Aluminum foil label paper high-efficiency intelligent slitting equipment

Through the cooperation of the limit plate and the electric guide plate, the problems of low efficiency and uneven stacking during the label paper cutting process are solved, automatic cutting and stacking are realized, and the working efficiency and product quality of the cutting machine are improved.

CN119929586BActive Publication Date: 2025-10-17GUANGZHOU ZHUFENG COLOR PRINTING PROD CO LTD
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Patent Information

Application Number
CN202510444164.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-10-17
Estimated Expiration
2045-04-10

AI Technical Summary

Technical Problem

In the prior art, label paper needs to be frequently stopped for collection during the cutting process, resulting in low cutting efficiency. In addition, lightweight label paper is prone to fluttering when stacked, resulting in unevenness, which increases labor intensity.

Method used

The limit plate and electric guide plate are used in combination to limit and guide the label paper through the wedge-shaped part to ensure that the label paper does not move during the cutting process, and the electric guide plate is used to realize automatic stacking of the label paper; at the same time, the detection system and circular roller are used to automatically screen the label paper and remove unqualified products.

Benefits of technology

It realizes continuous cutting and automatic stacking of label paper, improves cutting efficiency, reduces manual labor intensity, and improves product quality and cutting accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the field of aluminum foil paper slitting, especially to an efficient intelligent slitting equipment for aluminum foil label paper, comprising a cutting machine and a mounting plate, etc.; the mounting plate is connected to the cutting machine. The present application realizes the following effects: the limit plate I moves downward and abuts against the upper surface of the mounting plate to limit one side of the label paper, then the limit plate II limits the other side of the label paper, and then the limit plate II cooperates with the limit plate I to jointly limit the label paper, avoiding the displacement of the label paper during movement; the limit rod limits the label paper, and the mounting plate and the corresponding fixing piece support the label paper, so that all the cut label papers are kept flush, then the electric guide plate is controlled to rotate, and then the subsequent cut label paper is moved to the uppermost of the stacked label paper through the guiding effect of the electric guide plate, thereby facilitating the continuous stacking of the label paper.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of aluminum foil paper slitting, in particular to a high-efficiency intelligent slitting equipment for aluminum foil label paper. BACKGROUND

[0002] Based on the prior art, it is found that when the label paper is continuously cut, as the number of label paper cutting gradually increases, after accumulating to a certain number, the cut label paper needs to be collected uniformly. In this process, the cutting machine needs to be stopped, and then the label paper is collected manually, which leads to low cutting efficiency. Moreover, since the label paper is light in quality, the label paper is prone to fluttering when moving after cutting and stacking, which leads to displacement of the stacked label paper and unevenness. Manual leveling is required, which is labor-intensive. SUMMARY

[0003] In order to overcome the problem that the cutting machine needs to be stopped when the cut label paper is collected uniformly, resulting in low cutting efficiency, the present application provides a high-efficiency intelligent slitting equipment for aluminum foil label paper.

[0004] The technical scheme is as follows: a high-efficiency intelligent slitting equipment for aluminum foil label paper, comprising a cutting machine and a mounting plate; the mounting plate is connected to the cutting machine; further comprising an electric guide plate, a driving assembly, a connecting plate, a limiting plate I, a driving motor I, a supporting plate I, a limiting assembly, a sliding plate, a handle, a flat plate, a limiting rod and a fixing piece; the electric guide plate is installed on the mounting plate and consists of a motor and a guide plate, the motor drives the guide plate to rotate; the driving assembly is connected to the cutting machine and connected to the mounting plate; the driving assembly is connected to the connecting plate and used to drive the connecting plate to move; the limiting plate I is fixedly connected to the connecting plate; the driving motor I is installed on the connecting plate; the output shaft of the driving motor I penetrates through the limiting plate I and is fixedly connected with the supporting plate I; the limiting assembly is connected to the driving assembly for limiting; the sliding plate is connected to the driving assembly; the handle is arranged on the sliding plate; the flat plate is connected to the driving assembly; the flat plate is slidingly connected with the sliding plate; a plurality of limiting rods are rotatably connected to the flat plate; a torsional spring is fixedly connected between the limiting rod and the flat plate; a plurality of fixing pieces are fixedly connected to the mounting plate.

[0005] More preferably, the surface of the guide plate in the electric guide plate is provided with an anti-static coating.

[0006] More preferably, the limiting plate I is provided with a wedge-shaped part I.

[0007] More preferably, the lower part of the limiting rod is provided with a magnet, and the fixing piece is made of an iron sheet.

[0008] More preferably, one side of the flat plate is flush with one side of the limiting rod.

[0009] More preferably, the limiting assembly comprises a limiting plate II, a driving motor II and a supporting plate II; the driving assembly is connected with the limiting plate II; the limiting plate II is slidingly connected with the mounting plate; the driving motor II is installed on the limiting plate II; the output shaft of the driving motor II penetrates through the limiting plate II and is fixedly connected with the supporting plate II.

[0010] More preferably, the limiting plate II is provided with a wedge-shaped part II.

[0011] More preferably, the upper surface of the supporting plate II is provided with a blocking part.

[0012] More preferably, the detection system is further included; the detection system is connected with the driving assembly; the detection system comprises an air knife, a visual sensor, an electric sliding block III, an electric actuator II, a suction plate, a round roller and a top plate; a plurality of air holes are formed in the limiting plate I; the air knife is fixedly connected with the connecting plate; the visual sensor is installed on the driving assembly; the electric sliding block III is installed on the driving assembly; the electric actuator II is fixedly connected with the electric sliding block III; the telescopic part of the electric actuator II is fixedly connected with the suction plate; at least two round rollers are arranged at the lower part of the suction plate, and a plurality of round holes are formed in the lower part of all the round rollers; the top plate is arranged at the lower part of the suction plate, and a plurality of air holes are formed in the lower part of the top plate, and the air holes are obliquely arranged towards the limiting plate II.

[0013] More preferably, the lower surface of the round roller is at the same horizontal level as the lower surface of the top plate.

[0014] The present application has the advantages and positive effects that:

[0015] (1) The limiting plate I is lowered and abuts against the upper surface of the mounting plate to limit one side of the label paper, the wedge-shaped part I guides the label paper, the limiting plate II limits the other side of the label paper, the wedge-shaped part II guides the label paper, and the limiting plate II and the limiting plate I cooperate to limit the label paper, so that the label paper is prevented from being displaced during movement.

[0016] (2) The limiting rod limits the right side of the label paper, the mounting plate and the corresponding fixing piece support the label paper, so that the right ends of all the cut label papers are flush, the electric guide plate is controlled to rotate, and the subsequent cut label paper is moved to the uppermost part of the stacked label paper through the guiding action of the electric guide plate, so that the label paper is continuously stacked.

[0017] (3) The collected label paper is clamped by the binding clamp, the binding clamp is manually held and all the label papers are moved along the mounting plate to the rear side of the cutting machine as a reference, so that the discharging operation is completed.

[0018] (4), through the rotation of the supporting plate I and the rotation of the supporting plate II, and the guiding effect of the electric guide plate, the label paper falls on the upper surface of the supporting plate I and the upper surface of the supporting plate II, and is limited by the limiting plate I and the blocking part, so that the right part of the label paper falls on the upper surface of the flat plate, and the right end of the label paper abuts against the sliding plate, so that the label paper collected in the clamp is collected while the cutting machine is still continuously operated, and the subsequent cut label paper is limited and supported, thereby improving the operation efficiency of the cutting machine.

[0019] (5), the two rollers and a top plate are synchronously moved downward to press and flatten the label paper, and the air between the adjacent two label papers is discharged, the unqualified label paper is adsorbed by the negative pressure generated by the two rollers, and then the gas is blown to the label paper from the inclined direction by the top plate, so that the unqualified label paper is rejected, thereby reducing the defective rate of the cut label paper and improving the product quality. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a three-dimensional structure schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0021] Figure 2 It is an electric guide plate installation position schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0022] Figure 3 It is a driving assembly three-dimensional structure schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0023] Figure 4 It is a limiting plate I, driving motor I and supporting plate I combined three-dimensional structure schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0024] Figure 5 It is a limiting assembly three-dimensional structure schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0025] Figure 6 It is a mounting plate, sliding plate, flat plate, limiting rod, fixed sheet, support frame and fixed frame combined three-dimensional structure schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0026] Figure 7 It is a handle installation position schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0027] Figure 8 It is a label paper limiting state schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0028] Figure 9 It is a supporting plate I and supporting plate II unfolded state schematic view of the aluminum foil label paper efficient intelligent slitting equipment of the application.

[0029] Figure 10 It is the detection system three-dimensional structure schematic view of the aluminum foil label paper high-efficiency intelligent slitting equipment of the application;

[0030] Figure 11 It is the suction plate, round roller and top plate combination three-dimensional structure schematic view of the aluminum foil label paper high-efficiency intelligent slitting equipment of the application.

[0031] In the figure, 1 is a cutting machine, 2 is a positioning mechanism, 3 is a cutting assembly, 4 is a label paper, 5 is a binding clamp, 11 is a mounting plate, 201 is an electric guide plate, 202 is a connecting plate, 203 is a limit plate I, 2031 is a wedge part I, 204 is an air knife, 205 is a driving motor I, 206 is a supporting plate I, 207 is a limit plate II, 2071 is a wedge part II, 208 is a driving motor II, 209 is a supporting plate II, 2091 is a blocking part, 210 is a sliding plate, 2101 is a handle, 211 is a flat plate, 212 is a limit rod, 213 is a fixed piece, 214 is a support frame, 2141 is a fixed frame, 215 is an electric sliding rail I, 216 is an electric sliding block I, 217 is an electric actuator I, 218 is an electric sliding rail II, 219 is an electric sliding block II, 301 is a visual sensor, 302 is an electric sliding block III, 303 is an electric actuator II, 304 is a suction plate, 305 is a round roller, 306 is a top plate. DETAILED DESCRIPTION

[0032] The application will be further described below in combination with the embodiments shown in the drawings.

[0033] Example one:

[0034] An aluminum foil label paper high-efficiency intelligent slitting equipment, according to Figures 1-9 As shown in the figure, it comprises a cutting machine 1 and a mounting plate 11; the mounting plate 11 is connected to the cutting machine 1; the positioning mechanism 2 is installed on the cutting machine 1; the cutting assembly 3 is arranged on the cutting machine 1;

[0035] The electric guide plate 201, the driving assembly, the connecting plate 202, the limiting plate I 203, the driving motor I 205, the supporting plate I 206, the limiting assembly, the sliding plate 210, the handle 2101, the flat plate 211, the limiting rod 212 and the fixing piece 213 are further included; the electric guide plate 201 is installed on the mounting plate 11, the electric guide plate 201 is composed of a motor and a guide plate, the motor drives the guide plate to rotate; the driving assembly is connected to the cutting machine 1 and connected with the mounting plate 11; the connecting plate 202 is connected to the driving assembly; the limiting plate I 203 is fixedly connected to the connecting plate 202; the driving motor I 205 is installed on the connecting plate 202; the output shaft of the driving motor I 205 penetrates through the limiting plate I 203 and is fixedly connected with the supporting plate I 206; the limiting assembly is connected to the driving assembly; the sliding plate 210 is connected to the driving assembly; the handle 2101 is arranged on the sliding plate 210; the flat plate 211 is connected to the driving assembly; the flat plate 211 is in sliding connection with the sliding plate 210; a plurality of limiting rods 212 are rotatably connected to the lower surface of the flat plate 211; the torsion spring is fixedly connected between the limiting rod 212 and the flat plate 211; and the fixing pieces 213 are fixedly connected to the mounting plate 11.

[0036] The surface of the guide plate in the electric guide plate 201 is provided with an anti-static coating, which is used to reduce static electricity generated by friction between the guide plate in the electric guide plate 201 and the label paper 4.

[0037] The wedge-shaped part I 2031 is arranged on the limiting plate I 203, which is used to guide the movement of the label paper 4 and limit the label paper 4.

[0038] The lower part of the limiting rod 212 is provided with a magnet, and the material of the fixing piece 213 is an iron sheet, so that the limiting rod 212 is attached to the fixing piece 213, which is used to limit the label paper 4.

[0039] The left side of the flat plate 211 is flush with the left side of the limiting rod 212, so as to facilitate the label paper 4 to move along the left side of the limiting rod 212 to the fixing piece 213.

[0040] The limiting assembly includes the limiting plate II 207, the driving motor II 208 and the supporting plate II 209; the limiting plate II 207 is connected to the driving assembly; the limiting plate II 207 is in sliding connection with the mounting plate 11; the driving motor II 208 is installed on the limiting plate II 207; the output shaft of the driving motor II 208 penetrates through the limiting plate II 207 and is fixedly connected with the supporting plate II 209.

[0041] The wedge-shaped part II 2071 is arranged on the limiting plate II 207, which is used to guide the movement of the label paper 4 and limit the label paper 4.

[0042] The blocking part 2091 is arranged on the upper surface of the supporting plate II 209, which is used to block and limit the label paper 4.

[0043] The driving assembly comprises a support frame 214, a fixing frame 2141, an electric sliding rail I 215, an electric sliding block I 216, an electric actuator I 217, an electric sliding rail II 218 and an electric sliding block II 219; the support frame 214 is fixedly connected to the cutting machine 1; the right part of the support frame 214 is fixedly connected with the fixing frame 2141; the fixing frame 2141 is in sliding connection with the sliding plate 210; the fixing frame 2141 is fixedly connected with the flat plate 211; the support frame 214 is fixedly connected with the electric sliding rail I 215; the electric sliding rail I 215 is in sliding connection with the electric sliding block I 216; the electric sliding block I 216 is fixedly connected with the electric actuator I 217, and the electric actuator I 217 is an electric push rod; the telescopic part of the electric actuator I 217 is fixedly connected with the connecting plate 202; the lower surface of the mounting plate 11 is fixedly connected with the electric sliding rail II 218; the electric sliding rail II 218 is in sliding connection with the electric sliding block II 219; and the electric sliding block II 219 is fixedly connected with the limiting plate II 207.

[0044] The roll label paper 4 is placed on the cutting machine 1 in advance, and the movable end of the roll label paper 4 is pulled to move to the right, and then the label paper 4 is driven to move through the conveying system on the cutting machine 1, so that the label paper 4 sequentially passes through the positioning mechanism 2 and the cutting assembly 3, and is conveyed to the mounting plate 11 and supported by the mounting plate 11; when the roll label paper 4 is cut, the positioning mechanism 2 is controlled to operate to position the label paper 4, and the cutting assembly 3 is controlled to operate to cut the label paper 4; however, since the label paper 4 is continuously cut, as the number of cut label paper 4 gradually increases, after accumulating to a certain number, the cut label paper 4 needs to be uniformly arranged and collected, in this process, the prior art needs to control the cutting machine 1 to stop operating, and then the label paper 4 is collected manually, thereby leading to low cutting efficiency, and since the label paper 4 is light in quality, when the label paper 4 is stacked after cutting, the label paper 4 is easy to flutter when moving, thereby leading to displacement of the stacked label paper 4 and uneven phenomenon, and manual leveling needs to be additionally performed, which is high in labor intensity;

[0045] To solve the above problems, the electric slider 216 is controlled to start moving along the electric slide rail 215, the movement of the electric slider 216 drives all the connected components to move, and then drives the limiting plate 203 to move, the electric actuator 217 is controlled to start driving the connecting plate 202 to move downward, the movement of the connecting plate 202 drives the limiting plate 203 to move downward, and then the lower surface of the limiting plate 203 abuts against the upper surface of the mounting plate 11, so as to limit one side of the label paper 4, and the wedge-shaped part 2031 guides the label paper 4, then the electric slider 219 is controlled to start moving along the electric slide rail 218, the movement of the electric slider 219 drives the limiting plate 207 to move, and then the limiting plate 207 limits the other side of the label paper 4, and the wedge-shaped part 2071 guides the label paper 4, and then the limiting plate 207 cooperates with the limiting plate 203 to limit the label paper 4, so as to avoid the displacement of the label paper 4 during the movement.

[0046] After the label paper 4 is cut by the cutting assembly 3, the label paper 4 moves right along the upper surface of the mounting plate 11 until the right side of the label paper 4 abuts against the limiting rod 212, and the label paper 4 is supported by the mounting plate 11 and the corresponding fixed sheet 213, so that the right ends of all the cut label papers 4 are flush, and with the continuous operation of the cutting machine 1, more and more cut label papers 4 are accumulated on the mounting plate 11. In order to facilitate the subsequent stacking of the label paper 4, the electric guide plate 201 is controlled to operate, so that the electric guide plate 201 rotates counterclockwise by a set angle based on the front side of the cutting machine 1, and then the electric guide plate 201 is higher than the upper surface of the mounting plate 11, so that the subsequent cut label paper 4 is guided by the electric guide plate 201 to move to the top of the stacked label paper 4, thereby facilitating the continuous stacking of the label paper 4 and avoiding the displacement of the label paper 4 during the movement.

[0047] When the accumulated label paper 4 reaches a set number, all the accumulated label paper 4 needs to be collected, at this time, the binding clip 5 is manually held from the lower part of the fixed frame 2141 to the left, and the binding clip 5 is opened, as shown in FIG. 19, and then the binding clip 5 is controlled to move to the right along the fixed frame 2141, and then the binding clip 5 is controlled to close, so as to collect the label paper 4. Figure 8As shown, in order to make the label paper 4 clamped more firmly, two binding clamps 5 are used for clamping, and then the electric actuator Ⅰ217 is controlled to start and drive all the connected parts to move upward, thereby driving the limit plate Ⅰ203 to move upward, so that the limit plate Ⅰ203 moves up and no longer presses against the upper surface of the mounting plate 11, so as to facilitate the movement of the label paper 4, and then the binding clamp 5 is manually held and all the label papers 4 are driven to move backward along the mounting plate 11 with the front side of the cutting machine 1 as the reference, and the limiting rod 212 is squeezed by the binding clamp 5 so that the corresponding position The limiting rod 212 rotates and twists the corresponding torsion spring, so that the magnet on the limiting rod 212 is separated from the iron sheet on the fixing plate 213, so that the limiting rod 212 is no longer in contact with the fixing plate 213, so that the binding clip 5 drives the label paper 4 to move, thereby driving all the label papers 4 to move away from the mounting plate 11, thereby completing the discharge operation, and as the label paper 4 moves, when the label paper 4 moves over the corresponding limiting rod 212, the limiting rod 212 is reset by the elastic force generated by the corresponding torsion spring, so that the subsequently cut label paper 4 can be collected;

[0048] At the same time, the cutting machine 1 continues to operate, and then controls the driving motor I 205 to start, and the output shaft of the driving motor I 205 rotates to drive the support plate I 206 to rotate ninety degrees clockwise with the upper surface of the connecting plate 202 as the reference, so that the support plate I 206 protrudes from the front side of the limiting plate I 203, and controls the driving motor II 208 to start, and the output shaft of the driving motor II 208 rotates to drive the support plate II 209 to rotate one hundred and eighty degrees counterclockwise with the upper surface of the limiting plate II 207 as the reference, so that the support plate II 209 protrudes from the rear side of the limiting plate II 207, and the electric guide plate 201 rotates the set angle, as shown in FIG. Figure 9 As shown, when the cut label paper 4 falls, the guiding action of the electric guide plate 201 and the inertia generated when the label paper 4 moves cause the label paper 4 to fall on the upper surface of the pallet I 206 and the upper surface of the pallet II 209, and the limiting plate I 203 cooperates with the blocking part 2091 to limit the label paper 4, and the pallet I 206 and the pallet II 209 guide the label paper 4, so that the right side of the label paper 4 falls on the upper surface of the flat plate 211, and the right end of the label paper 4 rests on the slide plate 210, so that the cutting machine 1 continues to operate while collecting and clamping the label paper 4, and limits and supports the subsequently cut label paper 4, thereby improving the operating efficiency of the cutting machine 1.

[0049] Then when the clamped label paper 4 is completely separated from the mounting plate 11, the electric actuator I 217 is controlled to drive the connecting plate 202 to move downward, the connecting plate 202 drives the limiting plate I 203 to move downward, until the lower surface of the limiting plate I 203 abuts against the upper surface of the mounting plate 11, the limiting plate I 203 drives all the connected components to move, and then drives the supporting plate I 206 to move downward, and then drives the label paper 4 to move downward, so that the label paper 4 is supported by the mounting plate 11, the drive motor I 205 is controlled to start, the output shaft of the drive motor I 205 rotates to drive the supporting plate I 206 to rotate and reset, and then the supporting plate I 206 is separated from the label paper 4, and the label paper 4 is blocked and limited by the limiting plate I 203, so as to avoid the problem that the label paper 4 is displaced when the supporting plate I 206 rotates and resets, and the drive motor II 208 is controlled to start, the output shaft of the drive motor II 208 rotates to drive the supporting plate II 209 to rotate and reset, and then the supporting plate II 209 is separated from the label paper 4, and the label paper 4 is blocked and limited by the blocking part 2091, so as to avoid the problem that the label paper 4 is displaced when the supporting plate II 209 rotates and resets;

[0050] Then the handle 2101 is held by hand, and the slide plate 210 is pushed to move left through the handle 2101, and then the slide plate 210 is moved to push the multiple label papers 4 to move left, until the right ends of the multiple label papers 4 move downward along the left side of the limiting rod 212, and then the multiple label papers 4 fall on all the fixing pieces 213, and the right ends of the label papers 4 are limited by all the limiting rods 212, and the right ends of the multiple label papers 4 are extruded by the slide plate 210 moving to push the multiple label papers 4, so that the right ends of all the label papers 4 are aligned, and the right ends of all the label papers 4 are kept flush, and the above-mentioned mode is cycled to realize uninterrupted cutting of the label papers 4.

[0051] Example two:

[0052] On the basis of example one, according to Figures 10-11Also shown, further comprising a detection system; the detection system is connected to the driving assembly; the detection system comprises the air knife 204, the visual sensor 301, the electric sliding block III 302, the electric actuator II 303, the suction plate 304, the round roller 305 and the top plate 306; a plurality of air holes are opened on the limiting plate I 203; the air knife 204 is fixedly connected to the connecting plate 202; the visual sensor 301 is installed on the support frame 214; the electric sliding block III 302 is slidably connected to the electric sliding rail I 215; the electric actuator II 303 is fixedly connected to the lower surface of the electric sliding block III 302, and the electric actuator II 303 is an electric push rod; the suction plate 304 is fixedly connected to the extension part of the electric actuator II 303; two round rollers 305 are fixedly connected and communicated below the suction plate 304, and a plurality of round holes are opened below all the round rollers 305; the top plate 306 is fixedly connected and communicated below the suction plate 304, and a plurality of air holes are opened below the top plate 306, and the air holes are inclinedly arranged towards the limiting plate II 207.

[0053] The lower surface of the round roller 305 and the lower surface of the top plate 306 are at the same horizontal height, for pressing and supporting the label paper 4.

[0054] The external air pump is connected to the suction plate 304 in advance, because after the cutting machine 1 cuts the label paper 4, manual screening of the cut label paper 4 is required to ensure that the pattern on the label paper 4 is correct and the overall label paper 4 is defect-free, thereby reducing the defective rate of the cut label paper 4, but manual screening is prone to inaccuracy and insufficiency, which affects product quality.

[0055] To solve the above problems, the visual sensor 301 is controlled to operate to detect the cut label paper 4, if the label paper 4 is qualified, the label paper 4 is stopped on the mounting plate 11, and the electric actuator II 303 is controlled to start driving the suction plate 304 to move downward, the suction plate 304 moves to drive the two round rollers 305 and the top plate 306 to move downward synchronously, because the lower surface of the round roller 305 and the lower surface of the round roller 305 are at the same horizontal height, and the two round rollers 305 and the top plate 306 are pressed and supported synchronously to move downward, and the air between the two adjacent label papers 4 is discharged, and because the plurality of limiting rods 212 are arranged at intervals and a plurality of air holes are opened on the limiting plate I 203, the air between the two adjacent label papers 4 can be quickly discharged, thereby facilitating subsequent stacking and collecting operations.

[0056] If the label paper 4 is detected to be unqualified, the electric actuator Ⅰ 217 is controlled to drive the connecting plate 202 to move, thereby driving all the connected components to move, and then the air knife 204 is controlled to move to be flush with the uppermost label paper 4, and then the air knife 204 is controlled to operate to blow air, so that the air passes through the air holes in the limiting plate Ⅰ 203 and blows towards the label paper 4, thereby causing a gap between the uppermost label paper 4 and the other label papers 4, and then the external pump is controlled to operate, thereby causing a negative pressure in the suction plate 304, so that the two rollers 305 suck air, and then the electric actuator Ⅱ 303 is controlled to drive the suction plate 304 to move downwards, and the suction plate 304 drives the two rollers 305 to move downwards, so that the two rollers 305 move downwards to approach the uppermost label paper 4, and the two rollers 305 suck and hold the uppermost label paper 4 through the negative pressure generated by the two rollers 305, and then the electric actuator Ⅱ 303 is controlled to drive the suction plate 304 to move upwards, and the suction plate 304 drives the two rollers 305 to move upwards, so that the uppermost label paper 4 is separated from the other label papers 4, and the electric actuator Ⅱ 303 is controlled to drive the suction plate 304 to continue to move upwards, and the suction plate 304 drives all the connected components to move, until the two rollers 305 pass the height of the blocking part 2091, thereby avoiding the limiting plate Ⅱ 207 and the supporting plate Ⅱ 209 from blocking the two rollers 305, and then the electric sliding block Ⅲ 302 is controlled to move forward along the electric sliding rail Ⅰ 215, and the electric sliding block Ⅲ 302 drives all the connected components to move, thereby driving the unqualified label paper 4 to move, and then the external air pump is controlled to blow air into the suction plate 304 when the electric sliding block Ⅲ 302 moves to the limit, at this time the two rollers 305 stop sucking air, so that the air blows out through the top plate 306 and blows towards the label paper 4, and because the air holes in the top plate 306 are arranged in an inclined manner, the air blows towards the label paper 4 from the inclined direction, thereby causing the label paper 4 to be separated from the two rollers 305 and move away from the cutting machine 1, thereby realizing the rejection of the unqualified label paper 4, thereby reducing the defective rate of the cut label paper 4 and improving the product quality.

[0057] Although the embodiments of the present application have been shown and described, it is to be understood that various modifications can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An efficient and intelligent cutting device for aluminum foil label paper, comprising a cutting machine (1) and a mounting plate (11); the cutting machine (1) is connected to the mounting plate (11); and the device is characterized in that: The cutting machine (1) further comprises an electric guide plate (201), a driving assembly, a connecting plate (202), a limiting plate I (203), a driving motor I (205), a supporting plate I (206), a limiting assembly, a slide plate (210), a handle (2101), a flat plate (211), a limiting rod (212) and a fixing plate (213); the electric guide plate (201) is mounted on the mounting plate (11), the electric guide plate (201) is composed of a motor and a guide plate, and the motor drives the guide plate to rotate; the cutting machine (1) is connected to a driving assembly, and the driving assembly is connected to the mounting plate (11); the driving assembly is connected to the connecting plate (202), and the driving assembly is used to drive the connecting plate (202) to move; the connecting plate (20 2) A limit plate I (203) is fixedly connected to the upper portion; a driving motor I (205) is mounted on the connecting plate (202); an output shaft of the driving motor I (205) passes through the limit plate I (203) and is fixedly connected to the supporting plate I (206); a limit assembly is connected to the driving assembly; a slide plate (210) is connected to the driving assembly; a handle (2101) is provided on the slide plate (210); a flat plate (211) is connected to the driving assembly; the flat plate (211) is slidably connected to the slide plate (210); a plurality of limit rods (212) are rotatably connected to the flat plate (211); a torsion spring is fixedly connected between the limit rod (212) and the flat plate (211); a plurality of fixing plates (213) are fixedly connected to the mounting plate (11); The limiting assembly includes a limiting plate II (207), a driving motor II (208) and a supporting plate II (209); the limiting plate II (207) is connected to the driving assembly; the limiting plate II (207) is slidably connected to the mounting plate (11); the driving motor II (208) is installed on the limiting plate II (207); the output shaft of the driving motor II (208) passes through the limiting plate II (207) and is fixedly connected to the supporting plate II (209); The driving assembly includes a support frame (214), a fixed frame (2141), an electric slide rail I (215), an electric slider I (216), an electric actuator I (217), an electric slide rail II (218) and an electric slider II (219); the cutting machine (1) is fixed with the support frame (214); the right part of the support frame (214) is fixed with the fixed frame (2141); the fixed frame (2141) is slidably connected to the slide plate (210); the fixed frame (2141) is fixed with the flat plate (211); the support frame (214) is fixed with the electric A movable slide rail I (215); an electric slider I (216) is slidably connected to the electric slide rail I (215); an electric actuator I (217) is fixedly connected to the electric slider I (216), and the electric actuator I (217) is an electric push rod; the telescopic portion of the electric actuator I (217) is fixedly connected to the connecting plate (202); an electric slide rail II (218) is fixedly connected to the lower surface of the mounting plate (11); an electric slider II (219) is slidably connected to the electric slide rail II (218); the electric slider II (219) is fixedly connected to the limit plate II (207).

2. The high-efficiency intelligent cutting equipment for aluminum foil label paper according to claim 1 is characterized in that: The surface of the guide plate in the electric guide plate (201) is provided with an antistatic coating.

3. The efficient and intelligent aluminum foil label paper cutting device according to claim 1 is characterized in that: A wedge-shaped portion I (2031) is provided on the limiting plate I (203).

4. The efficient and intelligent aluminum foil label paper cutting device according to claim 1 is characterized in that: A magnet is provided at the lower portion of the limiting rod (212), and the fixing plate (213) is made of an iron sheet.

5. The efficient and intelligent aluminum foil label paper cutting device according to claim 1 is characterized in that: One side of the flat plate (211) is flush with one side of the limiting rod (212).

6. The efficient and intelligent aluminum foil label paper cutting device according to claim 1 is characterized in that: A wedge-shaped portion II (2071) is provided on the limiting plate II (207).

7. The efficient and intelligent aluminum foil label paper cutting device according to claim 1 is characterized in that: A blocking portion (2091) is provided on the upper surface of the support plate II (209).

8. The high-efficiency intelligent cutting device for aluminum foil label paper according to claim 7 is characterized in that: The invention also includes a detection system; the detection system is connected to the driving assembly; the detection system includes an air knife (204), a visual sensor (301), an electric slider III (302), an electric actuator II (303), a suction plate (304), a round roller (305) and a top plate (306); a plurality of vent holes are opened on the limit plate I (203); the air knife (204) is fixedly connected to the connecting plate (202); the visual sensor (301) is installed on the driving assembly; the electric slider is installed on the driving assembly Block III (302); an electric actuator II (303) is fixedly connected to the electric slider III (302); a suction plate (304) is fixedly connected to the telescopic portion of the electric actuator II (303); at least two round rollers (305) are provided at the lower portion of the suction plate (304), and a plurality of round holes are opened at the lower portion of all the round rollers (305); a top plate (306) is provided at the lower portion of the suction plate (304), and a plurality of air holes are opened at the lower portion of the top plate (306), and the air holes are inclined toward the direction of the limit plate II (207).

9. The efficient and intelligent aluminum foil label paper cutting device according to claim 8 is characterized in that: The lower surface of the round roller (305) and the lower surface of the top plate (306) are at the same level.

Citation Information

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