Buffer type material pressing and packing device

Through the elastic parts and guide structure of the buffer type pressing packaging device, the compression uneven problem caused by the difference in the diameter of the roll material in the traditional rolling method is solved, synchronous compression and stable compression are achieved, and the compression quality and transportation efficiency of the roll material are improved.

CN223162156UActive Publication Date: 2025-07-29HANGZHOU HENGLI CUTTING EQUIP
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Patent Information

Application Number
CN202422883761.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-07-29
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

The traditional rolling method cannot effectively adapt to the difference in diameter of the metal roll after slicing, resulting in some roll being pressed and some roll being pressed loose, the compression quality is poor, and the compression block is easily shaken and displaced.

Method used

The buffer type press packing device is adopted, and the pressing blocks and guide structures connected by elastic parts are used to ensure that each pressing block adapts to the minor difference in the diameter of the coil, achieves synchronous compression, and prevents shaking through the guide structure.

Benefits of technology

Synchronous compression of each coil is achieved, avoiding the surface damaging, ensuring the compression quality, and preventing shaking and displacement, improving the efficiency of coil storage and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a buffering type material pressing and packing device, and belongs to the technical field of coiled material packing. The device comprises a support, a cross beam is arranged below the support, the cross beam is connected with the support through a vertical lifting assembly, a plurality of pressing blocks arranged in the transverse direction are arranged at the bottom of the cross beam, each pressing block is connected with the cross beam through an elastic piece, the elastic pieces enable the pressing blocks to have the buffering function, and a cross-shaped storage arm is arranged below the pressing blocks. Synchronous pressing of the coiled materials can be achieved under the condition that the surfaces of the coiled materials are not crushed, the situation that some coiled materials are pressed tightly and some coiled materials are pressed loosely can be avoided, and the pressing quality of the coiled materials is good; and when the pressing block presses the coiled material downwards, shaking and displacement cannot occur, and the pressing quality of the coiled material is ensured.
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Description

Technical Field

[0001] The utility model belongs to the technical field of coil packing, and relates to a buffer type material pressing and packing device. Background Art

[0002] If the slit metal coils are not tightly pressed, they may become loose or deformed due to their own weight or external factors, resulting in coil dispersion and misalignment. Therefore, it is necessary to press and pack the metal coils, which is of great significance for improving storage efficiency and reducing transportation costs. The traditional coil pressing method is to drive the entire pressing roller to press the arranged coils. However, in the actual production process, the coil diameters of each slit coil are different, which will inevitably cause some coils to be pressed tightly, some coils to be pressed loosely, and even some coils not to be pressed at all when the pressing roller presses down, resulting in poor pressing quality of the coils. Content of the Utility Model

[0003] The purpose of the utility model is to provide a buffer type material pressing and packing device for the above problems.

[0004] To achieve the above purpose, the utility model adopts the following technical solutions:

[0005] A buffer type material pressing and packing device includes a bracket. A cross beam is arranged below the bracket, and the cross beam is connected to the bracket through a vertical lifting component. A plurality of pressing blocks arranged horizontally are provided at the bottom of the cross beam. Each pressing block is connected to the cross beam through an elastic member, and the elastic member enables the pressing block to have a buffer function. A cross-shaped storage arm is arranged below the plurality of pressing blocks.

[0006] Since each pressing block has a buffer function and is independent of each other, each pressing block can adapt to the diameter micro difference of its corresponding coil, and at the same time does not damage the surface of the coil, realizing the synchronous pressing of each coil and avoiding the situation that some coils are pressed tightly while some are pressed loosely.

[0007] In the above buffer type material pressing and packing device, the elastic member includes a compression spring. The upper end of the compression spring is fixed on the cross beam, and the lower end is fixed on the pressing block.

[0008] The compression spring enables the pressing block to have a buffer function, so that each pressing block can adapt to the diameter micro difference of its corresponding coil, and at the same time does not damage the surface of the coil, realizing the synchronous pressing of each coil.

[0009] In the above buffer type material pressing and packing device, a guiding structure is arranged between the pressing block and the cross beam.

[0010] The guiding structure plays a guiding role for the pressing block, ensuring that the pressing block moves in the vertical direction, preventing the pressing block from shaking and shifting, and guaranteeing the pressing quality of the coil.

[0011] In the above-mentioned buffer type material pressing and packing device, the guiding structure includes a guiding slot provided at the bottom of the cross beam, and the pressing block is arranged in the guiding slot.

[0012] The guiding slot plays a guiding role in the vertical direction for the pressing block, avoiding shaking and displacement when the pressing block presses the coil material, and ensuring the pressing quality of the coil material.

[0013] In the above-mentioned buffer type material pressing and packing device, the guiding structure includes a guiding rod fixed to the bottom of the cross beam. One end of the guiding rod is fixed to the cross beam, and the other end is inserted into the guiding rod hole of the pressing block.

[0014] The cooperation between the guiding rod and the guiding rod hole plays a guiding role in the vertical direction for the pressing block, avoiding shaking and displacement when the pressing block presses the coil material, and ensuring the pressing quality of the coil material.

[0015] In the above-mentioned buffer type material pressing and packing device, the bracket includes an inverted concave-shaped frame for passing the unloading trolley. One end of the inverted concave-shaped frame is provided with a 7-shaped frame, and one end of the 7-shaped frame is fixedly connected to the inverted concave-shaped frame. The cross beam is connected to the 7-shaped frame through a vertical lifting component.

[0016] The inverted concave-shaped frame and the 7-shaped frame form a three-point support, with good support performance. The inverted concave-shaped frame facilitates the entry and exit of the unloading trolley for unloading.

[0017] In the above-mentioned buffer type material pressing and packing device, the vertical lifting component includes a linear actuator arranged on the 7-shaped frame. The driving end of the linear actuator is connected to the cross beam, and a lifting guiding component is arranged between the cross beam and the 7-shaped frame.

[0018] The operation of the linear actuator can drive the cross beam to vertically descend to drive all the pressing blocks to press down. During the vertical lifting process of the cross beam, the lifting guiding component plays a guiding role for the cross beam, ensuring the movement of the cross beam in the vertical direction, preventing the cross beam from shaking and displacing, and ensuring the pressing quality of the coil material.

[0019] In the above-mentioned buffer type material pressing and packing device, the lifting guiding component includes two guiding columns vertically arranged and penetrating through the 7-shaped frame, and the lower ends of the guiding columns are fixed to the cross beam.

[0020] During the vertical lifting process of the cross beam, the guiding columns vertically displace on the 7-shaped frame, playing a vertical guiding role for the cross beam, ensuring the movement of the cross beam in the vertical direction, preventing the cross beam from shaking and displacing, and ensuring the pressing quality of the coil material.

[0021] In the above-mentioned buffer type material pressing and packing device, one end of the 7-shaped frame is fixed to the inverted concave-shaped frame, and the other end is fixed to the top of the seat body of the cross-shaped storage arm.

[0022] One end of the 7-shaped frame is fixed on the concave-shaped frame, and the other end is fixed on the top of the seat body of the cross-shaped storage arm, making the overall structure more compact.

[0023] In the above buffer type material pressing and packing device, the linear driver includes an oil cylinder, the oil cylinder is fixed on the 7-shaped frame, and the piston rod of the oil cylinder is hinged on the cross beam.

[0024] When the piston rod of the oil cylinder is pushed out, it can drive the cross beam to vertically descend to drive all the pressing blocks to press down, and the pressing blocks pressing down will press the respective corresponding coils tightly.

[0025] Compared with the existing technology, the advantages of the present utility model are as follows: 1. Each coil can be synchronously pressed tightly without being damaged on the surface of the coil, which can avoid the situation that some coils are pressed tightly while some are pressed loosely, and the pressing quality of the coils is good. 2. When the pressing block presses down the coil, there will be no shaking or displacement, ensuring the pressing quality of the coil. Brief Description of the Drawings

[0026] Figure 1 is the overall structure schematic diagram provided by the present utility model;

[0027] Figure 2 is the side view provided by the present utility model.

[0028] In the figure, support 1, cross beam 2, vertical lifting assembly 3, pressing block 4, elastic member 5, cross-shaped storage arm 6, guiding structure 7, concave-shaped frame 8, 7-shaped frame 9, linear driver 10, lifting guiding assembly 11, guiding column 12, oil cylinder 13, piston rod 14. Detailed Description of the Embodiment

[0029] Embodiment 1

[0030] As Figure 1 and Figure 2 shown, a buffer type material pressing and packing device includes a support 1, a cross beam 2 is arranged below the support 1, the cross beam 2 is connected to the support 1 through a vertical lifting assembly 3, several pressing blocks 4 arranged horizontally are provided at the bottom of the cross beam 2, each pressing block 4 is connected to the cross beam 2 through an elastic member 5, the elastic member 5 can enable the pressing block 4 to have a buffering function, and a cross-shaped storage arm 6 is arranged below the several pressing blocks 4.

[0031] In the present utility model, the unloading trolley first unloads the slit coils onto the cross-shaped storage arm 6, and then the unloading trolley leaves. After the coils are unloaded, the vertical lifting assembly 3 operates to drive the crossbeam 2 to descend. When the crossbeam 2 descends, it drives all the pressing blocks 4 to press downwards. The pressing blocks 4 press down to tightly press the respective corresponding coils. When the pressure for pressing the coils reaches the control pressure, the vertical lifting assembly 3 stops operating and the crossbeam 2 stops descending. Since each pressing block 4 has a buffering function and is independent of each other, each pressing block 4 can adapt to the diameter micro difference of its respective corresponding coil, and at the same time does not damage the surface of the coil, realizing the synchronous pressing of each coil and avoiding the situation that some coils are pressed tightly while some are pressed loosely. After the coils are tightly pressed, the vertical lifting assembly 3 drives the crossbeam 2 to reset, and then the coils are mechanically or manually packed by a packing device. The packing device is a prior art. Finally, the cross-shaped storage arm 6 rotates for subsequent transfer operation of the coils.

[0032] Specifically, as shown in Figure 1 the elastic member 5 includes a compression spring. The upper end of the compression spring is fixed on the crossbeam 2, and the lower end is fixed on the pressing block 4.

[0033] The two ends of the compression spring are respectively connected to the crossbeam 2 and the pressing block 4, so that the pressing block 4 has a buffering function, enabling each pressing block 4 to adapt to the diameter micro difference of its respective corresponding coil, and at the same time not damaging the surface of the coil, realizing the synchronous pressing of each coil.

[0034] Specifically, as shown in Figure 1 a guiding structure 7 is provided between the pressing block 4 and the crossbeam 2. The guiding structure 7 includes a guiding rod fixed at the bottom of the crossbeam 2. One end of the guiding rod is fixed on the crossbeam 2, and the other end is inserted into the guiding rod hole of the pressing block.

[0035] The guiding rod is inserted into the guiding rod hole of the pressing block. The guiding rod and the guiding rod hole cooperate to play a guiding role in the vertical direction for the pressing block 4, avoiding the shaking and displacement of the pressing block 4 when pressing the coil, and ensuring the pressing quality of the coil.

[0036] Specifically, as shown in Figure 1 and Figure 2 the bracket 1 includes an inverted concave-shaped frame 8 for passing the unloading trolley. One end of the inverted concave-shaped frame 8 is provided with a 7-shaped frame 9. One end of the 7-shaped frame 9 is fixedly connected to the inverted concave-shaped frame 8. The crossbeam 2 is connected to the 7-shaped frame 9 through the vertical lifting assembly 3. One end of the 7-shaped frame 9 is fixed on the inverted concave-shaped frame 8, and the other end is fixed on the top of the seat body of the cross-shaped storage arm 6.

[0037] The inverted concave-shaped frame 8 and the 7-shaped frame 9 form a three-point support with good support performance. The inverted concave-shaped frame 8 facilitates the entry and exit of the unloading trolley for unloading. One end of the 7-shaped frame 9 is fixed on the inverted concave-shaped frame 8, and the other end is fixed on the top of the seat body of the cross-shaped storage arm 6, making the overall structure more compact.

[0038] Specifically, in combination with Figure 1 and Figure 2 as shown, the vertical lifting assembly 3 includes a linear actuator 10 disposed on the L-shaped frame 9. The driving end of the linear actuator 10 is connected to the cross beam 2. A lifting guiding assembly 11 is provided between the cross beam 2 and the L-shaped frame 9. The lifting guiding assembly 11 includes two vertically disposed guiding columns 12 penetrating through the L-shaped frame 9, and the lower ends of the guiding columns 12 are fixed on the cross beam 2.

[0039] When the linear actuator 10 operates, it can drive the cross beam 2 to vertically descend, driving all the pressing blocks 4 to press down. During the vertical lifting process of the cross beam 2, the guiding columns 12 vertically displace on the L-shaped frame 9, playing a role of vertical guiding for the cross beam 2, ensuring the cross beam 2 moves in the vertical direction, preventing the cross beam 2 from shaking and displacing, and guaranteeing the pressing quality of the coil material.

[0040] Specifically, in combination with Figure 1 and Figure 2 as shown, the linear actuator 10 includes an oil cylinder 13. The oil cylinder 13 is fixed on the L-shaped frame 9, and the piston rod 14 of the oil cylinder 13 is hinged to the cross beam 2.

[0041] When the piston rod 14 of the oil cylinder 13 extends, it can drive the cross beam 2 to vertically descend, driving all the pressing blocks 4 to press down. The pressing blocks 4 press down to tightly press the respective coil materials.

[0042] The working principle of the present utility model is as follows: After the coil material is unloaded, the piston rod 14 of the oil cylinder 13 extends to drive the cross beam 2 to vertically descend, driving all the pressing blocks 4 to press down. When the coil material is pressed to reach the control pressure, the cross beam 2 stops descending. Each pressing block 4 can adapt to the diameter micro difference of the respective corresponding coil material under the buffering of the compression spring, and at the same time, it does not damage the surface of the coil material, finally realizing the synchronous pressing of each coil material; after the coil material is pressed tightly, the piston rod 14 of the oil cylinder 13 retracts to drive the cross beam 2 to reset, then the coil material is packed, and finally the cross-shaped storage arm 6 rotates for subsequent coil material transfer operation.

[0043] Embodiment 2

[0044] The structure and working principle of this embodiment are basically the same as those of Embodiment 1. The difference lies in that the guiding structure 7 includes a guiding slot disposed at the bottom of the cross beam 2, and the pressing block 4 is disposed in the guiding slot.

[0045] The pressing block 4 is disposed in the guiding slot, and the guiding slot plays a role of vertical guiding for the pressing block 4, avoiding the shaking and displacement of the pressing block 4 when pressing the coil material, and guaranteeing the pressing quality of the coil material.

[0046] The specific embodiments described herein are merely illustrative of the spirit of the present utility model. Those skilled in the art to which the present utility model pertains may make various modifications or supplements to the described specific embodiments or use similar means for substitution, but will not deviate from the spirit of the present utility model or exceed the scope defined by the appended claims.

[0047] Although terms such as bracket 1, crossbeam 2, vertical lifting assembly 3, pressing block 4, elastic member 5, cross-shaped storage arm 6, guiding structure 7, concave-shaped frame 8, L-shaped frame 9, linear actuator 10, lifting guiding assembly 11, guiding column 12, oil cylinder 13, piston rod 14, etc. are used more frequently herein, the use of these terms is only for more convenient description and explanation of the essence of the present utility model; interpreting them as any additional limitation is contrary to the spirit of the present utility model.

Claims

1. A buffer type material pressing and packing device, comprising a bracket (1), a cross beam (2) is arranged below the bracket (1), and the cross beam (2) is connected with the bracket (1) through a vertical lifting assembly (3), characterized in that, A number of pressing blocks (4) are arranged along the transverse direction at the bottom of the cross beam (2). Each pressing block (4) is connected to the cross beam (2) through an elastic member (5). The elastic member (5) enables the pressing block (4) to have a buffering function. A cross-shaped storage arm (6) is arranged below the number of pressing blocks (4).

2. The buffer type material pressing and packing device according to claim 1, characterized in that, The elastic member (5) includes a compression spring. The upper end of the compression spring is fixed on the cross beam (2), and the lower end is fixed on the pressing block (4).

3. The buffer type material pressing and packing device according to claim 2, characterized in that, A guiding structure (7) is arranged between the pressing block (4) and the cross beam (2).

4. The buffer type material pressing and packing device according to claim 3, characterized in that, The guiding structure (7) includes a guiding slot arranged at the bottom of the cross beam (2). The pressing block (4) is arranged in the guiding slot.

5. The buffer type material pressing and packing device according to claim 3, wherein The guiding structure (7) includes a guiding rod fixed at the bottom of the cross beam (2). One end of the guiding rod is fixed on the cross beam (2), and the other end is inserted into the guiding rod hole of the pressing block.

6. The buffer type material pressing and packing device according to any one of claims 1-5, characterized in that The bracket (1) includes a concave-shaped frame (8) for passing a discharging trolley. One end of the concave-shaped frame (8) is provided with a 7-shaped frame (9). One end of the 7-shaped frame (9) is fixedly connected to the concave-shaped frame (8). The cross beam (2) is connected to the 7-shaped frame (9) through a vertical lifting assembly (3).

7. The buffer type material pressing and packing device according to claim 6, wherein, The vertical lifting assembly (3) includes a linear actuator (10) arranged on the 7-shaped frame (9). The driving end of the linear actuator (10) is connected to the cross beam (2). A lifting guiding assembly (11) is arranged between the cross beam (2) and the 7-shaped frame (9).

8. The buffer type material pressing and packing device according to claim 7, wherein, The lifting guiding assembly (11) includes two vertically arranged guiding columns (12) passing through the 7-shaped frame (9). The lower ends of the guiding columns (12) are fixed on the cross beam (2).

9. The buffer type material pressing and packing device according to claim 7, wherein, One end of the 7-shaped frame (9) is fixed on the concave-shaped frame (8), and the other end is fixed on the top of the seat body of the cross-shaped storage arm (6).

10. The buffer type material pressing and packing device according to claim 7, wherein The linear actuator (10) includes an oil cylinder (13). The oil cylinder (13) is fixed on the 7-shaped frame (9). The piston rod (14) of the oil cylinder (13) is hinged on the cross beam (2).