A multifunctional baling device

CN224782390UActive Publication Date: 2026-09-22ANHUI YONGPAN ELECTROMECHANICAL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522136635.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2026-09-22
Estimated Expiration
2035-10-10

AI Technical Summary

Technical Problem

传统的蹾包机构只单一完成墩袋,功能单一

Benefits of technology

[0009]本实用新型的的有益效果是:多功能蹾包设备包含了蹾包、夹袋、送袋,配合灌袋机一次完成二面真空包装。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224782390U_ABST
    Figure CN224782390U_ABST
Patent Text Reader

Abstract

The utility model discloses a multifunctional bagging equipment, including frame, is provided with bagging mechanism at one end of frame, is provided with bag turning mechanism at the other end of frame, is provided with clamping plate mechanism between bagging mechanism and bag turning mechanism, wherein: bagging mechanism includes a bagging platform, the bagging platform is used for the package bag in the filling, is provided with bagging cylinder at the lower end of bagging platform, and the telescopic arm of bagging cylinder is connected fixed with bagging platform, and the telescopic arm of bagging cylinder drives bagging platform to vibrate up and down in the process of canning and realizes the bagging of filling process, the clamping plate mechanism 4 is used for the package bag after filling and is clamped to form two plane packages, the bag turning mechanism includes turnover platform, and is used for sending two plane vacuum bags placed on turnover platform out, the utility model discloses bagging, clamping bag, send bag, and cooperate filling bag machine to complete two face vacuum package once.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to a multifunctional bag-making device. Background Technology

[0002] A bag-feeding mechanism is a device used in the filling process of solid granular or powder materials. It uses impact vibration to force the material into the bag as quickly as possible. A two-plane vacuum bagging machine needs to complete filling quickly while simultaneously removing air from the bag to save vacuuming time. Traditional bag-feeding mechanisms only perform the bag-feeding function, offering limited functionality. Summary of the Invention

[0003] To address the aforementioned problems, the purpose of this utility model is to provide a multifunctional bag-making device, which includes bag-making, bag clamping, and bag feeding, and works in conjunction with a bag filling machine to complete two-sided vacuum packaging in one operation.

[0004] To achieve the above objectives, the solution of this utility model is as follows: A multifunctional bag-making device for a two-plane vacuum bag filling machine includes a frame, a bag-making mechanism at one end of the frame, a bag-flipping mechanism at the other end of the frame, and a clamping mechanism between the bag-making mechanism and the bag-flipping mechanism; wherein: The bag-making mechanism includes a bag-making platform for receiving the packaging bags during filling. A bag-making cylinder is installed at the lower end of the bag-making platform. The telescopic arm of the bag-making cylinder is connected and fixed to the bag-making platform. During the filling process, the telescopic arm of the bag-making cylinder drives the bag-making platform to vibrate up and down to realize the bag-making process during filling. The clamping mechanism is used to clamp the filled packaging bag to form a two-plane packaging. It includes a clamping platform and two clamping bases. Two slide rails are arranged parallel to each other on the clamping platform. The two clamping bases are slidably seated on the slide rails by sliders arranged on both sides of their lower end faces. Clamping plates are respectively arranged on the two clamping bases perpendicular to the clamping platform. Linkage mechanisms are arranged on both sides of the clamping platform to connect the two clamping bases. A clamping drive cylinder is fixed at the lower end of the clamping platform. The telescopic arm of the clamping drive cylinder is connected to the linkage mechanism. The telescopic arm drives the two opposing clamping bases to move in opposite directions on the two slide rails through the linkage mechanism, thereby forming the two clamping plates on the two opposing clamping bases to close and open. The clamping platform is fixed on a lifting seat. A lifting cylinder drives the lifting seat to rise and fall, thereby driving the clamping platform to rise and fall. The flipping mechanism includes a flipping table, with rotating shafts on both sides of one end of the flipping table. The flipping table is rotated and positioned on the upright plates on both sides of the frame via the rotating shafts. A flipping cylinder is connected to the lower end of the other end of the flipping table. The telescopic arm of the flipping cylinder drives the flipping table to flip around the rotating shafts on both sides, which is used to send out the two-plane vacuum bags placed on the flipping table.

[0005] The solution is further described as follows: The linkage mechanism includes a swing rod and two connecting rods. The center of the swing rod is rotatably fixed to the side plate of the clamping platform via a pin. The two ends of the swing rod are respectively hinged to one end of the two connecting rods, and the other ends of the two connecting rods are respectively connected to the two clamping plate bases. The telescopic arm of the clamping drive cylinder is connected to one of the clamping plate bases and indirectly connected to a connecting rod through this clamping plate base. The extension and retraction of the telescopic arm drives the swing rod to swing through a connecting rod, which in turn drives the other connecting rod to move synchronously, forming the relative closing and opening of the two clamping plates.

[0006] A further aspect of the solution is that the frame is supported on a lifting mechanism, which drives the frame to move up and down.

[0007] The solution is further as follows: the lifting mechanism includes a lifting mechanism base, with channel steel columns set on both sides of one end of the lifting mechanism base, and a taut chain set vertically in the groove of the channel steel column. A horizontal shaft passes through the two channel steel columns, and gears are set on both ends of the horizontal shaft. The two gears mesh with the two chains respectively. The frame is hung on the horizontal shaft, and a motor drives the horizontal shaft to rotate through a reducer. The rotating horizontal shaft drives the two gears to rotate and climb or descend along the chain, thereby driving the frame to move up and down.

[0008] The solution further includes: the telescopic arm of the bag-making cylinder is connected and fixed to the center point of the bag-making platform; balanced guide rods are respectively set on both sides of the center point of the bag-making platform; the bag-making cylinder is fixed on a crossbeam; the crossbeam is fixed between two upright plates set on the frame; two pairs of guide wheels are respectively set on the outer side of the two upright plates; the two pairs of guide wheels are set vertically and vertically; the two guide wheels of each pair of guide wheels are set opposite to each other; the balanced guide rod passes through the middle of each pair of guide wheels, ensuring that the bag-making platform vibrates smoothly up and down.

[0009] The beneficial effects of this utility model are: the multi-functional bagging equipment includes bagging, bag clamping, and bag feeding, and works with a bag filling machine to complete two-sided vacuum packaging in one go.

[0010] The present invention will now be described in detail with reference to the accompanying drawings and embodiments. Attached Figure Description

[0011] Figure 1 This is a front axonometric view of the structure of this utility model; Figure 2 This is a schematic diagram of the bag-making mechanism of this utility model; Figure 3 This is a schematic diagram of the clamping mechanism of this utility model; Figure 4 This is a schematic diagram of the lower end face of the clamping plate mechanism of this utility model; Figure 5 This is a schematic diagram of the lifting mechanism of this utility model; Figure 6 This is a schematic diagram of the working process of this utility model. Detailed Implementation

[0012] A multi-functional bagging device for use with a two-plane vacuum bagging machine, such as... Figures 1 to 6 As shown, the multi-functional bagging equipment includes a frame 1, which includes a frame enclosed by four frame plates. A bagging mechanism 2 is provided at one end of the frame of the frame 1, and a bag-flipping mechanism 3 is provided at the other end of the frame of the frame 1. A clamping mechanism 4 is provided in the frame of the frame 1 between the bagging mechanism and the bag-flipping mechanism. The bagging mechanism 2, the clamping mechanism 4, and the bag-flipping mechanism 3 assist the two-plane vacuum bagging machine in completing bagging, bag clamping and degassing, and flipping and sending out the two-plane vacuum bag formed after bag clamping, degassing and sealing. The bag-sizing mechanism includes a bag-sizing platform 201, which is used to receive the packaging bags during filling. A bag-sizing cylinder 202 is installed at the lower end of the bag-sizing platform. The telescopic arm of the bag-sizing cylinder 202 is connected and fixed to the bag-sizing platform 201. During the filling process, the telescopic arm of the bag-sizing cylinder 202 drives the bag-sizing platform 201 to vibrate up and down to achieve bag-sizing during the filling process. To ensure stable operation, the telescopic arm of the bag-sizing cylinder 202 is connected and fixed to the center point of the bag-sizing platform 201. Balance guide rods 2 are respectively installed on both sides of the center point of the bag-sizing platform 201. 03. The bag-making cylinder 202 is fixed on a crossbeam 204. The crossbeam 204 is fixed between two upright plates 205 on the frame 1. Two pairs of guide wheels 206 are respectively set on the outer side of the two upright plates. The two guide wheels of each pair of guide wheels 206 are arranged opposite each other and the two pairs of guide wheels are spaced apart vertically. The balance guide rod 203 passes through the middle of each pair of two guide wheels. During vibration, the balance guide rod 203 moves up and down in the middle of each pair of two guide wheels. Each pair of guide wheels clamps the balance guide rod 203 to ensure that the bag-making platform vibrates smoothly up and down.

[0013] The clamping mechanism 4 is used to clamp the filled packaging bag to form a two-plane packaging. The clamping mechanism 4 includes a clamping platform 401 and two clamping bases 402. Two slide rails 403 are arranged parallel to each other on the clamping platform 401. The two clamping bases 403 are slidably seated on the slide rails 403 by sliders 404 respectively provided on both sides of their lower end faces. Clamping plates 405 are respectively arranged on the two clamping bases perpendicular to the clamping platform. Linkage mechanisms 406 are respectively provided on both sides of the clamping platform, and the linkage mechanisms 406 connect the two clamping bases 402. A clamping drive cylinder 407 is fixed to the lower end of the clamping platform 401. The telescopic arm of the clamping drive cylinder 407 is connected to the linkage mechanism 406. The telescopic arm drives the two opposing clamping bases 402 to move in opposite directions on the two slide rails 403 through the linkage mechanism 406. The movement of the clamping platform 401, which is located on two clamping bases, causes the clamping plates 405 on the two bases to close and open. The closing action is used to clamp the packaged bag after filling. The clamping platform 401 is fixed on a lifting seat 5. The telescopic arm of a lifting cylinder 6 is connected to the lifting seat 5. The lifting cylinder 6 drives the lifting seat 5 to rise and fall, which in turn drives the clamping platform 401 to rise and fall. This is used to catch the packaged bag after filling when the two clamping plates 405 are open, and then to close the two clamping plates 405 to clamp the packaged bag after filling. The lifting cylinder 6 is fixed on a positioning platform 7 set on the frame. Guide slots 701 are respectively set on both sides of the positioning platform 7. The lower end of the clamping platform 401 is provided with a guide column 408 corresponding to the guide slot 701. The guide column 408 is inserted into the guide slot 701 to ensure the stability of the clamping platform 401 when it moves up and down.

[0014] The flipping mechanism 3 includes a flipping platform 301, which is composed of two side uprights 301-1 and a bottom plate 301-2 in the shape of a winnowing basket. The bottom plate 301-2 is composed of a series of bars welded at intervals in a hollow shape. A rotating shaft 302 is provided on both sides of one end of the flipping platform. The flipping platform 301 is rotated and positioned on the two side uprights of the frame 1 through the rotating shaft 302. A flipping cylinder 8 is connected to the lower side of the other end of the flipping platform. The telescopic arm of the flipping cylinder 8 drives the flipping platform 301 to flip around the two side rotating shafts 302 as the center, which is used to send out the two-plane vacuum bags placed on the flipping platform 301.

[0015] The linkage mechanism 406 includes a swing rod 406-1 and two connecting rods 406-2. The center of the swing rod 406-1 is rotatably fixed to the side plate of the clamping platform 401 through the pin 406-2. The two ends of the swing rod are respectively hinged to one end of the two connecting rods 406-3, and the other ends of the two connecting rods 406-3 are respectively connected to the two clamping bases 402. The telescopic arm of the clamping drive cylinder 407 is connected to one of the clamping bases 402, and indirectly connected to a connecting rod 406-3 through this clamping base 402. The extension and retraction of the telescopic arm drives the swing rod 406-1 to swing through the connecting rod 406-3, which in turn drives the other connecting rod to move synchronously to form the relative closing and opening of the two clamping plates.

[0016] In order to adjust the height of the frame as a whole to accommodate different packaging bags being filled by the two-plane vacuum bag filling machine: the frame 1 is supported on a lifting mechanism, which drives the frame to move up and down.

[0017] The lifting mechanism includes a lifting mechanism base 9, with channel steel columns 901 installed on both sides of one end of the lifting mechanism base 9. A taut chain 902 is installed vertically in the groove of the channel steel column 901. A horizontal shaft 903 passes through the channel steel columns 901 on both sides. Gears 904 are installed on both ends of the horizontal shaft 903, and the two gears 904 mesh with the two chains 902 respectively. The frame 1 is hung on the horizontal shaft 903, and a motor 10 is driven by a worm gear reducer 11. The horizontal shaft 903 rotates, which drives two gears 904 to rotate and climb or descend along the chain 902, thereby moving the frame 1 up and down. Balance plates 905 are respectively set at both ends of the horizontal shaft 903. The frame of the frame 1 is connected to the balance plates 905 through the stabilizing block 906. Furthermore, the frame of the frame 1 is clamped by stabilizing rollers 907 set on the outside of the channel steel column 901, which ensures that the horizontal shaft 903 smoothly drives the frame 1 to move up and down.

[0018] Figure 6 The diagram illustrates the workflow of this equipment. After the packaging bag 12 is compacted by the packing mechanism 2, it is sent to the clamping mechanism 4 to compress the packaging bag 12 to form a front and back two-flat packaging bag 12. After vacuum sealing, it is sent to the flipping table 301 of the flipping mechanism 3. The flipping table 301 of the flipping mechanism 3 flips the packaging bag 12 to send it out.

Claims

1. A multi-functional bag filling device for a two-plane vacuum bag filling machine, comprising a frame, characterized in that, A bag-folding mechanism is provided at one end of the frame, and a bag-flipping mechanism is provided at the other end of the frame. A clamping mechanism is provided between the bag-folding mechanism and the bag-flipping mechanism; wherein: The bag-making mechanism includes a bag-making platform for receiving the packaging bags during filling. A bag-making cylinder is installed at the lower end of the bag-making platform. The telescopic arm of the bag-making cylinder is connected and fixed to the bag-making platform. During the filling process, the telescopic arm of the bag-making cylinder drives the bag-making platform to vibrate up and down to realize the bag-making process during filling. The clamping mechanism is used to clamp the filled packaging bag to form a two-plane packaging. It includes a clamping platform and two clamping bases. Two slide rails are arranged parallel to each other on the clamping platform. The two clamping bases are slidably seated on the slide rails by sliders arranged on both sides of their lower end faces. Clamping plates are respectively arranged on the two clamping bases perpendicular to the clamping platform. Linkage mechanisms are arranged on both sides of the clamping platform to connect the two clamping bases. A clamping drive cylinder is fixed at the lower end of the clamping platform. The telescopic arm of the clamping drive cylinder is connected to the linkage mechanism. The telescopic arm drives the two opposing clamping bases to move in opposite directions on the two slide rails through the linkage mechanism, thereby forming the two clamping plates on the two opposing clamping bases to close and open. The clamping platform is fixed on a lifting seat. A lifting cylinder drives the lifting seat to rise and fall, thereby driving the clamping platform to rise and fall. The flipping mechanism includes a flipping table, with rotating shafts on both sides of one end of the flipping table. The flipping table is rotated and positioned on the upright plates on both sides of the frame via the rotating shafts. A flipping cylinder is connected to the lower end of the other end of the flipping table. The telescopic arm of the flipping cylinder drives the flipping table to flip around the rotating shafts on both sides, which is used to send out the two-plane vacuum bags placed on the flipping table.

2. The multifunctional bagging device according to claim 1, characterized in that, The linkage mechanism includes a swing rod and two connecting rods. The center of the swing rod is rotatably fixed to the side plate of the clamping platform by a pin. The two ends of the swing rod are respectively hinged to one end of the two connecting rods, and the other ends of the two connecting rods are respectively connected to the two clamping plate bases. The telescopic arm of the clamping drive cylinder is connected to one of the clamping plate bases and indirectly connected to a connecting rod through this clamping plate base. The extension and retraction of the telescopic arm drives the swing rod to swing through a connecting rod, which in turn drives the other connecting rod to move synchronously, forming the relative closing and opening of the two clamping plates.

3. The multifunctional bagging device according to claim 1, characterized in that, The frame is supported on a lifting mechanism, which drives the frame to move up and down.

4. The multifunctional bagging device according to claim 3, characterized in that, The lifting mechanism includes a lifting mechanism base, with channel steel columns installed on both sides of one end of the lifting mechanism base. A taut chain is installed vertically in the groove of the channel steel column. A horizontal shaft passes through the two channel steel columns. Gears are installed on both ends of the horizontal shaft. The two gears mesh with the two chains respectively. The frame is hung on the horizontal shaft. A motor drives the horizontal shaft to rotate through a reducer. The rotating horizontal shaft drives the two gears to rotate and climb or descend along the chain, thereby driving the frame to move up and down.

5. The multifunctional bagging device according to claim 1, characterized in that, The telescopic arm of the bag-making cylinder is connected and fixed to the center point of the bag-making platform. Balance guide rods are respectively set on both sides of the center point of the bag-making platform. The bag-making cylinder is fixed on a crossbeam, which is fixed between two upright plates on the frame. Two pairs of guide wheels are respectively set on the outer side of the two upright plates. The two pairs of guide wheels are set vertically and vertically, and the two guide wheels of each pair of guide wheels are set opposite each other. The balance guide rod passes through the middle of each pair of guide wheels to ensure that the bag-making platform vibrates smoothly up and down.