Filling machine with anti-splashing function

Through the design of lifting mechanism and connecting components, the splashing problem during the liquid cosmetic infusion process is solved, the stability and environmental protection of the infusion process are achieved, and the installation operation of the material barrel is simplified.

CN223047239UActive Publication Date: 2025-07-01HUAMEI KANGYAN (SUZHOU) BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422347857.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-01
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing liquid cosmetic infusion devices are prone to cause cosmetic splash during the infusion process, causing waste and environmental pollution.

Method used

A filling machine with anti-splash function is designed. The lowering speed of the lifting plate is controlled by the lifting mechanism to match the infusion flow rate of the needle tube, maintain a constant distance between the needle tube and the liquid cosmetic surface in the packaging bottle, and the convenient connection between the filling mechanism and the barrel is achieved through the connecting component and the barrel joint.

Benefits of technology

It effectively avoids the splash of liquid cosmetics, prevents environmental pollution, and simplifies the installation and disassembly process of material barrels to ensure the quality of filling.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223047239U_ABST
Patent Text Reader

Abstract

The utility model discloses a filling machine with anti-splash function, including frame, workbench, filling mechanism, connecting component, charging basket, stirring mechanism and lifting mechanism, the frame is equipped with the workbench, the workbench is equipped with filling mechanism, filling mechanism is communicated with charging basket through connecting component, the charging basket is detachably installed on the support pillar, the connecting component is equipped with the lifting mechanism, the lifting mechanism is equipped with the stirring mechanism, and the stirring mechanism is equipped with the stirring mechanism. A stirring mechanism is mounted on the supporting column, a lifting mechanism is mounted on the rack, and a carrier is mounted on the lifting mechanism; the lifting mechanism is arranged, the lifting motor can drive the lifting plate and the packaging bottle to descend and control the descending speed of the lifting plate, so that the descending speed of the lifting plate is matched with the filling flow speed of a needle tube, and the needle tube and the surface of liquid cosmetics in the packaging bottle are always kept at the same distance; the reasonable distance between the surface of the liquid cosmetic in the packaging bottle and the needle tube is guaranteed, and the problem that the liquid cosmetic splashes is well solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of cosmetic processing, and particularly relates to a filling machine with a splash-proof function. Background Art

[0002] With the improvement of people's material living conditions, the pursuit of external beauty by the public has been continuously enhanced, which has promoted the development of the cosmetics industry. Cosmetics are classified into liquid, semi-solid, powder and other forms according to their forms, and liquid cosmetics account for a relatively high proportion; in the process of liquid cosmetic production, it is necessary to fill liquid cosmetics through filling equipment.

[0003] In the existing liquid cosmetic filling device, during the filling process, liquid cosmetics are likely to splash out from the cosmetic packaging bottle, resulting in cosmetic waste and environmental pollution. In view of the above defects, it is necessary to design a filling machine with a splash-proof function. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a filling machine with a splash-proof function to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A filling machine with a splash-proof function, including a frame, a workbench, a filling mechanism, a connection component, a material barrel, a stirring mechanism and a lifting mechanism. The workbench is installed on the frame, the filling mechanism is installed on the workbench, the filling mechanism is communicated with the material barrel through the connection component, the material barrel is detachably installed on the support column, the stirring mechanism is installed on the support column, the lifting mechanism is installed on the frame, and a carrier is installed on the lifting mechanism.

[0006] Preferably, the filling mechanism includes a piston rod and a driving component for driving the piston rod to move. The driving component includes a push plate and a filling motor. A first lead screw nut is installed in the middle of the push plate, and the first lead screw nut is sleeved on the first lead screw. The first lead screw is rotatably installed between two lead screw mounting seats.

[0007] Preferably, one end of the first lead screw is fixedly connected to the output shaft of the filling motor. The filling motor is installed on the lead screw mounting seat through a motor mounting seat. First guide sleeves are installed on both sides of the push plate, and the first guide sleeves are sleeved on the first guide rods. The two ends of the first guide rods are respectively installed on the two lead screw mounting seats. One end of the piston rod is installed with a piston, a heating block is installed on the outer wall of the piston sleeve, and the other end of the piston rod is fixedly connected to the push plate through a floating joint.

[0008] Preferably, the perfusion mechanism further includes a rotary valve. The top of the rotary valve is provided with a feed port which is communicated with a flange pipe. The front end of the rotary valve is provided with a discharge port. A syringe fixing seat is installed at the front end of the rotary valve. A syringe is installed at the bottom of the syringe fixing seat. An arc-shaped pipe is arranged inside the syringe fixing seat. One end of the arc-shaped pipe is communicated with the discharge port, and the other end of the arc-shaped pipe is communicated with the syringe.

[0009] Preferably, a perfusion port is provided at the rear end of the rotary valve, and the perfusion port is communicated with a piston sleeve. A rotating shaft port penetrating through the side wall of the rotary valve is provided on the rotary valve. A rotating shaft is rotatably arranged inside the rotating shaft port. The middle of the rotating shaft is rotatably installed on a bearing seat through a bearing. Three communicating through holes are provided on the rotating shaft. One end of the rotating shaft is fixedly connected with a first hinge seat. The first hinge seat is hinged with the piston rod of a cylinder. The cylinder block of the cylinder is hinged with the workbench through a second hinge seat.

[0010] Preferably, a bucket joint communicated with the bucket is installed at the bottom of the bucket. The bucket joint includes a second connector and a connecting pipe communicated with the second connector. A second annular groove is provided on the outer periphery of the second connector. A second sealing ring is installed in the second annular groove. A plurality of bolt holes are arranged in a circumferential direction at the top of the connecting pipe. A round hole is provided at one end of the barrel mounting plate. Connecting holes corresponding to the positions of the bolt holes are also provided at one end of the barrel mounting plate. The other end of the barrel mounting plate is installed on a support column.

[0011] Preferably, the connecting component includes a ball valve body and a first connector. The bottom of the ball valve body is connected with the first connector. A ball valve accommodating cavity is provided in the middle of the ball valve body. A ball valve is arranged in the ball valve accommodating cavity. Valve rod mounting sleeves are arranged on both sides of the ball valve body. A valve rod passes through the valve rod mounting sleeve. One end of the valve rod is connected with the ball valve, and the other end is connected with a handle. A stepped hole penetrating through the upper and lower ends of the ball valve body is provided on the ball valve body. The ball valve accommodating cavity is communicated with the stepped hole. A first annular groove is provided on the outer periphery of the first connector. A first sealing ring is installed in the first annular groove.

[0012] Preferably, the stirring mechanism includes a stirring shaft, a stirring motor and stirring blades. The stirring shaft is fixedly connected with the output shaft of the stirring motor through a coupling. The stirring motor is installed at one end of a motor mounting plate. The other end of the motor mounting plate is fixedly connected with a support column. Stirring blades are installed on the stirring shaft.

[0013] Preferably, the lifting mechanism includes a lifting plate and a lifting motor. Both ends of the lifting plate are fixedly connected with the tops of second guide rods. The middle of the second guide rods is sleeved with second guide sleeves. The second guide sleeves are installed on a top plate. The top plate is installed on a chassis. The bottoms of the second guide rods are fixedly connected with a moving plate.

[0014] Preferably, a second lead screw nut is installed in the middle of the moving plate. The second lead screw nut is sleeved on the second lead screw. One end of the second lead screw is rotatably installed on the top plate, and the other end of the second lead screw is rotatably installed on the fixed plate. The second lead screw is fixedly connected to the output shaft of the lifting motor. The lifting motor is installed at the bottom of the fixed plate through the second motor mounting seat. Connecting rods are installed at the four corners of the top of the fixed plate, and the connecting rods are fixedly connected to the top plate.

[0015] Compared with the prior art, the technical solution provided by the present invention has at least the following technical effects or advantages:

[0016] First, the present invention is provided with a lifting mechanism. The lifting motor can drive the lifting plate and the packaging bottle to descend and control the descending speed of the lifting plate, so that the descending speed of the lifting plate matches the perfusion flow rate of the syringe needle, keeping the same distance between the syringe needle and the surface of the liquid cosmetics in the packaging bottle all the time, ensuring a reasonable distance between the surface of the liquid cosmetics in the packaging bottle and the syringe needle, well solving the problem of splashing of liquid cosmetics, avoiding the environmental pollution caused by the splashing of liquid cosmetics during perfusion, and avoiding the pollution caused by the bottom of the syringe needle touching the liquid cosmetics.

[0017] Second, the present invention is provided with a connection component and a bucket connector. The first connector of the connection component is clamped on the flange pipe, and then the bucket connector at the bottom of the bucket is inserted into the round hole of the bucket mounting plate, and the second connector of the bucket connector is clamped in the stepped hole of the connection component, so that the perfusion mechanism and the bucket can be connected through the connection component. Finally, the bolt passes through the connection hole of the bucket mounting plate and is screwed into the bolt hole of the connecting pipe, so that the bucket connector can be fixed on the bucket mounting plate, facilitating the installation and disassembly of the bucket. Description of the Drawings

[0018] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention. In the drawings:

[0019] Figure 1 is a schematic structural diagram of the present invention;

[0020] Figure 2 is a top view of the present invention;

[0021] Figure 3 is a schematic structural diagram of the perfusion mechanism in the present invention;

[0022] Figure 4 is a schematic structural diagram of the rotating shaft in the present invention;

[0023] Figure 5 is a schematic structural diagram of the bucket connector and the connection component in the present invention;

[0024] Figure 6 Schematic diagram of the internal structure of the connection component in the present utility model;

[0025] Figure 7 Schematic diagram of the structure of the lifting mechanism in the present utility model.

[0026] In the drawings:

[0027] 1. Frame; 2. Workbench; 3. Pouring mechanism; 301. Piston rod; 302. Protective cover; 303. Push plate; 304. First lead screw nut; 305. First lead screw; 306. Lead screw mounting seat; 307. Pouring motor; 308. First motor mounting seat; 309. First guide sleeve; 310. First guide rod; 311. Piston sleeve; 312. Heating block; 313. Floating joint; 314. Rotary valve; 315. Flange pipe; 316. Syringe needle fixing seat; 317. Syringe needle; 318. Rotating shaft; 319. Bearing; 320. Bearing seat; 321. First hinge seat; 322. Cylinder; 323. Second hinge seat; 324. Through hole; 4. Connection component; 401. Ball valve body; 402. First connector; 403. Ball valve; 404. Valve rod mounting sleeve; 405. Valve rod; 406. Handle; 407. Step hole; 408. First annular groove; 409. First sealing ring; 5. Material bucket; 6. Support column; 7. Stirring mechanism; 701. Stirring shaft; 702. Coupling; 703. Stirring motor; 704. Motor mounting plate; 705. Stirring blade; 8. Lifting mechanism; 801. Lifting plate; 802. Second guide rod; 803. Second guide sleeve; 804. Top plate; 805. Chassis; 806. Moving plate; 807. Second lead screw nut; 808. Second lead screw; 809. Fixed plate; 810. Lifting motor; 811. Second motor mounting seat; 812. Connecting rod; 9. Carrier; 10. Material bucket connector; 1001. Second connector; 1002. Connecting pipe; 1003. Second annular groove; 1004. Second sealing ring; 11. Material cylinder mounting plate. Detailed implementation manners

[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0029] Please refer to Figures 1-7As shown in the figure, the utility model provides a technical solution: a filling machine with a splash-proof function, which includes a frame 1, a workbench 2, a filling mechanism 3, a connection component 4, a material bucket 5, a stirring mechanism 7 and a lifting mechanism 8. The workbench 2 is installed on the frame 1, the filling mechanism 3 is installed on the workbench 2, the filling mechanism 3 is communicated with the material bucket 5 through the connection component 4, the material bucket 5 is detachably installed on the support column 6, the stirring mechanism 7 is installed on the support column 6, the lifting mechanism 8 is installed on the frame 1, and a carrier 9 is installed on the lifting mechanism 8. A circular groove for placing packaging bottles is opened in the middle of the carrier 9.

[0030] In this embodiment, the filling mechanism 3 includes a piston rod 301 and a driving component for driving the piston rod 301 to move. A protective cover 302 is arranged on the driving component. The driving component includes a push plate 303 and a filling motor 307. A first lead screw nut 304 is installed in the middle of the push plate 303. The first lead screw nut 304 is sleeved on the first lead screw 305. The first lead screw 305 is rotatably installed between two lead screw mounting seats 306. The lead screw mounting seats 306 are installed on the workbench 2. One end of the first lead screw 305 is fixedly connected to the output shaft of the filling motor 307. The filling motor 307 is installed on the lead screw mounting seat 306 through a motor mounting seat 308. First guide sleeves 309 are installed on both sides of the push plate 303. The first guide sleeves 309 are sleeved on the first guide rods 310. The two ends of the first guide rods 310 are respectively installed on the two lead screw mounting seats 306. A piston is installed at one end of the piston rod 301. The piston is slidably arranged inside the piston sleeve 311. A heating block 312 is installed on the outer wall of the piston sleeve 311. An electric heating wire is installed inside the heating block 312. The other end of the piston rod 301 is fixedly connected to the push plate 303 through a floating joint 313.

[0031] The perfusion mechanism 3 in this embodiment further includes a rotary valve 314. The top of the rotary valve 314 is provided with a feed port, and the feed port is communicated with a flange pipe 315. The front end of the rotary valve 314 is provided with a discharge port. A syringe fixing seat 316 is installed at the front end of the rotary valve 314. A syringe 317 is installed at the bottom of the syringe fixing seat 316. An arc-shaped pipe is arranged inside the syringe fixing seat 316. One end of the arc-shaped pipe is communicated with the discharge port, and the other end of the arc-shaped pipe is communicated with the syringe 317. The rear end of the rotary valve 314 is provided with a perfusion port, and the perfusion port is communicated with a piston sleeve 311. A rotating shaft port penetrating the side wall of the rotary valve 314 is provided on the rotary valve 314. A rotating shaft 318 is rotatably arranged inside the rotating shaft port. The middle of the rotating shaft 318 is rotatably installed on a bearing seat 320 through a bearing 319. Three communicating through holes 324 are provided on the rotating shaft 318. One end of the rotating shaft 318 is fixedly connected with a first hinge seat 321. The first hinge seat 321 is hinged with the piston rod of a cylinder 322. The cylinder body of the cylinder 322 is hinged with a workbench 2 through a second hinge seat 323. The feed port, the discharge port, the perfusion port and the rotating shaft port are all communicated with the inside of the rotary valve 314.

[0032] The bottom of the material bucket 5 in this embodiment is installed with a material bucket joint 10 communicated with the material bucket 5. The material bucket joint 10 includes a second connector 1001 and a connecting pipe 1002 communicated with the second connector 1001. The second connector 1001 is a hollow cylindrical structure. A second annular groove 1003 is provided on the outer periphery of the second connector 1001. A second sealing ring 1004 is installed in the second annular groove 1003. The connecting pipe 1002 is a stepped cylindrical shape. A plurality of bolt holes are arranged along the circumferential direction at the top of the connecting pipe 1002. The connecting pipe 1002 is detachably installed at one end of a material cylinder mounting plate 11. A round hole is provided at one end of the material cylinder mounting plate 11. A connecting hole corresponding to the position of the screw hole is also provided at one end of the material cylinder mounting plate 11. The other end of the material cylinder mounting plate 11 is installed on a support column 6.

[0033] The connection component 4 in this embodiment includes a ball valve body 401 and a first connector 402. The bottom of the ball valve body 401 is connected to the first connector 402. A ball valve accommodating cavity is provided in the middle of the ball valve body 401. A ball valve 403 is arranged in the ball valve accommodating cavity. The ball valve 403 is a perforated sphere. Valve rod mounting sleeves 404 are arranged on both sides of the ball valve body 401. A valve rod 405 is inserted through the valve rod mounting sleeves 404. One end of the valve rod 405 is connected to the ball valve 403, and the other end is connected to a handle 406. A stepped hole 407 penetrating through the upper and lower ends of the ball valve body 401 is provided on the ball valve body 401. The ball valve accommodating cavity communicates with the stepped hole 407. The first connector 402 is a hollow cylindrical structure. A first annular groove 408 is provided on the outer periphery of the first connector 402. A first sealing ring 409 is installed in the first annular groove 408. During installation, the first connector 402 of the connection component 4 is clamped on the flange pipe 315, and then the bucket connector 10 at the bottom of the bucket 5 is inserted into the circular hole of the bucket mounting plate 11, and the second connector 1001 of the bucket connector 10 is clamped in the stepped hole 407 of the connection component 4, so that the connection between the perfusion mechanism 3 and the bucket 5 can be realized through the connection component 4. Finally, bolts pass through the connection holes of the bucket mounting plate 11 and are screwed into the bolt holes of the connection pipe 1002, so that the bucket connector 10 can be fixed on the bucket mounting plate 11, which is convenient for the installation and disassembly of the bucket 5.

[0034] The stirring mechanism 7 in this embodiment includes a stirring shaft 701, a stirring motor 703 and stirring blades 705. The stirring shaft 701 is fixedly connected to the output shaft of the stirring motor 703 through a coupling 702. The stirring motor 703 is installed at one end of a motor mounting plate 704. The other end of the motor mounting plate 704 is fixedly connected to the support column 6. Stirring blades 705 are installed on the stirring shaft 701. By providing a coupling, the stirring shaft 701 can be quickly installed on the output shaft of the stirring motor 703, which is convenient for installation and disassembly.

[0035] The lifting mechanism 8 in this embodiment includes a lifting plate 801 and a lifting motor 810. Both ends of the lifting plate 801 are fixedly connected to the top of the second guide rod 802. A second guide sleeve 803 is sleeved on the middle of the second guide rod 802. The second guide sleeve 803 is installed on the top plate 804, and the top plate 804 is installed on the chassis 805. The chassis 805 is installed at the front end of the frame 1. The bottom of the second guide rod 802 is fixedly connected to the moving plate 806. A second lead screw nut 807 is installed in the middle of the moving plate 806. The second lead screw nut 807 is sleeved on the second lead screw 808. One end of the second lead screw 808 is rotatably installed on the top plate 804, and the other end of the second lead screw 808 is rotatably installed on the fixed plate 809. The second lead screw 808 is fixedly connected to the output shaft of the lifting motor 810. The lifting motor 810 is installed at the bottom of the fixed plate 809 through the second motor mounting seat 811. Connecting rods 812 are installed at the four corners of the top of the fixed plate 809, and the connecting rods 812 are fixedly connected to the top plate 804.

[0036] The working principle of the present utility model:

[0037] Place the packaging bottle in the circular groove of the carrier 9. The lifting motor 810 operates to drive the second lead screw 808 to rotate. The second lead screw 808 drives the second lead screw nut 807 to move upward. The moving plate 806 also moves upward accordingly. The moving plate 806 drives the second guide rod 802 and the lifting plate 801 to move upward, thereby driving the carrier 9 and the packaging bottle to move upward, so that the syringe 317 extends into the interior of the packaging bottle, avoiding the problem of liquid cosmetics splashing caused by the large distance between the syringe 317 and the packaging bottle. Pour the liquid cosmetics into the material bucket 5. The stirring motor 703 operates to drive the stirring shaft 701 and the stirring blades 705 to rotate. The stirring blades 705 stir the liquid cosmetics in the material bucket 5, which can prevent the substances inside from precipitating and affecting the perfusion quality. Rotate the handle 406. The handle 406 drives the valve stem 405 to rotate in the ball valve receiving cavity, thereby achieving the purpose of opening the ball valve 403. The cylinder 322 acts to push the first hinge seat 321 to swing. The first hinge seat 321 drives the rotating shaft 318 to rotate, so that the flange pipe 315 is connected to the piston sleeve 311. The liquid cosmetics in the material bucket 5 sequentially pass through the material bucket joint 10, the connecting component 4, and the flange pipe 315 and enter the piston sleeve 311. The heating block 312 operates to heat the liquid cosmetics in the piston sleeve 311, preventing it from cooling and becoming viscous and avoiding affecting the pumping of the perfusion mechanism 3. After heating is completed, the cylinder 322 acts to push the first hinge seat 321 to swing. The first hinge seat 321 drives the rotating shaft 318 to rotate, so that the piston sleeve 311 is connected to the arc-shaped pipe of the syringe fixing seat 316. The perfusion motor 307 operates to drive the first lead screw 305 to rotate. The first lead screw 305 drives the first lead screw nut 304 to move. The push plate 303 also moves accordingly. The push plate 303 drives the piston rod 301 to move. The piston rod 301 pushes the piston to move. The piston pushes the liquid cosmetics in the piston sleeve 311 into the arc-shaped pipe of the syringe fixing seat 316 and then injects it into the packaging bottle through the syringe 317. During the perfusion process, the lifting motor 810 operates to drive the lifting plate 801 to move downward. The descending speed of the lifting plate 801 matches the perfusion flow rate of the syringe 317, so that the syringe 317 always maintains the same distance from the surface of the liquid cosmetics in the packaging bottle, avoiding contamination caused by the bottom of the syringe 317 touching the liquid cosmetics.

[0038] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A filling machine with anti-splash function, characterized in that: The invention comprises a frame (1), a workbench (2), a pouring mechanism (3), a connecting assembly (4), a material barrel (5), a stirring mechanism (7) and a lifting mechanism (8); the frame (1) is provided with a workbench (2); the workbench (2) is provided with a pouring mechanism (3); the pouring mechanism (3) is connected to the material barrel (5) via the connecting assembly (4); the material barrel (5) is detachably mounted on a support column (6); the stirring mechanism (7) is mounted on the support column (6); the frame (1) is provided with a lifting mechanism (8); and the lifting mechanism (8) is provided with a carrier (9).

2. The filling machine with anti-splashing function according to claim 1, characterized in that: The pouring mechanism (3) comprises a piston rod (301) and a driving assembly for driving the piston rod (301) to move, the driving assembly comprising a push plate (303) and a pouring motor (307), a first screw nut (304) being mounted in the middle of the push plate (303), the first screw nut (304) being sleeved on a first screw (305), and the first screw (305) being rotatably mounted between two screw mounting seats (306).

3. A filling machine with anti-splashing function according to claim 2, characterized in that: One end of the first screw rod (305) is fixedly connected to the output shaft of the injection motor (307), and the injection motor (307) is installed on the screw rod mounting seat (306) through the motor mounting seat (308). First guide sleeves (309) are installed on both sides of the push plate (303), and the first guide sleeves (309) are sleeved on the first guide rod (310). The two ends of the first guide rod (310) are respectively installed on the two screw rod mounting seats (306). A piston is installed at one end of the piston rod (301), and a heating block (312) is installed on the outer wall of the piston sleeve (311). The other end of the piston rod (301) is fixedly connected to the push plate (303) through a floating joint (313).

4. The filling machine with anti-splashing function according to claim 1, characterized in that: The perfusion mechanism (3) further comprises a rotary valve (314), wherein a feed port is provided at the top of the rotary valve (314), the feed port being connected to the flange pipe (315), a discharge port is provided at the front end of the rotary valve (314), a needle tube fixing seat (316) is installed at the front end of the rotary valve (314), a needle tube (317) is installed at the bottom of the needle tube fixing seat (316), an arc tube is provided inside the needle tube fixing seat (316), one end of the arc tube is connected to the discharge port, and the other end of the arc tube is connected to the needle tube (317).

5. The filling machine with anti-splashing function according to claim 4, characterized in that: The rotary valve (314) is provided with a filling port at the rear end thereof, the filling port being in communication with the piston sleeve (311); the rotary valve (314) is provided with a rotating shaft port penetrating through the side wall of the rotary valve (314); a rotating shaft (318) is rotatably arranged inside the rotating shaft port; the middle portion of the rotating shaft (318) is rotatably mounted on a bearing seat (320) via a bearing (319); the rotating shaft (318) is provided with three interconnected through holes (324); one end of the rotating shaft (318) is fixedly connected with a first hinge seat (321); the first hinge seat (321) is hingedly connected to a piston rod of a cylinder (322); and the cylinder body of the cylinder (322) is hingedly connected to the workbench (2) via a second hinge seat (323).

6. The filling machine with anti-splashing function according to claim 1, characterized in that: A barrel joint (10) connected to the barrel (5) is installed at the bottom of the barrel (5), and the barrel joint (10) includes a second connecting head (1001) and a connecting pipe (1002) connected to the second connecting head (1001). A second annular groove (1003) is provided on the outer circumference of the second connecting head (1001), and a second sealing ring (1004) is installed in the second annular groove (1003). A plurality of bolt holes are arranged along the circumferential direction at the top of the connecting pipe (1002), a circular hole is provided at one end of the barrel mounting plate (11), and a connecting hole corresponding to the position of the bolt hole is also provided at one end of the barrel mounting plate (11), and the other end of the barrel mounting plate (11) is mounted on the support column (6).

7. The filling machine with anti-splashing function according to claim 1, characterized in that: The connection assembly (4) comprises a ball valve body (401) and a first connection head (402), wherein the bottom of the ball valve body (401) is connected to the first connection head (402), a ball valve accommodating chamber is provided in the middle of the ball valve body (401), a ball valve (403) is arranged in the ball valve accommodating chamber, valve stem mounting sleeves (404) are provided on both sides of the ball valve body (401), a valve stem (405) is passed through the valve stem mounting sleeve (404), one end of the valve stem (405) is connected to the ball valve (403), and the other end is connected to the handle (406), a step hole (407) is provided on the ball valve body (401) and passes through the upper and lower ends of the ball valve body (401), the ball valve accommodating chamber is communicated with the step hole (407), a first annular groove (408) is provided on the outer periphery of the first connection head (402), and a first sealing ring (409) is installed in the first annular groove (408).

8. The filling machine with anti-splashing function according to claim 1, characterized in that: The stirring mechanism (7) comprises a stirring shaft (701), a stirring motor (703) and a stirring blade (705); the stirring shaft (701) is fixedly connected to the output shaft of the stirring motor (703) via a coupling (702); the stirring motor (703) is mounted on one end of a motor mounting plate (704); the other end of the motor mounting plate (704) is fixedly connected to a support column (6); and the stirring blade (705) is mounted on the stirring shaft (701).

9. The filling machine with anti-splashing function according to claim 1, characterized in that: The lifting mechanism (8) comprises a lifting plate (801) and a lifting motor (810); both ends of the lifting plate (801) are fixedly connected to the top of the second guide rod (802); a second guide sleeve (803) is sleeved on the middle of the second guide rod (802); the second guide sleeve (803) is mounted on a top plate (804); the top plate (804) is mounted on a chassis (805); and the bottom of the second guide rod (802) is fixedly connected to a movable plate (806).

10. The filling machine with anti-splashing function according to claim 9, characterized in that: A second screw nut (807) is installed in the middle of the movable plate (806), and the second screw nut (807) is sleeved on the second screw (808). One end of the second screw (808) is rotatably installed on the top plate (804), and the other end of the second screw (808) is rotatably installed on the fixed plate (809). The second screw (808) is fixedly connected to the output shaft of the lifting motor (810). The lifting motor (810) is installed at the bottom of the fixed plate (809) through the second motor mounting seat (811). Connecting rods (812) are installed on the four corners of the top of the fixed plate (809), and the connecting rods (812) are fixedly connected to the top plate (804).