Slitting ring stacking device with shunting function

By designing guide plates and diverter plates, and using scrapers and limiting plates, the problem of slitting rings accumulating on the conveyor belt was solved, achieving an efficient slitting ring stacking process.

CN223736871UActive Publication Date: 2025-12-30CHANGZHOU TONGYU PLASTIC PARTS
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Patent Information

Application Number
CN202423323259.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In existing technologies, the slitting rings accumulate on the conveyor belt, resulting in low stacking efficiency.

Method used

The device employs a slitting ring stacking device with diversion function. Through the combination design of guide plates and diversion plates, the slitting rings are guided to move along a predetermined path, and the scraper and limiting plate work together to avoid accumulation and achieve orderly conveying.

Benefits of technology

It improves the stacking efficiency of the slitting rings, ensures orderly movement of the slitting rings, reduces accumulation, and improves the overall conveying stability.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223736871U_ABST
    Figure CN223736871U_ABST
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Abstract

The utility model relates to a slitting ring stacking device with a shunting function, and relates to the technical field of material conveying. The stacking device comprises a working frame and a stacking box frame, the working frame is provided with a movable conveying belt conveying in the direction of the stacking box frame, the working frame is provided with a conveying belt, the upper surface of the conveying belt and the upper surface of the movable conveying belt are located on the same plane, and the side wall of the conveying belt abuts against the side wall of the movable conveying belt. A guide plate is arranged on the upper surface of the conveying belt and distributed along the edge of the conveying belt, a connecting block is fixed to the side wall of the working frame and connected with the guide plate through a connecting rod, a plurality of splitter plates are arranged between the guide plate and the movable conveying belt, the splitter plates are parallel to the guide plate, and the splitter plates are connected with the working frame through fixing rods. And the multiple slitting circles move in a split-flow mode, accumulation is avoided, and the overall stacking efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of material conveying, in particular to a slitting ring stacking device with a flow separation function. BACKGROUND

[0002] The slitting ring is a solid ring used around the capacitor film, and the slitting ring is generally made of paper, metal and plastic. After the slitting ring is manufactured, it needs to be stacked. Usually, the produced slitting rings are directly placed on the conveying belt, and then the slitting rings are guided by the guide plate so that the slitting rings move one by one to the stacking box frame.

[0003] However, in actual use, the slitting rings are placed on the conveying belt and guided by the guide plate only. The slitting rings are prone to accumulate on the conveying belt, which affects the stacking efficiency. Therefore, it needs to be improved. CONTENT OF THE UTILITY MODEL

[0004] In order to improve the problem that the slitting rings are prone to accumulate on the conveying belt only by the guide plate and affect the stacking efficiency, the present application provides a slitting ring stacking device with a flow separation function.

[0005] The slitting ring stacking device with a flow separation function provided by the present application adopts the following technical scheme:

[0006] The slitting ring stacking device with a flow separation function comprises a working frame and a stacking box frame. The working frame is provided with a moving conveying belt for conveying in the direction of the stacking box frame. The working frame is provided with a conveying belt. The upper surfaces of the conveying belt and the moving conveying belt are on the same plane, and the side wall of the conveying belt is in close contact with the side wall of the moving conveying belt. The upper surface of the conveying belt is provided with a guide plate. The guide plate is arranged along the edge of the conveying belt. The side wall of the working frame is fixedly provided with a connecting block. The connecting block is connected with the guide plate through a connecting rod. A plurality of flow separation plates are arranged between the guide plate and the moving conveying belt. The flow separation plates are parallel to the guide plate. The flow separation plates are connected with the working frame through fixing rods.

[0007] By adopting the above technical scheme, the slitting rings are placed on the conveying belt and the moving conveying belt. The conveying belt expands the range of the moving conveying belt. Then the moving conveying belt and the conveying belt are started to drive the slitting rings to convey in the same direction. When part of the slitting rings move to the edge of the conveying belt and abut against the guide plate, the guide plate plays a guiding role to make the slitting rings move along the guide plate to the moving conveying belt, and then the slitting rings are sent to the stacking box frame by the moving conveying belt for stacking.

[0008] The cutting circles located in the middle of the conveying belt abut against the flow distribution plates, and are arranged by the flow distribution plates into several rows to move, so that the cutting circles move in order, avoid piling up due to spreading in a large range, facilitate the movement of the cutting circles, and improve the overall stacking efficiency.

[0009] Optionally, the connecting rod is arranged through the connecting block and is threadedly connected with the connecting block, and the end of the connecting rod is embedded on the guide plate and can rotate on the guide plate.

[0010] By rotating the connecting rod, the connecting rod drives the guide plate to move in translation due to the threaded connection between the connecting block and the connecting rod, so that the range surrounded by the guide plate is changed, and the guide plate can be adapted to the limitation of cutting circles of different sizes, and the applicability is better.

[0011] Optionally, a plurality of mounting blocks are arranged on the working frame, a groove is arranged on each mounting block, a plurality of fixing rods are arranged in one-to-one correspondence with the mounting blocks, the fixing rods are inserted into the grooves, and the fixing rods can drive the flow distribution plates to move towards or away from the direction of the moving conveying belt.

[0012] By adopting the above technical scheme, the flow distribution plates are moved, the fixing rods are moved in the grooves, the inner wall of the groove abuts against the side wall of the fixing rod, and the fixing rod can only move along the length direction of the fixing rod, so that the positioning of the fixing rod on the working frame is realized.

[0013] Optionally, a mounting rod is fixed on the working frame, the mounting rod is vertically arranged, a mounting plate is sleeved on the mounting rod, the mounting plate is located above the mounting block, the mounting plate can move along the length direction of the mounting rod, a nut is sleeved on the mounting rod, the nut is threadedly connected with the mounting rod, the nut can abut against the top wall of the mounting plate, and the mounting plate is used to drive the fixing rod to abut against the mounting block.

[0014] By adopting the above technical scheme, when the flow distribution plates are moved to the position, the mounting plate is overlapped on the fixing plate, then the nut is screwed, and the nut abuts against the mounting plate, so that the mounting plate generates a downward pressure, the fixing rod is pressed and fixed on the mounting block, the fixing rod is fixed on the working frame, the position of the flow distribution plate is fixed, the flow distribution plate does not move during the flow distribution and cutting of the cutting circles, and the stability of the flow distribution and cutting of the cutting circles is improved.

[0015] Optionally, the working frame is provided with a support table, the support table is provided with a limiting plate, the limiting plate is located above the guide plate, the support table is provided with a pneumatic cylinder, the output end of the pneumatic cylinder is connected with a horizontally arranged scraper, the scraper is located above the flow dividing plate, the bottom wall of the scraper can be in contact with the top wall of the flow dividing plate, and the pneumatic cylinder is used to drive the scraper to move towards the limiting plate or away from the limiting plate.

[0016] By adopting the above technical scheme, when the cutting circle is separated into a plurality of moving strips by the plurality of flow dividing plates, the pneumatic cylinder is started to drive the scraper to move above the flow dividing plate, if the cutting circles are stacked together, the overall height is higher than the flow dividing plate, so that the scraper can push the cutting circles stacked above and move the cutting circles stacked above until the cutting circles stacked together are pushed down. When the scraper pushes the cutting circles to the edge of the conveying conveyor, the cutting circles are abutted against the limiting plate, and the limiting plate plays a limiting role to avoid the cutting circles being pushed down by the scraper.

[0017] The movement of the scraper makes the cutting circles not accumulate between adjacent flow dividing plates, realizes that the plurality of cutting circles in each path can be sequentially conveyed in order, improves the stability of conveying, and further improves the overall stacking efficiency.

[0018] Optionally, a rubber pad is sleeved on the scraper.

[0019] By adopting the above technical scheme, when the scraper pushes the stacked cutting circles to move, the rubber pad abuts against the cutting circles, and the rubber pad plays a protection role, so that the scraper is not easy to wear the cutting circles.

[0020] Optionally, the limiting plate is connected with the support table through a connecting spring.

[0021] By adopting the above technical scheme, when the scraper pushes the cutting circles to abut against the limiting plate, a pushing force is applied to the limiting plate, so that the connecting spring is deformed, and when the scraper is reset, the connecting spring restores the deformation to push the limiting plate to move, so as to apply a pushing force to the cutting circles abutting against the limiting plate, so that the cutting circles can return to the position in the middle of the conveying conveyor to fall into the interstices between adjacent flow dividing plates, and stable conveying is realized.

[0022] Optionally, a limiting rod is fixed on the limiting plate, a limiting slot is arranged on the support table along the moving direction of the scraper, the limiting rod is inserted into the limiting slot and can move in the limiting slot.

[0023] By adopting the above technical scheme, when the limiting plate moves, the limiting rod moves in the limiting slot, the inner wall of the limiting slot abuts against the side wall of the limiting rod to limit the direction, so that the limiting plate is not easy to deflect during movement, and the stability of the movement of the limiting plate is improved.

[0024] In summary, the present application includes at least one of the following benefits:

[0025] 1. Part of the cutting circle moves to the edge of the conveying conveyor belt and abuts against the guide plate, which plays a guiding role, so that the cutting circle moves along the guide plate to the moving conveyor belt. The main role of the guide plate is to guide the cutting circle to advance along the predetermined path, and the cutting circle located in the middle of the conveying conveyor belt will abut against the shunt plate. The main function of the shunt plate is to form multiple channels between the guide plate and the moving conveyor belt, reducing the accumulation of cutting circles;

[0026] 2. The scraper moves on the shunt plate, so that the shunted cutting circles do not stack, realizing that the cutting circles in each path can be sequentially transported in order, improving the stability of the transportation, and further improving the overall stacking efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a structural schematic diagram of a cutting circle stacking device with a shunting function according to an embodiment of the present application;

[0028] Figure 2 is Figure 1 is an enlarged view of A in FIG. 4;

[0029] Figure 3 is a structural schematic diagram of the support table.

[0030] In the figure: 10, workbench; 11, connecting block; 12, mounting block; 121, groove; 13, mounting rod; 131, nut; 132, mounting plate; 14, support table; 141, air cylinder; 142, limiting groove; 20, stacking box frame; 30, moving conveyor belt; 40, conveying conveyor belt; 50, guide plate; 51, connecting rod; 60, shunt plate; 61, fixed rod; 70, scraper; 71, rubber pad; 80, limiting plate; 81, connecting spring; 82, limiting rod. DETAILED DESCRIPTION

[0031] The following will be described in detail in combination with the accompanying Figures 1-3 The present application will be further described in detail.

[0032] The present application discloses a cutting circle stacking device with a shunting function. Referring to Figure 1The cutting ring stacking device with the shunting function comprises a working frame 10 and a stacking box frame 20. The working frame 10 is provided with a moving conveying belt 30 conveying towards the stacking box frame 20 and a conveying conveying belt 40. The moving conveying belt 30 and the conveying conveying belt 40 are both provided with uniform belt pulley structures, which will not be described herein. The upper surfaces of the two conveying belts are in the same plane, and the side wall of the conveying conveying belt 40 abuts against the side wall of the moving conveying belt 30. The upper surface of the conveying conveying belt 40 is provided with a guide plate 50 arranged along the edge of the conveying conveying belt 40.

[0033] The side wall of the working frame 10 is fixedly provided with a connecting block 11, and the connecting block 11 is provided with a connecting rod 51 penetratingly arranged thereon. The connecting rod 51 is horizontally arranged and threadedly connected with the connecting block 11. The end of the connecting rod 51 is embedded in the guide plate 50 and can rotate on the guide plate 50. When the connecting rod 51 is rotated, the connecting block 11 is threadedly connected with the connecting rod 51, so that the connecting rod 51 drives the guide plate 50 to translate to change the range surrounded by the guide plate 50,

[0034] A plurality of shunting plates 60 are arranged between the guide plate 50 and the moving conveying belt 30. The shunting plates 60 are parallel to the guide plate 50 and are connected with the working frame 10 through fixing rods 61. Specifically, the main function of the guide plate 50 is to guide the cutting ring to move along the predetermined path. The main function of the shunting plate 60 is to form a plurality of channels between the guide plate 50 and the moving conveying belt 30 to reduce the accumulation of the cutting ring.

[0035] Referring to Figures 1-3 A plurality of mounting blocks 12 are arranged on the working frame 10, and recesses 121 are arranged on the mounting blocks 12. The fixing rods 61 correspond to the mounting blocks 12 one by one, and the fixing rods 61 are inserted into the recesses 121. The position of the fixing rod 61 can be adjusted by a hand knob, so that the fixing rod 61 drives the shunting plate 60 to move towards or away from the moving conveying belt 30. In this way, the position of the shunting plate 60 can be flexibly adjusted according to the actual production situation, and the flow path of the cutting ring is optimized.

[0036] Referring to Figures 1-3 A mounting rod 13 is fixedly arranged on the working frame 10, and a mounting plate 132 is sleeved on the mounting rod 13. The mounting plate 132 is located above the mounting block 12, and a nut 131 is sleeved on the mounting rod 13. The nut 131 is threadedly connected with the mounting rod 13 and can abut against the top wall of the mounting plate 132 to drive the mounting plate 132 to abut the fixing rod 61 against the mounting block 12.

[0037] When the shunt plate 60 is moved into position, the mounting plate 132 is lapped on the fixed plate, and then the nut 131 is screwed until the nut 131 abuts against the mounting plate 132, so that the mounting plate 132 generates downward pressure, so that the fixed rod 61 is pressed and fixed on the mounting block 12, realizing the fixation of the fixed rod 61 on the working frame 10, that is, the fixation of the position of the shunt plate 60, so that movement does not occur during the process of shunting and cutting the circle, and the stability of the shunted several cutting circles is increased.

[0038] Referring to Figures 1-3 In addition, the working frame 10 is also provided with a support table 14, and a limiting plate 80 is arranged on the support table 14 and located above the guide plate 50. A gas cylinder 141 is arranged on the support table 14, and a horizontally arranged scraper 70 is connected to the output end of the gas cylinder 141. The scraper 70 is located above the shunt plate 60, and a rubber pad 71 is fixed to the bottom wall and can be in contact with the top wall of the shunt plate 60. The gas cylinder 141 is used to drive the scraper 70 to move towards or away from the limiting plate 80, and the scraper 70 plays a role in cleaning the cutting circles stacked on the shunt plate 60, and can push the stacked cutting circles down.

[0039] When the scraper 70 pushes the cutting circle to the edge of the conveying conveyor belt 40, the cutting circle is abutted against the limiting plate 80, and the limiting plate 80 plays a limiting role to avoid the cutting circle from being pushed down by the scraper 70. The movement of the scraper 70 makes the cutting circles not accumulate between adjacent shunt plates 60, so that the several cutting circles in each path can be sequentially conveyed in order, the stability of conveying is improved, and the overall stacking efficiency is improved.

[0040] Referring to Figures 1-3 The limiting plate 80 is connected with the support table 14 through a connecting spring 81, the elastic force of the connecting spring 81 drives the limiting plate 80 to move towards the direction of the scraper 70, a limiting rod 82 is fixed on the limiting plate 80, a limiting groove 142 is arranged on the support table 14 along the moving direction of the scraper 70, the limiting rod 82 is inserted into the limiting groove 142 and can move in the limiting groove 142.

[0041] When the scraper 70 pushes the cutting circle to abut against the limiting plate 80, a pushing force is applied to the limiting plate 80, so that the connecting spring 81 is deformed, and when the scraper 70 is reset, the connecting spring 81 restores the deformation and pushes the limiting plate 80 to move, so as to apply a pushing force to the cutting circle abutting against the limiting plate 80, so that the cutting circle can return to the position in the middle of the conveying conveyor belt 40 to fall into the gap between adjacent shunt plates 60, realizing stable conveying.

[0042] When the limiting plate 80 moves, the limiting rod 82 moves in the limiting groove 142, the inner wall of the limiting groove 142 abuts against the side wall of the limiting rod 82, plays a role of limiting guiding, makes the limiting plate 80 not easy to deflect in the moving process, and increases the stability of the movement of the limiting plate 80.

[0043] The implementation principle of the cutting circle stacking device with the shunting function is as follows: a plurality of cutting circles are placed on the conveying conveying belt 40 and the moving conveying belt 30, the conveying conveying belt 40 expands the range of the moving conveying belt 30, then the moving conveying belt 30 and the conveying conveying belt 40 are started, drive the plurality of cutting circles to convey in the same direction, when part of the cutting circles move to the edge of the conveying conveying belt 40 and abut against the guide plate 50, the guide plate 50 plays a guiding role, so that the cutting circles move along the guide plate 50 to the moving conveying belt 30, and then are sent to the stacking box frame 20 by the moving conveying belt 30 for stacking.

[0044] The cutting circles located in the middle part of the conveying conveying belt 40 abut against the shunting plates 60, are separated into a plurality of strips by the shunting plates 60 and move in a shunting manner, so that the plurality of cutting circles move in an orderly manner, the phenomenon of piling up of the plurality of cutting circles due to spreading in a large range of empty area is avoided, the cutting circles are facilitated to move, and the overall stacking efficiency is improved.

[0045] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, so: equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.

Claims

1. A slitting and winding device with a function of distributing the slitting, characterized in that, The utility model provides a kind of stacker frame (20) and workbench (10) including the workbench (10) on the direction of the stacker frame (20) is equipped with the direction conveying mobile conveyor belt (30), the workbench (10) is equipped with conveying conveyor belt (40), the upper surface of conveying conveyor belt (40) and mobile conveyor belt (30) is on the same plane, and the side wall of conveying conveyor belt (40) is closely attached with the side wall of mobile conveyor belt (30), the upper surface of conveying conveyor belt (40) is equipped with guide plate (50), the guide plate (50) is along the edge of conveying conveyor belt (40) and is arranged, the side wall of the workbench (10) is fixed with connecting block (11), the connecting block (11) is connected with guide plate (50) by connecting rod (51), the guide plate (50) and mobile conveyor belt (30) are equipped with several shunt plate (60), the shunt plate (60) is parallel with guide plate (50), the shunt plate (60) is connected with workbench (10) by fixed rod (61).

2. The slitting tower stacker with a flow distribution function according to claim 1, characterized in that, The connecting rod (51) is threaded through the connecting block (11), and is threadedly connected with the connecting block (11), the end of the connecting rod (51) is embedded on the guide plate (50), and can rotate on the guide plate (50).

3. The slitting tower stacker with a flow distribution function according to claim 1, characterized in that, The workbench (10) is equipped with a plurality of mounting blocks (12), the mounting block (12) is provided with a groove (121), a plurality of fixed rods (61) correspond to the mounting block (12), the fixed rod (61) is inserted into the groove (121), and the fixed rod (61) can drive the shunt plate (60) to move towards or away from the mobile conveyor belt (30).

4. The slitting tower of claim 3, wherein, The workbench (10) is fixed with a mounting rod (13), the mounting rod (13) is vertically arranged, the mounting rod (13) is sleeved with a mounting plate (132), the mounting plate (132) is located above the mounting block (12), the mounting plate (132) can move along the length direction of the mounting rod (13), the mounting rod (13) is sleeved with a nut (131), the nut (131) is threadedly connected with the mounting rod (13), the nut (131) can abut against the top wall of the mounting plate (132), for driving the mounting plate (132) to tightly abut the fixed rod (61) on the mounting block (12).

5. The slitting tower of claim 1, wherein, The workbench (10) is provided with a support table (14), the support table (14) is provided with a limiting plate (80), the limiting plate (80) is located above the guide plate (50), the support table (14) is provided with a pneumatic cylinder (141), the output end of the pneumatic cylinder (141) is connected with a horizontally arranged scraper (70), the scraper (70) is located above the shunt plate (60), and the bottom wall of the scraper (70) can contact the top wall of the shunt plate (60), the pneumatic cylinder (141) is used to drive the scraper (70) to move towards or away from the limiting plate (80).

6. The slitting tower of claim 5, wherein, The scraper (70) is sleeved with a rubber pad (71).

7. The slitting tower of claim 5, wherein, The limiting plate (80) is connected with the support table (14) through a connecting spring (81).

8. The slitting tower of claim 7, wherein, A limiting rod (82) is fixed on the limiting plate (80), and a limiting slot (142) is arranged on the support table (14) along the moving direction of the scraper (70), the limiting rod (82) is inserted in the limiting slot (142) and can move in the limiting slot (142).