Probiotic strip packaging device

By designing a probiotic strip packaging device with guide grooves and gathering grooves, the problem of unstable boxing caused by the tilting of probiotic strips was solved, and stable delivery and efficient boxing of probiotic strips were achieved.

CN223672946UActive Publication Date: 2025-12-16ZHE JIANG MAI YA TA JUN JIAN ZHI NENG KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202423242274.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-16
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The probiotic sticks are prone to tilting during the transfer process, which can cause them to misalign with the opening of the packaging box, making it impossible for some probiotic sticks to be put into the packaging box.

Method used

A probiotic strip packaging device was designed, comprising a transition guide, a gathering component, and a pushing mechanism. The probiotic strips are guided and gathered through the guide groove and the gathering groove to ensure their stable delivery into the packaging box.

Benefits of technology

This improves the stability of probiotic strip packaging, reduces the risk of probiotic strips failing to fit into the packaging box, and ensures that multiple probiotic strips can be stably delivered into the packaging box.

✦ Generated by Eureka AI based on patent content.

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Abstract

A probiotic strip packaging device comprises an input guide part, a transition guide part, a folding part, a boxing mechanism and a pushing mechanism, the input guide part is used for inputting probiotic strips into the device, the transition guide part is connected with the input guide part, and the transition guide part is used for containing the probiotic strips input by the input guide part; the boxing mechanism is connected with the transition guide part through the folding part, the pushing mechanism is matched with the transition guide part and the folding part, the probiotic strips in the transition guide part are pushed into the folding part through the pushing mechanism, and meanwhile in the working process of the pushing mechanism, the pushing mechanism pushes the probiotic strips in the folding part into the boxing mechanism.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to packaging equipment technical field, concretely relates to a probiotic bar packaging device. BACKGROUND

[0002] In the production process of probiotics, the probiotics need to be placed in a strip-shaped packaging bag to form a probiotic bar, and then the probiotic bar is packed in a box. The probiotic packing device is one of the commonly used devices, which usually includes a conveyor belt, a packaging box fixing mechanism and a push plate mechanism. The probiotic bar is conveyed to the packaging box fixing mechanism by the conveyor belt, and then the probiotic bar is pushed into the packaging box on the packaging box fixing mechanism by the push plate mechanism. However, during the pushing process of the probiotic bar, the probiotic bar is prone to tilt, which causes the probiotic bar to be misaligned with the opening of the packaging box, and part of the probiotic bar cannot be packed into the packaging box. SUMMARY

[0003] To solve the above problems, the utility model adopts the technical scheme of,

[0004] To solve the above problems, the utility model adopts the technical scheme of,

[0005] A probiotic bar packaging device, comprising:

[0006] A transition guide piece, a plurality of guide grooves for placing probiotic bars are uniformly arranged on the transition guide piece;

[0007] A folding piece connected with the transition guide piece, a folding groove for folding the probiotic bars is arranged in the folding piece;

[0008] A box packing mechanism, a fixing groove for fixing the packaging box is arranged on the box packing mechanism, and the output port of the folding groove is arranged opposite to the fixing groove;

[0009] A pushing mechanism, which is adapted to the transition guide piece and the folding piece respectively, pushes the probiotic bars in the transition guide piece into the folding piece and pushes the probiotic bars in the folding piece into the box packing mechanism.

[0010] As a preferred scheme of the utility model, the transition guide piece is provided with a guide groove, and a plurality of guide plates are arranged in the guide groove, and the guide grooves are formed between adjacent guide plates.

[0011] As a preferred scheme of the utility model, the groove width of the guide groove is greater than the thickness of a single probiotic bar and less than the sum of the thicknesses of two probiotic bars.

[0012] As a preferred scheme of the utility model, the width of the gathering groove is reduced from the transition guide to the boxing mechanism, and a plurality of guide grooves are arranged opposite the input port of the gathering groove.

[0013] As a preferred scheme of the utility model, the gathering member is internally provided with a groove, the gathering guide plate is arranged in the groove, and the side wall of the gathering guide plate and the inner wall of the groove form the gathering groove.

[0014] As a preferred scheme of the utility model, the pushing mechanism comprises a first pushing plate and a second pushing plate, the first pushing plate is matched with the transition guide and is used for pushing the probiotic strip in the transition guide into the gathering member, and the second pushing plate is matched with the gathering member and is used for pushing the probiotic strip in the gathering member into the boxing mechanism.

[0015] As a preferred scheme of the utility model, the bottom of the first pushing plate is provided with a branch plate, the branch plate is matched with the guide groove and is used for pushing the probiotic strip in the guide groove into the gathering member.

[0016] As a preferred scheme of the utility model, the depth of the gathering groove is smaller than the height of the probiotic strip, and the second pushing plate is matched with the probiotic strip extending out of the gathering groove.

[0017] As a preferred scheme of the utility model, the probiotic strip packaging device further comprises an input guide for conveying the probiotic strip to the transition guide, and the input guide is arranged towards the guide groove.

[0018] As a preferred scheme of the utility model, the bottom of the transition guide is connected with a driving member, the transition guide is driven by the driving member, so that the input guide is opposite different guide grooves on the transition guide.

[0019] Compared with the prior art, the utility model has the beneficial effects that (1) in the packaging process, the movement of the probiotic strip is guided by the input guide 5, so that the probiotic strip is prevented from tilting when moving in the input guide, the probiotic strip can be stably conveyed in the device, and the risk that the probiotic strip cannot be loaded into the packaging box is reduced.

[0020] (2) the plurality of probiotic strips are gathered by the gathering member, and the stability of the plurality of probiotic strips conveyed into the packaging box is further ensured. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is a structural schematic view of the device itself.

[0022] Figure 2 is Figure 1 is a structural schematic view after turning through a certain angle.

[0023] Figure 3yes Figure 1 A schematic diagram of the structure with the pushing mechanism hidden.

[0024] Reference numerals: Transition guide 1, guide groove 1-1, guide plate 1-2, gathering component 2, gathering groove 2-1, gathering guide plate 2-2, boxing mechanism 3, fixing groove 3-1, first boxing frame 3-2, second boxing frame 3-3, mounting plate 3-4, boxing electric cylinder 3-5, pushing mechanism 4, first pushing plate 4-1, second pushing plate 4-2, branch plate 4-3, mounting frame 4-4, pushing electric cylinder 4-5, connecting plate 4-6, input guide 5, input groove 5-1, driving component 6, stepper motor 6-1, lead screw 6-2, slider 6-3, frame 7, packaging box 8, stop block 9, sensor 10, probiotics 11. Detailed Implementation

[0025] The present invention will now be further described with reference to the accompanying drawings.

[0026] A probiotic strip packaging device includes: an input guide 5, a transition guide 1, a gathering member 2, a boxing mechanism 3, and a pushing mechanism 4. The input guide 5 is used to input 11 probiotic strips into the device. The transition guide 1 is connected to the input guide 5 and is used to receive the probiotic strips input by the input guide 5. The boxing mechanism 3 is connected to the transition guide 1 through the gathering member 2. The pushing mechanism 4 is adapted to the transition guide 1 and the gathering member 2. The pushing mechanism 4 pushes the probiotic strips in the transition guide 1 into the gathering member 2. At the same time, during the operation of the pushing mechanism 4, the pushing mechanism 4 pushes the probiotic strips in the gathering member 2 into the boxing mechanism 3.

[0027] During the packaging process, this packaging device guides the movement of the probiotic strips through the input guide 5, thereby preventing the probiotic strips from tilting when moving within the input guide 5, ensuring that the probiotic strips can be stably delivered into the collecting component 2, and the collecting component 2 collects multiple probiotic strips, thus facilitating the delivery of multiple probiotic strips into the packaging box.

[0028] The input guide 5 is connected to an external conveyor belt so that the probiotic strips are transported into the device under the guidance of the input guide 5. Preferably, the input guide 5 is provided with a single input groove 5-1, and the width of the single input groove 5-1 is 1.1-1.5 times the thickness of the probiotic strip, so as to ensure that the probiotic strips are input into the device in a horizontal and vertical state.

[0029] The transition guide 1 is provided with a guide groove, a plurality of guide plates 1-2 are arranged in the guide groove, the guide groove is divided into a plurality of guide grooves 1-1 by the guide plates 1-2, that is, the guide grooves 1-1 are formed between adjacent guide plates 1-2. The width of the guide groove 1-1 is greater than the thickness of a single probiotic strip and less than the sum of the thicknesses of two probiotic strips, and preferably, the width of the guide groove 1-1 is 1.2-1.7 times the thickness of the probiotic strip.

[0030] In order to facilitate the input of the probiotic strips into the plurality of guide grooves 1-1 of the transition guide 1 through the input guide 5, the transition guide 1 is slidably mounted on the rack 7, the positional relationship between the input guide 5 and the rack 7 is fixed, and by sliding the transition guide 1, the input groove 5-1 is arranged opposite to the guide grooves 1-1 at different positions, so as to transport the probiotic strips into the guide grooves 1-1 at different positions.

[0031] In order to facilitate the driving of the transition guide 1 to move on the rack 7, a driving member 6 is mounted on the rack 7, the driving member 6 is connected with the bottom of the transition guide 1, the driving member 6 comprises a stepping motor 6-1, a lead screw 6-2 and a sliding block 6-3, the stepping motor 6-1 is fixed on the rack 7, the lead screw 6-2 is connected with the stepping motor 6-1, the sliding block 6-3 is connected with the lead screw 6-2 through threads, and the sliding block 6-3 is connected with the bottom of the transition guide 1, the stepping motor 6-1 drives the lead screw 6-2 to rotate, thereby driving the sliding block 6-3 to move relatively, the transition guide 1 moves with the sliding block 6-3, thereby the input groove 5-1 is arranged opposite to the guide grooves 1-1 at different positions, so as to facilitate the transportation of the probiotic strips into the guide grooves 1-1 at different positions.

[0032] The gathering member 2 is connected with the transition guide 1, the gathering member 2 is provided with a gathering groove 2-1 for gathering the probiotic strips, a plurality of guide grooves 1-1 are arranged opposite to the input port of the gathering groove 2-1, and the width of the gathering groove 2-1 decreases from the transition guide 1 to the box loading mechanism 3, so as to compress the gap between adjacent probiotic strips through the gathering groove 2-1, reduce the overall width of the plurality of probiotic strips, thereby facilitating the transportation of the plurality of probiotic strips into the packaging box.

[0033] The gathering member 2 is provided with a groove, a gathering guide plate 2-2 is arranged in the groove, the gathering groove 2-1 is formed between the side wall of the gathering guide plate 2-2 and the inner wall of the groove, and the gathering guide plate 2-2 is arranged obliquely relative to the conveying direction of the gathering member 2.

[0034] The box loading mechanism 3 is connected with the gathering member 2, the box loading mechanism 3 is provided with a fixing groove 3-1 for fixing the packaging box 8, and the output port of the gathering groove 2-1 is arranged opposite to the fixing groove 3-1, so as to transport the probiotic strips from the output port of the gathering groove 2-1 into the packaging box 8 in the fixing groove 3-1.

[0035] Preferably, the boxing structure 3 comprises a first boxing frame 3-2, a second boxing frame 3-3, a mounting plate 3-4 and a boxing cylinder 3-5, the first boxing frame 3-2 and the second boxing frame 3-3 are both provided with fixing grooves 3-1, and the first boxing frame 3-2 and the second boxing frame 3-3 are respectively fixed on the mounting plate 3-4, the mounting plate 3-4 is slidingly installed on the rack 7, the boxing cylinder 3-5 is connected with the rack 7 and the mounting plate 3-4 respectively, and the mounting plate 3-4 is driven to move relative to the folding member 2, so that the first boxing frame 3-2 or the second boxing frame 3-3 is connected with the folding member 2, thereby facilitating taking and placing the packaging boxes on the first boxing frame 3-2 or the second boxing frame 3-3.

[0036] The pushing mechanism 4 comprises a mounting rack 4-4, a pushing cylinder 4-5, a first pushing plate 4-1 and a second pushing plate 4-2, the first pushing plate 4-1 and the second pushing plate 4-2 are connected through a connecting plate 4-6, the connecting plate 4-6 is slidingly installed on the mounting rack 4-4, the pushing cylinder 4-5 is connected with the connecting plate 4-6, and the mounting rack 4-4 is fixedly installed on the rack 7, the pushing mechanism 4 drives the first pushing plate 4-1 and the second pushing plate 4-2 to move simultaneously through the pushing cylinder 4-5, wherein the first pushing plate 4-1 is matched with the transition guide member 1, and is used for pushing the probiotic strips in the transition guide member 1 into the folding member 2, and the second pushing plate 4-2 is matched with the folding member 2, and is used for pushing the probiotic strips in the folding member 2 into the boxing mechanism 3.

[0037] The bottom of the first pushing plate 4-1 is provided with a branch plate 4-3, the branch plate 4-3 is matched with the guide groove 1-1, that is, the branch plate 4-3 is inserted into the guide groove 1-1, and in the moving process of the first pushing plate 4-1, the probiotic strips in the guide groove 1-1 are pushed into the folding member 2 through the branch plate 4-3.

[0038] In order to facilitate the second pushing plate 4-2 to deliver the probiotic strips in the folding member 2 into the packaging boxes 8 on the boxing mechanism 3, the depth of the folding groove 2-1 is smaller than the height of the probiotic strips, so that the top of the probiotic strips located in the folding groove 2-1 is higher than the top of the folding member 2, the second pushing plate 4-2 is matched with the probiotic strips extending out of the folding groove 2-1, that is, when the second pushing plate 4-2 moves, the second pushing plate 4-2 abuts against the probiotic strips extending out of the folding groove 2-1, thereby facilitating the delivery of the probiotic strips in the folding groove 2-1 into the packaging boxes 8 on the boxing mechanism 3.

[0039] The working process of the device is as follows:

[0040] (1) through the input guide 5 to transport probiotic bars into the transition guide 1, in the process of delivery, stepper motor 6-1 work once, the transition guide 1 is pushed to move a guide slot 1-1 plus guide plate 1-2 length, until the transition guide 1 on the stop block 9 trigger folding piece 2 on the sensor 10, at this time, each guide slot 1-1 in the transition guide 1 is filled with a probiotic bar.

[0041] (2) push mechanism 4 work, through the first push plate 4-1 to push the probiotic bar in the guide slot 1-1 to the folding piece 2, at the same time, the second push plate 4-2 transports the probiotic bar in the folding piece 2 to the packaging box 8 on the first box loading frame 3-2 or the second box loading frame 3-3.

[0042] (3) push mechanism 4 reset, box loading cylinder 3-5 work, the first box loading frame 3-2, the second box loading frame 3-3 are moved, so that the first box loading frame 3-2 opposite the folding piece 2 is switched to the second box loading frame 3-3 or by the second box loading frame 3-3 is switched to the first box loading frame 3-2, in order to change the packaging box on the first box loading frame 3-2, the second box loading frame 3-3.

[0043] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application; therefore, the present application shall not be limited to the embodiments shown herein, but shall be consistent with the widest scope consistent with the principles and novel features disclosed herein.

[0044] Although the corresponding terms of the figure are used more in this paper, the possibility of using other terms is not excluded; using these terms is only to facilitate the description and explanation of the essence of the present application; any additional limitation is contrary to the spirit of the present application.

Claims

1. A probiotic bar packaging apparatus, characterized by, The application relates to a probiotic strip packaging device. The transition guide (1) is provided with a plurality of guide grooves (1-1) for placing probiotic strips; The folding member (2) is connected with the transition guide (1), and is provided with a folding groove (2-1) for folding the probiotic strips; The box mounting mechanism (3) is provided with a fixing groove (3-1) for fixing a packaging box, and the output of the folding groove (2-1) is arranged opposite to the fixing groove (3-1); The pushing mechanism (4) is respectively matched with the transition guide (1) and the folding member (2), and the probiotic strips in the transition guide (1) are pushed into the folding member (2) through the pushing mechanism (4), and the probiotic strips in the folding member (2) are pushed into the box mounting mechanism (3) through the pushing mechanism (4).

2. The probiotic bar packaging apparatus of claim 1, wherein, The transition guide (1) is provided with a guide groove, and a plurality of guide plates (1-2) are arranged in the guide groove, and the guide grooves (1-1) are formed between the adjacent guide plates (1-2).

3. The probiotic bar packaging apparatus of claim 1, wherein, The width of the guide groove (1-1) is greater than the thickness of a single probiotic strip and smaller than the sum of the thicknesses of two probiotic strips.

4. The probiotic bar packaging apparatus of claim 1, wherein, The width of the folding groove (2-1) decreases from the transition guide (1) to the box mounting mechanism (3), and the plurality of guide grooves (1-1) are arranged opposite to the input of the folding groove (2-1).

5. The probiotic bar packaging apparatus of claim 1, wherein, The folding member (2) is provided with a groove, and a folding guide plate (2-2) is arranged in the groove, and the folding groove (2-1) is formed between the side wall of the folding guide plate (2-2) and the inner wall of the groove.

6. The probiotic bar packaging apparatus of claim 1, wherein, The pushing mechanism (4) comprises a first pushing plate (4-1) and a second pushing plate (4-2), the first pushing plate (4-1) is matched with the transition guide (1) and used for pushing the probiotic strips in the transition guide (1) into the folding member (2), and the second pushing plate (4-2) is matched with the folding member (2) and used for pushing the probiotic strips in the folding member (2) into the box mounting mechanism (3).

7. A probiotic bar packaging apparatus according to claim 6, wherein, The bottom of the first pushing plate (4-1) is provided with a branch plate (4-3) matched with the guide groove (1-1) and used for pushing the probiotic strips in the guide groove (1-1) into the folding member (2).

8. A probiotic bar packaging apparatus according to claim 6, wherein, The depth of the folding groove (2-1) is smaller than the height of the probiotic strips, and the second pushing plate (4-2) is matched with the probiotic strips extending out of the folding groove (2-1).

9. The probiotic bar packaging apparatus of claim 1, wherein, The probiotic strip packaging device further comprises an input guide (5) for conveying the probiotic strips to the transition guide (1), and the input guide (5) is arranged towards the guide groove (1-1).

10. A probiotic bar packaging apparatus according to claim 9, wherein, The bottom of the transition guide (1) is connected with a driving member (6), the transition guide (1) is driven through the driving member (6), so that the input guide (5) is arranged opposite to different guide grooves (1-1) on the transition guide (1).