Bottled linear filling machine

By combining a cylinder piston plate and an electric telescopic rod into a quantitative component, along with a motor-driven synchronous belt and clamping frame system, the problems of uneven sauce distribution and spillage in existing filling machines have been solved, achieving the quantitative filling effect of a bottled linear filling machine.

CN223633083UActive Publication Date: 2025-12-05GUANGZHOU DACHUAN INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202423275139.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-05
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing filling machines cannot achieve quantitative filling of sauces, resulting in uneven sauce content inside each bottle and easy spillage.

Method used

The metering component, which uses a cylinder to drive the piston plate to slide, combined with an electric telescopic rod and a synchronous belt system, ensures the metered injection and feeding of sauce. In conjunction with a motor-driven hub and clamping frame system, it achieves quantitative filling by aligning the bottle with the discharge port.

Benefits of technology

This ensures a uniform amount of sauce in each bottle, preventing spillage and improving filling efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of filling machines, in particular to a bottled linear filling machine which comprises a support, a first supporting plate is fixedly connected to the interior of the support, a plurality of quantitative assemblies are arranged on the upper surface of the first supporting plate, and each quantitative assembly comprises a sleeve shell. A first connecting pipe is fixedly connected to the interior of the sleeve shell, a material pumping pipe is fixedly connected to the outer wall of the first connecting pipe, a first air cylinder is fixedly connected to the outer wall of the material pumping pipe, a first piston plate is fixedly connected to the output end of the first air cylinder, and the first piston plate is slidably connected to the interior of the material pumping pipe; and a second connecting pipe is fixedly connected to the interior of the sleeve shell, a discharging pipe is fixedly connected to the outer wall of the second connecting pipe, and a second air cylinder is fixedly connected to the upper surface of the discharging pipe. According to the utility model, the material conveying pipe is connected with the material frame, and the quantitative assembly is started to quantitatively discharge and fill the sauce in the material frame into the bottle body through the quantitative assembly.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of filling machine especially relates to a bottle straight line filling machine. BACKGROUND

[0002] The bottle straight line filling machine is a kind of equipment for the automatic filling of bottled products, and is widely used in food, beverage, chemical industry, pharmaceutical industry and other industries. Its main function is to accurately fill liquid, sauce or other fluid substances into bottles. The straight line filling machine adopts a straight line filling technology, and arranges multiple bottles on a conveyor belt in sequence. The bottles are pushed by the conveyor belt and pass through a filling station along a straight line path for liquid filling.

[0003] The filling machine in the prior art usually directly fills sauce into bottles through a pumping structure. During the filling process, it is impossible to ensure that the amount of sauce inside each bottle is the same, and it is also impossible to achieve the effect of quantitative filling. In addition, during the filling process, it is impossible to ensure that the bottle opening is aligned with the discharge opening of the filling device, which may cause waste due to sauce leakage during the filling of sauce. SUMMARY

[0004] Therefore, the utility model provides a bottle straight line filling machine, which mainly solves the technical problem of achieving automatic quantitative filling of sauce to ensure that the amount of sauce inside each bottle is the same.

[0005] To achieve the above purpose, the utility model adopts the following technical scheme: a bottle straight line filling machine, comprising a support, a support plate one is fixedly connected inside the support, a quantitative assembly is arranged on the upper surface of the support plate one, the quantitative assembly is provided with multiple groups, the quantitative assembly comprises a sleeve, a connecting pipe one is fixedly connected inside the sleeve, a pumping pipe is fixedly connected to the outer wall of the connecting pipe one, a cylinder one is fixedly connected to the outer wall of the pumping pipe, a piston plate one is fixedly connected to the output end of the cylinder one, the piston plate one is slidably connected inside the pumping pipe, a connecting pipe two is fixedly connected inside the sleeve, a discharging pipe is fixedly connected to the outer wall of the connecting pipe two, a cylinder two is fixedly connected to the upper surface of the discharging pipe, a piston plate two is fixedly connected to the output end of the cylinder two, the piston plate two is slidably connected inside the discharging pipe.

[0006] By adopting the above technical scheme, the piston plate one is driven by the cylinder one to slide inside the pumping pipe, the sauce is quantitatively pumped into the inside of the pumping pipe, the piston plate two is driven by the cylinder two to slide inside the discharging pipe, and the sauce inside the discharging pipe is quantitatively discharged, thereby assisting to achieve the effect of quantitative filling.

[0007] As a further description of the above technical solution: the inside of the shell is fixedly connected with a feeding pipe, the inside of the shell is rotatably connected with a three-way pipe, the outer wall of the three-way pipe is fixedly connected with a rotating shaft, the rotating shaft is rotatably connected in the inside of the shell, the inside of the rotating shaft is movably connected with a concave block two, the upper surface of the supporting plate one is fixedly connected with a concave block one, the inside of the concave block one is movably connected with an electric telescopic rod one, and the output end of the electric telescopic rod one is fixedly connected to the outer wall of the concave block two.

[0008] By adopting the above technical scheme, the electric telescopic rod one drives the concave block two to stretch and retract, the concave block two drives the rotating shaft to rotate at an angle, and then drives the three-way pipe to rotate at a ninety-degree angle, thereby assisting in realizing the effect of quantitative feeding.

[0009] As a further description of the above technical solution: the inside of the shell is fixedly connected with a feeding pipe, the inside of the shell is rotatably connected with a three-way pipe, the outer wall of the three-way pipe is fixedly connected with a rotating shaft, the rotating shaft is rotatably connected in the inside of the shell, the inside of the rotating shaft is movably connected with a concave block two, the upper surface of the supporting plate one is fixedly connected with a concave block one, the inside of the concave block one is movably connected with an electric telescopic rod one, and the output end of the electric telescopic rod one is fixedly connected to the outer wall of the concave block two.

[0010] By adopting the above technical scheme, the sauce in the inside of the material frame is fed through the feeding pipe, and the feeding pipe is fixedly installed in the inside of the supporting plate one.

[0011] As a further description of the above technical solution: the inside of the shell is fixedly connected with a feeding pipe, the inside of the shell is rotatably connected with a three-way pipe, the outer wall of the three-way pipe is fixedly connected with a rotating shaft, the rotating shaft is rotatably connected in the inside of the shell, the inside of the rotating shaft is movably connected with a concave block two, the upper surface of the supporting plate one is fixedly connected with a concave block one, the inside of the concave block one is movably connected with an electric telescopic rod one, and the output end of the electric telescopic rod one is fixedly connected to the outer wall of the concave block two.

[0012] By adopting the above technical scheme, the two side plates are used to assist in straight-line conveying of the bottle body.

[0013] As a further description of the above technical solution: the outer wall of one of the side plates is fixedly connected with a motor, the output end of the motor is fixedly connected with a hub one, and the hub one is rotatably connected in the inside of the two side plates.

[0014] By adopting the above technical scheme, the motor drives the hub one to rotate.

[0015] As a further description of the above technical solution: the outer wall of the hub one is rotatably connected with a synchronous belt, the inside of the two side plates is rotatably connected with a hub two, and the synchronous belt is rotatably connected to the outer wall of the hub two.

[0016] By adopting the above technical scheme, the hub one rotates while driving the synchronous belt to rotate, thereby driving the hub two to rotate, and realizing that the synchronous belt drives the bottle body to be straight-line transported.

[0017] As a further description of the above technical solution: the outer wall of the side plate is fixedly connected with an electric telescopic rod two, and the output end of the electric telescopic rod two is fixedly connected with a clamping frame.

[0018] By adopting the technical scheme, the bottle body is clamped and limited by the two movable clamping frames driven by the electric telescopic rods.

[0019] As a further description of the technical scheme, the outer wall of the side plate is fixedly connected with an electric telescopic rod three, the output end of the electric telescopic rod three is fixedly connected to the outer wall of the clamping frame, and the inside of the clamping frame is movably connected with the bottle body.

[0020] By adopting the technical scheme, the bottle body is clamped and limited by the two movable clamping frames driven by the electric telescopic rods.

[0021] Through the above technical scheme, the bottle straight-line filling machine has at least the following beneficial effects:

[0022] 1. Compared with the prior art, the bottle straight-line filling machine is characterized in that: the concave block two is extended by starting the electric telescopic rod one, and then the rotation angle of the shaft and the three-way pipe is driven, so that the three-way pipe rotates clockwise by ninety degrees; the piston plate one is driven to slide to the left by starting the cylinder one, and the sauce is drawn into the inside of the drawing pipe through the feeding pipe, the three-way pipe and the connecting pipe one; the piston plate two is driven to move up by starting the cylinder two; the concave block two is extended by starting the electric telescopic rod one, and the shaft and the three-way pipe continue to rotate clockwise by ninety degrees; at this time, the piston plate one is driven to slide to the left by starting the cylinder one, and the sauce is fed into the inside of the feeding pipe through the connecting pipe one, the three-way pipe and the connecting pipe two; at this time, the piston plate two is driven to press down by starting the cylinder two, and the sauce is fed into the inside of the bottle body for filling, thereby realizing the effect of automatic quantitative filling.

[0023] 2. Compared with the prior art, the bottle straight-line filling machine is characterized in that: the wheel hub one is driven to rotate by the motor, the synchronous belt is driven to rotate by the rotation of the wheel hub one, and the wheel hub two is driven to rotate by the rotation of the synchronous belt, so that a plurality of bottle bodies are transported; when a part of the bottle bodies are transported below the plurality of feeding pipes, the motor automatically stops; at this time, the two electric telescopic rods two and the electric telescopic rod three are started to drive the two clamping frames to clamp the outer wall of the bottle body at the same time, so as to limit the position of the bottle body, assist in positioning and filling, and prevent the sauce from leaking. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 The utility model provides a kind of bottle straight-line filling machine overall structure for the utility model;

[0025] Figure 2 The utility model provides a kind of bottle straight-line filling machine feeding pipe structure for the utility model;

[0026] Figure 3 The utility model provides a kind of bottle straight-line filling machine quantitative assembly structure for the utility model;

[0027] Figure 4 The utility model provides a kind of bottle straight-line filling machine clamping frame structure for the utility model.

[0028] Legend:

[0029] 1, support; 2, support plate one; 3, material frame; 4, quantitative assembly; 401, material conveying pipe; 402, sleeve; 403, three-way pipe; 404, rotating shaft; 405, concave block one; 406, electric telescopic rod one; 407, concave block two; 408, connecting pipe one; 409, material extraction pipe; 410, air cylinder one; 411, piston plate one; 412, connecting pipe two; 413, discharging pipe; 414, air cylinder two; 415, piston plate two; 5, support plate two; 6, side plate; 7, motor; 8, hub one; 9, synchronous belt; 10, hub two; 11, electric telescopic rod two; 12, clamping frame; 13, electric telescopic rod three; 14, bottle body. DETAILED DESCRIPTION

[0030] Reference Figures 1-4 The utility model provides a kind of linear filling machine of bottle, it include support 1, support 1 is internally fixedly connected with support plate one 2, the upper surface of support plate one 2 is provided with quantitative assembly 4, quantitative assembly 4 is provided with multiple groups, quantitative assembly 4 includes sleeve 402, the inside of sleeve 402 is fixedly connected with connecting pipe one 408, the outer wall of connecting pipe one 408 is fixedly connected with material extraction pipe 409, the outer wall of material extraction pipe 409 is fixedly connected with air cylinder one 410, the output end of air cylinder one 410 is fixedly connected with piston plate one 411, piston plate one 411 is slidingly connected in the inside of material extraction pipe 409, piston plate one 411 is slid in the inside of material extraction pipe 409, realizes the effect of pumping sauce, the inside of sleeve 402 is fixedly connected with connecting pipe two 412, the outer wall of connecting pipe two 412 is fixedly connected with discharging pipe 413, the upper surface of discharging pipe 413 is fixedly connected with air cylinder two 414, the output end of air cylinder two 414 is fixedly connected with piston plate two 415, piston plate two 415 is slidingly connected in the inside of discharging pipe 413, piston plate two 415 is slid in the inside of discharging pipe 413, realizes the effect of filling sauce, the inside of sleeve 402 is fixedly connected with material conveying pipe 401, the inside of sleeve 402 is rotatably connected with three-way pipe 403, the outer wall of three-way pipe 403 is fixedly connected with rotating shaft 404, rotating shaft 404 is rotatably connected in the inside of sleeve 402, rotating shaft 404 drives three-way pipe 403 rotation angle, to assist the effect of quantitative filling, the inside of rotating shaft 404 is movably connected with concave block two 407, the upper surface of support plate one 2 is fixedly connected with concave block one 405, the inside of concave block one 405 is movably connected with electric telescopic rod one 406, the output end of electric telescopic rod one 406 is fixedly connected on the outer wall of concave block two 407.

[0031] The inside of the support 1 is fixedly connected with a material frame 3, the inside of the material frame 3 is fixedly connected with a material conveying pipe 401, the inside of the support plate one 2 is fixedly connected with a material discharging pipe 413, the inside of the support 1 is fixedly connected with a support plate two 5, the upper surface of the support plate two 5 is fixedly connected with a side plate 6, the side plate 6 is provided with two, the side plate 6 is arranged on both sides of the upper surface of the support plate two 5, the outer wall of one of the side plates 6 is fixedly connected with a motor 7, the output end of the motor 7 is fixedly connected with a wheel hub one 8, the wheel hub one 8 is rotatably connected in the inside of the two side plates 6, the outer wall of the wheel hub one 8 is rotatably connected with a synchronous belt 9, the inside of the two side plates 6 is rotatably connected with a wheel hub two 10, the synchronous belt 9 is rotatably connected to the outer wall of the wheel hub two 10, the straight line transportation of the bottle body 14 is realized through the rotation of the synchronous belt 9, the outer wall of the side plate 6 is fixedly connected with an electric telescopic rod two 11, the output end of the electric telescopic rod two 11 is fixedly connected with a clamping frame 12, the outer wall of the side plate 6 is fixedly connected with an electric telescopic rod three 13, the output end of the electric telescopic rod three 13 is fixedly connected to the outer wall of the clamping frame 12, the inside of the clamping frame 12 is movably connected with a bottle body 14, the electric telescopic rod two 11 and the electric telescopic rod three 13 are provided with two groups, the clamping frame 12 is also provided with two, the two groups of electric telescopic rod two 11 and electric telescopic rod three 13 drive the two clamping frames 12 to move, so that the two clamping frames 12 are clamped on the outer wall of the bottle body 14, the bottle body 14 is positioned, and the bottle opening of the bottle body 14 is aligned directly below the material discharging pipe 413.

[0032] Working principle: when in use, the filling machine is connected with the control equipment, the start-stop time of the cylinder one 410, the cylinder two 414, the electric telescopic rod one 406, the motor 7, the electric telescopic rod two 11 and the electric telescopic rod three 13 is set by the control equipment, first, the motor 7 is started to drive the wheel hub one 8 to rotate, the wheel hub one 8 rotates to drive the synchronous belt 9 to rotate, the synchronous belt 9 rotates to drive the wheel hub two 10 to rotate, the straight line transportation of the bottle body 14 is realized through the rotation of the synchronous belt 9, the synchronous belt 9 sequentially places the bottle body 14 on the upper surface of the synchronous belt 9 in the process of rotation, when the first batch of bottle bodies 14 is transported to the position directly below the material discharging pipe 413 (such as Figure 1When the first batch of bottles 14 are clamped and positioned, the motor 7 stops, the synchronous belt 9 stops rotating, and the two sets of electric telescopic rods two 11 and electric telescopic rods three 13 are started to drive the two clamping frames 12 to slide and clamp the outer wall of the first batch of bottles 14, so that the bottles 14 are clamped and positioned, and the bottle mouth of the bottles 14 is aligned with the outlet of the discharge pipe 413, preventing the sauce from spilling during the filling process. At this time, the electric telescopic rod one 406 drives the concave block two 407 to extend and retract, prompting the concave block two 407 to drive the rotating shaft 404 and the three-way pipe 403 to rotate, so that the three-way pipe 403 rotates clockwise by ninety degrees. At this time, the cylinder one 410 and the cylinder two 414 are started at the same time, the cylinder one 410 drives the piston plate one 411 to slide to the left to generate suction, so that the sauce passes through the inside of the material frame 3, the feed pipe 401 and the three-way pipe 403 into the inside of the suction pipe 409, and the cylinder two 414 drives the piston plate two 415 to slide upward. At this time, the electric telescopic rod one 406 drives the concave block two 407 to extend and retract again to adjust the rotation of the rotating shaft 404 and the three-way pipe 403, so that the three-way pipe 403 rotates clockwise by ninety degrees again. At this time, the cylinder one 410 drives the piston plate one 411 to slide to the left to make the sauce pass through the connecting pipe one 408, the three-way pipe 403 and the connecting pipe two 412 into the inside of the discharge pipe 413. At this time, the cylinder two 414 is started to drive the piston plate two 415 to press down to fill the sauce into the inside of the bottle 14, achieving the effect of automatic quantitative filling, completing the first batch of filling, and repeating the above operation to achieve the effect of automatic continuous filling.

[0033] Finally, it should be pointed out that the above description is only a preferred embodiment of the present application and is not intended to limit the present application. Although the present application 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 replacements to some technical features, as long as they are within the spirit and principles of the present application. Any modification, equivalent replacement, improvement, etc. made within the scope of the present application shall be included in the protection scope of the present application.

Claims

1. A bottling straight-line filler comprising a support (1), characterized in that: The inside of the support (1) is fixedly connected with a support plate one (2), the upper surface of the support plate one (2) is provided with a quantitative assembly (4), the quantitative assembly (4) is provided with a plurality of groups, the quantitative assembly (4) includes a sleeve shell (402), the inside of the sleeve shell (402) is fixedly connected with a connecting pipe one (408), the outer wall of the connecting pipe one (408) is fixedly connected with a material extraction pipe (409), the outer wall of the material extraction pipe (409) is fixedly connected with a cylinder one (410), the output end of the cylinder one (410) is fixedly connected with a piston plate one (411), the piston plate one (411) is slidingly connected in the inside of the material extraction pipe (409), the inside of the sleeve shell (402) is fixedly connected with a connecting pipe two (412), the outer wall of the connecting pipe two (412) is fixedly connected with a discharging pipe (413), the upper surface of the discharging pipe (413) is fixedly connected with a cylinder two (414), the output end of the cylinder two (414) is fixedly connected with a piston plate two (415), the piston plate two (415) is slidingly connected in the inside of the discharging pipe (413).

2. A bottling straight line machine according to claim 1, characterized in that: The inside of the sleeve shell (402) is fixedly connected with a material conveying pipe (401), the inside of the sleeve shell (402) is rotatably connected with a three-way pipe (403), the outer wall of the three-way pipe (403) is fixedly connected with a rotating shaft (404), the rotating shaft (404) is rotatably connected in the inside of the sleeve shell (402), the inside of the rotating shaft (404) is movably connected with a concave block two (407), the upper surface of the support plate one (2) is fixedly connected with a concave block one (405), the inside of the concave block one (405) is movably connected with an electric telescopic rod one (406), the output end of the electric telescopic rod one (406) is fixedly connected to the outer wall of the concave block two (407).

3. A bottling linear filling machine according to claim 2, characterized in that: The inside of the support (1) is fixedly connected with a material frame (3), the material conveying pipe (401) is fixedly connected in the inside of the material frame (3), and the discharging pipe (413) is fixedly connected in the inside of the support plate one (2).

4. A bottling linear filler as claimed in claim 1, characterized in that: The inside of the support (1) is fixedly connected with a support plate two (5), the upper surface of the support plate two (5) is fixedly connected with a side plate (6), the side plate (6) is provided with two, and the side plate (6) is arranged on the upper surface of the support plate two (5) on both sides.

5. A bottling linear filling machine according to claim 4, characterized in that: The outer wall of one of the side plates (6) is fixedly connected with a motor (7), the output end of the motor (7) is fixedly connected with a hub one (8), and the hub one (8) is rotatably connected in the inside of the two side plates (6).

6. A bottling linear filling machine according to claim 5, characterized in that: The outer wall of the hub one (8) is rotatably connected with a synchronous belt (9), the inside of the two side plates (6) is rotatably connected with a hub two (10), and the synchronous belt (9) is rotatably connected to the outer wall of the hub two (10).

7. A bottling linear filling machine according to claim 6, characterized in that: The outer wall of the side plate (6) is fixedly connected with an electric telescopic rod two (11), and the output end of the electric telescopic rod two (11) is fixedly connected with a clamping frame (12).

8. A bottling linear filler as claimed in claim 7, characterized in that: The outer wall of the side plate (6) is fixedly connected with an electric telescopic rod three (13), the output end of the electric telescopic rod three (13) is fixedly connected with the outer wall of the clamping frame (12), and the inner part of the clamping frame (12) is movably connected with a bottle body (14).