CN114311857A - Clean production process and production device for high-strength corrugated boards - Google Patents

Clean production process and production device for high-strength corrugated boards Download PDF

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Publication number
CN114311857A
CN114311857A CN202111655076.4A CN202111655076A CN114311857A CN 114311857 A CN114311857 A CN 114311857A CN 202111655076 A CN202111655076 A CN 202111655076A CN 114311857 A CN114311857 A CN 114311857A
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paper
equipment
air
fixed mounting
production process
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CN202111655076.4A
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陈莹
刘大旺
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Huai'an Huatai Paper Products Co ltd
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Huai'an Huatai Paper Products Co ltd
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Abstract

The invention discloses a high-strength corrugated board cleaning production process and a production device, relates to the technical field of corrugated board production, and aims to solve the problems that the subsequent gluing operation and the overall structural strength are influenced and the functionality needs to be improved because the conventional production process does not have a dust removal process and cannot carry out dust removal operation on the outer surface of a raw material. The utility model discloses a dust removal device, including shell body, one side surface of shell body, fixed mounting has the linker that admits air on the one side surface of shell body, fixed mounting has the air pump on the one side surface of the linker that admits air, the end of giving vent to anger of air pump communicates with each other through trachea and the inside of linker that admits air, fixed mounting has a plurality of dust removal pipes on the symmetry one side surface of the linker that admits air, all be provided with the venthole on the symmetry side surface of dust removal pipe, all be provided with the logical groove that admits air on the shell body symmetry inner wall, fixed mounting has an air suction fan on the symmetry surface of shell body respectively, the fixed mounting that gives vent to anger of air suction fan has the air duct.

Description

Clean production process and production device for high-strength corrugated boards
Technical Field
The invention relates to the technical field of corrugated board production, in particular to a clean production process and a production device for a high-strength corrugated board.
Background
Corrugated paper is a plate-shaped object formed by bonding liner paper and corrugated paper of a waveform formed by processing through corrugated rollers, and is generally divided into a single corrugated board and a double corrugated board.
The existing production process has no dust removal process, the dust removal operation can not be carried out on the outer surface of the raw material, the subsequent gluing operation and the overall structural strength are influenced, and the functionality needs to be improved; therefore, the market urgently needs to develop a clean production process and a production device of the high-strength corrugated board to help people solve the existing problems.
Disclosure of Invention
The invention aims to provide a high-strength corrugated board cleaning production process and a production device, and aims to solve the problems that the prior production process in the background art has no dust removal process, the dust removal operation cannot be performed on the outer surface of a raw material, the subsequent gluing operation and the overall structural strength are influenced, and the functionality needs to be improved.
In order to achieve the purpose, the invention provides the following technical scheme: the clean production process of the high-strength corrugated board comprises the following steps:
s1, preparing roll-shaped paper of corrugated paper and glue;
s2, transferring the roll-shaped paper obtained in the step S1 to an feeding rail by a forklift, and pouring glue into the gluing equipment;
s3, transferring the roll paper into a feeding device by using a conveying track, and then enabling one end of the paper to enter the interior of the electrostatic dust collection equipment by using a conveying roller in the feeding equipment;
s4, after the paper enters the electrostatic dust collection equipment, blowing the surface of the paper by using an air outlet structure in the equipment, and then enabling the air mixed with dust to pass through a high-voltage electric field for electrostatic dust collection;
s5, the paper after being dedusted in the step S4 enters the inside of the finish degree detection equipment, and when the paper passes through the inside of the equipment, the scanning structure inside scans the outer layer paper and marks the damaged part;
s6, the paper detected in the step S5 enters the interior of a laminating device, and the laminating device performs groove pressing operation on the paper of the middle layer;
s7, feeding the paper subjected to the groove pressing in the step S6 into gluing equipment, and gluing the surfaces of the paper covered on the upper side and the lower side by using a gluing structure;
s8, the paper coated with the glue in the step S7 enters the laminating equipment, and the laminating equipment laminates the paper coated with the glue on two side surfaces of the middle layer paper;
s9, enabling the attached semi-finished corrugated paper to enter the drying equipment, and curing the glue which is not dried temporarily by using hot air in the drying equipment;
s10, the corrugated paper dried in the step S9 enters cooling forming equipment, and the dried corrugated paper is cooled and shaped through the cooling forming equipment;
s11, the cooled corrugated paper enters the interior of an indentation device, and crease indentation operation is carried out on the surface of the whole piece of corrugated paper through an indentation structure;
s12, the corrugated paper after being pressed by the press mark in the step S11 enters the cutting equipment, and the whole corrugated paper is cut according to the set size;
s13, the corrugated board cut in the step S12 enters the interior of screening equipment, a scanning mechanism in the screening equipment scans the outermost layer of the corrugated board, and after a mark is found, an internal rejecting structure is started to reject unqualified products;
and S14, collecting and stacking the corrugated paper blocks screened in the step S13 by a collecting device.
Preferably, need use electrostatic precipitator equipment in step S4, electrostatic precipitator equipment includes the shell body, fixed mounting has the intercommunication ware that admits air on the surface of one side of shell body, fixed mounting has the air pump on the surface of one side of the intercommunication ware that admits air, the end of giving vent to anger of air pump communicates with each other with the intercommunication ware that admits air through the trachea, fixed mounting has a plurality of dust removal pipes on the surface of symmetry one side of the intercommunication ware that admits air, all be provided with the venthole on the symmetry side surface of dust removal pipe.
Preferably, all be provided with logical groove of admitting air on the shell body symmetry inner wall, on the symmetry surface of shell body respectively fixed mounting have a fan of breathing in, the fixed mounting that gives vent to anger of fan has the air duct, fixed mounting has the dust removal case, two on the upper surface of shell body the end of giving vent to anger of air duct is fixed mounting respectively on the symmetry side surface of dust removal case, dust removal case symmetry inner wall on respectively fixed mounting have a high-voltage electrode board.
Preferably, a detection marking device is required to be used in the step S5, the detection marking device includes a mounting bracket, a mounting hole is provided at a middle position of an upper surface of the mounting bracket, a first industrial camera is fixedly mounted inside the mounting hole, a control center is fixedly mounted on the upper surface of the mounting bracket, the control center is electrically connected with the first industrial camera, and the mounting bracket is provided.
Preferably, the upper surface of installing support is provided with the mounting hole, and the inside fixed mounting of mounting hole has the mark cylinder, the flexible end fixed mounting of mark cylinder has marking mechanism, control center and the solenoid valve electric connection of mark cylinder external control.
Preferably, the control center includes a first receiving module, a first identification module, and a marking module inside, an output end of the first receiving module is connected to a receiving end of the first identification module, and an output end of the first identification module is connected to a receiving end of the marking module.
Preferably, the screening device is required to be used in the step S13 and comprises a supporting frame, two conveying belts are arranged at the upper end of the supporting frame, the support is eliminated through fixedly connected to the upper surface of the supporting frame, a mounting hole is formed in the upper surface of the eliminating support, a second industrial camera is fixedly mounted inside the mounting hole, a detection center is fixedly mounted on the upper surface of the eliminating support, and the detection center is electrically connected with the second industrial camera.
Preferably, the side surface of the rejecting support is provided with a mounting hole, the rejecting cylinder is fixedly mounted inside the mounting hole, the telescopic end of the rejecting cylinder is fixedly connected with a pushing support, the pushing support is located between the two conveying belts, and the detection center is electrically connected with the electromagnetic valve for controlling the rejecting cylinder.
Preferably, the detection center comprises a second receiving module, a second identification module and a rejection module, the output end of the second receiving module is connected with the receiving end of the second identification module, and the output end of the second identification module is connected with the receiving end of the rejection module.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the invention, by adding the electrostatic dust removal process in the whole process flow, high-pressure gas generated by the air pump can be introduced into the air inlet communicating vessel, then is sprayed out from the air outlet hole on the side surface of the dust removal pipe, and carries out dust removal operation on the outer surface of paper, and simultaneously starts the air suction fan, under the rotation of the air suction fan, air with dust floating in the outer shell enters the dust removal box along the air guide pipe, and then two high-pressure electrode plates in the dust removal box are electrified, so that the interior of the dust removal box is in a strong electrostatic field, and further the electrostatic dust removal operation is carried out on the air passing through the interior of the dust removal box, therefore, the cleanliness in the production process of the corrugated paper is effectively improved, meanwhile, the condition that the subsequent adhesion degree of glue and the paper is insufficient can be avoided, and the structural stability of the corrugated paper is effectively improved;
2. according to the invention, by adding the raw material integrity detection process in the whole process flow, the raw material paper passing through the lower part of the mounting bracket can be scanned and shot by using the first industrial camera, the scanned picture is transmitted to the inside of the control center, then the shot picture is identified by using the first identification module, when the damage on the outer surface of the raw material paper is identified, a signal is transmitted to the marking module, the marking module is electrified to the electromagnetic valve for controlling the marking cylinder, the marking cylinder extends out, so that the marking mechanism marks the outer surface of the raw material paper, the subsequent removal operation is facilitated, the whole production device is provided with the self-checking device, and the functionality of the whole production device is effectively improved;
3. according to the invention, by adding a screening process in the whole process flow, the outer surface of a finished corrugated board conveyed on a conveying belt can be scanned by using a second industrial camera, the scanned image is transmitted to the inside of a detection center, after the scanning image is identified by a second identification module, when a mark appears, the second identification module transmits a signal to a rejection module, the rejection module controls an electromagnetic valve of a rejection cylinder to be electrified and opened, the rejection cylinder extends out at the moment, and a material pushing support is driven to displace, so that a defective product is pushed down from the conveying belt, the blanking operation of the defective product is effectively realized, the defective product is prevented from flowing into the market, and the functionality of the production device is effectively improved.
Drawings
FIG. 1 is a process flow diagram of the present invention;
FIG. 2 is a schematic view of an electrostatic precipitator apparatus according to the present invention;
FIG. 3 is a schematic view of the detecting and marking apparatus of the present invention;
FIG. 4 is a schematic view of the screening apparatus of the present invention;
FIG. 5 is a flow chart of the control center operation of the present invention;
FIG. 6 is a flow chart of the operation of the detection center of the present invention.
In the figure: 1. an outer housing; 2. an intake communicating vessel; 3. an air pump; 4. a dust removal pipe; 5. an air suction fan; 6. an air duct; 7. a dust removal box; 8. a high voltage electrode plate; 9. mounting a bracket; 10. a control center; 11. a first industrial camera; 12. marking the cylinder; 13. a marking mechanism; 14. a support frame; 15. a conveyor belt; 16. removing the bracket; 17. removing the air cylinder; 18. a material pushing bracket; 19. detecting a center; 20. a second industrial camera; 21. a first receiving module; 22. a first identification module; 23. a marking module; 24. a second receiving module; 25. a second identification module; 26. and a rejection module.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-6, an embodiment of the present invention is shown: the clean production process of the high-strength corrugated board comprises the following steps:
s1, preparing roll-shaped paper of corrugated paper and glue;
s2, transferring the roll-shaped paper obtained in the step S1 to an feeding rail by a forklift, and pouring glue into the gluing equipment;
s3, transferring the roll paper into a feeding device by using a conveying track, and then enabling one end of the paper to enter the interior of the electrostatic dust collection equipment by using a conveying roller in the feeding equipment;
s4, after the paper enters the electrostatic dust collection equipment, blowing the surface of the paper by using an air outlet structure in the equipment, and then enabling the air mixed with dust to pass through a high-voltage electric field for electrostatic dust collection;
s5, the paper after being dedusted in the step S4 enters the inside of the finish degree detection equipment, and when the paper passes through the inside of the equipment, the scanning structure inside scans the outer layer paper and marks the damaged part;
s6, the paper detected in the step S5 enters the interior of a laminating device, and the laminating device performs groove pressing operation on the paper of the middle layer;
s7, feeding the paper subjected to the groove pressing in the step S6 into gluing equipment, and gluing the surfaces of the paper covered on the upper side and the lower side by using a gluing structure;
s8, the paper coated with the glue in the step S7 enters the laminating equipment, and the laminating equipment laminates the paper coated with the glue on two side surfaces of the middle layer paper;
s9, enabling the attached semi-finished corrugated paper to enter the drying equipment, and curing the glue which is not dried temporarily by using hot air in the drying equipment;
s10, the corrugated paper dried in the step S9 enters cooling forming equipment, and the dried corrugated paper is cooled and shaped through the cooling forming equipment;
s11, the cooled corrugated paper enters the interior of an indentation device, and crease indentation operation is carried out on the surface of the whole piece of corrugated paper through an indentation structure;
s12, the corrugated paper after being pressed by the press mark in the step S11 enters the cutting equipment, and the whole corrugated paper is cut according to the set size;
s13, the corrugated board cut in the step S12 enters the interior of screening equipment, a scanning mechanism in the screening equipment scans the outermost layer of the corrugated board, and after a mark is found, an internal rejecting structure is started to reject unqualified products;
and S14, collecting and stacking the corrugated paper blocks screened in the step S13 by a collecting device.
Further, in step S4, an electrostatic dust removal device is required, the electrostatic dust removal device includes an outer housing 1, an air inlet connector 2 is fixedly installed on an outer surface of one side of the outer housing 1, an air pump 3 is fixedly installed on an outer surface of one side of the air inlet connector 2, an air outlet end of the air pump 3 is communicated with the inside of the air inlet connector 2 through an air pipe, a plurality of dust removal pipes 4 are fixedly installed on an outer surface of one symmetrical side of the air inlet connector 2, air outlet holes are respectively formed on symmetrical side surfaces of the dust removal pipes 4, air inlet through grooves are respectively formed on symmetrical inner walls of the outer housing 1, an air suction fan 5 is respectively fixedly installed on the symmetrical outer surface of the outer housing 1, air outlet ends of the air suction fan 5 are fixedly installed with air guide pipes 6, a dust removal box 7 is fixedly installed on an upper surface of the outer housing 1, air outlet ends of the two air guide pipes 6 are respectively fixedly installed on symmetrical side surfaces of the dust removal box 7, a high voltage electrode plate 8 is respectively fixedly installed on symmetrical inner walls of the dust removal box 7, this can be with the leading-in inside of communicating vessel 2 that admits air of high-pressure gas that air pump 3 produced, then from the venthole blowout on the 4 side surfaces of dust removal pipe again, and carry out the dust removal operation to the surface of paper, restart fan 5 of breathing in simultaneously, under the rotation of fan 5 of breathing in, the inside air that has the dust of floating of shell body 1 gets into the inside of dust removal case 7 along air duct 6, two high voltage electrode board 8 circular telegrams to dust removal case 7 inside after that, make the inside of dust removal case 7 be in strong electrostatic field, and then carry out the electrostatic precipitator operation from the inside air that passes of dust removal case 7, the effectual cleanliness that has improved in this corrugated paper production process, also can avoid subsequent glue and the not enough condition of paper adhesion degree simultaneously, the effectual structural stability who improves the corrugated paper.
Further, in step S5, a detection marking device is required, the detection marking device includes a mounting bracket 9, a mounting hole is disposed at a middle position of an upper surface of the mounting bracket 9, a first industrial camera 11 is fixedly mounted inside the mounting hole, a control center 10 is fixedly mounted on the upper surface of the mounting bracket 9, the control center 10 is electrically connected to the first industrial camera 11, the mounting bracket 9 is provided with a mounting hole on the upper surface of the mounting bracket 9, a marking cylinder 12 is fixedly mounted inside the mounting hole, a marking mechanism 13 is fixedly mounted on a telescopic end of the marking cylinder 12, the control center 10 is electrically connected to an electromagnetic valve controlled outside the marking cylinder 12, a first receiving module 21, a first identification module 22 and a marking module 23 are included inside the control center 10, an output end of the first receiving module 21 is connected to a receiving end of the first identification module 22, the output end of the first identification module 22 is connected with the receiving end of the marking module 23, the raw paper passing below the mounting bracket 9 can be scanned and shot by utilizing the first industrial camera 11, the scanned picture is transmitted to the inside of the control center 10, then the shot picture is identified by utilizing the first identification module 22, when the damage appears on the outer surface of the raw paper, the signal is transmitted to the marking module 23, the electromagnetic valve for controlling the marking cylinder 12 is electrified by the marking module 23, the marking cylinder 12 extends out, and further the marking mechanism 13 marks on the outer surface of the raw paper, so that the subsequent rejection operation is facilitated, a self-checking device is arranged in the whole production device, and the functionality of the whole production device is effectively improved.
Further, in step S13, a screening device is required to be used, the screening device includes a supporting frame 14, two conveyor belts 15 are disposed at the upper end of the supporting frame 14, a removing support 16 is fixedly connected to the upper surface of the supporting frame 14, a mounting hole is disposed on the upper surface of the removing support 16, a second industrial camera 20 is fixedly mounted inside the mounting hole, a detection center 19 is fixedly mounted on the upper surface of the removing support 16, the detection center 19 is electrically connected to the second industrial camera 20, a mounting hole is disposed on the side surface of the removing support 16, a removing cylinder 17 is fixedly mounted inside the mounting hole, a telescopic end of the removing cylinder 17 is fixedly connected to a material pushing support 18, the material pushing support 18 is located between the two conveyor belts 15, the detection center 19 is electrically connected to an electromagnetic valve for controlling the removing cylinder 17, a second receiving module 24 is included inside the detection center 19, A second recognition module 25 and a rejection module 26, wherein the output end of the second receiving module 24 is connected with the receiving end of the second recognition module 25, the output end of the second recognition module 25 is connected with the receiving end of the rejection module 26, so that the second industrial camera 20 can be used to scan the outer surface of the finished corrugated cardboard conveyed on the conveyor belt 15, and transmits the scanned image to the inside of the inspection center 19, and after being recognized by the second recognition module 25, when the mark appears, the second recognition module 25 transmits a signal to the rejection module 26, the rejection module 26 controls the electromagnetic valve of the rejection cylinder 17 to be electrified and opened, at the moment, the rejection cylinder 17 extends out, and then drive and push away material support 18 and take place the displacement to push off the defective work conveyer belt 15, the effectual unloading operation that realizes the defective work, avoid the defective work to flow into market, the effectual functionality that improves this apparatus for producing.
The working principle is as follows: when the electrostatic dust removal device is used, firstly, roll-shaped paper and glue for manufacturing corrugated paper are prepared, then, the roll-shaped paper is transferred onto a feeding rail by a forklift, meanwhile, the glue is poured into gluing equipment, then, the roll-shaped paper is transferred into a feeding device by the aid of the conveying rail, then, one end of the paper enters the electrostatic dust removal equipment by the aid of a conveying roller in the feeding equipment, when the paper passes through the inner part of the outer shell 1, high-pressure gas generated by the air pump 3 can be guided into the air inlet communicating device 2, then, the high-pressure gas is sprayed out from the air outlet holes in the side surface of the dust removal pipe 4, dust removal operation is carried out on the outer surface of the paper, meanwhile, the air suction fan 5 is started, under the rotation of the air suction fan 5, air with dust floating in the outer shell 1 enters the inner part of the dust removal box 7 along the air guide pipe 6, then, the two high-pressure electrode plates 8 in the dust removal box 7 are electrified, and the inner part of the dust removal box 7 is in a strong electrostatic field, then, the air passing through the dust removing box 7 is subjected to electrostatic dust removing operation, the paper after dust removal enters the inside of the finish degree detection equipment, when the paper passes through the inside of the equipment, a first industrial camera 11 can be used for scanning and shooting the raw material paper passing below the mounting bracket 9, the scanned picture is transmitted to the inside of the control center 10, then the shot picture is identified by a first identification module 22, when the outer surface of the raw material paper is identified to be damaged, a signal is transmitted to a marking module 23, the marking module 23 energizes an electromagnetic valve for controlling a marking cylinder 12, the marking cylinder 12 extends out, so that a marking mechanism 13 marks the outer surface of the raw material paper, the detected paper enters the inside of a pressing device, the pressing device performs groove pressing operation on the paper in the middle layer, and the paper after groove pressing enters the gluing equipment together, the gluing structure is used for gluing the surfaces of paper covered on the upper side and the lower side, the glued paper enters the laminating equipment together, the laminating equipment is used for laminating the paper coated with glue on two side surfaces of the middle layer paper, the laminated semi-finished corrugated paper enters the drying equipment, the hot air in the drying equipment is used for solidifying the temporarily undried glue, the dried corrugated paper enters the cooling forming equipment, the cooled corrugated paper is cooled and shaped by the cooling forming equipment, the cooled corrugated paper enters the indentation device, the crease indentation operation is carried out on the surface of the whole piece of corrugated paper through the indentation structure, the indented corrugated paper enters the cutting equipment, the cutting operation is carried out on the whole piece of corrugated paper according to the set size, and the cut corrugated paper enters the screening equipment, at this time, the finished corrugated board conveyed on the conveying belt 15 can be subjected to outer surface scanning by the second industrial camera 20, the scanned image is transmitted to the inside of the detection center 19, after being identified by the second identification module 25, when a mark appears, the second identification module 25 transmits a signal to the rejection module 26, the rejection module 26 controls the electromagnetic valve of the rejection cylinder 17 to be powered on and opened, the rejection cylinder 17 extends out at the moment, the material pushing support 18 is driven to displace, the unqualified product is pushed down from the conveying belt 15, the blanking operation of the unqualified product is effectively realized, the unqualified product is prevented from flowing into the market, and the screened corrugated paper blocks are collected and stacked by the collecting device.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (9)

1. The clean production process of the high-strength corrugated board is characterized by comprising the following steps of: the method comprises the following steps:
s1, preparing roll-shaped paper of corrugated paper and glue;
s2, transferring the roll-shaped paper obtained in the step S1 to an feeding rail by a forklift, and pouring glue into the gluing equipment;
s3, transferring the roll paper into a feeding device by using a conveying track, and then enabling one end of the paper to enter the interior of the electrostatic dust collection equipment by using a conveying roller in the feeding equipment;
s4, after the paper enters the electrostatic dust collection equipment, blowing the surface of the paper by using an air outlet structure in the equipment, and then enabling the air mixed with dust to pass through a high-voltage electric field for electrostatic dust collection;
s5, the paper after being dedusted in the step S4 enters the inside of the finish degree detection equipment, and when the paper passes through the inside of the equipment, the scanning structure inside scans the outer layer paper and marks the damaged part;
s6, the paper detected in the step S5 enters the interior of a laminating device, and the laminating device performs groove pressing operation on the paper of the middle layer;
s7, feeding the paper subjected to the groove pressing in the step S6 into gluing equipment, and gluing the surfaces of the paper covered on the upper side and the lower side by using a gluing structure;
s8, the paper coated with the glue in the step S7 enters the laminating equipment, and the laminating equipment laminates the paper coated with the glue on two side surfaces of the middle layer paper;
s9, enabling the attached semi-finished corrugated paper to enter the drying equipment, and curing the glue which is not dried temporarily by using hot air in the drying equipment;
s10, the corrugated paper dried in the step S9 enters cooling forming equipment, and the dried corrugated paper is cooled and shaped through the cooling forming equipment;
s11, the cooled corrugated paper enters the interior of an indentation device, and crease indentation operation is carried out on the surface of the whole piece of corrugated paper through an indentation structure;
s12, the corrugated paper after being pressed by the press mark in the step S11 enters the cutting equipment, and the whole corrugated paper is cut according to the set size;
s13, the corrugated board cut in the step S12 enters the interior of screening equipment, a scanning mechanism in the screening equipment scans the outermost layer of the corrugated board, and after a mark is found, an internal rejecting structure is started to reject unqualified products;
and S14, collecting and stacking the corrugated paper blocks screened in the step S13 by a collecting device.
2. The clean production process of the high-strength corrugated board according to claim 1, characterized in that: need use electrostatic precipitator equipment in step S4, electrostatic precipitator equipment includes shell body (1), fixed mounting has the intercommunication ware (2) that admits air on the surface of one side of shell body (1), fixed mounting has air pump (3) on the surface of one side of the intercommunication ware (2) of admitting air, the end of giving vent to anger of air pump (3) communicates with each other with intercommunication ware (2) that admits air inside through the trachea, fixed mounting has a plurality of dust removal pipes (4) on the surface of symmetry one side of intercommunication ware (2) that admits air, all be provided with the venthole on the symmetry side surface of dust removal pipe (4).
3. The clean production process of the high-strength corrugated board according to claim 2, characterized in that: all be provided with logical groove of admitting air on shell body (1) symmetry inner wall, on the symmetry surface of shell body (1) respectively fixed mounting have one fan (5) of breathing in, the fixed mounting that gives vent to anger of fan (5) has air duct (6), fixed mounting has dust removal case (7) on the upper surface of shell body (1), two the end of giving vent to anger of air duct (6) is fixed mounting respectively on the symmetry side surface of dust removal case (7), dust removal case (7) symmetry inner wall on respectively fixed mounting have a high-voltage electrode board (8).
4. The clean production process of the high-strength corrugated board according to claim 1, characterized in that: the detection marking device is required to be used in the step S5 and comprises a mounting bracket (9), a mounting hole is formed in the middle position of the upper surface of the mounting bracket (9), a first industrial camera (11) is fixedly mounted inside the mounting hole, a control center (10) is fixedly mounted on the upper surface of the mounting bracket (9), the control center (10) is electrically connected with the first industrial camera (11), and the mounting bracket (9).
5. The clean production process of the high-strength corrugated board as claimed in claim 4, wherein the production process comprises the following steps: the mounting structure is characterized in that a mounting hole is formed in the upper surface of the mounting support (9), a marking cylinder (12) is fixedly mounted inside the mounting hole, a marking mechanism (13) is fixedly mounted at the telescopic end of the marking cylinder (12), and the control center (10) is electrically connected with an electromagnetic valve which is externally controlled by the marking cylinder (12).
6. The clean production process of the high-strength corrugated board as claimed in claim 4, wherein the production process comprises the following steps: the control center (10) is internally provided with a first receiving module (21), a first recognition module (22) and a marking module (23), the output end of the first receiving module (21) is connected with the receiving end of the first recognition module (22), and the output end of the first recognition module (22) is connected with the receiving end of the marking module (23).
7. The clean production process of the high-strength corrugated board according to claim 1, characterized in that: need use the sieving mechanism in step S13, the sieving mechanism includes braced frame (14), the upper end of braced frame (14) is provided with two conveyer belts (15), support (16) are rejected to fixedly connected with on the upper surface of braced frame (14), be provided with the mounting hole on the upper surface of rejecting support (16), and the inside fixed mounting of mounting hole has second industry camera (20), fixed mounting has detection center (19) on the upper surface of rejecting support (16), detect center (19) and second industry camera (20) electric connection.
8. The clean production process of high-strength corrugated cardboard according to claim 7, which is characterized in that: the side surface of the removing support (16) is provided with a mounting hole, the inside of the mounting hole is fixedly provided with a removing cylinder (17), the telescopic end of the removing cylinder (17) is fixedly connected with a material pushing support (18), the material pushing support (18) is located between the two conveying belts (15), and the detection center (19) is electrically connected with a solenoid valve for controlling the removing cylinder (17).
9. The clean production process of high-strength corrugated cardboard according to claim 7, which is characterized in that: the inside of the detection center (19) comprises a second receiving module (24), a second recognition module (25) and a rejection module (26), the output end of the second receiving module (24) is connected with the receiving end of the second recognition module (25), and the output end of the second recognition module (25) is connected with the receiving end of the rejection module (26).
CN202111655076.4A 2021-12-31 2021-12-31 Clean production process and production device for high-strength corrugated boards Pending CN114311857A (en)

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CN202111655076.4A CN114311857A (en) 2021-12-31 2021-12-31 Clean production process and production device for high-strength corrugated boards

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Application Number Priority Date Filing Date Title
CN202111655076.4A CN114311857A (en) 2021-12-31 2021-12-31 Clean production process and production device for high-strength corrugated boards

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CN114311857A true CN114311857A (en) 2022-04-12

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