L-shaped side feeding type device for high-speed film package
By designing a high-speed film-wrapping L-shaped side-entry device, the shortcomings of existing equipment in terms of production efficiency, quality, and cost optimization have been solved, achieving high-speed, stable, and flexible packaging effects to meet the stable transportation needs of different boxes.
Patent Information
- Application Number
- CN202422975851.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing packaging equipment is insufficient in improving production efficiency, ensuring packaging quality, and optimizing production costs, making it difficult to meet the market's demand for high-speed, stable, and flexible packaging.
A high-speed film-packing L-shaped side-entry device was designed, comprising a processing box, a packaging forming machine, a flow-guiding bending support, and a flow-guiding transport structure. It utilizes horizontal transport components and extruded packaged food for stable operation. Through the cooperation of side wall telescopic shafts and extrusion fixing bolts, it achieves flexible adjustment and stable transport of the box. Combined with arc-shaped extrusion flexible plates to provide cushioning, it ensures the stability and adaptability of the transport process.
It improves the continuity and stability of the packaging process, enhances the adaptability and flexibility of the equipment, reduces damage to the boxes, ensures the efficiency and reliability of the transportation process, and enables stable transportation of different boxes.
Smart Images

Figure CN223778726U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food packaging technology, specifically a high-speed film wrapping L-shaped side-entry device. Background Technology
[0002] With the rapid expansion of the food packaging industry, the market demand for advanced packaging equipment is showing an increasing trend, especially in key areas such as improving production efficiency, ensuring excellent packaging quality, and optimizing production costs. Against this backdrop, the high-speed film-wrapping L-type side-entry device, as an innovative packaging solution, precisely meets the current market's urgent needs with its ultra-high-speed packaging capabilities, consistent packaging quality, and user-friendly interface. Therefore, the research and development of this project not only carries significant practical value but also indicates a broad and promising market prospect. In view of this, this project arose from in-depth research into the aforementioned issues. Utility Model Content
[0003] To achieve the above objectives, this utility model is implemented through the following technical solution: a high-speed film packaging L-shaped side-entry device, comprising: a processing box, a packaging forming machine, a flow-guiding bending bracket, and a flow-guiding transport structure, wherein the packaging forming machine is installed inside the processing box, the flow-guiding bending bracket is inserted into the processing box, and the flow-guiding transport structure is installed on the processing box and the flow-guiding bending bracket;
[0004] The diversion and transportation structure includes: several concave fitting flow-limiting blocks, several horizontal extrusion blocks, several horizontal I-shaped wheels, several horizontal connecting T-shaped rods, several concave limiting extrusion plates, a pair of arc-shaped concave extrusion flexible plates, several side wall telescopic shafts, several limiting fitting shaft tubes, several side wall extrusion blocks, several extrusion fixing bolts, and horizontal transportation components.
[0005] A plurality of concave-shaped flow-limiting blocks are evenly fitted onto the flow-guiding bending bracket. A plurality of horizontal extrusion blocks are respectively installed in pairs parallel on the plurality of pairs of concave-shaped flow-limiting blocks. A plurality of horizontal I-shaped wheels are respectively movably inserted between the plurality of horizontal extrusion blocks. A plurality of horizontal connecting T-shaped rods are respectively inserted into the plurality of horizontal I-shaped wheels. A plurality of concave-shaped limiting extrusion plates and a pair of arc-shaped concave extrusion flexible plates are respectively provided with horizontal telescopic slots. The plurality of concave-shaped limiting extrusion plates are respectively movably inserted through the plurality of horizontal telescopic slots. The movable assembly is mounted on several horizontal connecting T-shaped rods. Several concave assembly flow-limiting blocks are respectively provided with horizontal telescopic grooves. Several limiting assembly shaft tubes are respectively inserted into the inner side of several horizontal telescopic grooves. Several side wall telescopic shafts are respectively movably inserted into the inner side of several limiting assembly shaft tubes. Several extrusion fixing bolts are respectively movably inserted into the inner side of several limiting assembly shaft tubes. Several side wall extrusion blocks are respectively installed on several side wall telescopic shafts. The horizontal transport assembly is installed on the flow-guiding bending bracket and the processing box.
[0006] Preferably, the horizontal transport assembly includes: two pairs of chain-type lifters, one pair of horizontal belt conveyors, several horizontal transport shafts, several transport wheels, and several horizontal transport drive motors;
[0007] Two pairs of chain-type lifting devices are installed inside the processing box, one pair of horizontal belt conveyors are installed on the two pairs of chain-type lifting devices, several horizontal transport shafts are evenly inserted into the diversion bending bracket, several transport wheels are respectively installed on several horizontal transport shafts, and several horizontal transport drive motors are respectively installed on several horizontal transport shafts.
[0008] Preferably, the processing box is equipped with several infrared object scanners.
[0009] Preferably, pressure sensors are installed on the movable horizontal belt conveyor.
[0010] Preferably, the drainage bending bracket is provided with a concave baffle bracket, the concave baffle bracket is provided with a pair of lifting threaded rods, the pair of lifting threaded rods are respectively provided with a pair of lifting threaded tubes and a pair of lifting blocking limit blocks, and the pair of lifting blocking limit blocks are provided with lifting blocking plates.
[0011] Preferably, each of the pair of lifting threaded rods is provided with a lifting threaded handle.
[0012] Beneficial effects
[0013] This invention provides a high-speed film-packing L-shaped side-entry device. It offers the following advantages: Through a horizontal transport component, the extruded packaged food can be stably and horizontally transported to the guiding bending support, ensuring the continuity and stability of the packaging process. By utilizing the positional change of the side-wall telescopic shaft within the limiting sleeve shaft tube, combined with the fixing action of the extrusion fixing bolts, the distance between the side-wall extrusion blocks can be flexibly adjusted, thereby enabling active lateral limiting of the box body through the concave limiting extrusion blocks. This design allows the system to be quickly adjusted according to different box sizes, improving the adaptability and flexibility of the packaging. Under the extrusion action of the box body, the concave limiting extrusion blocks move to both sides, and through the linkage mechanism of the horizontally connected T-shaped rod and the horizontal I-shaped wheel, the distance between a pair of concave limiting extrusion plates is stably changed. This adaptive limiting and guiding effect ensures the stability and accuracy of the box during transportation. The arc-shaped concave compression flexible blocks provide cushioning and limiting during box movement, effectively reducing impact and damage to the box and improving packaging quality. By changing the position of several concave fitted flow-limiting blocks, the system can be angled according to actual needs, further enhancing its adaptability and flexibility. Two pairs of chain-type lifters ensure stable lifting and lowering of the horizontal belt conveyor, cooperating with the horizontal belt conveyor to stably transport the packaging boxes, ensuring the smoothness and efficiency of the entire packaging process. Multiple horizontal transport drive motors drive the horizontal transport shaft to rotate, thereby driving the transport wheels to rotate, achieving stable horizontal transport of the packaging boxes. This design not only improves transportation efficiency but also ensures the stability and reliability of the transportation process. Attached Figure Description
[0014] Figure 1 This is a three-dimensional schematic diagram of the high-speed membrane L-shaped side-entry device of this utility model.
[0015] Figure 2 This is a front sectional view of the high-speed membrane encapsulation L-shaped side-entry device of this utility model.
[0016] Figure 3 This is a top sectional view of the high-speed membrane-encapsulated L-shaped side-entry device of this utility model.
[0017] In the diagram: 1. Processing box; 2. Packaging forming machine; 3. Concave sleeve flow limiting block; 4. Horizontal extrusion block; 5. Horizontal I-shaped wheel; 6. Horizontal connecting T-shaped rod; 7. Concave limiting extrusion plate; 8. Arc-shaped concave extrusion flexible plate; 9. Side wall telescopic shaft; 10. Limiting sleeve shaft tube; 11. Side wall extrusion block; 12. Extrusion fixing bolt; 13. Chain-type lifting device; 14. Horizontal belt conveyor; 15. Horizontal transport shaft; 16. Transport wheel; 17. Horizontal transport drive motor; 18. Concave baffle bracket; 19. Lifting threaded rod; 20. Lifting threaded tube; 21. Lifting blocking limiting block; 22. Lifting blocking plate. Detailed Implementation
[0018] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0019] Those skilled in the art should connect all electrical components and their compatible power supplies in this case via wires. Appropriate controllers and encoders should be selected according to the actual situation to meet control requirements. The specific connection and control sequence should refer to the working principle described below, where the electrical components are connected in sequence. The detailed connection methods are well-known in the art. The following mainly introduces the working principle and process, and will not describe the electrical control further.
[0020] Example
[0021] like Figure 1-3 As shown, the packaging forming machine 2 is installed inside the processing box 1, the flow guiding bending bracket is inserted into the processing box 1, and the flow guiding and transporting structure is installed on the processing box 1 and the flow guiding bending bracket;
[0022] Specifically, the diversion and transportation structure includes: several concave-shaped fitting flow-limiting blocks 3, several horizontal extrusion blocks 4, several horizontal I-shaped wheels 5, several horizontal connecting T-shaped rods 6, several concave-shaped limiting extrusion plates 7, a pair of arc-shaped concave extrusion flexible plates 8, several side wall telescopic shafts 9, several limiting fitting shaft tubes 10, several side wall extrusion blocks 11, several extrusion fixing bolts 12, and a horizontal transportation component;
[0023] Specifically, several concave-shaped flow-limiting blocks are evenly fitted onto the flow-guiding bending bracket; several horizontal extrusion blocks 4 are respectively installed in pairs parallel on several pairs of concave-shaped flow-limiting blocks; several horizontal I-shaped wheels 5 are respectively movably inserted between several horizontal extrusion blocks 4; several horizontal connecting T-shaped rods 6 are respectively inserted on several horizontal I-shaped wheels 5; several concave-shaped limiting extrusion plates 7 and a pair of arc-shaped concave extrusion flexible plates 8 are respectively provided with horizontal telescopic slots, and several concave-shaped limiting extrusion plates 7 move through several horizontal telescopic slots. The system is fitted onto several horizontal connecting T-shaped rods 6, and several concave fitting flow-limiting blocks are respectively provided with horizontal telescopic grooves. Several limiting fitting shaft tubes 10 are respectively inserted into the inner side of several horizontal telescopic grooves. Several side wall telescopic shafts 9 are respectively movably inserted into the inner side of several limiting fitting shaft tubes 10. Several extrusion fixing bolts 12 are respectively movably inserted into the inner side of several limiting fitting shaft tubes 10. Several side wall extrusion blocks 11 are respectively installed on several side wall telescopic shafts 9. The horizontal transport assembly is installed on the flow-guiding bending bracket and the processing box 1.
[0024] It should be noted that, as described above, the extruded packaged food is stably and horizontally transported to the guide bending bracket by the horizontal transport component. The guide transport structure stably transports the food packaging box. By changing the position of the side wall telescopic shaft 9 inside the limiting sleeve shaft tube 10, the side wall telescopic shaft 9 is pressed and fixed by the pressing fixing bolt 12. The side wall telescopic shaft 9 drives the side wall pressing blocks 11 on it. The distance between several side wall pressing blocks 11 is adjusted. The side wall pressing blocks 11 limit several concave limiting pressing blocks. The concave limiting pressing blocks move the box on the horizontal transport component. The two sides are active limiters. The concave limit extrusion blocks move to both sides due to the compression of the box. The two pairs of concave limit extrusion blocks drive the horizontal connecting T-shaped rods 6 on them. The horizontal connecting T-shaped rods 6 drive the horizontal I-shaped wheels 5 on them. The horizontal I-shaped wheels 5 move horizontally between a pair of horizontal extrusion blocks 4, thereby changing the distance between a pair of concave limit extrusion plates 7. This achieves the effect of limiting and guiding the flow according to different box structures. At the same time, the arc-shaped concave extrusion flexible blocks provide buffering and limiting for the box structure during operation. By changing the position of several concave set flow limiting blocks, the angle can be adjusted.
[0025] like Figure 1-3 As shown, the horizontal transport assembly includes: two pairs of chain-type lifters 13, a pair of horizontal belt conveyors 14, several horizontal transport shafts 15, several transport wheels 16, and several horizontal transport drive motors 17.
[0026] Specifically, two pairs of chain-type lifting devices 13 are installed inside the processing box 1, one pair of horizontal belt conveyors 14 are installed on the two pairs of chain-type lifting devices 13, several horizontal transport shafts 15 are evenly inserted into the diversion bending bracket, several transport wheels 16 are respectively installed on several horizontal transport shafts 15, and several horizontal transport drive motors 17 are respectively installed on several horizontal transport shafts 15;
[0027] It should be noted that, as described above, the horizontal belt conveyor 14 is stably lifted and lowered by two pairs of chain-type lifting devices 13, and the packaging box is stably transported by the horizontal belt conveyor 14. Several horizontal transport drive motors 17 operate, driving the horizontal transport shafts 15 on them to rotate. The several horizontal transport shafts 15 drive the several transport wheels 16 on them to rotate, and the several transport wheels 16 stably transport the packaging box horizontally.
[0028] As a preferred option, the processing box 1 is further equipped with several infrared object scanners.
[0029] As a preferred embodiment, pressure sensors are further provided on the movable horizontal belt conveyor 14.
[0030] As a preferred embodiment, the drainage bending bracket is further provided with a pair of lifting threaded rods 19 on the concave baffle bracket 18, a pair of lifting threaded tubes 20 and a pair of lifting blocking limit blocks 21 on the pair of lifting threaded tubes 20 respectively, and a lifting blocking plate 22 on the pair of lifting blocking limit blocks 21.
[0031] As a preferred embodiment, furthermore, each of the pair of lifting threaded rods 19 is provided with a lifting threaded handle.
[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A high-speed membrane encapsulation L-shaped side-entry device, comprising: A processing box, a packaging forming machine, a flow guiding and bending bracket, and a flow guiding and transporting structure, characterized in that the packaging forming machine is installed inside the processing box, the flow guiding and bending bracket is inserted into the processing box, and the flow guiding and transporting structure is installed on the processing box and the flow guiding and bending bracket; The diversion and transportation structure includes: several concave fitting flow-limiting blocks, several horizontal extrusion blocks, several horizontal I-shaped wheels, several horizontal connecting T-shaped rods, several concave limiting extrusion plates, a pair of arc-shaped concave extrusion flexible plates, several side wall telescopic shafts, several limiting fitting shaft tubes, several side wall extrusion blocks, several extrusion fixing bolts, and horizontal transportation components. A plurality of concave-shaped flow-limiting blocks are evenly fitted onto the flow-guiding bending bracket. A plurality of horizontal extrusion blocks are respectively installed in pairs parallel on the plurality of pairs of concave-shaped flow-limiting blocks. A plurality of horizontal I-shaped wheels are respectively movably inserted between the plurality of horizontal extrusion blocks. A plurality of horizontal connecting T-shaped rods are respectively inserted into the plurality of horizontal I-shaped wheels. A plurality of concave-shaped limiting extrusion plates and a pair of arc-shaped concave extrusion flexible plates are respectively provided with horizontal telescopic slots. The plurality of concave-shaped limiting extrusion plates are respectively movably inserted through the plurality of horizontal telescopic slots. The movable assembly is mounted on several horizontal connecting T-shaped rods. Several concave assembly flow-limiting blocks are respectively provided with horizontal telescopic grooves. Several limiting assembly shaft tubes are respectively inserted into the inner side of several horizontal telescopic grooves. Several side wall telescopic shafts are respectively movably inserted into the inner side of several limiting assembly shaft tubes. Several extrusion fixing bolts are respectively movably inserted into the inner side of several limiting assembly shaft tubes. Several side wall extrusion blocks are respectively installed on several side wall telescopic shafts. The horizontal transport assembly is installed on the flow-guiding bending bracket and the processing box.
2. The high-speed membrane encapsulation L-shaped side-entry device according to claim 1, characterized in that, The horizontal transport assembly includes: two pairs of chain-type lifters, one pair of horizontal belt conveyors, several horizontal transport shafts, several transport wheels, and several horizontal transport drive motors. Two pairs of chain-type lifting devices are installed inside the processing box, one pair of horizontal belt conveyors are installed on the two pairs of chain-type lifting devices, several horizontal transport shafts are evenly inserted into the diversion bending bracket, several transport wheels are respectively installed on several horizontal transport shafts, and several horizontal transport drive motors are respectively installed on several horizontal transport shafts.
3. The high-speed membrane encapsulation L-shaped side-entry device according to claim 2, characterized in that, The processing box is equipped with several infrared object scanners.
4. The high-speed membrane encapsulation L-shaped side-entry device according to claim 3, characterized in that, Pressure sensors are installed on each of the horizontal belt conveyors.
5. The high-speed membrane encapsulation L-shaped side-entry device according to claim 4, characterized in that, The drainage bending bracket is provided with a concave baffle bracket, the concave baffle bracket is provided with a pair of lifting threaded rods, the pair of lifting threaded rods are respectively provided with a pair of lifting threaded tubes and a pair of lifting blocking limit blocks, and the pair of lifting blocking limit blocks are provided with lifting blocking plates.
6. The high-speed membrane encapsulation L-shaped side-entry device according to claim 5, characterized in that, Each of the pair of lifting threaded rods is provided with a lifting threaded handle.