Packaging bag stacking and beating mechanism

By designing a packaging bag stacking and aligning mechanism, the four sides of the packaging bag are automatically aligned using linear movement mechanisms along the X and Y axes, solving the problem of tedious manual operation and improving production efficiency.

CN223521154UActive Publication Date: 2025-11-07DONGGUAN RUIKONG AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423174547.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-07
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The current packaging bags require manual aligning before bundling, resulting in high labor costs, low efficiency, and high expenses.

Method used

Design a packaging bag stacking and aligning mechanism, including a frame, a conveying station, an aligning station, an X-axis linear movement mechanism, and a Y-axis linear movement mechanism, to achieve automated aligning of packaging bags.

Benefits of technology

It has enabled automated alignment of packaging bags, saving manpower and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223521154U_ABST
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Abstract

The packaging bag stacking and aligning mechanism comprises a rack, a conveying station and an aligning station are arranged on the rack, the aligning station comprises an X-axis linear moving mechanism and two oppositely-arranged aligning mechanisms, and each aligning mechanism comprises an X-axis sliding seat, a vertical plate fixedly connected to the X-axis sliding seat, a first pushing mechanism and a second pushing mechanism. The first pushing and aligning mechanism comprises a Y-axis linear moving mechanism arranged on the X-axis sliding seat and a first pushing plate in driving connection with the Y-axis linear moving mechanism, and the second pushing and aligning mechanism comprises a first driving motor arranged on one side of the vertical plate and a second pushing plate in driving connection with the first driving motor. And the X-axis linear moving mechanism is arranged on the rack and is in driving connection with the X-axis sliding seat, so that automation of packaging bag neat beating operation can be realized, manpower is saved, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing equipment technical field especially a kind of packing bag stacking and aligning mechanism. BACKGROUND

[0002] When packaging some products, packaging bag needs to be used, and a certain number of packaging bags need to be stacked and bundled when leaving factory, and the packaging bags need to be aligned on four sides before bundling. At present, the alignment operation before packaging bag bundling needs manual operation, which requires a large amount of manpower, and the operation process is complicated, which affects the bundling efficiency and increases the labor cost. SUMMARY

[0003] The utility model provides a kind of packing bag stacking and aligning mechanism, which can automatically complete the alignment operation of packaging bag, save manpower and improve production efficiency.

[0004] To solve the above technical problems, a kind of packing bag stacking and aligning mechanism is provided, which includes a rack, a conveying station and an alignment station are arranged on the rack, the alignment station includes an X-axis linear motion mechanism, two oppositely arranged alignment mechanisms, the alignment mechanism includes an X-axis slide, a vertical plate fixedly connected to the X-axis slide, a first push mechanism and a second push mechanism, the first push mechanism includes a Y-axis linear motion mechanism arranged on the X-axis slide, and a first push plate drivingly connected to the Y-axis linear motion mechanism, the second push mechanism includes a first driving motor arranged on one side of the vertical plate and a second push plate drivingly connected to the first driving motor, and the X-axis linear motion mechanism is arranged on the rack and drivingly connected to the X-axis slide.

[0005] Preferably, the X-axis linear motion mechanism includes two X-axis cross beams arranged side by side on the rack, and an X-axis linear module arranged on the X-axis cross beam, and the X-axis slide includes a support plate loaded between the two X-axis linear modules, and a plurality of connecting plates fixedly connected between the support plate and the vertical plate.

[0006] Preferably, the Y-axis linear motion mechanism includes a mounting vertical plate fixedly connected to the X-axis slide, a second driving motor fixedly connected to the mounting vertical plate, a driving synchronous wheel rotatably connected to the mounting vertical plate and drivingly connected to the second driving motor, two first driven synchronous wheels rotatably connected to the mounting vertical plate, two second driven synchronous wheels rotatably connected to the top of the vertical plate, a synchronous belt drivingly connected between the driving synchronous wheel, the first driven synchronous wheel and the second driven synchronous wheel, and a Y-axis slide slidingly connected to the top of the vertical plate, the first push plate is fixedly connected to the Y-axis slide, and the Y-axis slide is provided with a tooth surface groove matched with the synchronous belt, and the synchronous belt is engagedly connected with the tooth surface groove.

[0007] Preferably, the conveying station comprises installation side plates arranged on both sides of the frame, a plurality of conveying rollers rotatably connected between the two installation side plates in parallel, and a third driving motor arranged on the frame and used for driving the conveying rollers to rotate.

[0008] The packaging bag stacking and aligning mechanism provided by the utility model has the advantages that a stack of packaging bags is placed on the conveying station and conveyed forward, when the packaging bags are conveyed to the stacking and aligning station, the X-axis sliding seat of the two stacking and aligning mechanisms is driven to move close to each other by the X-axis linear movement mechanism, so that the two vertical plates are close to each other and align the left and right sides of the stack of packaging bags, then the first push plate of the two stacking and aligning mechanisms is driven to retreat along the Y-axis direction by the Y-axis linear movement mechanism, so that the first push plate of the two stacking and aligning mechanisms aligns the front side of the stack of packaging bags, and the second push plate of the two stacking and aligning mechanisms is driven to rotate by the first driving motor, so that the second push plate of the two stacking and aligning mechanisms aligns the rear side of the stack of packaging bags, so that the four-side aligning operation of the stack of packaging bags is completed, and the stack of packaging bags can be banded after the aligning operation is completed, the automatic operation of the packaging bag aligning operation can be realized, manpower is saved, and the production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 An external structure schematic view of the utility model is exemplified.

[0010] Figure 2 A top view of the utility model is exemplified.

[0011] Figure 3 A left view of the utility model is exemplified.

[0012] Figure 4 A front view of the utility model is exemplified.

[0013] BRIEF DESCRIPTION OF DRAWINGS: frame 1, conveying station 2, installation side plate 20, conveying roller 21, stacking and aligning station 3, X-axis linear movement mechanism 4, X-axis cross beam 40, X-axis linear module 41, stacking and aligning mechanism 5, X-axis sliding seat 50, support plate 500, connecting plate 501, Y-axis sliding seat 510, vertical plate 51, first push aligning mechanism 52, Y-axis linear movement mechanism 520, first push plate 521, installation vertical plate 522, second driving motor 523, driving synchronous wheel 524, first driven synchronous wheel 525, second driven synchronous wheel 526, synchronous belt 527, second push aligning mechanism 53, first driving motor 530, second push plate 531. DETAILED DESCRIPTION

[0014] To make the purpose, technical scheme and advantages of the embodiments of the present disclosure clearer, the technical scheme of the embodiments of the present disclosure will be described clearly and completely below in combination with the drawings of the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all the embodiments.

[0015] All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present disclosure without requiring inventive effort are within the scope of the present disclosure.

[0016] Reference Figures 1-4 .

[0017] The utility model provides a packing bag stacking and aligning mechanism, contain frame 1, be provided with conveying station 2, aligning station 3 on frame 1, and aligning station 3 contains X axial linear motion mechanism 4, two opposite aligning mechanism 5 of setting, and aligning mechanism 5 contains X axial slide 50, fixedly connected on X axial slide 50's vertical plate 51, first push together mechanism 52, second push together mechanism 53, and first push together mechanism 52 contains Y axial linear motion mechanism 520 of setting in X axial slide 50, and the first push plate 521 of Y axial linear motion mechanism 520 drive connection, and second push together mechanism 53 contains first drive motor 530 of setting in vertical plate 51 side, and the second push plate 531 of first drive motor 530 drive connection, and X axial linear motion mechanism 4 is set up on frame 1 and is drive connected with X axial slide 50.

[0018] Its working principle is, a bunch of packing bags are placed on conveying station 2 and are forwarded, when packing bag is conveyed to aligning station 3, through X axial linear motion mechanism 4 drive the X axial slide 50 of two aligning mechanism 5 close, to let two vertical plate 51 close and align the left and right sides of the whole bunch of packing bags, then through Y axial linear motion mechanism 520 drive first push plate 521 retreat along Y axial direction, to let the first push plate 521 of two aligning mechanism 5 align the front side of the whole bunch of packing bags, and through first drive motor 530 drive second push plate 531 rotation, to let the second push plate 531 of two aligning mechanism 5 align the rear side of the whole bunch of packing bags, to complete the four sides aligning operation of the whole bunch of packing bags, after aligning, the whole bunch of packing bags can be banded, can realize the automation of packing bag aligning operation, save manpower, improve production efficiency.

[0019] Based on the above embodiment, X axial linear motion mechanism 4 contains two X axial cross beams 40 that are juxtaposed on frame 1, X axial linear module 41 that is set up on X axial cross beam 40, X axial slide 50 contains support plate 500 that is loaded between two X axial linear module 41, a plurality of connecting plates 501 that are fixedly connected between support plate 500 and vertical plate 51. X axial linear module 41 works can drive support plate 500 move left and right along X axial cross beam 40, to let two vertical plate 51 close or separate, to align the left and right sides of the whole bunch of packing bags.

[0020] Based on the above embodiment, the Y-axis linear moving mechanism 520 comprises a mounting vertical plate 522 fixedly connected to the X-axis sliding seat 50, a second driving motor 523 fixedly connected to the mounting vertical plate 522, a driving synchronous wheel 524 rotatably connected to the mounting vertical plate 522 and drivingly connected to the second driving motor 523, two first driven synchronous wheels 525 rotatably connected to the mounting vertical plate 522, two second driven synchronous wheels 526 respectively rotatably connected to two ends of the top of the vertical plate 51, a synchronous belt 527 drivingly connected between the driving synchronous wheel 524, the first driven synchronous wheels 525 and the second driven synchronous wheels 526, and a Y-axis sliding seat 510 slidingly connected to the top of the vertical plate 51 and fixedly connected with the first push plate 521, wherein the Y-axis sliding seat 510 is provided with a toothed groove matched with the synchronous belt 527, and the synchronous belt 527 is in meshing connection with the toothed groove. When the second driving motor 523 works, the synchronous belt 527 can be driven to rotate, and the Y-axis sliding seat 510 moves forward and backward along the vertical plate 51, so that the first push plate 521 moves close to the front side of the whole stack of packaging bags, and the first push plate 521 can be used to align the front side of the whole stack of packaging bags.

[0021] Based on the above embodiment, the conveying station 2 comprises mounting side plates 20 arranged on both sides of the rack 1, a plurality of parallel conveying rollers 21 rotatably connected between the two mounting side plates 20, and a third driving motor arranged on the rack 1 and used to drive the conveying rollers 21 to rotate. When the third driving motor works, each conveying roller 21 can be driven to rotate, and when the whole stack of packaging bags is placed on the conveying rollers 21, the whole stack of packaging bags can be conveyed forward.

[0022] The above embodiments only describe the preferred embodiments of the present application, and do not limit the scope of the present application. Without departing from the design spirit of the present application, various modifications and improvements to the technical solutions of the present application made by those skilled in the art shall fall within the protection scope of the claims of the present application.

Claims

1. A package stack flusher mechanism comprising a frame, characterized by, The rack is provided with a conveying station and a flattening station, the flattening station comprises X-axis linear moving mechanisms, two oppositely arranged flattening mechanisms, the flattening mechanism comprises an X-axis sliding seat, a vertical plate fixedly connected to the X-axis sliding seat, a first flattening mechanism, and a second flattening mechanism, the first flattening mechanism comprises a Y-axis linear moving mechanism arranged on the X-axis sliding seat, and a first push plate drivingly connected to the Y-axis linear moving mechanism, the second flattening mechanism comprises a first driving motor arranged on one side of the vertical plate, and a second push plate drivingly connected to the first driving motor, and the X-axis linear moving mechanism is arranged on the rack and drivingly connected to the X-axis sliding seat.

2. A package stack flush mechanism according to claim 1, wherein, The X-axis linear moving mechanism comprises two X-axis cross beams arranged side by side on the rack, and X-axis linear modules arranged on the X-axis cross beams, the X-axis sliding seat comprises a support plate loaded between the two X-axis linear modules, and a plurality of connecting plates fixedly connected between the support plate and the vertical plate.

3. A package stack flush mechanism according to claim 2, wherein, The Y-axis linear moving mechanism comprises a mounting vertical plate fixedly connected to the X-axis sliding seat, a second driving motor fixedly connected to the mounting vertical plate, a driving synchronous wheel rotatably connected to the mounting vertical plate and drivingly connected to the second driving motor, two first driven synchronous wheels rotatably connected to the mounting vertical plate, two second driven synchronous wheels respectively rotatably connected to two ends of the top of the vertical plate, and a synchronous belt drivingly connected between the driving synchronous wheel, the first driven synchronous wheel, and the second driven synchronous wheel, the top of the vertical plate is slidingly connected with a Y-axis sliding seat, the first push plate is fixedly connected to the Y-axis sliding seat, the Y-axis sliding seat is provided with a toothed groove matched with the synchronous belt, and the synchronous belt is in meshing connection with the toothed groove.

4. A package stack aligning mechanism according to claim 1 or 3, wherein The conveying station comprises mounting side plates arranged on both sides of the rack, a plurality of conveying rollers rotatably connected between the two mounting side plates in parallel, and a third driving motor arranged on the rack and used for driving the conveying rollers to rotate.