Side plate receiving machine

By designing a side plate feeder, the conveyor belt, deviation correction mechanism and material collection box are used to automatically process the striped side plate materials, which solves the problem of manual collection and reduces labor costs.

CN223162631UActive Publication Date: 2025-07-29CHENGDU YUTO PRINTING CO LTD
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Patent Information

Application Number
CN202422538712.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-07-29
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

In the prior art, a large amount of manual collection and placement of materials after the side plate is split, resulting in high labor costs and easy fatigue of personnel.

Method used

A side plate material collector is designed, including a conveyor belt, a bias correction mechanism and a material collection mechanism. The conveyor belt is connected to the outlet of the side plate stripper. The bias correction mechanism makes the material flush through the cylinder and the bias correction plate, and the material collection mechanism automatically collects the material through the material collection box.

Benefits of technology

Automatic collection and sorting of side plate materials after stripping is realized, reducing manual intervention and reducing labor costs.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223162631U_ABST
    Figure CN223162631U_ABST
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Abstract

The utility model discloses a side plate receiving machine which comprises a conveying belt, a deviation rectifying mechanism and a receiving mechanism, the starting end of the conveying belt is communicated with an outlet of a side plate slitting machine, and the conveying belt is used for conveying side plate materials after slitting; the deviation rectifying mechanism comprises an air cylinder and a deviation rectifying plate, the air cylinder is arranged on one side of the conveying belt in the width direction, and the deviation rectifying plate is connected with a push rod of the air cylinder so that the deviation rectifying plate can move in the width direction of the conveying belt; the material collecting mechanism comprises a plurality of material collecting boxes, at least one material collecting box is arranged at the terminal of the conveying belt, and the material collecting boxes are used for containing the split side plate materials. The problem that a large amount of workers need to collect and place materials produced by the side plate slitting machine can be solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of receiving materials after side plate slitting, and particularly relates to a side plate receiving machine. Background Art

[0002] Common packaging boxes generally include grey boards and face papers. The grey boards serve as the internal support of the packaging boxes, and the face papers serve as the outer surface of the packaging boxes. When processing packaging boxes, generally, the grey boards are first made into box blanks, then the glued face papers are wrapped outside the box blanks, and finally, defoaming work is carried out to obtain the final packaging box products. When further requirements are imposed on the hardness of the packaging boxes, such as for wine boxes, side plates need to be installed on the inner vertical surfaces of the box blanks to enhance the hardness.

[0003] Currently, a slitting process has been introduced in the side plate processing flow, that is, a process of using a side plate slitting machine to cut side plate raw materials into several strip-shaped materials. After slitting, the side plates need to be manually collected from the conveyor belt and placed neatly in a turnover box. During this process, the side plate slitting machine continuously supplies materials, so the personnel must keep collecting materials all the time, which easily causes fatigue. Moreover, due to the large number of side plate slitting machines, a large amount of manpower is required, resulting in a high labor cost. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a side plate receiving machine, which can solve the problem of the need for a large amount of manual labor to collect and place the materials produced by the side plate slitting machine.

[0005] The utility model is realized by the following technical solutions:

[0006] A side plate receiving machine includes a conveyor belt, the starting end of the conveyor belt is communicated with the outlet of a side plate slitting machine, and the conveyor belt is used for conveying the slit side plate materials; a deviation rectifying mechanism, the deviation rectifying mechanism includes a cylinder and a deviation rectifying plate, the cylinder is arranged on one side in the width direction of the conveyor belt, and the deviation rectifying plate is connected with the push rod of the cylinder so that the deviation rectifying plate can move along the width direction of the conveyor belt; a material receiving mechanism, the material receiving mechanism includes a plurality of material receiving boxes, at least one of the material receiving boxes is arranged at the terminal of the conveyor belt, and the material receiving boxes are used for containing the slit side plate materials.

[0007] Optionally, the conveyor belt is a linear conveyor belt, and the conveyor belt is inclined so that the setting height of the starting end of the conveyor belt is higher than the setting height of the terminal end.

[0008] Optionally, the push rod of the cylinder is arranged along the width direction of the conveyor belt; the deviation rectifying plate is in a flat plate shape, the deviation rectifying plate is perpendicularly connected with the push rod of the cylinder; the bottom edge of the deviation rectifying plate is close to the top surface of the conveyor belt.

[0009] Optionally, a pair of limiting sheet metals are provided at the terminal of the conveyor belt. The two limiting sheet metals are respectively connected to both sides in the width direction of the conveyor belt, so as to form a limiting outlet between the two limiting sheet metals. The width of the limiting outlet matches the length of the side plate material after slitting.

[0010] Optionally, the limiting sheet metal is slidably connected to the conveyor belt, so that the two limiting sheet metals can approach or move away from each other to adjust the width of the limiting outlet.

[0011] Optionally, the inner corners of the limiting sheet metal are chamfered, so that the inner side of the limiting sheet metal is wedge-shaped, and the width of the entrance side of the limiting outlet is slightly larger than that of the exit side.

[0012] Optionally, the material receiving mechanism further includes a translation pair, and all the material receiving boxes are arranged on the translation pair, so that each material receiving box can be aligned with the limiting outlet.

[0013] Optionally, the material receiving box is in the shape of a cuboid box, and one side surrounded by the long side and the wide side of the material receiving box is open and faces the limiting outlet; the width of the material receiving box matches the length of the side plate material after slitting.

[0014] Optionally, the material receiving box is connected to the translation pair through a lifting pair, and the lifting pair can make the material receiving box lift along the length direction; the material receiving box is inclined, so that the open side of the material receiving box is inclined upward and faces the limiting outlet.

[0015] Optionally, the lifting pair is provided with a weight sensor. When each material receiving box is filled with a side plate material after slitting, the weight sensor controls the lifting pair to descend by a preset height.

[0016] Compared with the prior art, the utility model has the following advantages and beneficial effects:

[0017] A side plate material receiving machine provided by the utility model arranges and conveys the side plate materials after slitting prepared by a side plate slitting machine in sequence through the conveyor belt. By setting a deviation rectifying mechanism, which includes a cylinder and a deviation rectifying plate, the push rod of the cylinder is used to push out the deviation rectifying plate, and then the deviation rectifying plate is used to push the side plate materials after slitting conveyed on the conveyor belt to be flush. By setting a material receiving mechanism, which includes a plurality of material receiving boxes, the material receiving boxes are used to hold the side plate materials after slitting conveyed to the terminal of the conveyor belt, so that the side plate materials after slitting are sorted and stacked in the material receiving boxes; through the mutual cooperation of the above features, the side plate material receiving machine can effectively solve the problem that a large amount of manual labor is required to collect and place the materials produced by the side plate slitting machine. Description of the Drawings

[0018] The accompanying drawings described herein are used to provide a further understanding of the embodiments of the present utility model, form a part of this application, and do not limit the embodiments of the present utility model. In the drawings:

[0019] Figure 1 is a schematic diagram of a side plate receiving machine provided by an embodiment of the present utility model;

[0020] Figure 2 is a top view schematic diagram of a side plate receiving machine provided by an embodiment of the present utility model;

[0021] Figure 3 is a side view schematic diagram of a side plate receiving machine provided by an embodiment of the present utility model;

[0022] Figure 4 is a partially enlarged schematic diagram of the deviation rectifying mechanism of a side plate receiving machine provided by an embodiment of the present utility model;

[0023] Figure 5 is a partially enlarged schematic diagram of the limit sheet metal of a side plate receiving machine provided by an embodiment of the present utility model.

[0024] Markings in the accompanying drawings and corresponding component names:

[0025] 10 - conveyor belt; 11 - limit sheet metal; 111 - limit outlet; 20 - cylinder; 21 - deviation rectifying plate; 30 - receiving box; 31 - translation pair; 32 - lifting pair. Detailed implementation manners

[0026] To make the objectives, technical solutions, and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below in combination with embodiments and the accompanying drawings. The illustrative embodiments and descriptions thereof of the present utility model are only used to explain the present utility model and do not limit the present utility model.

[0027] Embodiment

[0028] Please refer to Figures 1 to 5 , this embodiment provides a side plate receiving machine, including a conveyor belt 10, the starting end of the conveyor belt 10 is communicated with the outlet of a side plate slitting machine, and the conveyor belt 10 is used to convey the slit side plate materials; secondly, it includes a deviation rectifying mechanism, the deviation rectifying mechanism includes a cylinder 20 and a deviation rectifying plate 21, the cylinder 20 is arranged on one side in the width direction of the conveyor belt 10, and the deviation rectifying plate 21 is connected to the push rod of the cylinder 20 so that the deviation rectifying plate 21 can move along the width direction of the conveyor belt 10; thirdly, it includes a receiving mechanism, the receiving mechanism includes a plurality of receiving boxes 30, at least one of the receiving boxes 30 is arranged at the terminal of the conveyor belt 10, and the receiving box 30 is used to hold the slit side plate materials.

[0029] The side plate receiving machine provided in this embodiment arranges and conveys the strip-shaped side plate materials prepared by the side plate slitting machine in sequence through the conveyor belt 10. By setting the deviation rectifying mechanism, which includes a cylinder 20 and a deviation rectifying plate 21, the push rod of the cylinder 20 is used to push out the deviation rectifying plate 21, and then the deviation rectifying plate 21 is used to push the strip-shaped side plate materials conveyed on the conveyor belt 10 to be flush. By setting the receiving mechanism, which includes a plurality of receiving boxes 30, the receiving boxes 30 are used to hold the strip-shaped side plate materials conveyed to the terminal by the conveyor belt 10, so that the strip-shaped side plate materials are sorted and stacked in the receiving boxes 30. Through the mutual cooperation of the above features, the side plate receiving machine can effectively solve the problem of requiring a large amount of manual collection and placement of the materials produced by the side plate slitting machine.

[0030] It should be noted that a position sensor is also provided at the place where the conveyor belt 10 is provided with the deviation rectifying mechanism. The position sensor is used to monitor the strip-shaped side plate materials. When the strip-shaped side plate materials pass through the detection position of the position sensor, the position sensor transmits a signal to the control system of the cylinder 20 to control the push rod of the cylinder 20 to push out, so as to drive the deviation rectifying plate 21 to push out.

[0031] In order to further explain the specific structure of the conveyor belt 10, the conveyor belt 10 is a linear conveyor belt, and the conveyor belt 10 is inclined so that the set height of the starting end of the conveyor belt 10 is higher than the set height of the terminal end.

[0032] By setting the conveyor belt 10 to be linear, the strip-shaped side plate materials move in a straight line, which is convenient for the deviation rectifying mechanism to perform deviation rectifying operations. By setting the conveyor belt 10 to be inclined, the strip-shaped side plate materials conveyed to the terminal of the conveyor belt 10 can freely fall into the receiving box 30 under the action of gravity.

[0033] In order to further optimize the working path of the cylinder 20 and the deviation rectifying plate 21, the push rod of the cylinder 20 is arranged along the width direction of the conveyor belt 10; the deviation rectifying plate 21 is in the shape of a flat plate, and the deviation rectifying plate 21 is vertically connected to the push rod of the cylinder 20; the bottom edge of the deviation rectifying plate 21 is arranged close to the top surface of the conveyor belt 10.

[0034] Through the above settings, the deviation rectifying plate 21 is arranged parallel to the length direction of the conveyor belt 10 and is pushed out along the width direction of the conveyor belt 10, so that the strip-shaped side plate materials are pushed into a state of being located on the same straight line.

[0035] In order to further regulate the strip-shaped side plate materials after deviation rectification and prevent them from falling outside the receiving box 30, a pair of limit sheet metals 11 are provided at the terminal of the conveyor belt 10. The two limit sheet metals 11 are respectively connected to both sides of the conveyor belt 10 in the width direction to form a limit outlet 111 between the two limit sheet metals 11. The width of the limit outlet 111 matches the length of the strip-shaped side plate materials.

[0036] With the above settings, the terminal of the conveyor belt 10 is further limited. Two limiting sheet metals 11 are used to block the terminal of the conveyor belt 10, so that the side plate materials after slitting can only be discharged from the limiting outlet 111 between the two limiting sheet metals 11. During use, just align the limiting outlet 111 with the material receiving box 30.

[0037] It should be noted that the bottom surface of the limiting sheet metal 11 is close to but does not contact the top surface of the conveyor belt 10 to prevent the side plate materials after slitting from leaking out between the two.

[0038] It should be noted that the limiting sheet metal 11 is plate-shaped and its thickness is greater than the thickness of the side plate materials after slitting to prevent the side plate materials after slitting from crossing over the limiting sheet metal 11.

[0039] It should be noted that the limiting sheet metal 11 is arranged parallel to the end face of the terminal of the conveyor belt 10 to extend the matching distance between the limiting sheet metal 11 and the terminal of the conveyor belt 10, that is, the length of the limiting outlet 111, so as to further regulate the side plate materials after slitting by using the length of the limiting outlet 111.

[0040] In order to make an adaptive adjustment according to the length of the side plate materials after slitting, the limiting sheet metal 11 is slidably connected to the conveyor belt 10, so that the two limiting sheet metals 11 can approach or move away from each other to adjust the width of the limiting outlet 111.

[0041] With the above settings, the limiting sheet metal 11 can move along the width direction of the conveyor belt 10, so that the position and width of the limiting outlet 111 can be adjusted to adapt to the position of the side plate materials after slitting after deviation correction and the length of the side plate materials after slitting.

[0042] In order to facilitate the side plate materials after slitting to fall into the limiting outlet 111, the inner corners of the limiting sheet metal 11 are chamfered, so that the inner side of the limiting sheet metal 11 is wedge-shaped, and the width of the entrance side of the limiting outlet 111 is slightly larger than that of the exit side.

[0043] With the above settings, the width of the entrance side of the limiting outlet 111 is slightly larger than that of the exit side to form a flared shape, so as to facilitate the side plate materials after slitting to fall into the limiting outlet 111.

[0044] In order to further explain the specific structure of the material receiving mechanism, the material receiving mechanism further includes a translation pair 31, and all the material receiving boxes 30 are arranged on the translation pair 31, so that each material receiving box 30 can be aligned with the limiting outlet 111.

[0045] With the above settings, the translation pair 31 drives all the material receiving boxes 30 to move horizontally, so that any one of the material receiving boxes 30 can be aligned with the limiting outlet 111. When the aligned material receiving box 30 is full, it can be translated to align another unfilled material receiving box 30 with the limiting outlet 111.

[0046] To further explain the specific structure of the material receiving box 30, the material receiving box 30 is in the shape of a cuboid box. One side surrounded by the long side and the wide side of the material receiving box 30 is open and faces the limiting outlet 111; the width of the material receiving box 30 matches the length of the side plate material after slitting.

[0047] With the above settings, the side plate material after slitting falls into the material receiving box 30 from its largest surface, so as to prevent the side plate material after slitting from falling out of the material receiving box 30.

[0048] To prevent the water level from rising in the material receiving box 30 after it is filled with the side plate material after slitting, which may block the subsequent side plate material after slitting from falling into it, the material receiving box 30 is connected to the translation pair 31 through a lifting pair 32. The lifting pair 32 can make the material receiving box 30 lift and lower along the length direction; the material receiving box 30 is inclined so that the open side of the material receiving box 30 is inclined upward and faces the limiting outlet 111.

[0049] It should be noted that either of the translation pair 31 and the lifting pair 32 can adopt any one of the existing technologies, as long as it can realize the translation and lifting functions. In this embodiment, the slider and rail method is adopted. In other embodiments, structures such as cylinder pushing and scissor lift tables can also be used to achieve this.

[0050] To further improve automation, the lifting pair 32 is provided with a weight sensor. When each side plate material after slitting is loaded into the material receiving box 30, the weight sensor controls the lifting pair 32 to lower a preset height.

[0051] The above specific embodiments have further detailed the purpose, technical solutions and beneficial effects of the present invention. It should be understood that the above is only the specific embodiments of the present invention and is not used to limit the protection scope of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A side plate material collector, characterized in that, Including: A conveyor belt (10), the starting end of the conveyor belt (10) is communicated with the outlet of the side plate slitter, and the conveyor belt (10) is used for conveying the side plate materials after slitting; A deviation rectifying mechanism, the deviation rectifying mechanism includes a cylinder (20) and a deviation rectifying plate (21), the cylinder (20) is arranged on one side in the width direction of the conveyor belt (10), and the deviation rectifying plate (21) is connected with the push rod of the cylinder (20) so that the deviation rectifying plate (21) can move along the width direction of the conveyor belt (10); A material receiving mechanism, the material receiving mechanism includes a plurality of material receiving boxes (30), at least one of the material receiving boxes (30) is arranged at the terminal of the conveyor belt (10), and the material receiving boxes (30) are used for containing the side plate materials after slitting.

2. The side plate material collector according to claim 1, characterized in that, The conveyor belt (10) is a linear conveyor belt, and the conveyor belt (10) is inclined so that the setting height of the starting end of the conveyor belt (10) is higher than the setting height of the terminal end.

3. The side plate material collector according to claim 2, characterized in that, The push rod of the cylinder (20) is arranged along the width direction of the conveyor belt (10); The deviation rectifying plate (21) is in a flat plate shape, and the deviation rectifying plate (21) is vertically connected with the push rod of the cylinder (20); The bottom edge of the deviation rectifying plate (21) is arranged close to the top surface of the conveyor belt (10).

4. The side plate material collector according to claim 3, characterized in that, A pair of limit sheet metals (11) are arranged at the terminal of the conveyor belt (10), and the two limit sheet metals (11) are respectively connected with both sides in the width direction of the conveyor belt (10) to form a limit outlet (111) between the two limit sheet metals (11), and the width of the limit outlet (111) matches the length of the side plate materials after slitting.

5. The side plate material collector according to claim 4, wherein The limit sheet metal (11) is slidably connected with the conveyor belt (10) so that the two limit sheet metals (11) can approach or move away from each other to adjust the width of the limit outlet (111).

6. The side plate material collecting machine according to claim 5, characterized in that, The inner corners of the limit sheet metal (11) are chamfered so that the inner side of the limit sheet metal (11) is in a wedge shape, and the width of the inlet side of the limit outlet (111) is slightly larger than the width of the outlet side.

7. The side plate material receiving machine according to claim 6, wherein The material receiving mechanism further includes a translation pair (31), and all the material receiving boxes (30) are arranged on the translation pair (31) so that each material receiving box (30) can be aligned with the limit outlet (111).

8. The side plate material collector according to claim 7, characterized in that, The material receiving box (30) is in a cuboid box shape, and one side surrounded by the long side and the wide side of the material receiving box (30) is open and faces the limit outlet (111); The width of the material receiving box (30) matches the length of the side plate materials after slitting.

9. The side plate material collecting machine according to claim 8, characterized in that, The material receiving box (30) is connected with the translation pair (31) through a lifting pair (32), and the lifting pair (32) can make the material receiving box (30) lift along the length direction; The material receiving box (30) is inclined so that the open side of the material receiving box (30) is inclined upward and faces the limit outlet (111).

10. The side plate material collector according to claim 9, characterized in that, The lifting pair (32) is provided with a weight sensor, and when each material receiving box (30) contains one side plate material after slitting, the weight sensor controls the lifting pair (32) to descend a preset height.