Packing press

By designing a baling machine with a box, collection components, and baling assembly, the problem of complex structure in lithium battery industry ton bag recycling and packaging machines has been solved, realizing the automation of material recycling and baling, improving efficiency and safety, and reducing energy consumption.

CN223720271UActive Publication Date: 2025-12-26ZHE JIANG RUAN KONG ZHI NENG KE JI GU FEN YOU XIAN GONG SI
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Patent Information

Application Number
CN202520155981.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-12-26
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

In existing technologies, the double-layer packaging ton bag recycling and packaging machines in the lithium battery industry have complex structures, which leads to the disorganized collection of material bags, which may cause entanglement and blockage, affecting the efficiency of fully automated production.

Method used

Design a pressing machine, including a box, a collection component and a pressing assembly. The box has an inlet and outlet on the side, the collection component can move freely, and the pressing assembly can squeeze the material in the recycling chamber. It adopts a serrated extrusion surface and a guide slope, combined with pneumatic drive to achieve automated pressing.

Benefits of technology

The process of material recycling and packaging has been automated, improving packaging efficiency, reducing manual intervention, lowering the labor intensity of operators, enhancing the flexibility and safety of the equipment, and reducing energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a bale pressing machine which comprises a box body, a bag pressing device, a bag pressing device and a bag pressing device. The box body is provided with a recycling cavity used for recycling and baling materials. The collecting part is independently arranged relative to the box body, an inlet and outlet is formed in the side face of the box body, and the collecting part can enter and exit the recycling cavity through the inlet and outlet; and at least one part of the bag pressing assembly is movably arranged in the recycling cavity, and the bag pressing assembly can extrude the materials on the collecting piece so as to recycle and press bags. The recycling and packaging machine solves the problem that in the prior art, a recycling and packaging machine is complex in structure.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a baling press technical field, specifically, relate to a baling press. BACKGROUND

[0002] For lithium battery industry raw material packaging, usually adopt double layer packing, appearance is ton bag bag mostly, after the blanking is completed, for full automation system, empty waste bag recycling packing is difficult, although there is recycling packing machine to material bag in prior art, but the structure is more complex, and cannot arrange material bag in the baling process, leading to ton bag bag collection is in disorder, even possible winding retardation phenomenon influence full automation production efficiency. UTILITY MODEL CONTENTS

[0003] The utility model discloses a baling press, to solve the recycling packing machine structure more complex problem in prior art.

[0004] In order to realize the above -mentioned purpose, according to one aspect of the utility model, provide a kind of baling press, comprising: box, box has the recycling cavity for recycling baling of material;Collection piece, collection piece is independently arranged relative to box, the side of box has import and export, and collection piece can be imported and exported recycling cavity by import and export;Baling assembly, at least part of baling assembly is movably arranged in recycling cavity, and material on collection piece can be extruded to carry out recycling baling.

[0005] Further, the baling assembly has an extrusion surface for extruding the material, and the extrusion surface includes at least one of a curved surface and a plurality of straight surfaces connected by bending.

[0006] Further, the extrusion surface includes a plurality of straight surfaces connected by bending and forms a sawtooth structure.

[0007] Further, the baling assembly includes: a baling piece movably arranged in the recycling cavity and capable of recycling and baling the material on the collection piece, a bottom surface of the baling piece serving as the extrusion surface; and a baling driving piece drivingly connected with the baling piece and driving the movement of the baling piece in the recycling cavity.

[0008] Further, the top surface and at least one side surface of the collection piece are open sides, the material enters the collection piece through the open side of the side surface, and the baling assembly enters the collection piece through the open side of the top surface to press the material downward.

[0009] Further, the bottom of the collection piece has a roller structure. Further, the inner wall of the recycling cavity and / or the collection piece has a guide slope, which inclines toward the center of the recycling cavity in a direction from top to bottom in the longitudinal direction. The guide slope is one or more. When the guide slope is more than one, at least part of the guide slopes are arranged in sequence in the circumferential direction of the recycling cavity.

[0010] Further, the side of the box body also has a feeding port, the feeding port and the outlet are located at opposite sides of the box body, the box body also comprises a feeding door and a closing door, the feeding door is arranged at the feeding port in an openable and closable manner, the closing door is arranged at the outlet in an openable and closable manner, and the feeding door and the closing door are closed when the packing assembly is packing, so as to close the recovery cavity.

[0011] Further, the packing machine also comprises a detection member, the detection member is arranged at the feeding door and / or the closing door, the detection member detects the foreign matter blocking state at the feeding port and / or the outlet, and the action of the feeding door and / or the closing door is controlled according to the foreign matter blocking state.

[0012] Further, the packing machine also comprises a dust collector, the dust collector is communicated with the recovery cavity through a dust removal pipeline, and collects the dust in the recovery cavity.

[0013] The technical scheme of the utility model, by setting up the box body, the packing assembly and the collecting member to form the material recovery and packing system, specifically, the recovery cavity is designed in the box body, which is used for accommodating the material and the collecting member, so as to ensure enough space for the packing of the material. The inlet and outlet are arranged on the side of the box body, and the collecting member is independently arranged with the box body, so that the subsequent collecting member can freely move between the outside of the box body and the recovery cavity. The collecting member can be moved out of the box body for dumping or replacing the material. When one collecting member is full of material, another empty collecting member can be quickly replaced, and the material can be collected and transferred without moving the whole equipment, which greatly improves the flexibility and efficiency of operation. The packing assembly in the recovery cavity can realize the whole working process of the packing action by moving to compress the material. During the material recovery and packing process, the collecting member enters the recovery cavity through the inlet and outlet on the side of the box body, and the material ready for packing is placed in the collecting member. The packing assembly is started and moves downward to compress the material in the collecting member. After the material is packed, the packing assembly returns to the initial position, and the collecting member moves out of the box body through the inlet and outlet to go to the material processing or storage area. On the one hand, the above setting mode realizes the automation of the packing process, improves the packing efficiency, reduces the manual intervention, and thus reduces the labor intensity of the operator and improves the safety. On the other hand, the independent arrangement of the collecting member and the inlet and outlet makes the material collection and transfer more convenient, the material to be packed can be quickly replaced, the use flexibility of the equipment is improved, and the packing energy consumption is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0014] The drawings accompanying the specification of this application form a part of the application and serve to further provide a further understanding of the application, the illustrative embodiments of the application and its description serve to explain the application without limiting the application in any way. In the drawings:

[0015] Figure 1 A packing machine structure schematic view of the utility model is shown;

[0016] Figure 2 It shows Figure 1 Schematic diagram of medium-pressure package structure;

[0017] Figure 3 It shows Figure 1 Rear view of the baling machine;

[0018] Figure 4 It shows Figure 1 A cross-sectional view of a bagging machine.

[0019] The above figures include the following reference numerals:

[0020] 10. Box body; 11. Recycling chamber; 12. Dust removal plate; 13. Sealing door; 14. Feed door; 15. Detection component; 16. Controller; 20. Collection component; 21. Roller structure; 30. Pressing component; 31. Extrusion surface; 40. Pressing drive component; 50. Dust collector; 51. Dust removal pipeline. Detailed Implementation

[0021] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0022] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.

[0023] In this utility model, unless otherwise stated, directional terms such as "upper," "lower," "top," and "bottom" are generally used in relation to the direction shown in the accompanying drawings, or in relation to the vertical, perpendicular, or gravitational direction of the component itself; similarly, for ease of understanding and description, "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.

[0024] To address the problem of complex structures in existing recycling and packaging machines, this invention provides a packing machine.

[0025] like Figures 1 to 4 As shown, a pressing machine in this embodiment includes: a housing 10, a collecting element 20, and a pressing assembly. The housing 10 has a recycling chamber 11 for recycling and pressing materials. The collecting element 20 is independently disposed relative to the housing 10. The side of the housing 10 has an inlet and outlet, and the collecting element 20 can enter and exit the recycling chamber 11 through the inlet and outlet. At least a portion of the pressing assembly is movably disposed in the recycling chamber 11 and is capable of squeezing the material on the collecting element 20 for recycling and pressing.

[0026] The embodiment forms a material recycling and baling system by setting a box 10, a baling assembly and a collecting piece 20. Specifically, the box 10 is internally designed with a recycling cavity 11 for accommodating materials and the collecting piece 20 to ensure sufficient space for baling the materials. The box 10 is provided with an inlet and an outlet on the side, and the collecting piece 20 is independently arranged with the box 10. Thus, the subsequent collecting piece 20 can freely move between the outside of the box 10 and the recycling cavity 11. The collecting piece 20 can be individually removed from the box 10 for dumping or replacing the materials. When one collecting piece 20 is full of materials, another empty collecting piece 20 can be quickly replaced without moving the entire device to collect and transfer the materials, greatly improving the flexibility and efficiency of the operation. The baling assembly in the recycling cavity 11 can compress the materials by moving to realize the baling action. The overall working process is as follows: during the material recycling and baling process, the collecting piece 20 enters the recycling cavity 11 through the inlet and outlet on the side of the box 10, and the materials ready for baling are placed in the collecting piece 20; the baling assembly is started to move downward to compress the materials in the collecting piece 20; after the baling of the materials is completed, the baling assembly returns to the initial position, and the collecting piece 20 is removed from the box 10 through the inlet and outlet to go to the material processing or storage area. The above setting mode, on the one hand, realizes the automation of the baling process, improves the baling efficiency, reduces the manual intervention, and thus reduces the labor intensity of the operator and improves the safety; on the other hand, the independent arrangement of the collecting piece 20 and the design of the inlet and outlet make the material collection and transfer more convenient, the materials to be baled can be quickly replaced, the use flexibility of the device is improved, and the baling energy consumption is reduced.

[0027] The embodiment takes the waste bags as an example to illustrate the materials baled by the baling machine. Of course, the baling machine can also be used to compress other materials.

[0028] As shown in Figure 2 In the embodiment, the baling assembly has an extrusion surface 31 for extruding the materials to optimize the effect and efficiency of the material baling. Specifically, the extrusion surface 31 can be a complete curved surface structure, can be a combination of a part of a curved surface and a part of a straight surface connected by multiple bends, or can be a complete straight surface structure connected by multiple bends. In general, the extrusion surface 31 preferably adopts a non-pure plane structure, so that the extrusion surface 31 forms a certain height difference, thereby reducing the contact area between the extrusion surface 31 and the materials, increasing the pressure of the baling assembly on the materials, and thus the waste bags can be better compressed.

[0029] When the extrusion surface 31 adopts a curved surface design, the special continuous curved shape of the curved surface can better adapt to the shape of certain materials, such as fluffy fiber materials or irregular-shaped waste materials. When the baling assembly is descending to extrude the materials, the curved surface can be compressed along the contour of the materials, thereby ensuring the baling effect. In addition, the curved surface design can better guide the compression direction of the materials, reduce the residual air inside the materials during the baling process, and improve the compactness of the baling.

[0030] The extrusion surface 31 of the embodiment adopts a structure of multiple straight surfaces connected by bending, specifically, the multiple straight surface extrusion surface 31 is composed of multiple straight surface segments connected to each other, and each straight surface segment is connected by bending, thereby forming a structure similar to a sawtooth shape.

[0031] Specifically, the cross section of the extrusion surface 31 of the baling assembly of the embodiment is formed by continuous bending connection of a Chinese character shape, so that the entire cross section forms a specific sawtooth shape. Among them, the bottom straight surface segment part of the Chinese character shape is used for directly contacting and compressing the materials, and the longitudinal part of the Chinese character shape provides structural strength support, ensuring that the extrusion surface 31 can remain stable during the baling process of the materials, while adapting to the shape change of the materials. This design effectively increases the pressure on the materials, improves the efficiency and effect of the baling process of the materials, ensures that the materials can be more tightly packed when being compressed, and improves the density and stability of the baling. On the other hand, the sawtooth structure has high strength, which ensures that the extrusion surface 31 will not deform or be damaged due to high pressure during the baling process of the materials. At the same time, the overall structure is simple, and only a plate-shaped part needs to be stamped to obtain the required sawtooth structure during processing, which is convenient and fast, and has lower cost.

[0032] Optionally, the bending angle of the sawtooth structure and the length of the straight surface segment can be optimized according to the properties of the materials and the baling requirements. For relatively hard materials, a smaller bending angle and a longer straight surface segment can be used, and the sawtooth structure is higher, to ensure sufficient compression force; for fluffy materials, a larger bending angle and a shorter straight surface segment can be used to increase the friction and guide the flow of the materials. In addition, the material of the extrusion surface 31 should have sufficient hardness and wear resistance to ensure that the sawtooth structure can remain stable during long-term use and will not fail due to wear. The specific material is not limited, as long as the structural strength and stability are ensured.

[0033] It should be noted that the curved surface of the extrusion surface 31 can be a regular curved surface structure or an irregular curved surface structure. The multi-bending straight surface design can also be adjusted by adjusting the angles and positions of the straight surface segments to adapt to the baling requirements of different materials and improve the versatility and adaptability of the equipment. The use of the above curved surface or multi-bending connected straight surface can be set according to the actual baling working conditions, as long as the baling effect is ensured.

[0034] AsFigure 1 As shown, in the present embodiment, the pressing assembly comprises a pressing component 30 and a pressing driving component 40, the pressing component 30 is movably arranged in the recovery cavity 11 and can recover and press the materials on the collecting component 20, the bottom surface of the pressing component 30 serves as the extrusion surface 31; the pressing driving component 40 is drivingly connected with the pressing component 30 and drives the movement of the pressing component 30 in the recovery cavity 11. Specifically, the pressing assembly adopts a design composed of the pressing component 30 and the pressing driving component 40 to realize efficient pressing of the materials in the collecting component 20. The pressing component 30 directly contacts and presses the materials, while the pressing driving component 40 provides power to control the movement of the pressing component 30 in the recovery cavity 11 to achieve the purpose of material pressing. In detail, the pressing component 30 is the main execution component in the pressing assembly, the bottom surface thereof is designed as the extrusion surface 31 for directly contacting the materials on the collecting component 20 and applying pressure for pressing, and the size thereof is matched with the size of the collecting component 20 and the recovery cavity 11 to ensure that the pressing component 30 can completely cover the materials during the pressing process, avoiding dispersion or uneven compaction of the materials during the pressing process. The pressing driving component 40 in the present embodiment adopts a pneumatic driving assembly, which is fixedly installed at the top surface of the box body 10, the movable part thereof extends into the recovery cavity 11 and is connected with the bottom of the pressing component 30, so that the pressing component 30 is driven by the pneumatic driving assembly as the driving component to move up and down, thereby realizing the pressing action.

[0035] The pressing component 30 in the present embodiment comprises a bottom plate, reinforcing ribs and a connecting beam, the bottom plate serves as a component for compressing materials, the overall structure thereof adopts an up-and-down zigzag structure to form the required extrusion surface 31, the reinforcing ribs are connected with the top of the bottom plate, and the length direction of the reinforcing ribs is parallel to the extension direction of the bending of the zigzag structure on the bottom plate, that is, the length direction of the reinforcing ribs is perpendicular to the crease direction of the bottom plate, and the reinforcing ribs can be provided in plurality, which are arranged in sequence and at intervals along the crease direction, so that the reinforcing ribs can play a role in improving the structural strength of the bottom plate to avoid deformation of the bottom plate when pressing the materials and prolong the service life. The connecting beam is connected with the reinforcing ribs, and the connecting beam is connected with a plurality of reinforcing ribs at the same time, and the connecting beam is connected with the bottom end of the pressing driving component 40, thereby realizing the effect of connecting the pressing component 30 and the pressing driving component 40 together. Of course, the specific structural form of the pressing component 30 is not limited to the above-mentioned manner in the present embodiment, and other forms of structure can also be adopted according to needs.

[0036] Optionally, the pressing driving component 40 can also adopt a hydraulic driving assembly or other driving devices, as long as it can ensure that the pressing component 30 can move up and down stably in the recovery cavity 11 under the driving of the pressing driving component 40, the extrusion surface 31 can remain stable, the pressing effect is not affected, and interference with the box body 10 or other components is avoided.

[0037] As Figure 1As shown, in the present embodiment, the top surface and at least one side surface of the collecting member 20 are open sides, the material is fed into the collecting member 20 from the open side of the side surface, and the baling assembly is lowered into the collecting member 20 from the open side of the top surface. Specifically, the top surface of the collecting member 20 is designed as an open side, which allows the baling assembly to directly enter the interior of the collecting member 20 to vertically compress the material, thereby ensuring the compaction effect of the material. The at least one side surface is designed as an open side for feeding the material, which allows the material to be directly placed or poured into the collecting member 20 from the side surface, thereby avoiding the material scattering or clogging problems and the inconvenience of placement that may be caused by the conventional top feeding method. The collecting member 20 of the present embodiment has a hollow rectangular structure with the top completely open and one side surface completely open, which allows the material to be placed from both the top and the side surface, ensures that the material can be uniformly distributed in the collecting member 20, avoids accumulation or clogging, and guarantees the efficiency and safety of material feeding. The size of the transverse cross section of the inner cavity of the collecting member 20 should be greater than the area of the baling member 30, so that the pressing surface 31 of the baling member 30 can smoothly press into the interior of the collecting member 20, contact the material in the collecting member 20, and vertically compress the material.

[0038] Optionally, the overall size of the collecting member 20, the size of the open side, and the position of the opening can be optimally designed according to the size and flowability of the material, as long as the material can smoothly enter, and the baling assembly can smoothly enter and exit without interference.

[0039] As shown, Figure 1 In the present embodiment, the bottom of the collecting member 20 has a roller structure 21. Specifically, the roller structure 21 can be provided with multiple rollers as needed. The roller structure 21, as a component of the bottom of the collecting member 20, is arranged at the position close to the four feet of the bottom of the collecting member 20 to effectively support the weight of the collecting member 20. At the same time, the collecting member 20 can be moved into or out of the recycling cavity 11 of the baling machine through the roller structure 21, thereby reducing the operation complexity and labor intensity in the material recycling process and improving the production efficiency.

[0040] Optionally, the specific form of the roller can be selected according to the weight of the collecting member 20 and the ground conditions, such as a universal wheel, a directional wheel, or a heavy-duty industrial wheel, to ensure the stability of the collecting member 20 during movement. At the same time, the axle of the roller should be made of high-strength material, such as alloy steel, to withstand the weight of the collecting member 20 and its contained material, and to ensure the durability and reliability of the roller under long-term use. The roller structure 21 at the bottom of the collecting member 20 can also be equipped with a corresponding guide groove or track to guide the movement of the collecting member 20 on the preset path and avoid position deviation or collision. The design of the roller structure 21 should also fully consider the maximum load of the collecting member 20 to ensure smooth movement of the roller under full load and avoid damage to the roller due to excessive load.

[0041] As shown,Figure 4 As shown, in the present embodiment, the inner wall of the recovery cavity 11 and / or the collecting member 20 has a guide slope, which is inclined towards the direction close to the center of the recovery cavity 11 in the longitudinal direction from top to bottom, that is, the guide slope is inclined inward from top to bottom, so that the material and the pressing member 30 can be guided by the guide slope to ensure the accuracy of the position when entering the collecting member 20, avoiding the deviation of the material to the position where the material cannot be pressed, and also avoiding the situation that the pressing member 30 is pressed on the collecting member 20, ensuring the stability and safety of the overall structure. Moreover, it can also avoid the accumulation, scattering or uneven distribution of the material during the collecting and compressing process, ensuring that the material can be uniformly and tightly compressed, thereby improving the pressing efficiency and the compaction density of the material. The specific position of the guide slope can be adjusted as needed, which can be set at the middle and upper positions of the inner wall of the recovery cavity 11 or at the top of the inner wall of the collecting member 20. The number of guide slopes can be adjusted as needed, which can be one or more. The guide slope of the present embodiment is provided with multiple guide slopes, and the guide slopes are arranged on the circumferential side of the recovery cavity 11 and the collecting member 20, so that the guide slopes are arranged in sequence along the circumference of the recovery cavity 11, at this time, the guide slopes are inclined towards each other from top to bottom, forming an inverted conical structure, so that each direction is subjected to a guide action.

[0042] As Figures 1 to 4As shown, in this embodiment, the side of the box 10 also has a feed inlet. The feed inlet and the inlet / outlet are located on opposite sides of the box 10. The box 10 also includes a feed door 14 and a closing door 13. The feed door 14 is closable at the feed inlet, and the closing door 13 is closable at the inlet / outlet. When the pressing assembly presses the material, both the feed door 14 and the closing door 13 are closed to seal the recycling chamber 11. Specifically, one side of the box 10 is the feed inlet, and the feed door 14 is provided on the feed inlet. When it is necessary to put material into the recycling chamber 11 from the feed inlet, the feed door 14 is opened. When it is not necessary to feed material or when the pressing assembly is running, the feed door 14 is closed. The other side of the box 10 is the inlet / outlet, and the closing door 13 is provided on the inlet / outlet. When it is not necessary to enter or exit the collection unit 20 or when the pressing assembly is running, the closing door 13 is in the closed state. During the compression process of the material by the compression assembly, the sealing door 13 and the feed door 14 remain closed, ensuring that the compression process takes place in a closed environment and avoiding material leakage and interference from external factors. After compression, the sealing door 13 opens, allowing the collecting component 20 to smoothly transfer the compressed material through the inlet and outlet to the next processing stage, such as material storage or waste disposal. With the above setup, in use, the sealing door 13 can be opened first, the collecting component 20 can be pushed into the recovery chamber 11, then the feed door 14 can be opened, and the material can be conveyed into the collecting component 20 through the feed inlet. Then, the sealing door 13 and the feed door 14 can be closed, and the compression assembly can start compression. After compression, the sealing door 13 opens to push out the collecting component 20, thus completing one compression cycle. The whole process is simple, smooth, and highly safe. Of course, in addition to the above method, the feed inlet and feed door 14 can also be omitted, and the material can be placed in the collecting component 20 in advance, and the collecting component 20 can be pushed into the recovery chamber 11 through the inlet and outlet. It should be noted that, based on the above-described structural form of this embodiment, the two feeding methods can be switched during actual use, thus providing greater flexibility.

[0043] In this embodiment, a sloped structure is also provided on the side of the feed inlet. This sloped structure works in conjunction with the collecting member 20, tilting inwards towards the inside of the recovery chamber 11 along the direction in which the collecting member 20 enters. This allows the collecting member 20 to be guided and aligned with the recovery chamber 11 as it enters, ensuring a stable and reliable entry and improving operational convenience. Furthermore, this embodiment provides sloped structures on both opposite sides of the feed inlet, further enhancing the guiding effect.

[0044] like Figure 1 and Figure 3As shown, in the embodiment, the baling machine further comprises a detection member 15, the detection member 15 is arranged at the feeding door 14 and / or the closing door 13, the detection member 15 can adopt a sensor or the like component, the detection member 15 detects the foreign matter blocking state at the feeding port and / or the outlet, and controls the action of the feeding door 14 and / or the closing door 13 according to the foreign matter blocking state. Specifically, when the detection member 15 located at the feeding door 14 and the closing door 13 senses that the feeding door 14 or the closing door 13 is blocked by material, the corresponding feeding door 14 or closing door 13 cannot be closed. Correspondingly, the baling machine further comprises a controller 16, the controller 16 is electrically connected between the detection member 15, the controller 16 can adopt a control panel or the like component, the controller 16 can receive the detection signal of the detection member 15, and judge the opening or closing state of the feeding door 14 and the closing door 13 according to the detection signal, when the feeding door 14 or the closing door 13 is not completely closed, the controller 16 does not trigger the baling assembly to perform the next baling work, and the whole baling machine is in a stop state, so as to remind the personnel to process. When the foreign matter at the feeding door 14 or the closing door 13 is processed clean, the detection state of the detection member 15 at the feeding door 14 and the closing door 13 is normal, the normal signal is transmitted to the controller 16, and the baling assembly is triggered to work normally.

[0045] As shown, Figures 1 to 4 In the embodiment, the inner wall of the recovery cavity 11 is provided with a dust removal plate 12, and the dust removal plate 12 is provided with a slot hole. The baling machine further comprises a dust collector 50, the dust collector 50 is communicated with the recovery cavity 11 through a dust removal pipeline 51, and collects the dust in the recovery cavity 11. Specifically, one end of the dust removal pipeline 51 is communicated with the dust collector 50, and the other end is connected with the dust removal plate 12. When baling, the dust in the receiving cavity is sucked into the dust collector 50 through the slot hole arranged on the dust removal plate 12, and then the dust collector 50 is started. The above design ensures that the dust can be discharged and treated in time during the baling process, ensures the cleanliness of the recovered material, realizes the dust-free of the box body 10, and avoids the secondary pollution of the recovered material. Because the working environment of the dust collector 50 is harsh, the dust collector 50, the dust removal pipeline 51 and the dust in the recovery cavity 11 need to be cleaned and maintained regularly.

[0046] Optionally, the dust removal pipeline 51 is sealingly connected between the recovery cavity 11 and the dust collector 50, so as to prevent dust leakage during transmission. The dust removal pipeline 51 is usually made of corrosion-resistant and wear-resistant materials, such as stainless steel or plastic pipe, to ensure the long-term stability and safety of the pipeline. The diameter and length of the pipeline can be optimized according to the actual dust production, transmission distance and pressure drop, etc. as long as the efficiency and effect of dust transmission are ensured.

[0047] The specific working process of the baling machine of the embodiment is as follows:

[0048] 1, the material to be pressed is placed near the inlet.

[0049] 2, the inlet door 14 is opened: the operator or the automatic device controls the inlet door 14 to open, allowing the material to enter the recycling cavity 11 through the inlet.

[0050] 3, material input: the material is pushed into the containing cavity through the inlet or using the collecting piece 20, after smoothly entering the recycling cavity 11, the detection device detects whether there is foreign matter at the inlet door 14 or the closing door 13, if not, the inlet door 14 and the closing door 13 are closed subsequently, if the detection piece 15 detects that there is foreign matter at the inlet door 14 or the closing door 13, an alarm is triggered, and the operator cleans the foreign matter. After the detection piece 15 detects normally again after cleaning is completed, the closing door 13 and the inlet door 14 are normally closed.

[0051] 4, material compaction: the pressing assembly starts to work, and the material in the recycling cavity 11 is compacted, at this time, the inlet door 14 and the closing door 13 are in the closed state, ensuring that the pressing process is carried out in a closed environment.

[0052] 5, material transfer: after the material compaction is completed, the closing door 13 is opened, and the operator or the automatic device smoothly transfers the pressed material to the next processing link through the inlet and outlet. The closing door 13 is subsequently closed, preparing for the next round of material input and pressing operation.

[0053] It should be noted that the plurality in the above embodiment means at least two.

[0054] From the above description, it can be seen that the above-mentioned embodiments of the utility model realize the following technical effects:

[0055] 1, the pressing process is automated, the pressing efficiency is improved, manual intervention is reduced, the labor intensity of the operator is reduced, and the safety is improved.

[0056] 2, the design of the independent collecting piece and the inlet and outlet makes the material collection and transfer more convenient, the material to be pressed can be quickly replaced, the use flexibility of the equipment is improved, and the pressing energy consumption is reduced.

[0057] 3, the sawtooth structure has high strength, which ensures that the extrusion surface 31 will not be deformed or damaged due to high pressure during the material pressing process, at the same time, the overall structure is simple, only a plate-shaped piece needs to be punched during processing to obtain the required sawtooth structure, which is convenient and fast, and the cost is lower.

[0058] 4, the top and the side can place the material, which ensures that the material can be evenly distributed in the collecting piece, avoids accumulation or blockage, and ensures the efficiency and safety of material feeding.

[0059] 5. During the compression process of the material, the sealing door and feed door remain closed to ensure that the compression process takes place in a closed environment, avoiding material leakage and interference from external factors. This ensures that dust generated during the compression process can be discharged in a timely manner, guaranteeing the cleanliness of the recycled material and preventing secondary contamination.

[0060] 6. Dust generated during the pressing process can be discharged in a timely manner, ensuring the cleanliness of the recycled materials, achieving a dust-free environment inside the box, and avoiding secondary pollution of the recycled materials.

[0061] Obviously, the embodiments described above are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of this utility model.

[0062] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0063] It should be noted that the terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in sequences other than those illustrated or described herein.

[0064] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A bale press characterized in that, The invention relates to a baling machine comprising: a box (10) having a recycling cavity (11) for recycling baling of materials; a collecting member (20) independently arranged relative to the box (10), the side of the box (10) having an inlet and outlet, the collecting member (20) being capable of entering and exiting the recycling cavity (11) through the inlet and outlet; a baling assembly, at least a part of which is movably arranged in the recycling cavity (11) and capable of extruding the materials on the collecting member (20) for recycling baling.

2. The packer of claim 1, wherein, The baling assembly has an extruding surface (31) for extruding the materials, the extruding surface (31) comprising at least one of a curved surface, a plurality of straight surfaces connected by bending.

3. The packer of claim 2, wherein, The extruding surface (31) comprises a plurality of straight surfaces connected by bending and forms a zigzag structure.

4. The packer of claim 2, wherein, The baling assembly comprises: a baling member (30) movably arranged in the recycling cavity (11) and capable of recycling baling of the materials on the collecting member (20), the bottom surface of the baling member (30) serving as the extruding surface (31); a baling driving member (40) drivingly connected with the baling member (30) and driving the movement of the baling member (30) in the recycling cavity (11).

5. The baling press according to any one of claims 1 to 4, characterized in that, The top surface and at least one side surface of the collecting member (20) are open sides, the materials entering the collecting member (20) through the open sides of the side surfaces, the baling assembly entering the collecting member (20) through the open side of the top surface to press down the materials.

6. The packer of claim 5, wherein, The bottom of the collecting member (20) has a roller structure (21).

7. The baling machine of any one of claims 1 to 4, wherein, The inner wall of the recycling cavity (11) and / or the collecting member (20) has a guide slope, which is inclined towards the center of the recycling cavity (11) in the direction from top to bottom in the longitudinal direction, the guide slope being one or more, when the guide slope is more than one, at least part of the guide slopes being arranged in sequence along the circumference of the recycling cavity (11).

8. The packer according to any one of claims 1 to 4, characterized in that, The side of the box (10) further has a material inlet, the material inlet and the inlet and outlet being located on opposite sides of the box (10), the box (10) further comprising a material inlet door (14) and a closing door (13), the material inlet door (14) being openably and closably arranged at the material inlet, the closing door (13) being openably and closably arranged at the inlet and outlet, the material inlet door (14) and the closing door (13) being closed to seal the recycling cavity (11) when the baling assembly is baling.

9. The packer of claim 8, wherein, The baling machine further comprises a detection member (15), the detection member (15) being arranged at the material inlet door (14) and / or the closing door (13), the detection member (15) detecting the foreign matter blocking state at the material inlet and / or the inlet and outlet and controlling the action of the material inlet door (14) and / or the closing door (13) according to the foreign matter blocking state.

10. The packer according to any one of claims 1 to 4, characterized in that, The baling machine further comprises a dust remover (50) communicating with the recycling cavity (11) through a dust removal pipeline (51) and collecting dust in the recycling cavity (11).