Production equipment of oral thick liquid cube sugar for preventing and treating xerophthalmia
By combining a cooling condensation chamber and a cutting tool, the problems of inconvenient carrying and inaccurate dosage of dry eye medications have been solved, enabling the production of convenient and consistent-dosage ointment formulas.
Patent Information
- Application Number
- CN202422830122.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing dry eye medications are inconvenient to carry in their drug form, are prone to spillage, and lack dosage accuracy.
It adopts a cooling and condensation chamber combined with a square cutting tool, and cuts the paste into squares through a longitudinal displacement component. It is equipped with a discharge mechanism and a rotary spring-loaded component to ensure dosage consistency and easy portability.
This has resulted in standardized specifications for traditional Chinese medicine pastes and sugar cubes, making them convenient to carry and improving the accuracy of treatment and production efficiency.
Smart Images

Figure CN223787872U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of drug production technology for the prevention and treatment of dry eye disease, specifically to a production equipment for a paste-like sugar formula for the prevention and treatment of dry eye syndrome. Background Technology
[0002] Dry eye syndrome, a common eye disease, is mainly characterized by symptoms such as dry eyes, foreign body sensation, and eye strain. In severe cases, it can affect vision and impact patients' quality of life. With increased screen time, worsening environmental pollution, and the arrival of an aging society, the incidence of dry eye syndrome is rising year by year, becoming a global public health issue. Modern medical research shows that dry eye syndrome is related to factors such as reduced tear secretion, excessive evaporation, or decreased tear film stability. Traditional Chinese medicine believes that dry eye syndrome is mostly caused by liver and kidney yin deficiency and depletion of body fluids, closely related to the dysfunction of internal organs in traditional Chinese medicine.
[0003] In China, Traditional Chinese Medicine (TCM) tends to focus on treating dry eye syndrome using methods such as electroacupuncture, moxibustion, fumigation, and massage. External therapies are extensively studied and have shown some effectiveness. Cases of treating dry eye syndrome with oral herbal formulas are relatively few. In China, Western medicine tends to conduct clinical research on dry eye syndrome using eye drops, interleukins, and other medications.
[0004] Traditional Chinese medicine ointments, a form of intangible cultural heritage, have a long history and rich clinical experience. Research into their application in treating dry eye syndrome can uncover new values in traditional medicine, fully utilize the unique advantages of traditional Chinese medicine, and serve as an adjunct to dry eye treatment. Combined with traditional treatment methods, these ointments can form a diversified treatment strategy, improving treatment efficacy and enhancing patients' quality of life.
[0005] A related technology (publication number: CN107432909B) discloses a traditional Chinese medicine composition for the prevention and treatment of dry eye syndrome. The disclosed technical solution uses wolfberry as the principal ingredient, which nourishes the liver and kidneys, while ginseng is added. The optimal ratio of wolfberry to ginseng is selected, which can significantly protect corneal epithelial cells and effectively reduce the proportion of secondary conjunctival infection, conjunctival ulcer, and blindness in patients with dry eye syndrome. Ophiopogon japonicus clears heat and generates fluids, nourishes yin and reduces fire; Rehmannia glutinosa clears heat and generates fluids; Morus alba cools blood and improves vision; Scutellaria baicalensis clears excess fire and removes damp heat; Chrysanthemum morifolium / wild chrysanthemum disperses wind and clears heat, serving as assistant ingredients to nourish yin and generate fluids and clear damp heat. Licorice is used as the guiding ingredient to harmonize the various ingredients. The combination of each traditional Chinese medicine is reasonable and works synergistically to effectively relieve the clinical symptoms of dry eye syndrome, increase tear film stability, increase tear secretion, and protect corneal epithelial cells.
[0006] The above-disclosed technical solutions reveal the following problems: most existing drugs for preventing and treating dry eye syndrome are in the form of pharmaceutical preparations. Pharmaceutical preparations lack accuracy in dosage control, and once opened, they are prone to spillage during transport. Due to the stickiness of the preparations, the storage bag is difficult to clean. To address this, we propose a novel production equipment for a paste-like sugar formula for the prevention and treatment of dry eye syndrome.
[0007] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background section of this application, and therefore may include prior art information that does not constitute prior art information known to those skilled in the art. Utility Model Content
[0008] This utility model aims to solve at least one of the technical problems existing in the prior art or related technologies. To address the issue of the inconvenience of carrying dry eye medications in the prior art, this utility model provides a production equipment for a traditional Chinese medicine paste for the prevention and treatment of dry eye syndrome. This equipment utilizes a cooling and solidification chamber combined with a square cutting tool to achieve the effect of easy medication transport. The specific technical solution is as follows:
[0009] A production device for medicinal sugar cubes for the prevention and treatment of dry eye syndrome includes a cooling and coagulation chamber. A medicinal paste cooking pot is provided on the side wall of the cooling and coagulation chamber. The liquid outlet of the medicinal paste cooking pot is embedded in the side wall of the cooling and coagulation chamber. A grid cutter is embedded in the inner cavity of the cooling and coagulation chamber. A longitudinal displacement component for driving the grid cutter to cut the cubes is provided above the cooling and coagulation chamber. A sugar cube discharge port is opened on the side wall of the cooling and coagulation chamber. A discharge gate covering the outside of the sugar cube discharge port is rotatably provided on the side wall of the cooling and coagulation chamber.
[0010] In the above technical solution, a discharge component is slidably provided on the inner wall of the cooling and condensing chamber on the side away from the sugar cube discharge port, and a discharge mechanism for driving the discharge component to push the material is provided on the inner wall of the cooling and condensing chamber near the top.
[0011] The discharge mechanism includes a lead screw rotatably mounted on the inner wall near the top of the cooling condensation chamber. The lead screw is externally threaded with a movable seat, which is fixedly mounted on the top of the discharge component.
[0012] A guide rod is embedded in the inner wall of the cooling condensation chamber on the side away from the lead screw. A guide seat is sleeved on the outside of the guide rod, and the guide seat is fixedly installed on the top of the discharge component.
[0013] The cooling condensation chamber is equipped with a rotary spring assembly on its side wall to drive the discharge gate to reset.
[0014] The rotary rebound assembly includes a movable shaft rotatably mounted on the side wall of the cooling condensation chamber. A connecting cylinder is sleeved on the outside of the movable shaft. The connecting cylinder is located at the top of the discharge gate. A spring is provided between the connecting cylinder and the cooling condensation chamber, and the spring is sleeved on the outside of the movable shaft.
[0015] The longitudinal displacement assembly includes a top frame fixed above the cooling condensation chamber. A cylinder is embedded in the inner cavity of the top frame. The movable end of the cylinder is fixedly installed on the top of the grid cutter. A stabilizing rod is fixedly installed on the top of the grid cutter. The other end of the stabilizing rod passes through the inner cavity of the top frame and extends to the outside.
[0016] A metering window is embedded in the side wall near the bottom of the cooling condensation chamber.
[0017] The side wall of the cooling condensation chamber is fitted with an observation window.
[0018] The cooling condensation chamber has sliding grooves on both inner walls near the top. Stabilizing sliders are fixedly installed on the side walls of the moving seat and the guide seat, and the stabilizing sliders are slidably disposed on the inner wall of the sliding grooves.
[0019] Compared with the prior art, the beneficial effects of this utility model are: the production equipment for the medicinal paste formula for the prevention and treatment of dry eye syndrome:
[0020] 1. The longitudinal displacement component moves the grid cutter towards the bottom of the inner wall of the cooling and condensing chamber, thereby cutting the solidified paste at the bottom of the inner wall of the cooling and condensing chamber into multiple cubes of the same size. The sugar cube-shaped paste for treating dry eye disease serves as a pre-set dosage unit, ensuring that the dosage is consistent each time, avoiding dosage errors when self-preparing, and thus improving the accuracy and safety of treatment.
[0021] Second, the sugar cube form of traditional Chinese medicine is easy to carry, and it will not spill out when placed in a bottle, making it more convenient to carry when going out.
[0022] Third, the discharge mechanism allows the discharge component to slide against the inner wall of the cooling and solidification chamber, pushing the formed sugar cubes to the sugar cube discharge port. The driving force of the discharge mechanism causes the sugar cubes to push the discharge gate to rotate, and at the same time, the sugar cubes are discharged from the cooling and solidification chamber to the outside, making the sugar cube collection process more convenient and thus improving the efficiency of the sugar cube production process.
[0023] Fourth, when the sugar cube paste inside the cooling and solidification chamber is discharged to the outside through the discharge component, the output shaft of the motor drives the lead screw to rotate, which causes the moving seat connected to the thread on the outer wall of the lead screw to move the discharge component. This causes the discharge component to fit against the inner wall of the cooling and solidification chamber and push the formed sugar cube paste to the sugar cube discharge port. As the discharge gate rotates, the sugar cube paste is discharged from the cooling and solidification chamber to the outside, thus facilitating the operation of the sugar cube paste collection process.
[0024] 5. During the process of rotating the lead screw to discharge the sugar cubes, the discharge component simultaneously drives the guide seat to slide against the outer wall of the guide rod. The guide rod, which is parallel to the lead screw, ensures the stability of the discharge component's movement direction and avoids positional deviation, thus allowing the sugar cubes to be completely discharged from the cooling and solidification chamber.
[0025] 6. After all the sugar cubes have been discharged from the cooling and solidification chamber, the discharge gate is rotated and reset by rotating the rebound assembly, so that the discharge gate is rotated to a position that fits against the side wall of the cooling and solidification chamber, thereby closing the sugar cube discharge port.
[0026] 7. By observing the quantity through the metering window, the amount of ointment to enter the cooling and condensing chamber is selected according to the dosage used for dry eye disease. Different dosages of sugar cubes are made by observing the position of the scale line on the metering window, thus bringing convenience to the production process.
[0027] 8. During the process of rotating the lead screw to discharge the sugar cubes from the outside, the discharge component drives the stabilizing sliders on both sides to slide against the inner wall of the chute through the moving seat and guide seat. The sliding cooperation between the stabilizing sliders and the chute ensures the stability of the movement direction of the discharge component, thereby ensuring the cleaning effect of the sugar cubes in the cooling and coagulation chamber. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the structure of a medicinal paste production equipment for the prevention and treatment of dry eye syndrome according to this utility model. Figure 1 ;
[0029] Figure 2 This is a schematic diagram of the structure of a medicinal paste production equipment for the prevention and treatment of dry eye syndrome according to this utility model. Figure 2 ;
[0030] Figure 3 This is an exploded view of the structure of a medicinal paste production equipment for the prevention and treatment of dry eye syndrome according to this utility model;
[0031] Figure 4 This is a schematic diagram of the cooling and condensation chamber of this utility model. Figure 1 ;
[0032] Figure 5This is a schematic diagram of the cooling and condensation chamber of this utility model. Figure 2 ;
[0033] Figure 6 This is a schematic diagram of the square tool holder part of this utility model;
[0034] Figure 7 for Figure 1 A magnified view of part A;
[0035] Figure 8 for Figure 3 A magnified view of section B;
[0036] in, Figures 1 to 8 The correspondence between the reference numerals and component names in the attached drawings is as follows: 1-Cooling and condensing chamber, 2-Ointment cooking pot, 3-Grid cutter, 4-Top frame, 5-Screw screw, 6-Discharge door, 7-Discharge component, 8-Sugar cube discharge port, 9-Curled spring, 10-Valve, 11-Cylinder, 12-Stabilizing rod, 13-Moving shaft, 14-Metering window, 15-Observation window, 16-Machine cover, 17-Bracket, 18-Guide rod, 19-Moving seat, 20-Guide seat, 21-Motor, 22-Slide groove, 24-Stabilizing slider, 25-Connecting frame, 26-Fixing plate, 27-Connecting cylinder, 28-Connecting column. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0038] The following are specific implementation cases and appendices. Figure 1-8 The present invention will be further described below, but the present invention is not limited to these embodiments.
[0039] A production device for a traditional Chinese medicine paste for the prevention and treatment of dry eye syndrome includes a cooling and condensing chamber 1. A paste-cooking pot 2 is mounted on the side wall of the cooling and condensing chamber 1, with its outlet embedded in the side wall. A refrigeration unit is fixedly installed at the bottom of the cooling and condensing chamber 1. The refrigeration unit is electrically connected to an external power source via wires. The refrigeration unit cools the cooling and condensing chamber 1, causing the paste inside to cool and condense.
[0040] The paste-cooking pot 2 is fixed to the side wall of the cooling and condensing chamber 1 by a fixing bracket. One end of an L-shaped liquid outlet pipe is fixedly installed at the bottom of the paste-cooking pot 2, and the other end of the liquid outlet pipe is fixedly embedded in the side wall of the cooling and condensing chamber 1, with the outlet end of the liquid outlet pipe extending into the interior of the cooling and condensing chamber 1, so that the paste enters the interior of the cooling and condensing chamber 1 after cooking. A valve 10 is installed on the liquid outlet pipe, and the amount of paste entering the interior of the cooling and condensing chamber 1 is controlled by the valve 10.
[0041] A grid cutter 3 is embedded in the inner cavity of the cooling condensation chamber 1, and a longitudinal displacement assembly is provided above the cooling condensation chamber 1 to drive the grid cutter 3 to cut into blocks. The specifications of the grid cutter 3 correspond to the shape of the inner cavity of the cooling condensation chamber 1, allowing the grid cutter 3 to move up and down inside the cooling condensation chamber 1. The longitudinal displacement assembly causes the grid cutter 3 to move towards the bottom of the inner wall of the cooling condensation chamber 1, thereby cutting the solidified paste at the bottom of the inner wall of the cooling condensation chamber 1 into blocks, so that the solidified paste is cut into multiple squares of the same size.
[0042] The sugar cube format of this ointment for treating dry eye disease, with its pre-set dosage, ensures consistent dosage each time, avoiding dosage errors that can occur with self-mixing and thus improving the accuracy and safety of treatment. The sugar cube format is also convenient to carry, preventing spills when packaged in a bottle, making it easier to transport when out and about.
[0043] A sugar cube discharge port 8 is provided on the side wall of the cooling and coagulation chamber 1, and a discharge gate 6 is rotatably installed on the side wall of the cooling and coagulation chamber 1, covering the outside of the sugar cube discharge port 8. Two parallel fixing plates 26 are symmetrically and vertically fixed on the side wall of the cooling and coagulation chamber 1 above the sugar cube discharge port 8. Bearings are embedded in the opposite surfaces of the two fixing plates 26, and the two ends of the movable shaft 13 are respectively embedded in the two bearings. Two connecting cylinders 27 are fixedly sleeved on the outside of the movable shaft 13 through the central through hole. One end of the connecting column 28 is vertically fixed on the bottom of the outer wall of the connecting cylinder 27, and the other end of the connecting column 28 is vertically fixed to the top of the connecting frame 25. The discharge gate 6 is vertically fixed to the bottom of the connecting frame 25.
[0044] As the sugar paste enters the cooling and solidification chamber 1, the discharge door 6 adheres to the surface of the chamber and covers the outside of the sugar cube discharge port 8, thus closing the port. The processed sugar cube paste is then discharged from the discharge port 8, facilitating the material collection process for the processing personnel.
[0045] The cooling and condensing chamber 1 has a slidable discharge component 7 on the inner wall away from the sugar cube discharge port 8. The discharge component 7 can be a rectangular plate, with its two sides attached to the inner walls of both sides of the cooling and condensing chamber 1, and its bottom attached to the bottom of the inner wall of the cooling and condensing chamber 1. A discharge mechanism for driving the discharge component 7 to push material is provided on the inner wall of the cooling and condensing chamber 1 near the top.
[0046] The discharge mechanism causes the discharge component 7 to slide against the inner wall of the cooling and solidification chamber 1, pushing the sugar cube paste located at the bottom of the chamber to move and push the formed sugar cube paste to the sugar cube discharge port 8. The driving force of the discharge mechanism causes the sugar cube paste to rotate the discharge gate 6, and the sugar cube paste is discharged from the cooling and solidification chamber 1 to the outside, making the sugar cube paste collection process more convenient and improving the efficiency of the sugar cube paste production process.
[0047] It is worth noting that the discharge mechanism includes a lead screw 5 rotatably mounted on the inner wall near the top of the cooling condensation chamber 1, with a movable seat 19 threadedly connected to the external thread of the lead screw 5. Bearings are embedded on both sides of the inner wall near the top, and the two ends of the lead screw 5 are respectively embedded in the two bearings. The movable seat 19 is connected to the lead screw 5 through a threaded through-hole that penetrates the inner cavity. The movable seat 19 is fixedly mounted on the top of the discharge component 7. A motor 21 is fixed on the outer wall of the cooling condensation chamber 1 corresponding to the lead screw 5 by a cover 16. The output shaft of the motor 21 penetrates the side wall of the cooling condensation chamber 1 and extends into the inner cavity, and is fixedly connected to one end of the lead screw 5. The motor 21 is electrically connected to an external power source via wires.
[0048] When the sugar cube paste inside the cooling and solidification chamber 1 is discharged to the outside via the discharge component 7, the motor 21 is connected to the power supply, causing the output shaft of the motor 21 to drive the lead screw 5 to rotate. This causes the movable seat 19, which is threaded onto the outer wall of the lead screw 5, to move the discharge component 7. The discharge component 7 then adheres to the inner wall of the cooling and solidification chamber 1, pushing the formed sugar cube paste to the sugar cube discharge port 8. As the discharge gate 6 rotates, the sugar cube paste is discharged from the cooling and solidification chamber 1, thus facilitating the sugar cube paste collection process.
[0049] Furthermore, a guide rod 18 is embedded in the inner wall of the cooling condensation chamber 1 on the side away from the lead screw 5. The two ends of the guide rod 18 are vertically fixed to the inner walls of both sides of the cooling condensation chamber 1, and the guide rod 18 is located on the inner wall near the top, meaning the guide rod 18 and the lead screw 5 are on the same horizontal plane. A guide seat 20 is sleeved on the outside of the guide rod 18, and the guide seat 20 is fixedly installed on the top of the discharge component 7.
[0050] As the lead screw 5 rotates, causing the discharge component 7 to discharge the sugar cubes, the discharge component 7 simultaneously drives the guide seat 20 to slide against the outer wall of the guide rod 18. The guide rod 18, which is parallel to the lead screw 5, ensures the stability of the movement direction of the discharge component 7 and avoids positional deviation, thereby allowing the sugar cubes to be completely discharged from the outside of the cooling and solidification chamber 1.
[0051] In addition, a rotary spring-loaded assembly is provided on the side wall of the cooling and coagulation chamber 1 to drive the discharge gate 6 to reset. After all the sugar cubes are discharged from the cooling and coagulation chamber 1, the rotary spring-loaded assembly causes the discharge gate 6 to rotate and reset, so that the discharge gate 6 rotates to a position that fits against the side wall of the cooling and coagulation chamber 1, thereby closing the sugar cube discharge port 8.
[0052] Furthermore, the rotary rebound assembly includes a movable shaft 13 rotatably mounted on the side wall of the cooling and condensation chamber 1. A connecting cylinder 27 is sleeved on the outside of the movable shaft 13, and the connecting cylinder 27 is located on top of the discharge gate 6. A spring-loaded spring 9 is provided between the connecting cylinder 27 and the cooling and condensation chamber 1, and the spring-loaded spring 9 is sleeved on the outside of the movable shaft 13. The two ends of the spring-loaded spring 9 are respectively fixed to the opposite surfaces of the fixed plate 26 and the connecting cylinder 27, and the spring-loaded spring 9 is movably sleeved on the outside of the movable shaft 13.
[0053] When the discharge gate 6 is opened by the pushing force of the discharge component 7, the connecting cylinder 27 drives one end of the spring-loaded spring 9 to stretch and generate elastic force. After all the sugar cubes are discharged, the elastic force of the spring-loaded spring 9 causes the connecting cylinder 27 to drive the discharge gate 6 to rotate, so that the discharge gate 6 returns to its original position, that is, the sugar cube discharge port 8 is closed.
[0054] The longitudinal displacement assembly includes a top frame 4 fixed above the cooling condensation chamber 1, with a cylinder 11 embedded in its inner cavity. The movable end of the cylinder 11 is fixedly mounted on the top of the grid cutter 3, and a stabilizing rod 12 is fixedly mounted on the top of the grid cutter 3. The other end of the stabilizing rod 12 passes through the inner cavity of the top frame 4 and extends to the outside. Brackets 17 are fixedly mounted on both outer walls of the cooling condensation chamber 1, and the top frame 4 is fixed to the brackets 17. The top frame 4 is fixed above the cooling condensation chamber 1 by the four brackets 17 on both sides. A mounting hole penetrating the inner cavity is longitudinally opened at the center of the top frame 4, and the cylinder end of the cylinder 11 is fixedly embedded in the mounting hole, with the cylinder 11 in a position perpendicular to the top frame 4. The movable end of the cylinder 11 is vertically fixed to the top of the grid cutter 3.
[0055] Two stabilizing rods 12 are fixedly installed parallel to each other on the top of the grid cutter 3. The upper ends of the two stabilizing rods 12 pass through the inner cavity of the top frame 4 and extend to the outside.
[0056] After the herbal paste solidifies in the cooling and solidification chamber 1, the solenoid valve of the air guide pipe connected to the cylinder 11 is opened. This causes the movable end of the cylinder 11 to move the grid cutter 3 towards the bottom of the cooling and solidification chamber 1, thereby cutting the solidified herbal paste at the bottom of the cooling and solidification chamber 1 into multiple cubes of the same size. During the movement of the grid cutter 3, the grid cutter 3 simultaneously drives the stabilizing rod 12 to slide within the through hole of the top frame 4. The stabilizing rod 12, which is parallel to the cylinder 11, ensures the stability of the grid cutter 3's movement direction and prevents positional deviation, thus ensuring the quality of the herbal paste cube processing.
[0057] A metering window 14 is embedded in the side wall near the bottom of the cooling condensation chamber 1. The metering window 14 is made of transparent material and is fixedly embedded in the side wall of the cooling condensation chamber 1. The bottom of the metering window 14 is on the same plane as the bottom of the inner wall of the cooling condensation chamber 1, and scale lines are provided on the metering window 14.
[0058] During the process of introducing the prepared herbal paste into the cooling and condensing chamber 1, the quantity is observed through the measuring window 14, and the amount of paste entering the cooling and condensing chamber 1 is selected according to the dosage used for dry eye disease. Different dosages of sugar cubes are made by observing the position of the scale lines on the measuring window 14, thus facilitating the production process.
[0059] An observation window 15 is embedded in the side wall of the cooling condensation chamber 1. The observation window 15, made of transparent material, is fixedly embedded in the outer wall of the cooling condensation chamber 1. The internal processing conditions can be clearly observed through the observation window 15, which brings convenience to the processing of relevant personnel.
[0060] The cooling condensation chamber 1 has grooves 22 on both inner walls near the top. Stabilizing sliders 24 are fixedly installed on the side walls of the movable seat 19 and the guide seat 20, and these stabilizing sliders 24 are slidably disposed on the inner wall of the grooves 22. The specifications of the stabilizing sliders 24 correspond to the cavity of the grooves 22, allowing the stabilizing sliders 24 to slide against the inner wall of the grooves 22.
[0061] As the lead screw 5 rotates, causing the discharge component 7 to discharge the sugar cubes, the discharge component 7 drives the stabilizing sliders 24 on both sides to slide against the inner wall of the chute 22 via the moving seat 19 and the guide seat 20. The sliding cooperation between the stabilizing sliders 24 and the chute 22 ensures the stability of the discharge component 7's movement direction, thereby guaranteeing the effective cleaning of the sugar cubes in the cooling and solidification chamber 1.
[0062] This embodiment describes a medicinal paste production device for the prevention and treatment of dry eye syndrome. The working principle is as follows: First, a medicinal paste for preventing and treating dry eye syndrome is prepared in a paste-making pot 2. The following ingredients are added to the pot 2: Rehmannia glutinosa, Cornus officinalis, Dioscorea opposita, Paeonia suffruticosa, Poria cocos, Alisma plantago-aquatica, Chrysanthemum morifolium, Lycium barbarum, Jujube, Ginger, Xylitol, and Yuanzhen sugar. After the paste is prepared, valve 10 is opened, and the paste is introduced into the cooling and condensing chamber 1. The scale line on the measuring window 14 is observed. When the prescribed dosage of traditional Chinese medicine is reached, valve 10 is closed. Then, the paste is cooled and condensed by a refrigeration unit at the bottom of the cooling and condensing chamber 1.
[0063] After the herbal paste cools and solidifies, the solenoid valve of the air guide pipe connected to the cylinder 11 is opened, causing the movable end of the cylinder 11 to move the grid cutter 3 towards the bottom of the cooling and solidification chamber 1. This cuts the solidified herbal paste at the bottom of the cooling and solidification chamber 1 into multiple squares of the same size.
[0064] Then, the motor 21 is connected to the power supply, so that the output shaft of the motor 21 drives the lead screw 5 to rotate, so that the movable seat 19 connected to the outer wall of the lead screw 5 drives the discharge component 7 to move, so that the discharge component 7 fits against the inner wall of the cooling and solidification chamber 1 and pushes the formed sugar cube paste to the sugar cube discharge port 8. As the discharge gate 6 rotates, the sugar cube paste is discharged from the cooling and solidification chamber 1 to the outside.
[0065] In the description of this utility model, it should be understood that the terms "coaxial", "bottom", "one end", "top", "middle", "other end", "upper", "side", "top", "inner", "front", "center", "both ends", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0066] Furthermore, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first," "second," "third," or "fourth" may explicitly or implicitly include at least one of those features.
[0067] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0068] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A production equipment for medicinal pastes and sugar cubes for the prevention and treatment of dry eye syndrome, characterized in that: Including cooling condensation bin (1), the side wall of cooling condensation bin (1) is provided with paste decocting pot (2), the liquid outlet of paste decocting pot (2) is embedded to the side wall of cooling condensation bin (1), the inner chamber of cooling condensation bin (1) is embedded with grid cutter (3), and the upper portion of cooling condensation bin (1) is provided with longitudinal displacement assembly for driving grid cutter (3) cutting block, the side wall of cooling condensation bin (1) is provided with sugar discharge port (8), and the side wall of cooling condensation bin (1) is rotatably provided with discharge door (6) covering the outside of sugar discharge port (8).
2. The paste formula sugar production equipment for the prevention and treatment of dry eye syndrome according to claim 1, characterized in that: The inner wall of the side of cooling condensation bin (1) away from sugar discharge port (8) is slidably provided with discharge element (7), and the inner wall of the proximal top of cooling condensation bin (1) is provided with discharge mechanism for driving discharge element (7) to push material.
3. The ophthalmic paste of claim 2, wherein the ophthalmic paste is a gel. The discharge mechanism includes a lead screw (5) rotatably disposed on the inner wall of the proximal top of the cooling condensation bin (1), an external thread of the lead screw (5) is connected with a moving seat (19), and the moving seat (19) is fixedly installed on the top of the discharge element (7).
4. The ophthalmic paste of claim 3, wherein the ophthalmic paste is a gel. The inner wall of the side of the cooling condensation bin (1) away from the lead screw (5) is embeddedly installed with a guide rod (18), an external sleeve of the guide rod (18) is sleeved with a guide seat (20), and the guide seat (20) is fixedly installed on the top of the discharge element (7).
5. The equipment for producing medicinal pastes and sugar cubes for the prevention and treatment of dry eye syndrome according to claim 1, characterized in that: The side wall of the cooling condensation bin (1) is provided with a rotary rebound assembly for resetting the discharge door (6).
6. The ophthalmic paste of claim 5, wherein the ophthalmic paste is a gel. The rotary rebound assembly includes a movable shaft (13) rotatably disposed on the side wall of the cooling condensation bin (1), an external sleeve of the movable shaft (13) is sleeved with a connecting barrel (27), the connecting barrel (27) is disposed on the top of the discharge door (6), a clock spring (9) is provided between the connecting barrel (27) and the cooling condensation bin (1), and the clock spring (9) is sleeved on the outside of the movable shaft (13).
7. The ophthalmic paste production device for dry eye prevention and treatment according to claim 1, characterized in that: The longitudinal displacement assembly includes a top frame (4) fixed on the top of the cooling condensation bin (1), an inner chamber of the top frame (4) is embeddedly provided with a pneumatic cylinder (11), a movable end of the pneumatic cylinder (11) is fixedly installed on the top of the grid cutter (3), the top of the grid cutter (3) is fixedly installed with a stabilizing rod (12), the other end of the stabilizing rod (12) penetrates the inner chamber of the top frame (4) and extends to the outside.
8. The ophthalmic paste production device for dry eye prevention and treatment according to claim 1, characterized in that: The inner wall of the side of the cooling condensation bin (1) proximal to the bottom is embeddedly provided with a metering window (14).
9. The ophthalmic paste production device for dry eye prevention and treatment according to claim 1, characterized in that: The side wall of the cooling condensation bin (1) is embeddedly provided with an observation window (15).
10. The ophthalmic paste according to claim 4, wherein the paste is used for the prevention and treatment of dry eye. The inner walls of the two sides of the proximal top of the cooling condensation bin (1) are each provided with a sliding groove (22), the side walls of the moving seat (19) and the guide seat (20) are each fixedly installed with a stabilizing sliding block (24), and the stabilizing sliding block (24) is slidably disposed on the inner wall of the sliding groove (22).
Citation Information
Patent Citations
A traditional Chinese medicine composition for the prevention and treatment of dry eye syndrome, its preparation method and uses.
CN107432909B