Beverage bottle cap discharging device

By designing a multi-functional bottle cap feeding device, the space and layout problems caused by separate feeding devices on beverage bottle production lines are solved, enabling multiple production lines to share feeding and flexible feeding, saving costs and space.

CN224046374UActive 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

Existing beverage bottle production lines require separate feeding devices, resulting in large space requirements, limited space, and restricted equipment layout.

Method used

Design a multifunctional bottle cap feeding device that includes a support component, a drive component, a guide tray, and a feeding component. It supports simultaneous feeding from multiple production lines and allows for flexible adjustment of the feeding position, reducing space occupation and cost.

Benefits of technology

It enables multiple production lines to share the feeding device, saving space and costs while meeting production needs. The feeding position can be adjusted according to actual conditions, eliminating the need for frequent device position adjustments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a beverage bottle cap blanking device, which relates to the technical field of beverage bottle production, and comprises a supporting component, a feeding component and a discharging component, the supporting component comprises a supporting column body, three groups of outer groove bodies fixedly connected to the supporting column body, a driving component fixedly arranged on the supporting column body and positioned above the outer groove bodies, and a material guide disc fixedly connected to the driving component, the material guiding port is formed in the side face of the outer groove body, the guiding-out assembly is fixedly arranged on the outer groove body and communicates with the material guiding port, the feeding assembly slides on the side face of the outer groove body, and the discharging end of the feeding assembly is located above the material guiding disc; the feeding assembly comprises an annular rail fixedly arranged on the outer groove body and a sliding block sliding on the annular rail. Compared with the prior art, due to the fact that the multiple sets of outer groove bodies and the material guiding discs are additionally arranged, the device can correspond to bottle cap discharging operation of multiple production lines at the same time, compared with a traditional one-machine-one-line device, the requirement of the production process can be met under the condition that no extra space is occupied, and the manufacturing cost of the device is saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to beverage bottle production technical field, specifically a beverage bottle bottle lid blanking device. BACKGROUND

[0002] The beverage bottle and the bottle cap jointly constitute a sealed packaging system, and the core functions include: sealing protection: preventing leakage, oxidation or contamination of the contents (such as pressure relief design of carbonated beverages); prolonging shelf life: blocking air, moisture and microbial invasion; user experience: easy opening and reliable sealing should be considered;

[0003] At present, the beverage packaging industry generally adopts "one machine one line" type blanking device, that is, each bottle cap production line is equipped with independent blanking equipment.

[0004] However, the technical scheme still has the following disadvantages:

[0005] 1. Each production line needs to be equipped with a separate blanking device, resulting in a large space requirement for production line layout, increasing the cost of the plant, and the parallel operation of multiple devices will further exacerbate the problem of space shortage;

[0006] 2. The feed inlet position of the blanking device is fixed and cannot be adaptively adjusted according to the production line adjustment or environmental restrictions, and the compatibility of the device layout needs to be considered additionally when planning the production line, which limits the optimized layout of the production line;

[0007] Therefore, an improved beverage bottle bottle cap blanking device is needed. CONTENT OF THE UTILITY MODEL

[0008] The utility model aims at providing a beverage bottle bottle cap blanking device to solve the problems in the prior art.

[0009] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a beverage bottle bottle cap blanking device, comprising: a support assembly comprising a support column, three groups of outer grooves fixed to the support column, a drive assembly fixed to the support column and located above the outer grooves, a guide plate fixed to the drive assembly, a guide inlet provided on the side of the outer groove, a guide-out assembly fixed to the outer groove and communicating with the guide inlet, a feeding assembly sliding on the side of the outer groove, and the feeding end of the feeding assembly being located above the guide plate; the feeding assembly comprises an annular track fixed to the outer groove, a sliding block sliding on the annular track, and a feed channel fixed to the top of the sliding block; the drive assembly is provided with three groups of mounting sleeves, an annular gear rack fixed to the mounting sleeve, a guide plate fixed to the mounting sleeve, a motor fixed to the support column and located above the mounting sleeve, and a gear wheel connected to the bottom end of the motor and meshing with the annular gear rack.

[0010] As a priority, the export component includes telescopic air cylinder, guide channel one, push material plate, guide channel two, the outer groove body is fixedly installed with the guide channel two which is communicated with the guide material mouth, the end of the guide channel two is fixedly installed with the guide channel one which is communicated, the inside of the guide channel one is fixedly installed with the telescopic air cylinder, and the output end of the telescopic air cylinder is butt-jointed with the push material plate, and the push material plate is right-angled.

[0011] As a priority, the guide disc is uniformly distributed with guide cavities, and the guide cavities are annularly arranged, and the bottom surface in the guide cavity is outwardly inclined.

[0012] As a priority, the bottom of the feeding channel is provided with a discharge port, and the discharge port is located on the upper part of the guide disc and cooperates with the guide cavity.

[0013] As a priority, the support assembly further comprises a base and a support seat, the bottom of the support column is fixedly installed with the support seat, and the bottom of the support seat is fixedly installed with the base for supporting.

[0014] As a priority, the feeding assembly further comprises a positioning knob, the positioning knob is butt-jointed on the sliding block, and the inner end of the positioning knob abuts against the annular track and limits the sliding block.

[0015] Compared with the prior art, the beneficial effects of the utility model are:

[0016] By additionally arranging a plurality of outer groove bodies and guide discs, the device can simultaneously correspond to the bottle cap feeding operation of multiple production lines, and compared with the traditional one-machine-one-line, the device can meet the production process requirements without occupying additional space, and the preparation cost of the device is saved.

[0017] The feeding assembly realizes feeding of the bottle cap, and after the device is positioned, personnel can adjust the feeding position of the feeding assembly without moving the device, so that the device does not need to be frequently adjusted due to the limitation of the actual production line or site during arrangement. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a first view structure schematic view of the beverage bottle cap feeding device of the utility model.

[0019] Figure 2 It is a second view structure schematic view of the beverage bottle cap feeding device of the utility model.

[0020] Figure 3 It is an assembly structure schematic view of the guide disc and the driving assembly of the utility model.

[0021] Figure 4 It is an enlarged structure schematic view of A part in the utility model. Figure 2 ​

[0022] Figure label:

[0023] 100. Outer tank body; 1001. Feed guide port;

[0024] 200. Feeding assembly; 201. Feed chute; 202. Positioning knob; 203. Slider; 204. Circular track;

[0025] 300. Export component; 301. Telescopic cylinder; 302. Guide channel one; 303. Pusher plate; 304. Guide channel two;

[0026] 400, guide plate; 4001, guide cavity;

[0027] 500. Support component; 501. Base; 502. Support seat; 503. Support column;

[0028] 600. Drive assembly; 601. Mounting sleeve; 602. Ring rack; 603. Gear; 604. Motor. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] Example: This utility model provides a technical solution for a beverage bottle cap feeding device, such as... Figures 1-4 As shown, it includes: a support assembly 500, which includes a support column 503, three sets of outer grooves 100 fixed to the support column 503, a drive assembly 600 fixed to the support column 503 and located above the outer grooves 100, a guide plate 400 fixed to the drive assembly 600, a guide port 1001 disposed on the side of the outer grooves 100, an outlet assembly 300 fixed to the outer grooves 100 and communicating with the guide port 1001, and a feeding assembly 200 sliding on the side of the outer grooves 100, with the discharge end of the feeding assembly 200 located above the guide plate 400;

[0031] In the above scheme:

[0032] The supporting components 500 support the working components of the device, thereby achieving support and stable placement of the device;

[0033] The drive assembly 600 on the support column 503 drives the guide plate 400 to rotate, thereby enabling the guide plate 400 to automatically guide the bottle cap.

[0034] By adding multiple sets of outer groove body 100 and guide plate 400, the device can correspond to multiple production lines of bottle cap feeding operation at the same time, compared with the traditional one machine one line, it can meet the needs of production process without additional occupation of site, and save the preparation cost of the device;

[0035] By exporting assembly 300, the bottle cap is exported, and the feeding process can be controlled according to the actual production demand.

[0036] Through the feeding assembly 200, the bottle cap is fed, and when the device is arranged, the personnel can adjust the feeding position of the feeding assembly 200 without moving the device, so that the device does not need to be adjusted frequently due to the limitation of actual production line or site during arrangement.

[0037] Feeding assembly 200, including annular track 204 fixed on outer groove body 100, sliding block 203 sliding on annular track 204, feeding groove 201 fixed on the top of sliding block 203;

[0038] Drive assembly 600, provided with three sets of mounting sleeve 601 sleeved on support column 503, ring gear 602 fixed on mounting sleeve 601, guide plate 400 fixed on mounting sleeve 601, motor 604 fixed on support column 503 and located above mounting sleeve 601, gear 603 connected with motor 604 bottom and ring gear 602.

[0039] During daily operation:

[0040] The device is arranged by support assembly 500, it is worth mentioning that during arrangement, the three sets of outer groove body 100 can be adjusted first to ensure that the discharge port of the exporting assembly 300 corresponds to each receiving facility, the outer groove body 100 is fixedly installed on the support column 503 by bolt parts, and can be fastened after adjustment; The feeding assembly 200 can be adjusted in real time according to the actual input end position, the adjustment method is: the personnel move the sliding block 203, make the sliding block 203 slide on the annular track 204, make the feeding route of the feeding groove 201 meet the input end line of the bottle cap, when the bottle cap enters the feeding groove 201, it will be guided out through the slope at the bottom of the feeding groove 201, and enter the inside of the guide plate 400 with the rotation of the guide plate 400, during the period, start the motor 604 to drive the gear 603 to rotate, realize the driving of the ring gear 602, at this time, the mounting sleeve 601 rotates on the support column 503 through the bearing inside, realize the rotation of the guide plate 400, drive the internal bottle cap to conduct, finally enter the exporting assembly 300 to discharge, complete the feeding.

[0041] As Figures 1-4 shown, in order to make the bottle cap from the guide material disc 400 discharge, complete the device blanking, further, the guide-out assembly 300 includes telescopic cylinder 301, guide channel one 302, push plate 303, guide channel two 304, the outer groove body 100 is fixedly installed with the guide channel two 304 that communicates with the guide port 1001, the end of the guide channel two 304 is fixedly installed with the guide channel one 302 that communicates, the inside of the guide channel one 302 is fixedly installed with the telescopic cylinder 301, and the output end of the telescopic cylinder 301 is butt-jointed with the push plate 303, and the push plate 303 is right-angled.

[0042] Specifically, during the period, the bottle cap inside will be guided out through the guide port 1001 with the rotation of the guide disc 400, into the guide channel two 304, at this time personnel can control the telescopic frequency of the telescopic cylinder 301 according to the guide process, the telescopic cylinder 301 will drive the push plate 303 to recycle, and the bottle cap in the guide channel two 304 will enter the guide channel one 302 for blanking.

[0043] As Figures 1-4 shown, in order to make the bottle cap in the guide disc 400 stable guide, further, the guide disc 400 is uniformly distributed with guide cavity 4001, and the guide cavity 4001 is annularly arranged, the bottom surface of the guide cavity 4001 is outwardly inclined.

[0044] Specifically, when the guide disc 400 rotates, the bottle cap will enter the guide cavity 4001 and be transferred with the rotation of the guide disc 400, when the guide cavity 4001 reaches the guide port 1001 position, the bottle cap will be guided out through the bottom surface of the guide cavity 4001.

[0045] Further, the bottom of the feed channel 201 is provided with a discharge port, the discharge port is located on the upper part of the guide disc 400 and cooperates with the guide cavity 4001;

[0046] During the period, when the bottle cap enters the inside of the feed channel 201, it will slide into the discharge port, when the guide disc 400 rotates, the bottle cap in the discharge port will be blocked, until the guide cavity 4001 on the guide disc 400 and the discharge port rotate to the corresponding time, the bottle cap in the discharge port will automatically fall into the guide cavity 4001 and be transferred with the rotation of the guide disc 400.

[0047] As Figures 1-4 shown, in order to make the device have good stability during operation, further, the support assembly 500 further includes base 501, support seat 502, support column 503, the bottom of the support seat 502 is fixedly installed with the support seat 502, and the bottom of the support seat 502 is fixedly installed with the base 501 for supporting.

[0048] Specifically, during the period, the device is placed and supported through the base 501, and the support base 502 realizes the fixed connection between the base 501 and the support column 503, and realizes the stable support of the support column 503.

[0049] In order to make the feeding assembly 200 stable during the operation, further, the feeding assembly 200 further comprises a positioning knob 202, the positioning knob 202 is installed on the slider 203 in a butt joint mode, and the inner end of the positioning knob 202 is in abutment with the annular track 204 and limits the slider 203.

[0050] Specifically, when the position of the feeding channel 201 needs to be adjusted, the slider 203 needs to be slid, and when the adjusted position is reached, the personnel can rotate the positioning knob 202, so that the inner end of the positioning knob 202 is in abutment with the annular track 204 and is extruded, the slider 203 is limited, and the positioning of the feeding channel 201 is realized.

[0051] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, no matter from which point of view, the embodiments should be regarded as exemplary and non-limiting, 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 scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims.

Claims

1. A beverage bottle cap blanking device characterized by comprising: The application relates to a supporting assembly (500) which comprises a supporting column (503), three groups of outer groove bodies (100) fixedly connected to the supporting column (503), a driving assembly (600) fixedly arranged on the supporting column (503) and located above the outer groove bodies (100), a material guiding disc (400) fixedly connected to the driving assembly (600), a material guiding opening (1001) arranged on the side of the outer groove body (100), a guiding-out assembly (300) fixedly arranged on the outer groove body (100) and communicating with the material guiding opening (1001), and a feeding assembly (200) sliding on the side of the outer groove body (100) and having a discharging end located above the material guiding disc (400). The feeding assembly (200) comprises an annular track (204) fixedly arranged on the outer groove body (100), a sliding block (203) sliding on the annular track (204), and a feeding channel (201) fixedly connected to the top of the sliding block (203). The driving assembly (600) is provided with three groups of mounting sleeves (601) sleeved on the supporting column (503), ring racks (602) fixedly arranged on the mounting sleeves (601), the material guiding disc (400) fixedly connected to the mounting sleeves (601), a motor (604) fixedly connected to the supporting column (503) and located above the mounting sleeves (601), and gears (603) abutting the bottom end of the motor (604) and meshing with the ring racks (602). The guiding-out assembly (300) comprises a telescopic air cylinder (301), a first material guiding channel (302), a material pushing plate (303) and a second material guiding channel (304). The second material guiding channel (304) is fixedly arranged on the outer groove body (100) and communicates with the material guiding opening (1001). The end of the second material guiding channel (304) is fixedly provided with the first material guiding channel (302) in communication. The telescopic air cylinder (301) is fixedly arranged in the first material guiding channel (302), and the output end of the telescopic air cylinder (301) is abuttingly provided with the material pushing plate (303), and the material pushing plate (303) is in a right angle shape.

2. The beverage bottle cap blanking device according to claim 1, characterized in that: The material guiding disc (400) is uniformly provided with material guiding cavities (4001) arranged in an annular array, and the bottom surface in the material guiding cavity (4001) is outwardly inclined.

3. A beverage bottle cap unloading device according to claim 2, characterized in that: The bottom of the feeding channel (201) is provided with a discharging opening located on the upper portion of the material guiding disc (400) and matched with the material guiding cavities (4001).

4. The beverage bottle cap blanking device according to claim 3, characterized in that: The supporting assembly (500) further comprises a base (501) and a supporting seat (502). The bottom of the supporting column (503) is fixedly provided with the supporting seat (502), and the bottom of the supporting seat (502) is fixedly provided with the base (501) for supporting.

5. A beverage bottle cap unloading device according to claim 4, characterized in that: The feeding assembly (200) further comprises a positioning knob (202) abuttingly arranged on the sliding block (203). The inner end of the positioning knob (202) abuts against the annular track (204) and limits the sliding block (203).

6. A beverage bottle cap unloading device according to claim 5, characterized in that: ​