CN209888398U - Full-automatic packaging box printing equipment - Google Patents

Full-automatic packaging box printing equipment Download PDF

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Publication number
CN209888398U
CN209888398U CN201920555647.9U CN201920555647U CN209888398U CN 209888398 U CN209888398 U CN 209888398U CN 201920555647 U CN201920555647 U CN 201920555647U CN 209888398 U CN209888398 U CN 209888398U
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CN
China
Prior art keywords
fixed connection
full
equipment main
controller
cylinder
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Expired - Fee Related
Application number
CN201920555647.9U
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Chinese (zh)
Inventor
曹惠良
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Shenzhen Xunyang Printing And Packaging Co ltd
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Shenzhen Xunyang Printing And Packaging Co ltd
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Priority to CN201920555647.9U priority Critical patent/CN209888398U/en
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Publication of CN209888398U publication Critical patent/CN209888398U/en
Expired - Fee Related legal-status Critical Current
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Abstract

Full-automatic packing carton lithography apparatus, it relates to lithography apparatus technical field. It contains equipment principal, stacker, cylinder, support, conveyer belt, grabs material mechanism, controller, two stacker fixed connection in the left and right sides of equipment principal, two support fixed connection in the upper portion left and right sides of equipment principal, two the cylinder be opposite fixed connection respectively at the top of equipment principal, the conveyer belt install in the inside below of equipment principal, two grab material mechanism sliding connection respectively two the below of support, the controller install in the front of equipment principal, its simple structure, improve equipment's production efficiency, load or the stack is accomplished the back, the backup pad is rotatable, makes things convenient for operating the computer and lower the machine of packing carton.

Description

Full-automatic packaging box printing equipment
Technical Field
The utility model relates to a lithography apparatus technical field, concretely relates to full-automatic packing carton lithography apparatus.
Background
The printing machine for the packing box is a printing device which can print required characters, patterns and other information on the surface of the box body of the packing box, and generally comprises the process flows of plate loading, ink coating, stamping, paper conveying and the like. The carton printing is generally a sheet printer, a color printing apparatus, a flexographic printer, a digital printer, a screen printer, and the like.
The characters and images to be printed are made into printing plate, then it is mounted on the printing machine, then the ink is coated on the position of the characters and images on the printing plate by manual or printing machine, then it is directly or indirectly transferred on the paper or other printing material (such as textile, metal plate, plastics, leather, wood plate, glass and ceramic) so as to reproduce the same printed matter as the printing plate.
However, when the traditional printing machine finishes loading and unloading after printing, the equipment needs to be stopped, the production efficiency of the equipment is wasted, and the benefit of an enterprise cannot be ensured.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art's defect and not enough, provide a full-automatic packing carton lithography apparatus, its simple structure, improve equipment's production efficiency, loading or the stack is accomplished the back, and the backup pad is rotatable, makes things convenient for operating the computer and lower of packing carton.
In order to achieve the above purpose, the utility model adopts the following technical scheme: it contains equipment main part 1, stacker 2, cylinder 3, support 4, conveyer belt 5, grabs material mechanism 6, controller 7, two stacker 2 fixed connection in the left and right sides of equipment main part 1, two support 4 fixed connection in the upper portion left and right sides of equipment main part 1, two cylinder 3 respectively opposite fixed connection at the top of equipment main part 1, conveyer belt 5 install in the inside below of equipment main part 1, two grab material mechanism 6 sliding connection respectively two the below of support 4, controller 7 install in the front of equipment main part 1.
Stacker 2 contain base 21, motor 22, backup pad 23, spacing sensor 24, stopper 25, backup pad 23 is located base 21 directly over, motor 22 fixed connection is in base 21's inside intermediate position, and motor 22's pivot runs through the top of base 21 and is connected with the bottom intermediate position of backup pad 23, spacing sensor 24 fixed connection is in both sides about base 21's the top, stopper 25 fixed connection is in the bottom left and right sides of backup pad 23.
A separation plate 231 is arranged at the middle position right above the support plate 23, and the vertical position of the limit sensor 24 corresponds to the vertical position of the limit block 25 after the support plate 23 rotates through the motor 22.
Grab material mechanism 6 contain connecting plate 61, lift cylinder 62, switching-over pneumatic valve 63, bottom plate 64, sucking disc 65, lift cylinder 62 is perpendicular fixed connection in four edges under connecting plate 61, bottom plate 64 fixed connection is under four lift cylinders 62, switching-over pneumatic valve 63 fixed connection is directly over bottom plate 64, the even fixed connection of a plurality of sucking discs 65 is under bottom plate 64.
The connecting piece 611 is installed at the middle position right above the connecting plate 61, and the connecting piece 611 is respectively connected with the telescopic rod of the cylinder 3.
The damping support 11 is installed under the equipment main body 1, two observation windows 12 are installed on the front of the equipment main body 1, and the two observation windows 12 are respectively installed on the left side and the right side of the controller 7.
The controller 7 is a PLC touch-controllable controller, and the controller 7 is electrically connected with the motor 22, the limit sensor 24 and the reversing pneumatic valve 63.
One end of the reversing air-operated valve 63 is connected with the air pump through a connecting air pipe, and the other end of the reversing air-operated valve 63 is respectively connected with the air cylinder 3, the lifting air cylinder 62 and the sucker 65 on the same side through the connecting air pipe.
The utility model discloses a theory of operation: the packing carton tiling range upon range of that will need to print is on backup pad 23, the intermediate position is provided with division board 231 directly over backup pad 23, division board 231 is used for separating the packing carton of the left and right sides on backup pad 23, after one side is paved on backup pad 23, motor 22 is opened through controller 7, motor 22 is rotatory to drive backup pad 23 rotatory, turn to the packing carton and grab material mechanism 6 under, then grab material mechanism 6 descends and send the packing carton to the inside of sending into equipment main part 1 on conveyer belt 5 and print, after the printing is accomplished, then grab the packing carton that will print through the grab material mechanism 6 of opposite side and send to on the stacker 2 of opposite side, then open the inside motor of stacker 2 of opposite side through controller 7 after one side backup pad 23 is piled up on stacker 2 of opposite side, make opposite side backup pad 23 rotatory.
After the technical scheme is adopted, the utility model discloses beneficial effect does: the novel packing box stacking machine is simple in structure, improves production efficiency of equipment, and is convenient for loading and unloading of packing boxes due to the fact that the supporting plate can rotate after loading or stacking is completed.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a schematic structural view of the support plate 23 of the present invention;
fig. 3 is a schematic structural diagram of the middle bottom plate 64 according to the present invention;
fig. 4 is a schematic structural diagram of the stacker 2 in the present invention;
fig. 5 is a schematic structural diagram of the material grabbing mechanism 6 in the present invention;
fig. 6 is a schematic structural diagram of the middle connection plate 61 of the present invention.
Description of reference numerals: the device comprises a device main body 1, a stacker 2, an air cylinder 3, a support 4, a conveying belt 5, a material grabbing mechanism 6, a controller 7, a base 21, a motor 22, a support plate 23, a limit sensor 24, a limit block 25, a separation plate 231, a connecting plate 61, a lifting air cylinder 62, a reversing air-operated valve 63, a bottom plate 64, a suction cup 65, a connecting piece 611, a damping support 11 and an observation window 12.
Detailed Description
Referring to fig. 1 to 6, the technical solution adopted by the present embodiment is: it contains equipment main part 1, stacker 2, cylinder 3, support 4, conveyer belt 5, grabs material mechanism 6, controller 7, two stacker 2 fixed connection in the left and right sides of equipment main part 1, two support 4 fixed connection in the upper portion left and right sides of equipment main part 1, two cylinder 3 respectively opposite fixed connection at the top of equipment main part 1, conveyer belt 5 install in the inside below of equipment main part 1, two grab material mechanism 6 sliding connection respectively two the below of support 4, controller 7 install in the front of equipment main part 1.
Stacker 2 contain base 21, motor 22, backup pad 23, spacing sensor 24, stopper 25, backup pad 23 is located base 21 directly over, motor 22 fixed connection is in base 21's inside intermediate position, and motor 22's pivot runs through the top of base 21 and is connected with the bottom intermediate position of backup pad 23, spacing sensor 24 fixed connection is in both sides about base 21's the top, stopper 25 fixed connection is in the bottom left and right sides of backup pad 23.
A separation plate 231 is arranged at the middle position right above the support plate 23, and the vertical position of the limit sensor 24 corresponds to the vertical position of the limit block 25 after the support plate 23 rotates through the motor 22. The partition plate 231 partitions the packing box on the left and right sides of the supporting plate 23.
Grab material mechanism 6 contain connecting plate 61, lift cylinder 62, switching-over pneumatic valve 63, bottom plate 64, sucking disc 65, lift cylinder 62 is perpendicular fixed connection in four edges under connecting plate 61, bottom plate 64 fixed connection is under four lift cylinders 62, switching-over pneumatic valve 63 fixed connection is directly over bottom plate 64, the even fixed connection of a plurality of sucking discs 65 is under bottom plate 64.
The connecting piece 611 is installed at the middle position right above the connecting plate 61, and the connecting piece 611 is respectively connected with the telescopic rod of the cylinder 3. The material grabbing mechanism 6 is connected with the cylinder 3 through a connecting piece 611, so that the material grabbing mechanism moves when grabbing materials.
The damping support 11 is installed under the equipment main body 1, two observation windows 12 are installed on the front of the equipment main body 1, and the two observation windows 12 are respectively installed on the left side and the right side of the controller 7. The shock-absorbing support 11 can reduce the vibration of the equipment during printing, and the condition inside the printing machine can be visually observed through the two observation windows 12.
The controller 7 is a PLC touch-controllable controller, and the controller 7 is electrically connected with the motor 22, the limit sensor 24 and the reversing pneumatic valve 63. The controller 7 can control the opening or closing of the motor 22, when the motor 22 rotates to drive the support plate 23 to rotate, and the limit block 25 at the bottom of the support plate 23 rotates to the limit sensor 24, the controller 7 controls the motor 22 to stop, and the controller 7 is connected with the reversing air-operated valve 63 to control the reversing air-operated valve 63 to deflate the air cylinder 3, the lifting air cylinder 62 and the suction cup 65.
One end of the reversing air-operated valve 63 is connected with the air pump through a connecting air pipe, so that an air source required by work can be provided for the air cylinder 3, the lifting air cylinder 62 and the sucker 65, the other end of the reversing air-operated valve 63 is connected with the air cylinder 3, the lifting air cylinder 62 and the sucker 65 on the same side through the connecting air pipe, and the opening or closing of the air cylinder 3, the lifting air cylinder 62 and the sucker 65 can be controlled.
The utility model discloses a theory of operation: the packing carton tiling range upon range of that will need to print is on backup pad 23, the intermediate position is provided with division board 231 directly over backup pad 23, division board 231 is used for separating the packing carton of the left and right sides on backup pad 23, after one side is paved on backup pad 23, motor 22 is opened through controller 7, motor 22 is rotatory to drive backup pad 23 rotatory, turn to the packing carton and grab material mechanism 6 under, then grab material mechanism 6 descends and send the packing carton to the inside of sending into equipment main part 1 on conveyer belt 5 and print, after the printing is accomplished, then grab the packing carton that will print through the grab material mechanism 6 of opposite side and send to on the stacker 2 of opposite side, then open the inside motor of stacker 2 of opposite side through controller 7 after one side backup pad 23 is piled up on stacker 2 of opposite side, make opposite side backup pad 23 rotatory.
After the technical scheme is adopted, the utility model discloses beneficial effect does: the novel packing box stacking machine is simple in structure, improves production efficiency of equipment, and is convenient for loading and unloading of packing boxes due to the fact that the supporting plate can rotate after loading or stacking is completed.
The above description is only for the purpose of illustrating the technical solutions of the present invention and not for the purpose of limiting the same, and other modifications or equivalent replacements made by those of ordinary skill in the art to the technical solutions of the present invention should be covered within the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solutions of the present invention.

Claims (8)

1. Full-automatic packing carton lithography apparatus, its characterized in that: it contains equipment main part (1), stacker (2), cylinder (3), support (4), conveyer belt (5), grabs material mechanism (6), controller (7), two stacker (2) fixed connection in the left and right sides of equipment main part (1), two support (4) fixed connection in the upper portion left and right sides of equipment main part (1), two cylinder (3) opposite fixed connection respectively at the top of equipment main part (1), conveyer belt (5) install in the inside below of equipment main part (1), two grab material mechanism (6) sliding connection respectively two the below of support (4), controller (7) install in the front of equipment main part (1).
2. The full-automatic packing box printing apparatus according to claim 1, wherein: stacker (2) contain base (21), motor (22), backup pad (23), spacing sensor (24), stopper (25), backup pad (23) are located base (21) directly over, motor (22) fixed connection is in the inside intermediate position of base (21), and the pivot of motor (22) runs through the top of base (21) and is connected with the bottom intermediate position of backup pad (23), both sides about spacing sensor (24) fixed connection is directly over base (21), stopper (25) fixed connection is in the bottom left and right sides of backup pad (23).
3. The full-automatic packing box printing apparatus according to claim 2, wherein: a separation plate (231) is arranged at the middle position right above the support plate (23), and the support plate (23) is rotated by a motor (22) to enable a position limiting sensor (24) to correspond to the vertical position of a limiting block (25).
4. The full-automatic packing box printing apparatus according to claim 1, wherein: grab material mechanism (6) contain connecting plate (61), lift cylinder (62), switching-over pneumatic valve (63), bottom plate (64), sucking disc (65), lift cylinder (62) perpendicular fixed connection is in four edges under connecting plate (61), bottom plate (64) fixed connection is under four lift cylinders (62), switching-over pneumatic valve (63) fixed connection is directly over bottom plate (64), even fixed connection of a plurality of sucking discs (65) is directly under bottom plate (64).
5. The full-automatic packing box printing apparatus according to claim 4, wherein: and a connecting piece (611) is arranged at the middle position right above the connecting plate (61), and the connecting piece (611) is respectively connected with the telescopic rod of the cylinder (3).
6. The full-automatic packing box printing apparatus according to claim 1, wherein: the damping support (11) is installed under the equipment main body (1), two observation windows (12) are installed in the front of the equipment main body (1), and the left and right sides at controller (7) are installed respectively in two observation windows (12).
7. The full-automatic packing box printing apparatus according to claim 1, wherein: the controller (7) is a PLC touch control controller, and the controller (7) is electrically connected with the motor (22), the limit sensor (24) and the reversing pneumatic valve (63).
8. The full-automatic packing box printing apparatus according to claim 4, wherein: one end of the reversing air-operated valve (63) is connected with the air pump through a connecting air pipe, and the other end of the reversing air-operated valve (63) is respectively connected with the air cylinder (3), the lifting air cylinder (62) and the sucker (65) on the same side through the connecting air pipe.
CN201920555647.9U 2019-04-23 2019-04-23 Full-automatic packaging box printing equipment Expired - Fee Related CN209888398U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920555647.9U CN209888398U (en) 2019-04-23 2019-04-23 Full-automatic packaging box printing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920555647.9U CN209888398U (en) 2019-04-23 2019-04-23 Full-automatic packaging box printing equipment

Publications (1)

Publication Number Publication Date
CN209888398U true CN209888398U (en) 2020-01-03

Family

ID=69019232

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920555647.9U Expired - Fee Related CN209888398U (en) 2019-04-23 2019-04-23 Full-automatic packaging box printing equipment

Country Status (1)

Country Link
CN (1) CN209888398U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200103

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