A bottled water precision filling nozzle assembly

By designing a precision bottled water nozzle assembly and utilizing a positioning mechanism to achieve precise alignment of the filling bottle, the problem of liquid waste and contamination caused by filling position deviation is solved, thereby improving filling efficiency.

CN224578025UActive Publication Date: 2026-07-31JIANGSU JADE MASCH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN Β· China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU JADE MASCH TECH CO LTD
Filing Date
2025-09-23
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Misalignment between the filling bottle and the filling nozzle leads to liquid waste and production line contamination, affecting filling efficiency.

Method used

A precision bottled water filling nozzle assembly was designed, comprising a filling tube body, an outer tube, and a positioning mechanism. A drive motor drives the gears and gear rings to rotate, achieving synchronous movement of the rotating rings, which in turn moves the positioning plate to ensure precise alignment of the filling bottle.

Benefits of technology

It achieves precise alignment of the filling nozzle, prevents liquid leakage and production line contamination, and improves filling efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a precision filling nozzle assembly for bottled water, including a filling tube body, an outer tube, and a positioning mechanism. The outer tube, located at the bottom of the filling tube body, has a positioning mechanism connected to its outer side. The positioning mechanism includes a fixed panel, a rotating ring, a gear ring, a drive motor, gears, and a positioning plate. These components work together; the drive motor drives the gears and gear ring to rotate, which in turn drives the rotating ring, causing the positioning plate to move synchronously. This pushes the bottle directly beneath the filling tube body, achieving precise filling. This effectively prevents leakage caused by inaccurate positioning during liquid filling, avoiding waste and pollution of the production line, and demonstrates strong practicality.
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Description

Technical Field

[0001] This utility model relates to the field of filling technology, specifically to a precision filling nozzle assembly for bottled water. Background Technology

[0002] Filling is a key process in beverage production, referring to the operation of filling liquids (such as carbonated beverages) or products into containers (such as glass bottles or metal cans). During the filling operation, the filling nozzle is inserted into the bottle and then the filling begins.

[0003] However, when the filling bottle is conveyed to the bottom of the filling tube, the position of the filling bottle and the filling tube nozzle may be misaligned, causing the filling tube nozzle to fill directly on the outside of the filling bottle, resulting in liquid waste and potential contamination of the production line. This requires cleaning and disinfection of the production line, affects filling efficiency, and has certain limitations. Utility Model Content

[0004] The purpose of this invention is to provide a precision filling nozzle assembly for bottled water to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a bottled water precision filling nozzle assembly, comprising a filling tube body, a set of outer sleeves connected to the bottom outer end of the filling tube body, and a positioning mechanism provided at the bottom outer end of the outer sleeves; The positioning mechanism includes a fixed panel, a rotating ring, a gear ring, a drive motor, gears, and positioning plates. A set of fixed panels is provided at the bottom outer end of the outer sleeve. A set of rotating rings is connected to the middle of the top surface of the fixed panel. A set of gear rings is provided on the top surface of the rotating rings. A set of drive motors is provided at the middle outer end of the outer sleeve. A set of gears is connected to the bottom end of the drive shaft of the drive motors. At least two sets of positioning plates are arranged circumferentially on the bottom surface of the fixed panel.

[0006] Preferably, the outer circumferential surface of the top surface of the fixed panel is provided with no less than two sets of guide grooves.

[0007] Preferably, the outer side of the rotating ring is provided with no less than two sets of connecting arms at equal intervals, and the other end of each connecting arm is provided with a set of connecting rods. The bottom end of each connecting rod is connected to a set of moving blocks, and the bottom end of each moving block is provided with a set of connecting blocks.

[0008] Preferably, the end of each connecting block near the outer sleeve is connected to the top edge of the fixed panel.

[0009] Preferably, the movable block has a square structure and is located inside the guide groove.

[0010] Preferably, the gear ring meshes with the gear.

[0011] Preferably, the rotating ring is fixedly connected to the toothed ring.

[0012] Compared with the prior art, the beneficial effects of this utility model are: An outer sleeve is installed at the bottom of the filling tube body. A positioning mechanism is connected to the outside of the outer sleeve. The positioning mechanism includes components such as a fixed panel, a rotating ring, a gear ring, a drive motor, gears, and a positioning plate. With their cooperation, the drive motor can drive the gears and gear ring to rotate in linkage, thereby driving the rotating ring to rotate. This allows the positioning plate to move synchronously relative to the filling tube body, which can push the filling bottle directly under the filling tube body. This achieves precise filling of the filling tube body and effectively prevents leakage caused by inaccurate positioning during liquid filling, which would not only cause waste but also pollute the production line. It has strong practicality. Attached Figure Description

[0013] Figure 1 This is a front view structural diagram of the present invention.

[0014] Figure 2 This is a schematic diagram of the internal front view structure of this utility model.

[0015] Figure 3 for Figure 2 Enlarged structural diagram at point A in the middle.

[0016] Figure 4 This is a top view of the fixed panel structure of this utility model.

[0017] Figure 5 This is a schematic diagram of the connecting arm connection structure of this utility model.

[0018] In the diagram: filling tube body-1, outer tube-2, positioning mechanism-3, fixed panel-31, rotating ring-32, gear ring-33, drive motor-34, gear-35, positioning plate-36, guide groove-311, connecting arm-321, connecting rod-322, moving block-323, connecting block-324. Detailed Implementation

[0019] To further explain the technical solution of this utility model, a detailed description is provided below through specific embodiments.

[0020] Please see Figure 1 This utility model provides a bottled water precision filling nozzle assembly, including a filling tube body 1, an outer sleeve 2 sleeved on the bottom of the filling tube body 1, and a positioning mechanism 3 for positioning the filling bottle connected to the bottom of the outer sleeve 2.

[0021] Please see Figure 2-3This utility model provides a precision filling nozzle assembly for bottled water. The positioning mechanism 3 includes a fixed panel 31, a rotating ring 32, a gear ring 33, a drive motor 34, a gear 35, and a positioning plate 36. A set of fixed panels 31 is fixedly connected to the bottom of the outer tube 2. The top surface of the fixed panel 31 has at least two sets of guide grooves 311 circumferentially formed. A set of rotating rings 32 is rotatably connected to the middle of the top surface of the fixed panel 31. A set of gear rings 33 is fixedly connected to the top surface of the rotating rings 32. The gear rings 33 can drive the rotating rings 32 to rotate synchronously. A set of drive motors 34 is installed at the middle of the outer tube 2. A set of gears 35 is fixedly connected to the bottom of the drive shaft of the drive motor 34. The gear rings 33 and gears 35 mesh. The drive motor 34 can drive the rotating rings 32 to rotate through the gear rings 33 and gears 35. At least two sets of positioning plates 36 are arranged circumferentially on the bottom surface of the fixed panel 31. The positioning plates 36 are arc-shaped plates, which can adapt to filling bottles of different sizes and have a wide range of applications.

[0022] Please see Figure 4-5 This utility model provides a precision filling nozzle assembly for bottled water. The rotating ring 32 has at least two sets of connecting arms 321 hinged at equal intervals on its outer side. Each connecting arm 321 has a connecting rod 322 rotatably connected to its other end. Each connecting rod 322 has a fixedly connected moving block 323 at its bottom end. The moving block 323 is square in shape and located within a guide groove 311, allowing it to reciprocate along the guide groove 311. Each moving block 323 has a fixedly connected connecting block 324 at its bottom end. The end of each connecting block 324 near the outer sleeve 2 is connected to the top of the fixed panel 31. When the rotating ring 32 rotates, the connecting arms 321 push the connecting rods 322 and the moving blocks 323 to reciprocate along the guide groove 311. This, in turn, drives the positioning plate 36 to move via the connecting blocks 324, enabling the positioning and movement of the filling bottle.

[0023] The working principle is as follows: When the filling tube body 1 is in the filling operation, it will move downward. During the movement, the drive motor 34 drives the gear 35 to rotate. The gear 35 drives the rotating ring 32 to rotate through the gear ring 33. When the rotating ring 32 rotates, the connecting arm 321 can pull the connecting rod 322 and the moving block 323 to move along the guide groove 311. The connecting block 324 drives the positioning plate 36 to move relative to each other. The positioning plate 36 can contact the outside of the filling bottle and drive the filling bottle to move directly below the filling tube body 1 to achieve accurate filling of the filling tube body 1.

[0024] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A bottled water precision filling spout assembly characterized by: It includes a filling tube body (1), and a set of outer tubes (2) are connected to the bottom of the outer tube body (1). The bottom of the outer tube (2) is provided with a positioning mechanism (3). The positioning mechanism (3) includes a fixed panel (31), a rotating ring (32), a gear ring (33), a drive motor (34), a gear (35), and a positioning plate (36). The outer bottom end of the outer sleeve (2) is provided with a set of fixed panels (31). The middle of the top surface of the fixed panel (31) is connected to a set of rotating rings (32). The top surface of the rotating rings (32) is provided with a set of gear rings (33). The middle of the outer sleeve (2) is provided with a set of drive motors (34). The bottom end of the drive shaft of the drive motor (34) is connected to a set of gears (35). The bottom surface of the fixed panel (31) is circumferentially arranged with no less than two sets of positioning plates (36).

2. A bottled water precision filling nozzle assembly according to claim 1, wherein: The top surface of the fixed panel (31) is provided with at least two sets of guide grooves (311) in a circular shape at the outer end.

3. A bottled water precision filling nozzle assembly according to claim 1, wherein: The rotating ring (32) has at least two sets of connecting arms (321) spaced at equal intervals on its outer side. Each connecting arm (321) has a set of connecting rods (322) at its other end. Each connecting rod (322) has a set of moving blocks (323) at its bottom end. Each moving block (323) has a set of connecting blocks (324) at its bottom end.

4. A bottled water precision filling nozzle assembly according to claim 3, wherein: The end of each connecting block (324) near the outer sleeve (2) is connected to the top of the fixed panel (31).

5. A bottled water precision filling nozzle assembly according to claim 3, wherein: The movable block (323) has a square structure and is located inside the guide groove (311).

6. A bottled water precision filling spout assembly according to claim 1, wherein: The gear ring (33) meshes with the gear (35).

7. A bottled water precision filling spout assembly according to claim 1, wherein: The rotating ring (32) is fixedly connected to the toothed ring (33).