Special sterile production line for ointment for repairing wound surface
By designing a crusher containing a driving motor and a screen, the problem of uneven crushing of solid raw materials is solved, rapid secondary crushing and material cleaning are achieved, and the efficiency and convenience of ointment production are improved.
Patent Information
- Application Number
- CN202510386320.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-07-08
AI Technical Summary
In the existing ointment production process, the solid raw materials are crushed unevenly and need to be crushed again, resulting in cumbersome operation, increased production time and energy consumption, and affecting production efficiency.
A sterile production line including a crusher was designed, and the crushing was performed using a rotatable drive motor and blade. Combined with the screen and bristle structure, it achieved rapid secondary crushing and material cleaning, and improved crushing efficiency.
Through rapid secondary crushing and material cleaning, the crushing efficiency of solid materials is improved, production time and energy consumption are reduced, and overall production efficiency is improved.
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Figure CN120268522A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of ointment production, specifically an aseptic production line dedicated to ointments for wound surface repair. Background Art
[0002] Traditional ointment production mostly uses open or semi-closed equipment, which has the risk of microbial contamination and is difficult to meet the high standards of aseptic preparations. With technological progress, modern production lines have gradually achieved fully enclosed and automated operations, combined with CIP (Cleaning in Place) and SIP (Sterilization in Place) systems to ensure the asepticity of the production environment and equipment. At the same time, laminar flow clean rooms and aseptic filling technologies are used to effectively control suspended particles and microbial contamination. The production line consists of equipment such as crushers, ball mills, reaction kettles, moist heat sterilization cabinets, and ointment filling machines.
[0003] However, the above technologies often have the following defects: In the existing ointment production process, solid raw materials need to be crushed by a crusher before use. However, some solid raw materials are prone to uneven crushing during the crushing process due to their hard texture or large initial particle size. To ensure that the particle size of the raw materials meets the process requirements, the crushed materials need to be screened, and the particles that do not reach the target particle size are re-fed into the crusher for secondary crushing. This process is not only cumbersome in operation but also increases production time and energy consumption, affecting the overall production efficiency. Therefore, the present invention provides an aseptic production line dedicated to ointments for wound surface repair. Summary of the Invention
[0004] In order to make up for the deficiencies of the prior art and solve at least one of the technical problems proposed in the background art. The present invention provides an aseptic production line dedicated to ointments for wound surface repair.
[0005] The technical solution adopted by the present invention to solve its technical problems is as follows: The aseptic production line dedicated to ointments for wound surface repair of the present invention includes a crusher for crushing solid materials; the crusher includes a base, and a rotatable drive motor is provided on the crusher. The top end of the drive motor is fixedly connected to a crushing barrel; a connecting shaft is rotatably connected in the crushing barrel, and the output end of the drive motor is fixedly connected to the connecting shaft. A group of blades are fixedly connected to the surface of the connecting shaft; an installation plate is fixedly connected to the inner wall of the crushing barrel, a connecting column is fixedly connected to the top surface of the installation plate, a hollow groove is provided in the connecting column, a sliding rod is slidably connected to the top end of the connecting column, and a first spring is fixedly connected between the bottom surface of the sliding rod and the inner wall of the hollow groove; a connecting ring is fixedly connected to the top surface of the sliding rod, and a screen is fixedly connected to the inner wall of the connecting ring.
[0006] Preferably, an annular groove is formed in the connecting column, a magnetic sheet is slidably connected to the inner wall of the annular groove, a pair of limiting sheets are slidably connected between the hollow groove and the annular groove, a second spring is fixedly connected between the end of the limiting sheet away from the sliding rod and the inner wall of the annular groove, the magnetic sheet and the limiting sheet are magnetically attracted, and a fixing ring is fixedly connected to the side wall of the sliding rod.
[0007] Preferably, a fixing plate is fixedly connected to the side wall of the connecting shaft, and a group of bristles are fixedly connected to the bottom surface of the fixing plate.
[0008] Preferably, a fixing sheet is slidably connected to the inner wall of the crushing barrel, a hollow elastic block is fixedly connected to the side of the fixing sheet close to the connecting shaft, a connecting pipe is communicated between the elastic block and the sliding groove, and the fixing ring is hermetically slidably connected to the inner wall of the hollow groove.
[0009] Preferably, a cavity is formed in the fixing plate, a push plate is hermetically slidably connected in the cavity, a group of air outlet holes communicated with the cavity are formed in the bottom surface of the fixing plate, and a moving assembly for moving the push plate is arranged in the crushing barrel.
[0010] Preferably, the moving assembly includes a ring sleeved on the connecting shaft, the bottom surface of the ring is fixedly connected to the inner wall of the crushing barrel, a group of first magnetic blocks magnetically attracted to the push plate are fixedly connected to the top surface of the ring, and a third spring is fixedly connected between the top surface of the push plate and the inner wall of the cavity.
[0011] Preferably, the special aseptic production line for ointment further includes a ball mill, a reaction kettle, a moist heat sterilization cabinet and an ointment filling machine. The ball mill is used for finely pulverizing the raw materials coarsely pulverized by the pulverizer. The reaction kettle is used for heating, stirring and homogenizing all the raw materials to form an ointment matrix. The moist heat sterilization cabinet is used for disinfecting the containers of the ointment. The ointment filling machine is used for adding the ointment prepared by the reaction kettle into the disinfected containers.
[0012] Preferably, the inside of the connecting ring is of a hollow structure, a group of sliders are slidably connected to the inner side wall of the connecting ring, hooks are fixedly connected to the sliders, the hooks pass through the mesh holes of the sieve mesh, and the sieve mesh is made of an elastic material.
[0013] Preferably, a group of connecting rods are fixedly connected to the top surface of the crushing barrel, an installation ring is fixedly connected to the top surface of the connecting rods, and a second magnetic block magnetically attracted to the slider is fixedly connected to the inner side wall of the installation ring.
[0014] The beneficial effects of the present invention are as follows:
[0015] 1. The present invention can drive the blade to rotate at a high speed by means of a driving motor, so that the blade crushes solid materials. After the crushing of the solid materials is completed, the crushing barrel is turned over so that the port of the crushing barrel faces downward. At this time, the roughly crushed materials can be discharged from the crushing barrel, and at the same time, the materials that have not been completely crushed can be filtered by the screen. Then, the crushing barrel is rotated so that its port faces upward, and then the blade can continue to crush the remaining materials, thereby achieving the effect of quickly performing secondary crushing, improving the efficiency of crushing fixed materials, and enhancing the overall production efficiency.
[0016] 2. When the port of the crushing barrel faces downward, the present invention can make the connecting shaft continue to rotate. At this time, the fixing plate will drive the brush bristles to brush the materials adhering to the bottom surface of the inner wall of the crushing barrel, so that the materials can be completely discharged from the crushing barrel. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention will be further described below in conjunction with the accompanying drawings.
[0018] Figure 1 is a schematic structural diagram of the crusher in the present invention;
[0019] Figure 2 is a schematic internal structure diagram of the crushing barrel in the present invention;
[0020] Figure 3 is a schematic internal structure diagram of the connecting column in the present invention;
[0021] Figure 4 is Figure 2 an enlarged view of part A of
[0022] Figure 5 is Figure 3 an enlarged view of part B of
[0023] Figure 6 is a process flow diagram of the equipment in the sterile production line of the present invention;
[0024] Figure 7 is a schematic structural diagram of the connecting ring and the mounting ring in the present invention;
[0025] Figure 8 is a schematic structural diagram of the slider and the hook in the present invention.
[0026] In the figure: 1, crusher; 2, ball mill; 3, reaction kettle; 4, autoclave; 5, ointment filling machine; 6, base; 7, drive motor; 8, crushing barrel; 9, connecting ring; 10, screen; 11, connecting shaft; 12, blade; 13, fixing plate; 14, connecting column; 15, sliding rod; 16, hollow groove; 17, annular groove; 18, limiting piece; 19, fixing ring; 20, magnetic sheet; 21, fixing plate; 22, brush hair; 23, fixing piece; 24, elastic block; 25, connecting pipe; 26, cavity; 27, push plate; 28, air outlet; 29, first magnetic block; 30, ring; 31, slider; 32, hook; 33, mounting ring; 34, second magnetic block; 35, connecting rod. Detailed implementation manners
[0027] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.
[0028] Example 1: As Figures 1 to 6 shown, the special aseptic production line for wound repair ointment described in the embodiment of the present invention includes a crusher 1, and the crusher 1 is used to crush solid materials; the crusher 1 includes a base 6, and a rotatable drive motor 7 is arranged on the crusher 1, and the top end of the drive motor 7 is fixedly connected with a crushing barrel 8; a connecting shaft 11 is rotatably connected in the crushing barrel 8, the output end of the drive motor 7 is fixedly connected with the connecting shaft 11, and a group of blades 12 are fixedly connected to the surface of the connecting shaft 11; the inner wall of the crushing barrel 8 is fixedly connected with a mounting plate 13, the top surface of the mounting plate 13 is fixedly connected with a connecting column 14, a hollow groove 16 is opened in the connecting column 14, a sliding rod 15 is slidably connected to the top end of the connecting column 14, and a first spring is fixedly connected between the bottom surface of the sliding rod 15 and the inner wall of the hollow groove 16; the top surface of the sliding rod 15 is fixedly connected with a connecting ring 9, and a screen 10 is fixedly connected to the inner wall of the connecting ring 9;
[0029] When the crusher 1 in this application is in use, the screen 10 can be moved upward to remove the screen 10 from the crushing barrel 8. Then, the solid material to be crushed is added into the crushing barrel 8. After the addition is completed, the first spring can be used to pull the sliding rod 15, so that the sliding rod 15 pulls the connecting ring 9 into the crushing barrel 8. Then, the driving motor 7 can be used to drive the blade 12 to rotate at a high speed, so that the blade 12 crushes the solid material. After the solid material is crushed, the crushing barrel 8 is turned over so that the port of the crushing barrel 8 faces downward. At this time, the roughly crushed material can be discharged from the crushing barrel 8, and the uncrushed material can be filtered by the screen 10. Then, the crushing barrel 8 is rotated again to make its port face upward, and then the blade 12 can continue to crush the remaining material, so as to achieve the effect of quickly performing secondary crushing, improve the efficiency of crushing the fixed material, and improve the overall production efficiency.
[0030] An annular groove 17 is formed in the connecting column 14. A magnetic sheet 20 is slidably connected to the inner wall of the annular groove 17. A pair of limiting sheets 18 are slidably connected between the hollow groove 16 and the annular groove 17. A second spring is fixedly connected between the end of the limiting sheet 18 away from the sliding rod 15 and the inner wall of the annular groove 17. The magnetic sheet 20 and the limiting sheet 18 are magnetically attracted. A fixing ring 19 is fixedly connected to the side wall of the sliding rod 15.
[0031] In this application, the limiting sheet 18 can be used to limit the fixing ring 19. At this time, the screen 10 is in a state of being separated from the inside of the crushing barrel 8. Then, after the solid material is crushed, the port of the crushing barrel 8 will rotate downward. At this time, the magnetic sheet 20 will slide, so that the magnetic sheet 20 moves behind the limiting sheet 18 and attracts the limiting sheet 18, so that the limiting sheet 18 no longer limits the fixing ring 19. At this time, the first spring will pull the sliding rod 15, so that the screen 10 moves into the crushing barrel 8. Then, the crushed material in the crushing barrel 8 can be screened. After the material is discharged, the crushing barrel 8 can be rotated upward to reset the crushing barrel 8. When the crushing barrel 8 rotates to a horizontal state, the screen 10 can be pushed and pulled, so that the sliding rod 15 slides to the side away from the first spring. Then, when the crushing barrel 8 is in a vertical state, the magnetic sheet 20 will slide downward due to gravity. At this time, the second spring will push the limiting sheet 18, so that the limiting sheet 18 moves below the fixing ring 19. Then, the screen 10 can be released, so that the first spring pulls the sliding rod 15. At this time, the limiting sheet 18 can limit the fixing ring 19. At this time, there is a large gap between the screen 10 and the port of the crushing barrel 8, which can facilitate the addition of materials into the crushing barrel 8, so as to further improve the convenience of using the crusher 1.
[0032] A fixing plate 21 is fixedly connected to the side wall of the connecting shaft 11, and a group of bristles 22 are fixedly connected to the bottom surface of the fixing plate 21; during the process of crushing the material, some of the crushed material may adhere to the inner wall of the crushing barrel 8 and cannot be completely discharged. At this time, through the above mechanism, when the port of the crushing barrel 8 is downward, the connecting shaft 11 can continue to rotate. At this time, the fixing plate 21 will drive the bristles 22 to brush the material adhering to the bottom surface of the inner wall of the crushing barrel 8, so that the material can be completely discharged from the crushing barrel 8.
[0033] A fixing piece 23 is slidably connected to the inner wall of the crushing barrel 8. A hollow elastic block 24 is fixedly connected to the side of the fixing piece 23 close to the connecting shaft 11. A connecting pipe 25 is communicated between the elastic block 24 and the chute. The fixing ring 19 is hermetically slidably connected to the inner wall of the hollow groove 16; in this application, when the port of the crushing barrel 8 is vertically downward, the fixing piece 23 will drive the elastic block 24 to slide, so that the elastic block 24 moves to a position where it can be squeezed by the fixing plate 21. At this time, when the connecting shaft 11 rotates, it can drive the fixing plate 21 to repeatedly squeeze the elastic block 24, so that the gas in the elastic block 24 can intermittently enter the chute, thereby pushing the fixing ring 19 to move the sliding rod 15. When the sliding rod 15 moves, it will drive the connecting ring 9 to vibrate, so that the sieve mesh 10 also vibrates, so as to improve the screening effect of the material and prevent the mesh holes of the sieve mesh 10 from being blocked.
[0034] A cavity 26 is formed in the fixing plate 21. A push plate 27 is hermetically slidably connected in the cavity 26. A group of air outlet holes 28 communicated with the cavity 26 are formed in the bottom surface of the fixing plate 21. A moving component for moving the push plate 27 is arranged in the crushing barrel 8; in this application, when the crushing barrel 8 discharges the crushed material, the moving component can be used to drive the push plate 27 to move up and down. At this time, the push plate 27 will push the gas in the cavity 26 out of the air outlet holes 28, so that the gas blows to the bottom surface of the inner wall of the crushing barrel 8 to blow away the remaining material, thereby improving the cleaning effect of the inner wall of the crushing barrel 8.
[0035] The moving component includes a ring 30 sleeved on the connecting shaft 11. The bottom surface of the ring 30 is fixedly connected to the inner wall of the crushing barrel 8. A group of first magnetic blocks 29 magnetically attracted to the push plate 27 are fixedly connected to the top surface of the ring 30. A third spring is fixedly connected between the top surface of the push plate 27 and the inner wall of the cavity 26; in this application, when the fixing plate 21 rotates, the push plate 27 will pass by the first magnetic block 29. At this time, the first magnetic block 29 can attract the push plate 27, so that the push plate 27 pushes the gas in the cavity 26 out of the air outlet holes 28. Then when the fixing plate 21 moves away from the first magnetic block 29, the push plate 27 will be reset under the pull of the third spring.
[0036] The sterile production line dedicated to ointments further includes a ball mill 2, a reaction kettle 3, a moist heat sterilization cabinet 4, and an ointment filling machine 5. The ball mill 2 is used for finely pulverizing the raw materials coarsely pulverized by the pulverizer 1. The reaction kettle 3 is used for heating, stirring, and homogenizing all the raw materials to form an ointment matrix. The moist heat sterilization cabinet 4 is used for disinfecting the containers of the ointment. The ointment filling machine 5 is used for adding the ointment prepared by the reaction kettle 3 into the disinfected containers.
[0037] Example 2: As Figures 7 to 8 shown, compared with Example 1, another implementation manner of the present invention is that the interior of the connecting ring 9 is a hollow structure. A group of sliders 31 are slidably connected to the inner side wall of the connecting ring 9. A hook 32 is fixedly connected to the slider 31. The hook 32 passes through the mesh holes of the screen 10. The screen 10 is made of an elastic material. The screen 10 in this application is connected to the fixed ring 19 through the hook 32 to facilitate the subsequent replacement and cleaning of the screen 10, so as to improve the convenience of using the screen 10.
[0038] A group of connecting rods 35 are fixedly connected to the top surface of the pulverizing barrel 8. The top surface of the connecting rods 35 is fixedly connected to a mounting ring 33. A second magnetic block 34 magnetically attracted to the slider 31 is fixedly connected to the inner side wall of the mounting ring 33. When the connecting ring 9 in this application is at the same horizontal plane as the mounting ring 33, the second magnetic block 34 will attract the slider 31, so that the hook 32 on the slider 31 pulls the screen 10, making the mesh holes of the screen 10 larger, so as to prevent the materials to be sieved from getting stuck in the mesh holes, so as to achieve the effect of dredging the screen 10. When the screen 10 enters the pulverizing barrel 8, the connecting ring 9 will move away from the mounting ring 33. At this time, the hook 32 will lose the pulling force on the screen 10, so that the mesh holes of the screen 10 return to the normal state, so as to sieve the coarsely pulverized materials.
[0039] Working principle: By moving the screen 10 upward to move the screen 10 out of the crushing barrel 8, then adding the solid material to be crushed into the crushing barrel 8. After the addition is completed, the first spring can be used to pull the sliding rod 15, so that the sliding rod 15 pulls the connecting ring 9 into the crushing barrel 8. Then, the driving motor 7 can be used to drive the blade 12 to rotate at a high speed, so that the blade 12 crushes the solid material. After the solid material is crushed, the crushing barrel 8 is flipped so that the port of the crushing barrel 8 faces downward. At this time, the coarsely crushed material can be discharged from the crushing barrel 8, and the material that has not been completely crushed can be filtered by the screen 10. Then, the crushing barrel 8 is rotated again to make its port face upward, and then the blade 12 can continue to crush the remaining material, so as to achieve the effect of rapid secondary crushing, improve the efficiency of crushing the fixed material, and improve the overall production efficiency; With the help of the limiting piece 18, the fixed ring 19 can be limited. At this time, the screen 10 is in a state of being separated from the inside of the crushing barrel 8. Then, after the solid material is crushed, the port of the crushing barrel 8 will rotate downward. At this time, the magnetic piece 20 will slide, so that the magnetic piece 20 moves behind the limiting piece 18 and attracts the limiting piece 18, so that the limiting piece 18 no longer limits the fixed ring 19. At this time, the first spring will pull the sliding rod 15, so that the screen 10 moves into the crushing barrel 8, and then the crushed material in the crushing barrel 8 is screened. After the material is discharged, the crushing barrel 8 can be rotated upward to reset the crushing barrel 8. When the crushing barrel 8 rotates to a horizontal state, the screen 10 can be pushed and pulled, so that the sliding rod 15 slides to the side away from the first spring. Then, when the crushing barrel 8 is in a vertical state, the magnetic piece 20 will slide downward due to gravity. At this time, the second spring will push the limiting piece 18, so that the limiting piece 18 moves below the fixed ring 19. Then, the screen 10 can be released, so that the first spring pulls the sliding rod 15. At this time, the limiting piece 18 can limit the fixed ring 19. At this time, there is a large gap between the screen 10 and the port of the crushing barrel 8, which can facilitate the addition of materials into the crushing barrel 8, so as to further improve the convenience of using the crusher 1;
[0040] During the process of crushing the material, some of the crushed material may adhere to the inner wall of the crushing barrel 8 and cannot be completely discharged. At this time, through the above mechanism, when the port of the crushing barrel 8 is downward, the connecting shaft 11 can continue to rotate. At this time, the fixing plate 21 will drive the brush bristles 22 to brush the material adhering to the bottom surface of the inner wall of the crushing barrel 8, so that the material can be completely discharged from the crushing barrel 8; when the port of the crushing barrel 8 in this application is vertically downward, the fixing piece 23 will drive the elastic block 24 to slide, so that the elastic block 24 moves to a position where it can be squeezed by the fixing plate 21. At this time, when the connecting shaft 11 rotates, it can drive the fixing plate 21 to repeatedly squeeze the elastic block 24, so that the gas in the elastic block 24 can intermittently enter the chute, thereby pushing the fixing ring 19 to move the sliding rod 15. When the sliding rod 15 moves, it will drive the connecting ring 9 to vibrate, so that the sieve mesh 10 also vibrates, so as to improve the screening effect of the material and prevent the mesh holes of the sieve mesh 10 from being blocked;
[0041] When the crushing barrel 8 in this application discharges the crushed material, it can drive the push plate 27 to move up and down by means of the moving component. At this time, the push plate 27 will push the gas in the cavity 26 to be discharged from the air outlet hole 28, so that the gas blows to the bottom surface of the inner wall of the crushing barrel 8 to blow away the remaining material, thereby improving the cleaning effect of the inner wall of the crushing barrel 8; when the fixing plate 21 in this application rotates, the push plate 27 will pass by the first magnetic block 29. At this time, the first magnetic block 29 can attract the push plate 27, so that the push plate 27 pushes the gas in the cavity 26 to be blown out from the air outlet hole 28. Then when the fixing plate 21 moves away from the first magnetic block 29, the push plate 27 will be reset under the pull of the third spring.
[0042] The above front, back, left, right, up, and down are all based on the Figure 1 in the specification drawings. Taking the perspective of the person observing as the standard, the side of the device facing the observer is defined as the front, and the left side of the observer is defined as the left, and so on.
[0043] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the protection scope of the present invention.
[0044] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above-mentioned embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and all these changes and improvements fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A dedicated sterile production line for wound repair ointment, including a crusher (1), and the crusher (1) is used for crushing solid materials; It is characterized in that: The crusher (1) includes a base (6), and a rotatable drive motor (7) is arranged on the crusher (1), and the top end of the drive motor (7) is fixedly connected with a crushing barrel (8); A connecting shaft (11) is rotatably connected in the crushing barrel (8), the output end of the drive motor (7) is fixedly connected with the connecting shaft (11), and a group of blades (12) are fixedly connected to the surface of the connecting shaft (11); An installation plate (13) is fixedly connected to the inner wall of the crushing barrel (8), a connecting column (14) is fixedly connected to the top surface of the installation plate (13), a hollow groove (16) is opened in the connecting column (14), a sliding rod (15) is slidably connected to the top end of the connecting column (14), and a first spring is fixedly connected between the bottom surface of the sliding rod (15) and the inner wall of the hollow groove (16); A connecting ring (9) is fixedly connected to the top surface of the sliding rod (15), and a screen (10) is fixedly connected to the inner wall of the connecting ring (9).
2. The dedicated aseptic production line for the wound repair ointment according to claim 1, wherein: An annular groove (17) is opened in the connecting column (14), a magnetic sheet (20) is slidably connected to the inner wall of the annular groove (17), a pair of limiting pieces (18) are slidably connected between the hollow groove (16) and the annular groove (17), a second spring is fixedly connected between the end of the limiting piece (18) away from the sliding rod (15) and the inner wall of the annular groove (17), the magnetic sheet (20) and the limiting piece (18) are magnetically attracted, and a fixing ring (19) is fixedly connected to the side wall of the sliding rod (15).
3. The dedicated aseptic production line for the wound repair ointment according to claim 2, characterized in that: A fixing plate (21) is fixedly connected to the side wall of the connecting shaft (11), and a group of brush hairs (22) are fixedly connected to the bottom surface of the fixing plate (21).
4. The aseptic production line dedicated to the wound repair ointment according to claim 3, characterized in that: A fixing piece (23) is slidably connected to the inner wall of the crushing barrel (8), a hollow elastic block (24) is fixedly connected to the side of the fixing piece (23) close to the connecting shaft (11), a connecting pipe (25) is communicated between the elastic block (24) and the chute, and the fixing ring (19) is hermetically slidably connected to the inner wall of the hollow groove (16).
5. The aseptic production line dedicated to the wound repair ointment according to claim 3, characterized in that: A cavity (26) is opened in the fixing plate (21), a push plate (27) is hermetically slidably connected in the cavity (26), a group of air outlet holes (28) communicated with the cavity (26) are opened on the bottom surface of the fixing plate (21), and a moving component for moving the push plate (27) is arranged in the crushing barrel (8).
6. The dedicated aseptic production line for the wound surface repair ointment according to claim 5, characterized in that: The moving component includes a ring (30) sleeved on the connecting shaft (11), the bottom surface of the ring (30) is fixedly connected to the inner wall of the crushing barrel (8), a group of first magnetic blocks (29) magnetically attracted to the push plate (27) are fixedly connected to the top surface of the ring (30), and a third spring is fixedly connected between the top surface of the push plate (27) and the inner wall of the cavity (26).
7. The dedicated aseptic production line for the wound surface repair ointment according to claim 1, wherein: It also includes a ball mill (2), a reaction kettle (3), a moist heat sterilization cabinet (4) and an ointment filling machine (5). The ball mill (2) is used for finely pulverizing the raw materials coarsely pulverized by the pulverizer (1). The reaction kettle (3) is used for heating, stirring and homogenizing all the raw materials to form an ointment matrix. The moist heat sterilization cabinet (4) is used for disinfecting the containers of the ointment. The ointment filling machine (5) is used for adding the ointment made by the reaction kettle (3) into the disinfected containers.
8. The dedicated sterile production line for the wound repair ointment according to claim 1, characterized in that: The interior of the connecting ring (9) is a hollow structure. A group of sliders (31) are slidably connected to the inner side wall of the connecting ring (9). A hook (32) is fixedly connected to the slider (31). The hook (32) passes through the mesh holes of the screen (10). The screen (10) is made of an elastic material.
9. The dedicated sterile production line for the wound repair ointment according to claim 8, wherein: A group of connecting rods (35) are fixedly connected to the top surface of the pulverizing barrel (8). An installation ring (33) is fixedly connected to the top surface of the connecting rod (35). A second magnet (34) magnetically attracted to the slider (31) is fixedly connected to the inner side wall of the installation ring (33).