Bottle body conveying device for beverage packaging

By designing a bottle conveying device with push and receive components, the problems of insufficient efficiency and stability of bottle conveying devices under high production capacity conditions were solved, achieving stable and efficient bottle conveying and rapid reception, adapting to various bottle widths, and reducing production costs.

CN224046408UActive Publication Date: 2026-03-27HEFEI LIZHU INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing beverage packaging production, bottle conveying devices are prone to bottlenecks when there are high capacity requirements or sudden increases in production tasks, resulting in insufficient conveying efficiency and a lack of effective dynamic constraint mechanisms. This causes bottles to easily deviate, collide, or tip over during high-speed conveying, affecting the precise docking of subsequent processes.

Method used

A bottle conveying device including a pushing component and a receiving component was designed. Through the constrained conveying of the pushing component and the multi-port design of the receiving component, the bottle can be stably guided and conveyed quickly. It can self-adjust according to the width of the bottle to avoid the bottle tipping over and colliding.

Benefits of technology

It improves the stability and efficiency of bottle conveying, meets the conveying requirements of various bottle widths, reduces costs, and avoids the need to add conveying equipment in each preparation stage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bottle body conveying device for beverage packaging, which relates to the technical field of beverage bottle production and comprises a first supporting unit, a pushing component fixedly arranged at the top of the first supporting unit, a side baffle fixedly arranged at the top of the first supporting unit and corresponding to the pushing component, and a pushing roller butted between the side baffle and the pushing component, the second supporting unit is fixedly arranged on one side of the first supporting unit, and the receiving assembly is fixedly connected to the top of the second supporting unit; the pushing assembly comprises a mounting shell fixed to the top of the first supporting unit and a guide opening formed in the front face of the mounting shell. Constraint type conveying of the bottle bodies is achieved, the situation that the bottle bodies topple over due to the conveying speed is avoided, meanwhile, a plurality of bottle bodies are received at the same time, and compared with traditional single-material-opening conveying, conveying is faster, so that the beverage preparation process can be guaranteed, it is avoided that conveying equipment is additionally arranged in each preparation link, and cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to beverage packaging technical field, concretely is a bottle body conveying device for beverage packaging. BACKGROUND

[0002] In the beverage packaging production process, the conveying of bottle body is the key link connecting filling, capping, labeling, detection and boxing process, and its conveying efficiency and stability directly affect the overall productivity and packaging quality of production line, at present, the common conveying device usually adopts the mode such as conveying belt, bottle separating screw rod or star wheel mechanism to realize the continuous conveying of bottle body, to satisfy the demand of high-speed automatic production;

[0003] However, the existing conveying device still has the following deficiencies:

[0004] Most of the prior art adopts the design of single feeding port, that is, all bottle bodies need to enter the conveying system through the same inlet. This structure can meet the demand under normal production conditions, but when the high productivity requirement or the sudden production task increases, the single-port conveying is easy to form a bottleneck, leading to insufficient conveying efficiency, and the change of production demand cannot be quickly responded.

[0005] Although part of the conveying device can adapt to bottle bodies of different widths by mechanical adjustment (such as adjusting the distance between guide guardrails), in the actual operation process, there is lack of effective dynamic constraint mechanism, leading to the phenomenon of deviation, collision and even bottle falling of bottle body during high-speed conveying, which affects the accurate docking of subsequent processes, especially in the conveying stage after filling, the liquid in the bottle may further intensify the instability, increasing the production loss.

[0006] Therefore, an improved bottle body conveying device is needed. UTILITY MODEL CONTENT

[0007] The utility model aims at providing a bottle body conveying device for beverage packaging to solve the problems in the prior art.

[0008] To achieve the above object, the utility model provides the following technical scheme: A bottle body conveying device for beverage packaging, it is first support unit, the push assembly of first support unit top fixed, the side baffle of first support unit top fixed with push assembly corresponds, the push roller of abutting in the side baffle and push assembly, the second support unit of first support unit one side fixed, the receiving assembly of second support unit top fixed connection, push assembly, including the installation shell of first support unit top fixed, the guide mouth of installation shell front is provided with, the mounting plate of abutting in installation shell and extends to guide mouth, the pulley of abutting in the mounting plate and installation shell, and pulley is provided with two groups, and the conveying belt of common sleeve on pulley, the installation strip of fixed on conveying belt, the push strip of abutting in installation strip outer end, receiving assembly, including the annular groove body of second support unit top fixed, the guide inner seat of abutting in annular groove body, the guide cavity of setting up in guide inner seat outside, the feed inlet of setting up on annular groove body, and feed inlet is provided with three groups, the feed nozzle of abutting in feed inlet.

[0009] As priority, the port of guide cavity is fixedly installed with rubber baffle, the discharge port corresponding to push roller is arranged on annular groove body, and the bottom surface in feed nozzle is in the shape of inwardly downward inclination.

[0010] As priority, the back of installation shell is fixedly installed with motor, and the output end of motor is connected with one end of pulley, the end of installation strip is connected with connecting head, and connecting head and installation strip are connected through turnover shaft, and the end surface of turnover shaft is fixedly connected with push strip.

[0011] As priority, the threaded rod is connected with installation shell through screwing.

[0012] As priority, the first support unit includes main support table, support frame one, the bottom of side baffle and installation shell is fixedly installed with main support table, and the bottom of main support table is fixedly installed with support frame one.

[0013] As priority, the second support unit includes auxiliary support table, support frame two, the bottom of annular groove body is fixedly installed with support frame two, and the side surface of support frame two is connected with side baffle, and the bottom of support frame two is fixedly installed with auxiliary support table for supporting.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] The push assembly is used to realize the constraint conveying of bottle body, so that the bottle body does not fall due to the conveying speed, the stability during conveying is guaranteed, and the bottle body width can be adjusted according to the actual conveying, so that the bottle body conveying of various widths can be satisfied.

[0016] The device meets the conveying demand and receives multiple bottle bodies at the same time through the receiving assembly, is faster than traditional single material port conveying, can guarantee beverage preparation progress, avoids adding conveying equipment in each preparation link, and reduces cost. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a whole structure schematic view of the conveying device of the utility model;

[0018] Figure 2 It is a structure schematic view of the pushing roller and the side baffle and the pushing assembly of the utility model;

[0019] Figure 3 It is a structure schematic view of the pushing assembly of the utility model;

[0020] Figure 4 It is an enlarged structure schematic view of A part in the utility model Figure 3

[0021] Figure 5 It is a structure schematic view of the receiving assembly of the utility model.

[0022] Reference signs:

[0023] 100, side baffle;

[0024] 200, first supporting unit; 201, main supporting table; 202, supporting frame one;

[0025] 300, pushing assembly; 301, installation shell; 3011, guide port; 302, installation plate; 3021, threaded rod; 303, pushing strip; 304, installation strip; 305, turnover shaft; 306, connecting head; 307, belt wheel; 308, conveying belt; 309, motor;

[0026] 400, second supporting unit; 401, auxiliary supporting table; 402, supporting frame two;

[0027] 500, receiving assembly; 501, annular groove body; 5011, discharge port; 5012, feeding port; 502, rubber baffle; 503, guide cavity; 504, material guiding inner seat; 505, feeding nozzle;

[0028] 600, pushing roller. DETAILED DESCRIPTION

[0029] ​Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0030] Embodiment: The utility model provides a kind of bottle conveying device for beverage packaging technical scheme, as shown in Figures 1-5 It includes: first support unit 200, the push assembly 300 of the top of first support unit 200, the side baffle 100 of the top of first support unit 200 and corresponding with push assembly 300, push roller 600 is docked between side baffle 100 and push assembly 300, the second support unit 400 of the side of first support unit 200, the receiving assembly 500 of the top of second support unit 400 is fixedly connected;

[0031] In the above scheme:

[0032] During operation, the first and second support units support the operation components to ensure that the components can perform the required conveying operation.

[0033] The push assembly 300 realizes the constrained conveying of the bottle, so that the bottle does not tilt due to the conveying speed, ensuring the stability during conveying, and the assembly can also adjust itself according to the actual conveying width of the bottle to meet the conveying of bottles of various widths.

[0034] The push roller 600 between the side baffle 100 and the push assembly 300 realizes the support and guiding of the bottle, and under the drive of the push assembly 300, the bottle moves on the push roller 600.

[0035] The receiving assembly 500 not only meets the conveying demand, but also receives multiple bottles at the same time, which is faster than the traditional single-material-port conveying. This not only ensures the beverage preparation process, but also avoids adding conveying equipment at each preparation link, reducing costs.

[0036] The push assembly 300 includes a mounting shell 301 fixed to the top of the first support unit 200, a guide opening 3011 provided on the front of the mounting shell 301, a mounting plate 302 docked in the mounting shell 301 and extending to the guide opening 3011, a belt wheel 307 docked between the mounting plate 302 and the mounting shell 301, two sets of belt wheels 307 provided, a conveying belt 308 commonly sleeved on the belt wheels 307, a mounting strip 304 fixed to the conveying belt 308, and a push strip 303 docked to the outer end of the mounting strip 304.

[0037] The receiving component 500 includes an annular groove 501 fixed to the top of the second support unit 400, a guide seat 504 connected to the annular groove 501, a guide cavity 503 located outside the guide seat 504, and a feed port 5012 located on the annular groove 501. The feed port 5012 is provided with three sets of feed nozzles 505 connected to the feed port 5012.

[0038] During daily work:

[0039] First, the first and second support units are used to support the push component 300 and the receiving component 500, ensuring that the two can work together.

[0040] During this process, the bottle first enters through the feed nozzle 505 and then through the feed inlet 5012 at the inner end of the feed nozzle 505 into the annular groove 501. As the inner guide seat 504 rotates, driven by a motor (installed at the top of the second support unit 400), its conveyor shaft is connected to the inner guide seat 504. The inner guide seat 504 receives and guides the bottle through the conveying cavity 503. Upon reaching the output end, the bottle slides onto the push roller 600, at which point the conveyor belt 308 on the pulley 307 performs real-time transmission, driving the installed... The conveyor belt 304 and pusher 303 conduct the transmission. When the bottle slides into the pusher roller 600, its position will be between the pusher 303s. Under the continuous transmission of the pusher 303, the bottle is pushed, causing the bottle to be conveyed on the pusher roller 600. It is worth noting that the electrical components on the device are electrically connected to the external PLC control system. The PLC control system sets the transmission process of the conveyor belt 308 and the guide seat 504 to ensure that the operation process of the two is synchronized and that the bottle is constrained and pushed by the pusher 303 when it enters the pusher roller 600.

[0041] like Figures 1-5 As shown, in order to ensure that the bottle in the guiding cavity 503 can be stably guided, a rubber baffle 502 is fixedly installed at the port of the guiding cavity 503, and an outlet 5011 corresponding to the push roller 600 is provided on the annular groove 501, and the bottom surface of the feed nozzle 505 is inclined inward and downward.

[0042] Specifically, during this process, the bottle enters through the inlet 505. Since the bottom surface of the inlet 505 is inclined inward, the bottle will automatically slide into the guide cavity 503. Then, with the rotation of the guide seat 504, the bottle in the guide cavity 503 is transferred and guided. During the guiding process, the guide cavity 503 will use the rubber baffle 502 on the edge to restrict the bottle.

[0043] like Figure 3As shown, so that the device can be transported to the bottle, the width of the bottle can be adjusted, further, the back of the installation shell 301 is fixedly installed with a motor 309, and the output end of the motor 309 is connected with one end of the belt pulley 307, and the end of the installation strip 304 is connected with the connecting head 306, and the connecting head 306 and the installation strip 304 are connected through the turnover shaft 305, and the end surface of the turnover shaft 305 is fixedly connected with the pushing strip 303.

[0044] Specifically, during the period, the motor 309 drives one of the belt pulleys 307 to rotate, so as to drive the belt pulley 307 to drive the conveyor belt 308, so that the conveyor belt 308 can drive the pushing strip 303 on the installation strip 304 to conduct, so that the pushing strip 303 can constrain and guide the bottles between them, and ensure that the bottles will not shake or fall during the guiding.

[0045] When the number of pushing strips 303 is relatively dense, personnel can push some pushing strips 303, so that the number of pushing strips 303 in the working state is reduced, and the distance between the pushing strips 303 in the working state is also expanded, so that the adjusted distance meets the requirements of conveying bottles.

[0046] As shown in the figure, Figures 1-5 In order to fix the mounting plate 302 in the installation shell 301, further, the threaded rod 3021 is installed on the mounting plate 302, and the mounting plate 302 is connected with the installation shell 301 through the threaded rod 3021.

[0047] Specifically, the threaded rod 3021 penetrates the mounting plate 302 and is fixedly connected with the mounting plate 302, so that the threaded rod 3021 can extend into the installation shell 301 and be connected with it, so as to ensure the fixed connection between them; the installation shell 301 and the mounting plate 302 are combined with each other, realizing the built-in connection of the belt pulley 307, and ensuring the rotating operation of the belt pulley 307 inside the installation shell 301.

[0048] As shown in the figure, Figure 3 In order to make the pushing assembly 300 complete the conveying work, further, the first supporting unit 200 includes a main supporting table 201 and a supporting frame one 202, and the main supporting table 201 is fixedly installed on the bottom of the side baffle 100 and the installation shell 301, and the supporting frame one 202 is fixedly installed on the bottom of the main supporting table 201.

[0049] Specifically, the main supporting table 201 and the supporting frame one 202 form a supporting platform, realizing the bearing installation of the side baffle 100 and the installation shell 301.

[0050] The second supporting unit 400 comprises a secondary supporting table 401 and a supporting frame two 402, the bottom of the annular groove body 501 is fixedly installed with the supporting frame two 402, the side surface of the supporting frame two 402 is connected with the side baffle 100, and the bottom of the supporting frame two 402 is fixedly installed with the secondary supporting table 401 for supporting.

[0051] And by combining the above, the secondary supporting table 401 and the supporting frame two 402 form a supporting platform to realize the bearing installation of the annular groove body 501, and the secondary supporting table 401 and the primary supporting table 201 can be disassembled and installed.

[0052] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and range of the equivalent elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.

Claims

1. A bottle conveying device for beverage packaging, characterized in that The application relates to a push-receiving device. The push-receiving device comprises a first supporting unit (200), a push assembly (300) fixed on the top of the first supporting unit (200), a side baffle (100) fixed on the top of the first supporting unit (200) and corresponding to the push assembly (300), a push roller (600) butted between the side baffle (100) and the push assembly (300), a second supporting unit (400) fixed on one side of the first supporting unit (200), and a receiving assembly (500) fixed on the top of the second supporting unit (400). The push assembly (300) comprises a mounting shell (301) fixed on the top of the first supporting unit (200), a guide opening (3011) arranged on the front of the mounting shell (301), a mounting plate (302) butted in the mounting shell (301) and extending to the guide opening (3011), a belt wheel (307) butted between the mounting plate (302) and the mounting shell (301), two groups of belt wheels (307) arranged on the belt wheel (307), a conveying belt (308) collectively sleeved on the belt wheel (307), a mounting strip (304) fixed on the conveying belt (308), and a push strip (303) butted on the outer end of the mounting strip (304). The receiving assembly (500) comprises an annular groove body (501) fixed on the top of the second supporting unit (400), a material guiding inner seat (504) butted in the annular groove body (501), a material guiding cavity (503) arranged on the outer side of the material guiding inner seat (504), a feeding opening (5012) arranged on the annular groove body (501), three groups of feeding openings (5012), a feeding nozzle (505) butted at the feeding opening (5012).

2. A beverage packaging bottle conveying apparatus according to claim 1, characterized in that: The feeding nozzle (505) is fixedly arranged on the feeding opening (5012), the bottom surface of the feeding nozzle (505) is inclined inward, the annular groove body (501) is provided with a discharging opening (5011) corresponding to the push roller (600), and the bottom surface of the feeding nozzle (505) is inclined inward.

3. A beverage packaging bottle conveying apparatus according to claim 2, characterized in that: The back of the mounting shell (301) is fixedly provided with a motor (309), the output end of the motor (309) is connected with one end of the belt wheel (307), the end of the mounting strip (304) is butted and fixedly provided with a connecting head (306), the connecting head (306) and the mounting strip (304) are connected through a turnover shaft (305), and the end surface of the turnover shaft (305) is fixedly connected with the push strip (303).

4. A beverage packaging bottle conveying apparatus according to claim 3, characterized in that: The mounting plate (302) is butted and fixedly provided with a threaded rod (3021), and the mounting plate (302) is connected with the mounting shell (301) through the threaded rod (3021).

5. A beverage packaging bottle conveying apparatus according to claim 4, characterized in that: The first supporting unit (200) comprises a main supporting table (201) and a supporting frame (202), the bottom of the main supporting table (201) is fixedly provided with the main supporting table (201) and the supporting frame (202), and the bottom of the main supporting table (201) is fixedly provided with the supporting frame (202).

6. A beverage packaging bottle conveying apparatus according to claim 5, characterized in that: The second support unit (400) comprises a secondary support table (401) and a support frame two (402), the bottom of the annular groove body (501) is fixedly installed with the support frame two (402), the side surface of the support frame two (402) is installed and connected with the side baffle (100), and the bottom of the support frame two (402) is fixedly installed with the secondary support table (401) for supporting.