Filling device with drying and disinfecting functions

By designing a filling device with drying and disinfection function, and using hot air to dry and disinfect the nozzle, the sanitary hazards and high maintenance costs caused by residual liquid at the tank injection port are solved, and a more efficient and automated filling process is achieved.

CN222961124UActive Publication Date: 2025-06-10SHANGHAI UCAN BIO-TECH CO LTD
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Patent Information

Application Number
CN202421575244.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-06-10
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

After the existing filling device is filled, the tank injection port is prone to residual liquid. As time goes by, the residual liquid comes into contact with bacteria and air-dry, causing sanitary risks and requires manual disassembly and cleaning to increase maintenance costs.

Method used

A filling device with drying and disinfection is designed. By rotating the rotating plate, the air duct body is aligned with the nozzle, and a hot air is generated by a blower, and the nozzle is dried and disinfected to remove residual liquid and impurities.

Benefits of technology

It effectively reduces the sanitary risks of the infusion device, avoids the need for manual cleaning, reduces maintenance costs, and improves the automation and efficiency of the infusion process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a filling device with drying and disinfecting functions, and relates to the field of canning, the filling device comprises a main body base, a fixed base is fixedly arranged on one side of the upper end face of the main body base, a movable plate is arranged at the top of the fixed base, a plurality of first insertion holes are formed in the surface of the movable plate in a surrounding manner, and limiting blocks are fixedly arranged on the surfaces of the first insertion holes; a lower through hole is formed in the middle of the moving plate; a rotating plate is arranged at the top of the moving plate, a rotating groove is formed in the surface of the rotating plate in a surrounding mode, multiple limiting grooves are formed in the bottom of the rotating groove, and nozzles are fixedly arranged on one sides of the multiple limiting grooves; a lower pressing plate is arranged at the top of the rotating plate, a plurality of second inserting holes are formed in the surface of the lower pressing plate, filling heads are fixedly arranged in the second inserting holes, a drying hole is formed in the position, between the two second inserting holes, of the surface of the lower pressing plate, and an air outlet pipe body is fixedly arranged in the drying hole. The device can dry and disinfect the interior of the filling opening, so that the maintenance cost is reduced while the potential sanitation hazard is reduced.
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Description

Technical Field

[0001] This application relates to the field of canning devices, and in particular, to a filling device with drying and disinfection. Background Art

[0002] For the filling of injection solutions, traditional methods mainly use ordinary filling machines for filling. The filling liquid is injected through the filling port of the filling machine to fill the bottles. After filling, the filling port is pulled out, leaving liquid residues attached inside the filling port. Over time, the residual liquid comes into contact with impurities such as dust and bacteria in the air and dries and solidifies.

[0003] As in the patent number CN202310902887.2, an injection solution filling device includes a bottle placing device, a rotary dispensing device, a disinfection and drying device, a boxing device, a liquid-gas co-injection device, a pressing capping device, and a mounting base. It is characterized in that: a bottle placing device, a rotary dispensing device, a disinfection and drying device, a boxing device, a liquid-gas co-injection device, and a pressing capping device are fixedly installed on the mounting base. The disinfection and drying device is used for drying the storage bottles through the spiral lifting of the drying resistance threaded frame and the adaptive deformation and telescoping of the hose nozzle, and by the heat release of the energized drying resistance threaded frame. The boxing device is used for the adsorption and boxing function of the storage bottles through the fitting of the adsorption bracket with the storage bottles and the suction of the boxing air pump. The following deficiencies exist in the actual use of the above device:

[0004] The device fixes the bottles through the bottle placing channel frame, and at the same time, a drying and heating device is arranged outside the bottle placing channel frame. The rotation of the bottle placing channel frame drives multiple bottles to rotate, and the bottles are heated in cooperation with the drying and heating device to make the drying effect more comprehensive. However, by heating the inside of the bottle externally, only the bottles can be heated. After filling, the filling port is prone to having residual liquid attached inside. Over time, the residual liquid comes into contact with bacteria and dries, posing a hygiene hazard to subsequent perfusion. At the same time, it is necessary to manually disassemble and clean the filling port regularly, increasing the maintenance cost. Summary of the Utility Model

[0005] In order to improve the problem that the existing conventional perfusion device is prone to leaving liquid residues inside the perfusion port, causing hygiene hazards and increasing the maintenance cost at the same time, this application provides a filling device with drying and disinfection.

[0006] The filling device with drying and disinfection provided by this application adopts the following technical solutions:

[0007] A filling device with drying and disinfection functions, including a main body base. On one side of the upper end surface of the main body base, a fixed base is fixedly installed. On the top of the fixed base, a moving plate is arranged. A plurality of first jacks are circumferentially formed on the surface of the moving plate, and a limiting block is fixedly installed on the surface of each of the plurality of first jacks. A lower through hole is formed in the middle of the moving plate;

[0008] On the top of the moving plate, a rotating plate is arranged. A rotating groove is circumferentially formed on the surface of the rotating plate, and a plurality of limiting grooves are formed at the bottom of the rotating groove. On one side of each of the plurality of limiting grooves, a spray head is fixedly installed;

[0009] On the top of the rotating plate, a lower pressing plate is arranged. A plurality of second jacks are formed on the surface of the lower pressing plate, and a filling head is fixedly installed in each of the second jacks. A drying hole is formed on the surface of the lower pressing plate between two second jacks, and an air outlet pipe body is fixedly installed in the drying hole.

[0010] By adopting the above technical solution, when the moving plate is pushed up, the limiting block abuts against the surface of the spray head and is inserted into the limiting groove to be flush with the upper end surface of the rotating plate. The lower pressing plate is pressed down to insert the filling head into the rotating groove. The rotating plate rotates to make the limiting block abut against the filling head for limiting, maintaining the insertion of the filling head. At the same time, as the rotating plate rotates, the limiting groove is aligned with the air outlet pipe body. When the lower pressing plate is pressed down, the air outlet pipe body is inserted into the limiting groove to be connected with the spray head, so as to perform drying and disinfection treatment on the inside of the spray head hole.

[0011] Preferably, a servo motor is fixedly installed at the bottom of the fixed base. The output end of the servo motor penetrates through the top of the fixed base and is fixedly connected with a lower connecting rod. The other end of the lower connecting rod away from the servo motor passes through the lower through hole and the middle through hole to be located on the upper end surface of the rotating plate. A fixing plate is fixedly installed at the position of the lower connecting rod on the lower end surface of the rotating plate.

[0012] By adopting the above technical solution, the operation of the servo motor drives the lower connecting rod to rotate. The lower connecting rod is fixedly connected with the rotating plate through the fixing plate, thereby driving the rotating plate to rotate synchronously. The rotating plate is horizontally fixed to the moving plate by inserting the spray head into the first jack, so that the rotating plate drives the moving plate to rotate synchronously.

[0013] Preferably, an upper through hole is formed in the middle of the lower pressing plate. An electromagnetic clutch fixedly inserted and fixed with the upper through hole is fixedly installed on the upper end surface of the rotating plate. The bottom of the electromagnetic clutch is inserted and connected with the top end of the lower connecting rod. An upper connecting rod is inserted and arranged at the top of the electromagnetic clutch. A supporting plate is fixedly installed at the top of the upper connecting rod.

[0014] By adopting the above technical solution, the upper and lower interfaces of the electromagnetic clutch are respectively inserted and fixed with the upper connecting rod and the lower connecting rod to form an integral body, thereby synchronously guiding the rotational force of the lower connecting rod to the upper connecting rod, and at the same time setting the connection between the upper connecting rod and the lower connecting rod to be disconnected and connected.

[0015] Preferably, an insertion hole is formed in the lower end surface of the fixed base on one side of the servo motor. A support column is movably arranged in the insertion hole, and a second electric push rod is fixedly arranged at the alignment position between the lower end surface of the fixed base and the support column.

[0016] By adopting the above technical solution, the second electric push rod pushes the support column, so that the support column jacks up upward to apply a thrust to the moving plate, providing power for the movement of the moving plate.

[0017] Preferably, a filling tank is fixedly arranged on the upper end surface of the pallet. A blower is fixedly arranged on one side of the filling tank. The output end of the blower is fixedly connected to the top of the air outlet pipe body, and a folded pipe surface is arranged on the bottom surface of the air outlet pipe body.

[0018] By adopting the above technical solution, the hot air manufactured by the blower is input into the air outlet pipe body. The folded pipe surface is stretched by the thrust generated by the wind blowing, so as to drive the air outlet at the bottom of the air outlet pipe body to be inserted into the spray nozzle, and dry and disinfect the inside of the spray nozzle.

[0019] Preferably, a first electric push rod is fixedly arranged on one side of the filling tank where the side wall blower is located. The output end of the first electric push rod is fixedly connected to the upper end surface of the lower pressing plate.

[0020] By adopting the above technical solution, while the electric push rod connects the filling tank and the lower pressing plate, it provides power for the movement of the lower pressing plate.

[0021] Preferably, hoses are fixedly arranged at the relative positions of the side surface of the filling tank and a plurality of perfusion heads, and the plurality of hoses are fixedly connected to the tops of the plurality of perfusion heads one by one.

[0022] By adopting the above technical solution, while the hoses connect the filling tank and the perfusion heads, they have stretchability and extend along with the movement of the lower pressing plate.

[0023] Preferably, a groove is formed in the upper end surface of the main body base, and a conveying mechanism is fixedly arranged in the groove.

[0024] By adopting the above technical solution, the conveying mechanism in the groove of the main body base drives the filled bottles to move along the groove, and at the same time plays an auxiliary clamping role on both sides of the filled bottles.

[0025] In summary, the present application includes at least one of the following beneficial technical effects:

[0026] 1. By rotating the rotating plate, the air outlet pipe body is abutted by the limiting block and finally aligned with the limiting groove. Then, under the thrust of the first electric push rod, the lower pressing plate is pressed downward, driving the air outlet pipe body to be inserted into the top of the nozzle to form a connection. The blower conveys hot air into the air outlet pipe body to dry the inner wall of the nozzle. At the same time, the residual liquid, dust and other sundries in the nozzle are discharged to the outside along with the hot air from the bottom of the nozzle, so as to dry and disinfect the inside of the nozzle, reducing the health hazard. At the same time, this does not require manual disassembly, thus reducing the maintenance cost. Brief Description of the Drawings

[0027] Figure 1 is a three-dimensional schematic diagram of the present application;

[0028] Figure 2 is an exploded schematic diagram of the present application;

[0029] Figure 3 is an exploded view of the fixed base of the present application;

[0030] Figure 4 is a connection diagram of the rotating plate of the present application;

[0031] Figure 5 is a connection diagram of the lower pressing plate of the present application.

[0032] Reference signs: 1, main body base; 2, fixed base;

[0033] 3, moving plate; 31, limiting block; 32, first jack; 33, lower through hole;

[0034] 4, rotating plate; 41, rotating groove; 42, nozzle; 43, limiting groove; 44, middle through hole;

[0035] 5, lower pressing plate; 51, second jack; 52, upper through hole; 53, drying hole;

[0036] 6, servo motor; 7, lower connecting rod; 8, fixing plate; 9, electromagnetic clutch; 10, filling head; 11, hose; 12, supporting plate; 13, filling tank; 14, blower; 15, first electric push rod; 16, air outlet pipe body; 17, folded pipe surface; 18, second electric push rod; 19, support column; 20, conveying mechanism; 21, insertion hole; 22, upper connecting rod. Detailed Description of the Embodiment

[0037] The following is a further detailed description of the present application in conjunction with the attached Figures 1-5 drawings.

[0038] The embodiment of the present application discloses a filling device with drying and disinfection.

[0039] Embodiment 1

[0040] Refer to Figure 1 、2 , 3. A filling device with drying and disinfection functions, comprising a main body base 1. An arc-shaped groove is formed on the upper end surface of the main body base 1, and a conveying mechanism 20 is fixedly installed in the groove channel. A fixed base 2 is welded and fixed on one side of the upper end surface of the main body base 1 corresponding to the conveying mechanism 20. An insertion hole 21 is formed on the surface of the fixed base 2, and a support column 19 is movably inserted into the insertion hole 21. The bottom of the support column 19 is fixedly connected to the telescopic end of a second electric push rod 18 on the bottom surface of the fixed base 2. A servo motor 6 is fixedly installed on the bottom of the fixed base 2 on one side of the second electric push rod 18 by screws. The output shaft of the servo motor 6 movably penetrates the upper end surface of the fixed base 2, and the end of the output shaft is fixedly connected to a lower connecting rod 7.

[0041] With the above settings, the conveying mechanism 20 drives the bottles to be filled to move horizontally along the groove of the main body base 1. At the same time, the telescopic end of the second electric push rod 18 extends to drive the support column 19 to move in and out along the insertion hole 21. The support column 19 protrudes from the upper end surface of the fixed base 2, providing power for the subsequent lifting of the moving plate 3. The servo motor 6 rotates to drive the lower connecting rod 7 to rotate. The lower connecting rod 7 plays a connecting role for the subsequent moving plate 3, rotating plate 4, and lower pressing plate 5, and at the same time transmits the rotational force, providing power for the subsequent filling and disinfection functions.

[0042] Refer to Figure 2 , 3 , the upper end surface of the fixed base 2 is in close contact with the bottom surface of the moving plate 3. At the same time, a lower through hole 33 is formed in the middle of the moving plate 3, and the inner wall of the lower through hole 33 is movably inserted with the lower connecting rod 7, thereby forming a horizontal fixation. A first insertion hole 32 (with at least 8 in number) is formed on the upper end surface of the moving plate 3 around the lower through hole 33. A limiting block 31 is fixedly installed on one side of the upper end surface of the moving plate 3 corresponding to a plurality of first insertion holes 32, and the side of the limiting block 31 close to the first insertion hole 32 is arc-shaped.

[0043] With the above settings, the formation of the first insertion hole 32 reserves space for the subsequent insertion and fixation of the nozzle 42. The outer surface of the lower connecting rod 7 is movably inserted into the lower through hole 33, limiting the moving plate 3 on the surface of the lower connecting rod 7. And the moving plate 3 is regularly lifted and lowered around the lower connecting rod 7 by the support column 19, so that the limiting block 31 assists in fixing and limiting the nozzle 42, preventing the nozzle 42 from not being aligned with the first insertion hole 32 when moving.

[0044] Refer to Figure 2 , 4, at one end of the surface of the lower connecting rod 7 away from the moving plate 3, a rotating plate 4 is fixedly provided. A middle through hole 44 with a width consistent with the diameter of the lower connecting rod 7 is opened in the middle of the rotating plate 4. The inner wall of the middle through hole 44 is welded and fixed to the outer surface of the lower connecting rod 7. A rotating groove 41 is opened on the surface of the rotating plate 4 around the middle through hole 44. A plurality of limiting grooves 43 are opened at the bottom of the rotating groove 41. One side of each limiting groove 43 is fixedly provided with a nozzle 42. The top of the nozzle 42 has a through hole, and the through hole penetrates through the bottom of the nozzle 42 to achieve upper and lower through connection. A fixing plate 8 is fixedly provided on the surface of the lower connecting rod 7 at the bottom of the rotating plate 4. The upper end surface of the fixing plate 8 abuts against the bottom of the rotating plate 4. The upper end of the lower connecting rod 7 is inserted and fixed in the lower socket of the electromagnetic clutch 9 at the top of the rotating plate 4. The upper connecting rod 22 is inserted and fixed in the upper port of the electromagnetic clutch 9.

[0045] It should be noted that the number of the limiting grooves 43 and the nozzles 42 is the same as that of the limiting blocks 31. And normally, the center of the nozzle 42 is aligned with the first jack 32. The width of the part of the limiting groove 43 at the notch outside the connection of the nozzle 42 is the same as that of the limiting block 31, so that the limiting block 31 can be movably inserted into the limiting groove 43.

[0046] Through the above settings, the moving plate 3 rotates synchronously with the rotation of the lower connecting rod 7, so that while the nozzle 42 is clamped in the first jack 32, the moving plate 3 is driven to rotate. With the push of the second electric push rod 18, the moving plate 3 rises, and the limiting block 31 rises synchronously and is inserted out of the limiting groove 43 until it is flush with the upper end surface of the rotating plate 4, so as to limit and align the perfusion head 10.

[0047] Refer to Figure 2 、 4 As shown in Figures 4 and 5, the outer surface of the electromagnetic clutch 9 is movably connected with a lower pressing plate 5. A upper through hole 52 is opened in the middle of the lower pressing plate 5. The shape of the upper through hole 52 is the same as the outer surface of the electromagnetic clutch 9 and is movably inserted. A second jack 51 is opened on the upper end surface of the lower pressing plate 5 around the upper through hole 52. A perfusion head 10 is glued and fixed in the second jack 51. The upper connecting rod 22 is inserted into the electromagnetic clutch 9 and is located on the upper end surface of the lower pressing plate 5. A support plate 12 is welded and fixed at the top of the upper connecting rod 22. A circular groove is provided on the upper end of the support plate 12, and a filling tank 13 is fixed in the groove. A hose 11 is fixed on the outer surface of the filling tank 13 at the alignment position with the perfusion head 10. One end of the hose 11 away from the filling tank 13 is communicated with the perfusion head 10. A drying hole 53 is opened on the upper end surface of the lower pressing plate 5 between the two second jacks 51. An air outlet pipe body 16 is fixed in the drying hole 53. A folded pipe surface 17 is provided at the bottom of the air outlet pipe body 16.

[0048] It should be noted that the number of the second jacks 51 is the same as that of the first jacks 32, the width of the outlet at the bottom of the perfusion head 10 is the same as the width of the through hole at the top of the spray head 42, the hose 11 is made of rubber and is hollow inside, so that while the filling tank 13 is kept connected to the perfusion head 10, it has a certain stretchability, and the width of the air outlet at the bottom of the air outlet pipe body 16 is the same as the width of the through hole at the top of the spray head 42.

[0049] With the above settings, when the lower pressing plate 5 is pressed down, it drives the perfusion head 10 to move downward synchronously, and then the perfusion head 10 is inserted into the rotation groove 41. At the same time, the upper connecting rod 22 is connected to the lower connecting rod 7 through the electromagnetic clutch 9, so as to rotate synchronously, making the lower pressing plate 5 rotate. When the lower pressing plate 5 rotates, the perfusion head 10 rotates clockwise. When the side surface of the perfusion head 10 abuts against the arc surface of the limiting block 31, the output port at the bottom of the perfusion head 10 is aligned with the through hole at the top of the spray head 42. As the lower pressing plate 5 is pressed down, the perfusion head 10 is docked with the spray head 42, and the filling tank 13 outputs the liquid to be perfused through the hose 11, and is injected into the spray head 42 by the perfusion head 10, so as to perfuse the bottle.

[0050] Refer to Figure 2 、 5 On the side wall surface of the filling tank 13, a blower 14 is welded and fixed. The output end of the blower 14 faces downward and is connected to the through hole at the top of the air outlet pipe body 16 through a pipeline. On the side wall surface of the filling tank 13 and on one side of the blower 14, a first electric push rod 15 is welded and fixed. The telescopic end of the first electric push rod 15 extends downward and is fixedly connected to the upper end surface of the lower pressing plate 5 through a screw.

[0051] With the above settings, the blower 14 is started to generate hot air. The hot air enters the air outlet pipe body 16 through the pipeline, and then is blown out from the air outlet at the bottom of the air outlet pipe body 16. During the blowing process, the wind generates a thrust on the folding pipe surface 17 to make the folding pipe surface 17 stretch. As the folding pipe surface 17 stretches, the air outlet of the air outlet pipe body 16 is inserted into the through hole of the spray head 42, so as to perform drying and disinfection treatment on the inside of the spray head 42. At the same time, the first electric push rod 15 extends, pushing the lower pressing plate 5 downward, so as to insert the perfusion head 10 into the spray head 42 for perfusion.

[0052] It should be noted that the electromagnetic clutch 9 is in a connected state under normal conditions, the first electric push rod 15 and the second electric push rod 18 are in an extended state under normal conditions. When the air outlet pipe body 16 performs hot air disinfection, its position needs to be set on one side far away from the main body base 1 (as Figure 2 shown), and a storage device for receiving waste is installed at the position outside the bottom of the air outlet pipe body 16.

[0053] Among them, the device further includes a servo motor 6, an electromagnetic clutch 9, a filling tank 13, a blower 14, a first electric push rod 15, and a second electric push rod 18, all of which are prior arts and their structural principles will not be described in detail. The conveying mechanism 20 further includes a housing fixedly arranged in the groove of the main body frame 1, and conveying tracks fixedly arranged on both sides of the inner wall of the housing. The model of the blower 14 is set as the medium-pressure blower CX-100 of Quanfeng Medium-Pressure Blower.

[0054] The implementation principle of an infusion device with drying and disinfection in an embodiment of this application is as follows: When using this device, the microcomputer sends signals to control the conveying mechanism 20 and the servo motor 6 to start respectively. The conveyor belt of the conveying mechanism 20 clamps the bottles and moves them along the groove of the main body base 1. The output shaft of the servo motor 6 drives the lower connecting rod 7 to rotate. The rotating plate 4 is fixedly connected to the lower connecting rod 7 and rotates synchronously. At this time, the spray head 42 fixedly arranged on the surface of the lower connecting rod 7 is longitudinally inserted into the first jack 32, thereby driving the moving plate 3 and the rotating plate 4 to rotate synchronously. The liquid output by the filling tank 13 flows into the spray head 42 through the filling head 10. When the bottle moves to the arc surface of the groove of the main body base 1, the spray head 42 is driven by the moving plate 3 to rotate, so as to keep consistent with the movement of the bottle, and then the liquid is injected to complete the filling operation.

[0055] After the filling is completed, the microcomputer sends signals to control the first electric push rod 15 respectively. The first electric push rod 15 contracts, driving the lower pressing plate 5 to lift and pulling the filling head 10 out of the spray head 42. At the same time, the second electric push rod 18 contracts.

[0056] Then the microcomputer sends a signal to control the electromagnetic clutch 9 to be in the off state. At this time, the lower pressing plate 5 stops rotating, and the rotating plate 4 keeps rotating. As the rotating plate 4 rotates, finally the air outlet pipe body 16 abuts against the arc surface of the limiting block 31, so as to be centered with the center of a spray head 42. At this time, the servo motor 6 stops rotating, and at the same time the blower 14 is started. The blower 14 absorbs external air and converts it into hot air, which is then transported through a pipeline to the air outlet pipe body 16. The folding pipe surface 17 at the bottom of the air outlet pipe body 16 is pushed downward by the wind force to extend, so that the outlet at the bottom of the air outlet pipe body 16 extends and finally is inserted into the spray head 42. The hot air is blown from the air outlet pipe body 16 into the spray head 42. Debris such as bacterial liquid attached to the inner wall of the spray head 42 is blown out to the outside by the hot air, and the inner wall of the spray head 42 is dried by the hot air, so as to achieve the effect of drying and disinfection.

[0057] Then the second electric push rod 18 contracts to drive the moving plate 3 to move downward, pulling the limiting block 31 out of the limiting groove 43. The servo motor 6 is started again to drive the rotating plate 4 to rotate, so as to rotate and move the next spray head 42 to the lower part of the air outlet pipe body 16 to complete the disinfection and drying process. This cycle continues until all the spray heads 42 are disinfected.

[0058] The above are all preferred embodiments of the present application, and do not limit the protection scope of the present application. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application shall be covered within the protection scope of the present application.

Claims

1. A filling device with drying and disinfection, characterized in that: The invention comprises a main body base (1), a fixed base (2) is fixedly provided on one side of the upper end surface of the main body base (1), a movable plate (3) is arranged on the top of the fixed base (2), a plurality of first plug holes (32) are arranged around the surface of the movable plate (3), a limit block (31) is fixedly provided on the surface of the plurality of first plug holes (32), and a lower through hole (33) is arranged in the middle of the movable plate (3); A rotating plate (4) is arranged on the top of the movable plate (3); a rotating groove (41) is arranged around the surface of the rotating plate (4); a plurality of limiting grooves (43) are arranged at the bottom of the rotating groove (41); and a nozzle (42) is fixedly arranged on one side of each of the plurality of limiting grooves (43); A lower pressure plate (5) is arranged on the top of the rotating plate (4), and a plurality of second plug holes (51) are provided on the surface of the lower pressure plate (5), and a pouring head (10) is fixedly installed in each of the second plug holes (51). A drying hole (53) is provided on the surface of the lower pressure plate (5) between two second plug holes (51), and an air outlet pipe body (16) is fixedly installed in the drying hole (53).

2. A filling device with drying and disinfection function according to claim 1, characterized in that: A servo motor (6) is fixedly arranged at the bottom of the fixed base (2); the output end of the servo motor (6) passes through the top of the fixed base (2) and is fixedly connected to a lower connecting rod (7); the other end of the lower connecting rod (7) away from the servo motor (6) passes through a lower through hole (33) and a middle through hole (44) and is located on the upper end surface of the rotating plate (4); and a fixed plate (8) is fixedly arranged on the lower end surface of the rotating plate (4).

3. A filling device with drying and disinfection function according to claim 1, characterized in that: An upper through hole (52) is provided in the middle of the lower pressure plate (5), an electromagnetic clutch (9) which is plugged and fixed to the upper through hole (52) is fixedly provided on the upper end surface of the rotating plate (4), the bottom of the electromagnetic clutch (9) is plugged into the top of the lower connecting rod (7), an upper connecting rod (22) is plugged into the top of the electromagnetic clutch (9), and a support plate (12) is fixedly provided on the top of the upper connecting rod (22).

4. A filling device with drying and sterilization function according to claim 2, characterized in that: The lower end surface of the fixed base (2) is provided with an insertion hole (21) on one side of the servo motor (6), a support column (19) is movably arranged in the insertion hole (21), and a second electric push rod (18) is fixedly arranged at the position where the lower end surface of the fixed base (2) is aligned with the support column (19).

5. A filling device with drying and sterilization function according to claim 3, characterized in that: A filling tank (13) is fixedly arranged on the upper end surface of the support plate (12), a blower (14) is fixedly arranged on one side of the filling tank (13), an output end of the blower (14) is fixedly connected to the top of an air outlet pipe body (16), and a folded pipe surface (17) is arranged on the bottom surface of the air outlet pipe body (16).

6. A filling device with drying and sterilization function according to claim 5, characterized in that: The filling tank (13) is fixedly provided with a first electric push rod (15) on one side of the side wall blower (14), and the output end of the first electric push rod (15) is fixedly connected to the upper end surface of the lower pressing plate (5).

7. A filling device with drying and sterilization function according to claim 6, characterized in that: A hose (11) is fixedly provided at a position on the side surface of the filling tank (13) relative to the plurality of filling heads (10), and the plurality of hoses (11) are fixedly connected one by one to the tops of the plurality of filling heads (10).

8. A filling device with drying and sterilization function according to claim 1, characterized in that: The upper end surface of the main body base (1) is provided with a groove, and a transmission mechanism (20) is fixedly arranged in the groove.

Citation Information

Patent Citations

  • Injection filling device

    CN116714815A