Probiotic powder packaging table

By designing a probiotic powder packaging table with components such as fixing plates, fixing frames, feed pipes and rotating plates, the problems of material splashing and insufficient container adaptability in traditional filling devices are solved, and effective filling of packaging tapes of different sizes and shapes and efficient filling of materials are achieved.

CN222876316UActive Publication Date: 2025-05-16CELE ORFEN AGRICULTURAL TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202421646125.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-05-16
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The traditional probiotic powder filling and output device is prone to splash out during the process of inserting the output tube into the container for transportation, causing waste, and the conveying places of containers of different sizes cannot be moved when they are filled, so that the distance is too far, resulting in dispersion of the conveyed materials, which makes it impossible to fill waste.

Method used

A probiotic powder packaging table is designed, including two front and rear symmetrical fixed plates, fixing frames, fixing cylinders, feeding pipes, wavy tubes, packaging belts, support frames, rotating plates, conical tables, lifting mechanisms, etc. The up and down movement of the feeding pipes is controlled through the lifting mechanism. Combined with the design of the rotating plates and conical tables, it adapts to packaging belts of different sizes and shapes to prevent the probiotic powder from scattering and achieve uniform filling.

Benefits of technology

It realizes effective filling of packaging tapes of different sizes and shapes, prevents probiotic powder from flying, reduces material waste, and ensures the efficiency and quality of filling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of probiotic powder filling, in particular to a probiotic powder packaging table which comprises two fixing plates which are symmetrical front and back, a fixing frame is fixedly arranged between the two fixing plates, a fixing barrel is fixedly arranged on the fixing frame, and a conveying pipe which extends up and down and penetrates through the fixing barrel is arranged in the fixing barrel. A packaging belt capable of moving left and right is arranged between the two fixing plates and located at the lower end of the fixing cylinder, supporting frames are fixedly arranged at the ends, close to each other, of the two fixing plates, rotating plates are rotationally matched with the supporting frames, a lifting mechanism is arranged at the lower end of the fixing cylinder and used for controlling the material conveying pipe to move up and down, and a connecting rod is fixedly arranged on the periphery of the material conveying pipe. A sliding groove is formed in the periphery of the fixing cylinder, a cone frustum is fixedly arranged at the end, extending outwards and penetrating through the sliding groove, of the connecting rod, and the packaging belt is clamped through the lower end of the rotating plate, so that the probiotic powder in the packaging belt is prevented from drifting outwards during filling.
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Description

Technical Field

[0001] The utility model relates to the technical field of probiotic powder filling, in particular to a probiotic powder packaging station. Background Art

[0002] The probiotic powder filling and output device is an instrument tool that connects the storage container to achieve conveying and auxiliary filling during the process of filling the produced probiotic powder into the container. The traditional probiotic powder filling and output device is prone to causing part of the material to splash out during the process of inserting the output tube into the container for conveying, thereby causing waste, and when containers of different sizes are filled, the conveying part cannot move, and the distance between them is too far, resulting in the dispersion of the conveyed material, causing filling failure and waste. Utility Model Content

[0003] The purpose of the utility model is to provide a probiotic powder packaging station to overcome the above-mentioned defects in the prior art.

[0004] According to a probiotic powder packaging station of the utility model, it includes two front-to-back symmetrical fixed plates, a fixed frame is fixedly provided between the two fixed plates, a fixed cylinder is fixedly provided on the fixed frame, a feed pipe extending up and down and penetrating the fixed cylinder is provided in the fixed cylinder, the upper end of the feed pipe is connected with a wave tube, the upper end of the wave tube is connected with the barrel through a connecting pipe, a packaging belt that can move left and right is provided between the two fixed plates and at the lower end of the fixed cylinder, a support frame is fixedly provided at the mutually close ends of the two fixed plates, a torsion cylinder is fixedly provided on the support frame, a rotating plate is rotatably matched on the support frame, and the lower end of the fixed cylinder A lifting mechanism is provided, which is used to control the up and down movement of the material conveying pipe. A connecting rod is fixedly provided on the outer circumference of the material conveying pipe, and a sliding groove is opened on the outer circumference of the fixed cylinder. The connecting rod extends outward and passes through the sliding groove. A frustum is fixedly provided at the end. The frustum can abut against the rotating plate. The lower end part of the rotating plate can abut against the front and rear ends of the packaging belt. The upper end part of the rotating plate is rotatably connected with a rolling wheel, and the rear side of the rolling wheel abuts against the circumferential surface of the frustum. A torsion bar is rotatably connected to the support frame, and the torsion bar is fixedly connected to the rotating plate. A torsion spring is connected between the torsion cylinder and the torsion bar.

[0005] The beneficial effects of the utility model are:

[0006] The lifting mechanism controls the up and down movement of the feeding pipe. When the feeding pipe moves to the uppermost end, there is a certain distance between the feeding pipe and the uppermost end of the packaging belt, so that the feeding pipe can fill the packaging belts of different sizes with probiotic powder without affecting the normal movement of the packaging belt.

[0007] During the filling operation, the feeding pipe can be moved downward and inserted into the packaging belt, and the front and rear ends of the packaging belt can be clamped by the rotating plate to prevent the probiotic powder from flying outward, and is suitable for bag-shaped packaging belts.

[0008] By setting abutment rolling wheels circumferentially on the frustum, after changing the lower end of the rotating plate to an arc shape, by adding a circumferentially arranged rotating plate, the circular-mouthed packaging belt can be abutted, thereby adapting to the loading of packaging belts of different shapes and sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 It is a schematic diagram of the appearance of the utility model;

[0010] Figure 2 It is a schematic diagram of the appearance of the utility model;

[0011] Figure 3 This utility model Figure 1 A schematic diagram of a top view structure;

[0012] Figure 4 This utility model Figure 1 A schematic diagram of the front view structure of

[0013] Figure 5 This utility model Figure 1 A side view schematic diagram of the structure;

[0014] Figure 6 This utility model Figure 3 Schematic cross-sectional view of AA in the figure;

[0015] Figure 7 This utility model Figure 4 Schematic cross-section of the middle BB;

[0016] Figure 8 This utility model Figure 5 Schematic diagram of a partial cross section of the CC;

[0017] In the figure:

[0018] 10. Fixed plate; 11. Fixed frame; 12. Fixed cylinder; 13. Feed pipe; 14. Corrugated tube; 15. Packaging belt; 16. Support frame; 17. Rotating plate; 18. Cone; 19. Slide; 20. Connecting rod; 21. Lifting mechanism; 22. Torsion cylinder; 23. Torsion bar; 24. Torsion spring; 25. Rolling wheel. DETAILED DESCRIPTION

[0019] In order to make the purpose, technical solution and advantages of the embodiment of the utility model clearer, the technical solution in the embodiment of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiment of the utility model. Obviously, the described embodiment is a part of the embodiment of the utility model, not all of the embodiments. Based on the embodiment of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0020] It should be noted that when an element is said to be "fixed to" another element, it can be directly on the other element or there can be an intermediate element. When an element is said to be "connected to" another element, it can be directly connected to the other element or there can be an intermediate element at the same time:

[0021] Embodiment 1:

[0022] Reference Figure 1-Figure 7 According to an embodiment of the utility model, a probiotic powder packaging station includes two front-to-back symmetrical fixed plates 10, a fixed frame 11 is fixedly arranged between the two fixed plates 10, a fixed cylinder 12 is fixedly arranged on the fixed frame 11, a feed pipe 13 extending up and down and penetrating the fixed cylinder 12 is arranged in the fixed cylinder 12, a wave pipe 14 is connected to the upper end of the feed pipe 13, and the upper end of the wave pipe 14 is connected to the barrel through a connecting pipe, a packaging belt 15 that can move left and right is arranged between the two fixed plates 10 and at the lower end of the fixed cylinder 12, a support frame 16 is fixedly arranged at the mutually close ends of the two fixed plates 10, a twisting cylinder 22 is fixedly arranged on the support frame 16, a rotating plate 17 is rotatably matched on the support frame 16, and the fixed cylinder 1 2 is provided with a lifting mechanism 21 at the lower end, and the lifting mechanism 21 is used to control the up and down movement of the feeding pipe 13. A connecting rod 20 is fixedly provided on the outer periphery of the feeding pipe 13, and a slide groove 19 is provided on the outer periphery of the fixed cylinder 12. A truncated cone 18 is fixedly provided at the end of the connecting rod 20 extending outward and penetrating through the slide groove 19. The truncated cone 18 can abut against the rotating plate 17, and the lower end portion of the rotating plate 17 can abut against the front and rear ends of the packaging belt 15. The upper end portion of the rotating plate 17 is rotatably connected with a rolling wheel 25, and the rear of the rolling wheel 25 abuts against the circumference of the truncated cone 18. A torsion bar 23 is rotatably connected to the support frame 16, and the torsion bar 23 is fixedly connected to the rotating plate 17. A torsion spring 24 is connected between the torsion cylinder 22 and the torsion bar 23.

[0023] A pipeline is connected to the upper end of the wave tube 14, and a discharging mechanism is provided at the lower end of the barrel. The upper end of the pipeline is connected to the discharging mechanism. The barrel is located at the upper end of the fixed barrel 12. The probiotic powder is transported to the pipeline through the discharging mechanism, and the probiotic powder is transported to the packaging belt 15 at the lower end through the wave tube 14 and the feeding pipe 13.

[0024] The packaging belt 15 moves left and right with the driving of the transport mechanism. When it passes the lower end of the fixed cylinder 12, the lifting mechanism 21 works to control the connected material delivery pipe 13 to slide downward. Figure 6 As shown, the lower end opening of the material delivery pipe 13 is inserted into the packaging belt 15, and the connecting rod 20 fixed on the outer periphery of the material delivery pipe 13 abuts against the lower side wall of the slide groove 19, so that the material delivery pipe 13 is inserted into the packaging belt 15 to realize the filling work at the packaging belt 15;

[0025] During the downward movement of the feeding pipe 13, the truncated cone 18 slides downward synchronously through the fixed connection of the connecting rod 20, so that the truncated cone 18 pushes the rolling wheel 25 and the rotating plate 17 which are in contact with the outer periphery, so that the rotating plate 17 rotates with the torsion bar 23 as the rotation axis to overcome the torsion force of the torsion spring 24, and the upper ends of the two rotating plates 17 move away from each other, and the lower ends of the two rotating plates 17 move closer to each other, and the lower ends of the two rotating plates 17 abut against each other to apply pressure to the front and rear ends of the packaging belt 15 and the front and rear ends of the feeding pipe 13, so that the upper end opening of the packaging belt 15 is sleeved on the outer periphery of the feeding pipe 13 to prevent the probiotic powder from scattering;

[0026] After completion, the lifting mechanism 21 controls the feeding pipe 13 to move upward and reset, and the rotating plate 17 is reset by the torsion force of the torsion spring 24 after abutting against the circular cone 18 .

[0027] It is clear to those skilled in the art that various modifications to the above embodiments can be made without departing from the overall spirit and concept of the present invention. All of them fall within the protection scope of the present invention. The protection scheme of the present invention shall be subject to the claims attached to the present invention.

Claims

1. A probiotic powder packaging station, comprising two front-to-back symmetrical fixing plates (10), a fixing frame (11) is fixedly arranged between the two fixing plates (10), characterized in that: A fixed cylinder (12) is fixedly arranged on the fixed frame (11), and a feed pipe (13) is arranged in the fixed cylinder (12) and extends vertically and passes through the fixed cylinder (12). A packaging belt (15) capable of moving leftward and rightward is arranged between the two fixed plates (10) and at the lower end of the fixed cylinder (12). Support frames (16) are fixedly arranged at the mutually close ends of the two fixed plates (10), and a rotating plate (17) is rotatably matched on the support frame (16). A lifting mechanism (21) is arranged at the lower end of the fixed cylinder (12), and the lifting mechanism (21) is used to control the upward and downward movement of the feed pipe (13). A connecting rod (20) is fixedly arranged on the outer periphery of the feed pipe (13), and a sliding groove (19) is opened on the outer periphery of the fixed cylinder (12). A truncated cone (18) is fixedly arranged at the end of the connecting rod (20) extending outward and passing through the sliding groove (19).

2. A probiotic powder packaging station according to claim 1, characterized in that: The support frame (16) is rotatably connected to a torsion bar (23), the torsion bar (23) is fixedly connected to the rotating plate (17), a torsion cylinder (22) is fixedly provided on the support frame (16), and a torsion spring (24) is connected between the torsion cylinder (22) and the torsion bar (23).

3. A probiotic powder packaging station according to claim 2, characterized in that: The truncated cone (18) can abut against the rotating plate (17), and the lower end portion of the rotating plate (17) can abut against the front and rear ends of the packaging belt (15).

4. The probiotic powder packaging station according to claim 3, characterized in that: The upper end of the material delivery pipe (13) is connected to a wave pipe (14), and the upper end of the wave pipe (14) is connected to the barrel through a connecting pipe.

5. The probiotic powder packaging station according to claim 4, characterized in that: The upper end portion of the rotating plate (17) is rotatably connected to a rolling wheel (25), and the rear surface of the rolling wheel (25) abuts against the peripheral surface of the truncated cone (18).