 29, the elastic rod 29 returns to its initial state and drives the ball 2 30 to move to its initial position, so that the ball 2 30 can hit the bottom wall of the inner cavity of the groove 4. During the rotation of the groove 4, the ball 2 30 can reciprocate and hit the bottom wall of the inner cavity of the groove 4 and vibrate the circular plate 2, which can improve the fluidity of the condensed water on the top of the circular plate 2, making it convenient for the condensed water to be discharged into the sterilization tank 1 through the suction hole 12, further improving the flowability of the suction hole 12;
[0045] When the fan blades 8 rotate, the cross plate 9 will be driven to rotate synchronously. When the fan blades 8 absorb the water vapor under the circular plate 2 and discharge it into the circular frame 11 through the fixed pipe 3, the water vapor will pass through the cross plate 9. The rotation of the cross plate 9 can break up the water vapor and evenly diffuse it in the inner cavity of the circular frame 11, which can effectively improve the uniformity of the water vapor, thereby effectively improving the uniformity of the sterilization temperature.
[0046] like Figure 3 and Figure 6 As shown, an L-shaped scraper 32 is fixedly installed on one side of the top of the circular plate 2, and the top wall and side wall of the L-shaped scraper 32 are respectively in contact with the bottom of the circular frame 11 and the inner wall of the sterilization tank 1.
[0047] A U-shaped plate 33 is fixedly mounted on the bottom inclined surface of the L-shaped scraper 32 .
[0048] When the circular plate 2 rotates, it will drive the L-shaped scraper 32 to move synchronously. The L-shaped scraper 32 will make a circular motion around the outside of the fixed tube 3. During the rotation of the L-shaped scraper 32, the bottom of the circular frame 11 and the side wall of the sterilization tank 1 can be scraped. The water droplets scraped off the bottom of the circular frame 11 will flow along the L-shaped scraper 32 into the U-shaped plate 33. Through the oblique setting of the U-shaped plate 33, the water droplets in the inner cavity of the U-shaped plate 33 will flow downward to the side wall where the L-shaped scraper 32 contacts the inner wall of the sterilization tank 1. The water droplets will flow downward along the side wall of the L-shaped scraper 32 to the top of the circular plate 2, which plays a role in cleaning and collecting. It can effectively prevent the residual water droplets from dripping on the glass bottle, affecting the appearance quality and causing pollution, thereby effectively improving the sterilization effect.
[0049] like Figures 3 to 5 As shown, an inclined plate 34 is fixedly mounted on the bottom wall of the inner cavity of the sterilization tank 1 , and the output shaft of the motor 14 is rotatably mounted with the sterilization tank 1 and the inclined plate 34 .
[0050] A drainage pipe 35 is provided on the lower side of the inclined plate 34 , and the drainage pipe 35 is fixedly installed with the sterilization tank 1 .
[0051] The return spring 26 and the elastic rod 29 are both in a compressed state in their initial state.
[0052] The condensed water above the circular plate 2 will be discharged to the top of the inclined plate 34 through the suction hole 12. Due to the inclined setting of the inclined plate 34, the condensed water will flow and gather on the surface of the inclined plate 34 to the position of the lower inclined plate 34. After the sterilization is completed, the pressure and temperature will be gradually reduced and cooled slowly. After completion, the condensed water recovered from the top of the inclined plate 34 can be taken out through the drain pipe 35, and the sealed door on the front side of the sterilization tank 1 can be opened to take out the sterilized glass bottles.
[0053] Working principle: First, fill the prepared and filtered Gastrodin Injection into a glass bottle and seal the glass bottle well. Then open the sealed door on the front side of the sterilization tank 1, turn on the motor 14 to drive the placement plate 18 to rotate slowly through the circular plate 2, and place the sealed glass bottles vertically on the protective pad 21 in the storage port 19 in turn. The protective cover 22 and the protective pad 21 can protect them. After storage, close the sealed door, add water to the water storage tank 15, and heat it through the heating plate 16 to generate water vapor. The air will be discharged into the sterilization tank 1 through the U-shaped pipe 17. During the rotation of the circular plate 2, the gear 6 and the teeth 7 will drive the fan blade 8 to rotate rapidly. The rotation of the fan blade 8 will absorb the water vapor on the lower side of the circular plate 2 and discharge it upward into the circular frame 11 through the fixed pipe 3. The rotation of the cross plate 9 driven by the fan blade 8 will evenly diffuse the water vapor in the circular frame 11. The water vapor will be blown downward on each group of glass bottles through the circular frame 11, so that the condensed water formed on the glass bottles can be blown off. The glass bottles are driven to rotate by the placement plate 18 to realize In order to achieve uniform sterilization, during the rotation of the placement plate 18, the ball 1 27 will reciprocate to hit the semicircular groove 28 to vibrate the glass bottles on the placement plate 18, which can shake off the water droplets on the glass bottles. The water droplets on the glass bottles will fall to the top of the circular plate 2, and the condensed water will be discharged through the suction hole 12 to the top of the inclined plate 34 for collection. During the rotation of the circular plate 2, the ball 2 30 will reciprocate to hit the circular plate 2 and vibrate, so that the condensed water will be discharged from the suction hole 12. At the same time, when the fixed tube 3 absorbs the gas below the circular plate 2, the suction hole 12 will The gas above the circular plate 2 is sucked and discharged to its lower side, realizing the circulation of water vapor and improving the fluidity of the suction hole 12. When the circular plate 2 rotates, it will also drive the L-shaped scraper 32 to scrape the bottom of the circular frame 11 to prevent condensed water from falling onto the glass bottle and causing pollution. After the sterilization is completed, the pressure and temperature are gradually reduced and the bottle is cooled slowly. After completion, the condensed water recovered from the top of the inclined plate 34 can be taken out through the drain pipe 35, and the sealed door on the front side of the sterilization tank 1 can be opened to take out the sterilized glass bottle.
[0054] The above description is merely a preferred embodiment of the present invention; however, the scope of protection of the present invention is not limited thereto. Any person skilled in the art who, within the technical scope disclosed by the present invention, makes equivalent substitutions or modifications based on the technical solutions and improved concepts of the present invention shall be covered by the scope of protection of the present invention.
Claims
1. A sterilization device for gastrodin injection, comprising a sterilization tank (1), wherein a circular plate (2) is rotatably mounted on the inner wall of the sterilization tank (1); characterized in that: Also includes: A circulation component, wherein the circulation component comprises a fixed tube (3) rotatably mounted on the top of the circular plate (2), a groove (4) communicating with the fixed tube (3) is provided on the top of the circular plate (2), a protective frame (5) is fixedly mounted in the inner cavity of the fixed tube (3), a gear (6) rotatably mounted with the protective frame (5) is provided in the groove (4), teeth (7) are evenly mounted in the inner cavity of the groove (4), the gear (6) is meshed with adjacent teeth (7), and the fixed tube (3) is fixed with a protective frame (5). A fan blade (8) rotatably mounted with the protective frame (5) is provided in the tube (3), a belt is installed between the gear (6) and the fan blade (8), a circular frame (11) is sleeved on the top of the fixed tube (3), and the circular frame (11) is fixedly mounted on the inner wall of the sterilization tank (1), the top of the circular plate (2) is uniformly provided with air intake holes (12), the bottom of the circular frame (11) is uniformly provided with air exhaust holes (13), and a protective component is provided on the outside of the fixed tube (3), wherein; The protective assembly comprises a placement plate (18) sleeved on the outside of the fixed tube (3), and the placement plate (18) is fixedly mounted on the top of the circular plate (2); The outer wall of the fixed tube (3) is uniformly provided with movable grooves (24), the inner cavity of each group of movable grooves (24) is slidably installed with a slider (25), and a return spring (26) is fixedly installed between each group of sliders (25) and the inner cavity wall of the adjacent movable groove (24), and a ball (27) is rollingly installed on the side of each group of sliders (25) close to the placement plate (18), and a semicircular groove (28) adapted to the ball (27) is uniformly provided on the side of each group of placement plates (18) close to the fixed tube (3); An elastic rod (29) is fixedly mounted on the bottom of the protective frame (5), a second ball (30) is rollably mounted on the bottom end of the elastic rod (29), and a semicircular rod (31) is fixedly mounted on the bottom wall of the inner cavity of the groove (4).
2. The sterilization equipment for gastrodin injection according to claim 1, characterized in that: The placement plate (18) is evenly provided with storage openings (19), the inner cavity bottom wall of each group of the storage openings (19) is fixedly mounted with a cross rod (20), the top of each group of the cross rods (20) is fixedly mounted with a protective pad (21), the inner cavity wall of each group of the storage openings (19) is fixedly mounted with a protective sleeve (22), and the placement plate (18) is evenly provided with leakage holes (23); A water storage tank (15) is fixedly mounted on the bottom of the sterilization tank (1), a heating plate (16) is fixedly mounted on the bottom wall of the inner cavity of the water storage tank (15), a U-shaped pipe (17) is fixedly mounted on one side of the water storage tank (15) and the sterilization tank (1), and the two ends of the U-shaped pipe (17) are respectively connected to the sterilization tank (1) and the water storage tank (15), a motor (14) is fixedly mounted on the bottom of the sterilization tank (1), and the output end of the motor (14) is fixedly mounted on the bottom of the circular plate (2), and the bottom of the circular plate (2) is evenly provided with an air intake (10) connected to the groove (4).
3. The sterilization equipment for gastrodin injection according to claim 1, characterized in that: A cross plate (9) is provided in the circular frame (11), and the cross plate (9) is fixedly mounted to the fan blade (8).
4. The sterilization equipment for gastrodin injection according to claim 1, characterized in that: An L-shaped scraper (32) is fixedly mounted on one side of the top of the circular plate (2), and the top wall and side walls of the L-shaped scraper (32) are respectively in contact with the bottom of the circular frame (11) and the inner wall of the sterilization tank (1).
5. The sterilization equipment for gastrodin injection according to claim 4, characterized in that: A U-shaped plate (33) is fixedly mounted on the bottom inclined surface of the L-shaped scraper (32).
6. The sterilization equipment for gastrodin injection according to claim 2, characterized in that: An inclined plate (34) is fixedly mounted on the bottom wall of the inner cavity of the sterilization tank (1), and the output shaft of the motor (14) is rotatably mounted on the sterilization tank (1) and the inclined plate (34).
7. The sterilization equipment for gastrodin injection according to claim 6, characterized in that: A drainage pipe (35) is provided on the lower side of the inclined plate (34), and the drainage pipe (35) is fixedly mounted on the sterilization tank (1).
8. The sterilization equipment for gastrodin injection according to claim 1, characterized in that: The return spring (26) and the elastic rod (29) are both in a compressed state in their initial states.
Citation Information
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