Inverted bottle removing mechanism

By designing a bottle-removal mechanism that uses guardrails and removal troughs to remove fallen bottles, the problem of bottle jamming caused by bottle tipping is solved, ensuring normal bottle transport and improving filling efficiency.

CN223990924UActive Publication Date: 2026-03-13SHENGGUAN INTELLIGENT TECHNOLOGY (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

During the filling process, fallen bottles can easily become stuck, affecting conveying efficiency. If left unattended for a long time, this can lead to bottle jamming and disrupt normal filling.

Method used

Design a bottle-removing mechanism. Through the structural design of guardrail one and guardrail two, and by using a removal trough and a bottle-recycling box, the fallen bottles are removed from the conveyor track to avoid affecting the normal conveying of the bottles.

Benefits of technology

It achieves automatic rejection of fallen bottles, avoids bottle jamming, ensures normal bottle transport, improves filling efficiency, and has a simple structure and low cost.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses a fallen bottle removing mechanism which comprises a first guardrail, a second guardrail, guardrail connecting blocks and a fallen bottle recycling box, a plurality of guardrail installation plates are installed on the two sides of a conveying device, the first guardrail is installed on the two guardrail installation plates, the second guardrail is installed on the two guardrail installation plates on the other side, the guardrail connecting blocks are installed on the first guardrail and the second guardrail, and the fallen bottle recycling box is installed on the guardrail connecting blocks. According to the falling bottle removing device, falling bottles are removed at the position of the conveying track, and the situation that conveying of the bottles is affected is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of bottle conveying technology, specifically a bottle inverting and rejecting mechanism. Background Technology

[0002] During the filling process, empty bottles need to be transported to the filling position. However, some bottles may fall over during transport, which can easily cause jamming. Fallen bottles need to be removed, otherwise it will affect subsequent filling. If left unattended for a long time, more serious problems may occur, such as bottle jamming, which will prevent the bottles from being transported normally and affect filling efficiency. Utility Model Content

[0003] The purpose of this utility model is to solve the problems mentioned in the background art. This utility model provides a bottle rejection mechanism that rejects overturned bottles at the conveyor track to avoid affecting the bottle conveying.

[0004] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0005] The bottle-removing mechanism includes guardrail one, guardrail two, guardrail connecting block, and bottle-removing recycling box. Several guardrail mounting plates are installed on both sides of the conveying device. Guardrail one is installed on two guardrail mounting plates, and guardrail two is installed on two guardrail mounting plates on the other side. Guardrail connecting block is installed on guardrail one and guardrail two. Guardrail two is provided with a removal groove, and the bottle-removing recycling box is installed on one side of the removal groove.

[0006] Furthermore, the outer distance between guardrail one and guardrail two is greater than the width of the conveying device.

[0007] Furthermore, guardrail 1 and guardrail 2 form sequentially connected conveyor channels 1, 2, 3 and 4. Conveyor channels 1 and 4 are both located directly above the center of the conveying device. The angle between conveyor channel 2 and conveyor channel 1 is an obtuse angle, and the angle between conveyor channel 3 and conveyor channel 4 is an obtuse angle. The connection between conveyor channel 2 and conveyor channel 3 is located above the bottle recycling box.

[0008] Furthermore, the bottle recycling box is located on one side of guardrail two. Guardrail two has a groove, and guardrail one has a protrusion. The protrusion corresponds to the groove, and the corresponding point of the protrusion and the groove is the connection point of conveyor channel two and conveyor channel three.

[0009] Furthermore, the removal groove is located on the lower side of the middle of the groove in guardrail two, and the removal groove is connected to conveyor channel two and conveyor channel three.

[0010] Furthermore, the height of the rejection groove is greater than the diameter of the bottle body, while the height of the rejection groove is less than the height of the bottle body.

[0011] Furthermore, the rejection trough is provided with a vertical surface one and a vertical surface two, and the vertical surface two is not perpendicular to the conveying direction of the conveying device.

[0012] Furthermore, vertical plane two is parallel to conveyor channel two.

[0013] Beneficial effects:

[0014] This invention improves the guardrail structure. Based on the size of the fallen bottle, the structure of guardrail one and guardrail two is designed so that the fallen bottle falls from one side of guardrail two, while the upright bottle continues to move with the conveying device, thus achieving rejection. There is no need to add other active rejection structures. The whole structure is simple and low in cost, and avoids affecting the bottle conveying. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram illustrating an embodiment of the present invention.

[0017] Figure 2 for Figure 1 Enlarged view of point C in the middle;

[0018] Figure 3 This is a schematic diagram of an embodiment of the present utility model;

[0019] Figure 4 This is a top view of an embodiment of the present invention. Detailed Implementation

[0020] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.

[0021] As shown in the figure, this utility model discloses a bottle-removing mechanism, including a first guardrail 1, a second guardrail 2, a guardrail connecting block 3, and a bottle-recycling box 4. Several guardrail mounting plates 6 are installed on both sides of the conveying device 5. Guardrail 1 is installed on two guardrail mounting plates 6, and second guardrail 2 is installed on two guardrail mounting plates 6 on the other side. Guardrail connecting blocks 3 are installed on guardrail 1 and second guardrail 2. Guardrail 2 has a removal groove 21, and the bottle-recycling box 4 is installed on one side of the removal groove 21. Both the vertical bottle A and the fallen bottle B are conveyed by the conveyor belt on the conveying device 5. When they reach the removal groove 21, because the uppermost part of the fallen bottle B is located in the removal groove 21, guardrail 2 cannot block the fallen bottle B. The fallen bottle B moves out of the removal groove 21 and into the bottle-recycling box 4. Meanwhile, the vertical bottle A, because its height is higher than the removal groove 21, is still blocked by guardrail 1 and second guardrail 2 and is conveyed normally.

[0022] In one embodiment of this invention, the distance between the outer sides of guardrail 1 and guardrail 2 is greater than the width of the conveying device 5. This allows the fallen bottle B to be removed from the rejection groove 21 below guardrail 2.

[0023] In one embodiment of this utility model, a series of conveyor channels 7, 8, 9, and 10 are formed between guardrail 1 and guardrail 2. Conveyor channel 7 contains the overturned bottle B to be rejected. The vertical bottle A first enters conveyor channel 7 and then passes through conveyor channels 8, 9, and 10 in sequence. Conveyor channels 7 and 10 are both located directly above the center of the conveying device 5. The angle between conveyor channel 8 and 9 is obtuse, and the angle between conveyor channel 9 and 10 is also obtuse. The connection between conveyor channel 8 and 9 is located above the bottle recycling box 4. Conveyor channels 7, 8, 9, and 10 are used to limit the movement of the bottle on both sides.

[0024] In one embodiment of this utility model, the bottle recycling box 4 is located on one side of the guardrail 2. The guardrail 2 has a groove 201, and the guardrail 1 has a protrusion 101. The protrusion 101 corresponds to the groove 201, and the corresponding point of the protrusion 101 and the groove 201 is the connection point of the conveyor channel 2 8 and the conveyor channel 3 9. The groove 201 and the protrusion 101 here cause the entire conveyor channel to bend. The fallen bottle B is removed from the bend, while the upright bottle A is still conveyed.

[0025] In one embodiment of this utility model, the removal groove 21 is located on the lower side of the middle of the groove of the guardrail 2 1, and the removal groove 21 is connected to the conveyor channel 2 8 and the conveyor channel 3 9.

[0026] In one embodiment of this utility model, the height of the rejection groove 21 is greater than the diameter of the bottle body, and the height of the rejection groove 21 is less than the height of the bottle body. In this way, the vertical bottle body A cannot be rejected from the rejection groove 21, and only the overturned bottle body B can be rejected from the rejection groove 21.

[0027] In one embodiment of the present invention, the rejection groove 21 is provided with a vertical surface 211 and a vertical surface 212, and the vertical surface 212 is not perpendicular to the conveying direction of the conveying device 5.

[0028] In one embodiment of this utility model, the vertical surface 212 is parallel to the conveyor channel 8. Thus, when the fallen bottle B approaches, the vertical surface 212 blocks the fallen bottle B, allowing it to move out of the conveyor channel from the rejection groove 21.

[0029] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A bottle rejection mechanism, characterized in that The guardrail one, the guardrail two, the guardrail connecting block and the upside-down bottle recycling box are included, a plurality of guardrail mounting plates are installed on both sides of the conveying device, the guardrail one is installed on the two guardrail mounting plates, the guardrail two is installed on the other two guardrail mounting plates, the guardrail connecting block is installed on the guardrail one and the guardrail two, the guardrail two is provided with a rejection groove, and the upside-down bottle recycling box is installed on one side of the rejection groove.

2. The bottle rejection mechanism of claim 1, wherein, The outside distance between the guardrail one and the guardrail two is greater than the width of the conveying device.

3. The bottle rejection mechanism of claim 2, wherein, The guardrail one and the guardrail two form the conveying channel one, the conveying channel two, the conveying channel three and the conveying channel four which are connected in sequence, the conveying channel one and the conveying channel four are located at the middle of the conveying device, the angle between the conveying channel two and the conveying channel one is obtuse, the angle between the conveying channel three and the conveying channel four is obtuse, and the connection between the conveying channel two and the conveying channel three is located above the upside-down bottle recycling box.

4. The bottle rejection mechanism of claim 3, wherein, The upside-down bottle recycling box is located on one side of the guardrail two, the guardrail two is provided with a groove, the guardrail one is provided with a protrusion, the protrusion corresponds to the groove, the corresponding position of the protrusion and the groove is the connection between the conveying channel two and the conveying channel three.

5. The bottle rejection mechanism of claim 4, wherein, The rejection groove is located in the middle of the groove of the guardrail two and is located on the lower side, the rejection groove is communicated with the conveying channel two and the conveying channel three.

6. The bottle rejection mechanism of claim 4, wherein, The height of the rejection groove is greater than the diameter of the bottle body, and the height of the rejection groove is less than the height of the bottle body.

7. The inverted bottle rejection mechanism of claim 4, wherein, The rejection groove is provided with a vertical surface one and a vertical surface two, the vertical surface two is not perpendicular to the conveying direction of the conveying device.

8. The inverted bottle rejection mechanism of claim 7, wherein, The vertical surface two is parallel to the conveying channel two.