CN114345173A - Environment-friendly material manufacturing process and device applied to printing and packaging - Google Patents

Environment-friendly material manufacturing process and device applied to printing and packaging Download PDF

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Publication number
CN114345173A
CN114345173A CN202111522394.3A CN202111522394A CN114345173A CN 114345173 A CN114345173 A CN 114345173A CN 202111522394 A CN202111522394 A CN 202111522394A CN 114345173 A CN114345173 A CN 114345173A
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China
Prior art keywords
ink
pigment
bin
integrated
packaging
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Pending
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CN202111522394.3A
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Chinese (zh)
Inventor
陈进兴
张振伟
肖玉林
王琴
葛亚东
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Suzhou Elephant Printing And Packaging Co ltd
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Suzhou Elephant Printing And Packaging Co ltd
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Application filed by Suzhou Elephant Printing And Packaging Co ltd filed Critical Suzhou Elephant Printing And Packaging Co ltd
Priority to CN202111522394.3A priority Critical patent/CN114345173A/en
Publication of CN114345173A publication Critical patent/CN114345173A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a manufacturing process and a manufacturing device of an environment-friendly material applied to printing packaging, relates to the technical field of printing packaging materials, and aims to solve the problems that the existing printing packaging material is poor in environment friendliness, various pigments need to be prepared for coloring ink in the manufacturing process, in addition, various substances cannot be effectively proportioned in the manufacturing process, and pollution is easily caused because more substances are used. The method comprises the following steps: the method comprises the following steps: preparing substances required by ink production, namely resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent, and respectively filling the substances required to be prepared into independent substance storage cylinders for temporary storage; step two: the pigment required by the color mixing of the ink is filled into the pigment carrier cylinders, the three primary colors of red, yellow and blue are respectively filled into the four pigment carrier cylinders, and the remaining pigment carrier cylinder is used for filling the special pigment required by the manufacturing of special printing and packaging materials.

Description

Environment-friendly material manufacturing process and device applied to printing and packaging
Technical Field
The invention relates to the technical field of printing packaging materials, in particular to a process and a device for manufacturing an environment-friendly material applied to printing packaging.
Background
The printing industry materials are mainly divided into two categories, one is printing stock materials, the other is photosensitive materials, and the printing stock materials mainly comprise paper, metal, glass, clothes and the like. The printing packaging material mostly refers to the printing ink required by printing packaging, and the printing ink is a uniform mixture composed of a color body, a binder, a filler, an additive and the like; printing can be carried out, and drying is carried out on the printed body; the ink is a colored paste-shaped adhesive body with certain fluidity, so that the color, the body bone and the drying performance are the three most important performances of the ink, the ink is various in types, different in physical properties, thick and sticky in some cases; while some are quite rare. Some uses vegetable oil as the connecting material, and some uses resin and solvent or water as the connecting material.
The existing printing packaging material is poor in environmental protection, multiple pigments need to be prepared for coloring ink in the manufacturing process, effective proportioning of all substances cannot be achieved in the manufacturing process, and pollution is easily caused due to the fact that a certain substance is used too much.
Disclosure of Invention
The invention aims to provide a process and a device for manufacturing an environment-friendly material applied to printing packaging, and aims to solve the problems that the existing printing packaging material provided in the background art is poor in environment friendliness, various pigments need to be prepared for coloring ink in the manufacturing process, and substances cannot be effectively proportioned in the manufacturing process, so that the pollution is easily caused because more substances are used.
In order to achieve the purpose, the invention provides the following technical scheme: the manufacturing process of the environment-friendly material applied to printing and packaging comprises the following steps:
the method comprises the following steps: preparing substances required by ink production, namely resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent, and respectively filling the substances required to be prepared into independent substance storage cylinders for temporary storage;
step two: the pigment required by the color matching of the ink is loaded into the pigment carrier cylinders, the three primary colors of red, yellow and blue are respectively loaded into the four pigment carrier cylinders, and the remaining pigment carrier cylinder is used for loading the specific pigment required by manufacturing the special printing packaging material;
step three: resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent are respectively poured into a material taking cup from the inside of a material storage cylinder, materials with proper dosage are respectively weighed by a weighing scale and poured into a proportioning bin, and before the materials are poured into the proportioning bin, the resin, the deionized water, the connecting material, the filler, the additive, the glycerol, the aqueous amino resin liquid and the defoaming agent are subjected to impurity removal treatment one by one through a material screen;
step four: opening a valve at the bottom of the proportioning bin to pour the proportioned substances into an ink barrel, then loading the ink barrel filled with ink proportioning substances into the mixing bin, then driving a driving machine to descend by an electric hydraulic rod to enable a mixing blade shaft to be immersed into the ink barrel, and then starting the driving machine to drive the mixing blade shaft to mix and proportion the proportioned substances to produce raw materials;
step five: after the ink is produced, placing an ink barrel below a pigment carrier, adding colors into the ink according to needs, and coloring the ink after mixing, wherein red, yellow and blue are three primary color coloring raw materials, and when other colors are needed, the ink of other colors can be generated by mixing the three primary color coloring raw materials;
step six: finally, pouring the prepared printing ink from an ink barrel into filling equipment for packaging treatment; then a sealing screw cover, a bin door plate and an internal connecting cover plate of the manufacturing device are covered, and the material filter screen is taken down for cleaning and replacing.
Preferably, the device applied to the manufacturing process of the environment-friendly material for printing and packaging comprises a device carrier plate, the upper end of the device carrier plate is provided with a material temporary storage seat, a proportioning bin, a rotary table seat and a mixing bin, the upper end of the material temporary storage seat is provided with a material storage cylinder, a weighing scale is arranged on the outer wall support plate at one side of the proportioning bin, the upper end of the weighing scale is provided with a material taking cup, a connecting frame is arranged above the proportioning bin, a filter screen frame is arranged inside the connecting frame, a material filter screen is arranged in the filter screen frame, a pretreatment hopper is arranged at the bottom of the connecting frame, the upper end of the rotary pedestal is provided with a rotary carrying column, four pigment carrying cylinders are arranged around the rotary carrying column, the upper end of blending bunker is provided with the support and carries the fore-set, the inside of support and carrying the fore-set is provided with the second grade fore-set, be provided with the driving machine on the top support plate of second grade fore-set.
Preferably, be provided with the label groove on the outer wall of pigment carrier, the label groove sets up with pigment carrier integrated into one piece, the bottom of pigment carrier is provided with gets the material mouth, gets the inside intercommunication setting of material mouth and pigment carrier, get and be provided with the valve on the material mouth, valve and the flange sealing connection of getting the material mouth, the top of pigment carrier is provided with the inscription apron, is provided with telescopic link on the hookup location of inscription apron and pigment carrier, the top of inscription apron is provided with the pulling groove, and the pulling groove sets up with inscription apron integrated into one piece.
Preferably, be provided with the connecting column cover on the outer wall of rotatory support year post, connecting column cover carries post integrated into one piece with rotatory support and sets up, be provided with four connecting arm poles on the outer wall of connecting column cover, connecting arm pole and connecting column cover integrated into one piece set up, the other end of four connecting arm poles respectively with four pigment carrier welded connection.
Preferably, be provided with the inscription on the inner wall of connecting frame along the board, the inscription is followed board and connecting frame integrated into one piece and is set up, and the inscription is followed board and filter screen frame's inside and all is provided with the screw thread and is connect the hole, and the screw thread connects the hole and inscription is followed board and filter screen frame integrated into one piece and is set up, the lower extreme of connecting frame is provided with the support roof-rack, supports the both ends of roof-rack respectively with connecting frame and proportioning bins welded connection.
Preferably, an ink barrel is arranged inside the mixing bin, a traction handle is arranged at the upper end of the ink barrel, and the traction handle and the ink barrel are integrally formed.
Preferably, the top of the fore-set is carried in the support is provided with movable through-hole, and movable through-hole carries fore-set integrated into one piece with the support and sets up, the bottom of second grade fore-set is provided with the anticreep tailboard, and the anticreep tailboard sets up with second grade fore-set integrated into one piece, and the size of anticreep tailboard is greater than movable through-hole's bore.
Preferably, the inside of the material temporary storage seat is provided with a storage cylinder and puts the groove, and the storage cylinder is put the groove and is set up with material temporary storage seat integrated into one piece, the inside that the groove was put to the storage cylinder is provided with the magnetism and inhales the seat, and the material storage cylinder is inhaled the seat through the magnetism and is put the inside adsorption installation in groove with the storage cylinder, sealed screw cap is installed at the top of material storage cylinder.
Preferably, the output end of the driving machine is provided with a mixing blade shaft, one side of the mixing bin is provided with an electric hydraulic rod, the top of the electric hydraulic rod is provided with a transmission connecting plate, the transmission connecting plate is fixedly connected with the output end of the electric hydraulic rod through a screw, and the transmission connecting plate and the support plate of the driving machine are integrally formed.
Preferably, be provided with the storehouse door plant on the preceding terminal surface of blending bunker, the storehouse door plant passes through hinge swing joint with the blending bunker, be provided with magnetism on the inner wall of storehouse door plant and inhale the formula fishplate bar, magnetism is inhaled formula fishplate bar and is connected with storehouse door plant embedded, and the storehouse door plant is inhaled formula fishplate bar and is connected with the blending bunker through magnetism.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention fills the pigment needed by the color mixing of the ink into the pigment carrying cylinders, the three primary colors of red, yellow and blue are respectively filled in the four pigment carrying cylinders, the rest pigment carrying cylinder is used for filling the special pigment needed by the manufacturing of the special printing packaging material, the color is selected according to the requirement and added into the ink, the ink is colored after being mixed, the red, the yellow and the blue are the coloring raw materials of the three primary colors, when the other color is needed, the ink of the other color can be generated by mixing the coloring raw materials of the three primary colors, and the operation of preparing a plurality of pigments for coloring the ink in the manufacturing process is omitted.
2. Resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent are poured into a material taking cup from the inside of a material storage cylinder respectively, materials with proper dosage are weighed by a weighing scale respectively and poured into a proportioning bin, and the resin, the deionized water, the connecting material, the filler, the additive, the glycerol, the aqueous amino resin liquid and the defoaming agent are subjected to impurity removal treatment one by one through a material screen before being poured into the proportioning bin, so that the aim of accurate proportioning is fulfilled, the problem that each material cannot be effectively proportioned in the manufacturing process is solved, and pollution is easily caused because a certain material is used more.
3. The used deionized water, the glycerol, the water-based amino resin liquid and the defoaming agent are all environment-friendly substances, the environment-friendly performance of the printing ink produced by the substances is improved, and the substances to be prepared are respectively put into independent substance storage cylinders for temporary storage, so that the problem of pollution caused by leakage is avoided.
Drawings
FIG. 1 is a schematic diagram of the work flow of the manufacturing process of the environment-friendly material applied to printed packaging in the invention;
FIG. 2 is a schematic view of the overall structure of the apparatus for manufacturing environmental friendly materials for printed packaging according to the present invention;
FIG. 3 is a schematic view of a paint carrier cartridge of the present invention;
FIG. 4 is a schematic view of the pretreatment hopper of the present invention;
FIG. 5 is a schematic diagram of a temporary material storage device according to the present invention;
FIG. 6 is a schematic view of the structure of the supporting pillar of the present invention;
in the figure: 1. a device carrier plate; 2. a material temporary storage seat; 3. a substance storage cartridge; 4. sealing and screwing the cover; 5. a proportioning bin; 6. supporting the top frame; 7. a pretreatment hopper; 8. a connecting frame; 9. a material filter screen; 10. weighing scales; 11. a material taking cup; 12. rotating the pedestal; 13. rotating the carrying column; 14. connecting the column sleeve; 15. a connecting arm lever; 16. a pigment carrier; 17. a mixing bin; 18. a bin gate panel; 19. magnetic suction type fishplate bar; 20. a driver; 21. a transmission connecting plate; 22. an electro-hydraulic lever; 23. mixing a material blade shaft; 24. carrying a top column; 25. filling the printing ink into a barrel; 26. a traction handle; 27. a label slot; 28. a material taking port; 29. a valve; 30. the cover plate is internally connected; 31. a telescopic connecting rod; 32. lifting the groove; 33. a screen frame; 34. an inner connecting edge plate; 35. screwing holes; 36. a storage cylinder placing groove; 37. a magnetic attraction seat; 38. a secondary support pillar; 39. an anti-drop tail plate; 40. and a movable through hole.
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 manufacturing process of the environment-friendly material applied to printing and packaging comprises the following steps:
the method comprises the following steps: preparing substances required by ink production, namely resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent, and respectively filling the substances required to be prepared into independent substance storage cylinders for temporary storage;
step two: the pigment required by the color matching of the ink is loaded into the pigment carrier cylinders, the three primary colors of red, yellow and blue are respectively loaded into the four pigment carrier cylinders, and the remaining pigment carrier cylinder is used for loading the specific pigment required by manufacturing the special printing packaging material;
step three: resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent are respectively poured into a material taking cup from the inside of a material storage cylinder, materials with proper dosage are respectively weighed by a weighing scale and poured into a proportioning bin, and before the materials are poured into the proportioning bin, the resin, the deionized water, the connecting material, the filler, the additive, the glycerol, the aqueous amino resin liquid and the defoaming agent are subjected to impurity removal treatment one by one through a material screen;
step four: opening a valve at the bottom of the proportioning bin to pour the proportioned substances into an ink barrel, then loading the ink barrel filled with ink proportioning substances into the mixing bin, then driving a driving machine to descend by an electric hydraulic rod to enable a mixing blade shaft to be immersed into the ink barrel, and then starting the driving machine to drive the mixing blade shaft to mix and proportion the proportioned substances to produce raw materials;
step five: after the ink is produced, placing an ink barrel below a pigment carrier, adding colors into the ink according to needs, and coloring the ink after mixing, wherein red, yellow and blue are three primary color coloring raw materials, and when other colors are needed, the ink of other colors can be generated by mixing the three primary color coloring raw materials;
step six: finally, pouring the prepared printing ink from an ink barrel into filling equipment for packaging treatment; then a sealing screw cover, a bin door plate and an internal connecting cover plate of the manufacturing device are covered, and the material filter screen is taken down for cleaning and replacing.
Further, the device applied to the manufacturing process of the environment-friendly material for printing and packaging comprises a device carrier plate 1, a material temporary storage seat 2 and a proportioning bin 5 are arranged at the upper end of the device carrier plate 1, rotating pedestal 12 and blending bunker 17, the upper end of material temporary storage seat 2 is provided with material storage cylinder 3, be provided with on one side outer wall support plate of proportioning bins 5 and weigh balance 10, the upper end of weighing balance 10 is provided with gets material cup 11, the top of proportioning bins 5 is provided with linking frame 8, the internally mounted of linking frame 8 has filter screen frame 33, the inside of filter screen frame 33 is provided with material filter screen 9, the bottom of linking frame 8 is provided with preliminary treatment fill 7, the upper end of rotating pedestal 12 is provided with rotatory support year post 13, be provided with four pigment carrier cylinders 16 around the rotatory support year post 13, the upper end of blending bunker 17 is provided with the support and carries fore-set 24, the inside of support and carry the fore-set 24 is provided with second grade fore-set 38, be provided with driving machine 20 on the top support plate of second grade fore-set 38.
Further, be provided with label groove 27 on the outer wall of pigment carrier 16, label groove 27 and pigment carrier 16 integrated into one piece set up, the bottom of pigment carrier 16 is provided with gets material mouth 28, get material mouth 28 and the inside intercommunication setting of pigment carrier 16, be provided with valve 29 on the material mouth 28, valve 29 and 28 flange sealing connection of getting material mouth, the top of pigment carrier 16 is provided with inscription apron 30, be provided with telescopic link 31 on the hookup location of inscription apron 30 and pigment carrier 16, the top of inscription apron 30 is provided with and carries pull groove 32, it sets up with inscription apron 30 integrated into one piece to carry pull groove 32, label groove 27 that sets up on the outer wall of pigment carrier 16 plays the effect of being convenient for paste up corresponding pigment label.
Further, be provided with on the outer wall of rotatory support year post 13 and connect the post cover 14, connect the post cover 14 and carry post 13 integrated into one piece setting with rotatory support, be provided with four connecting arm poles 15 on the outer wall of connecting the post cover 14, connecting arm pole 15 sets up with connecting the post cover 14 integrated into one piece, the other end of four connecting arm poles 15 respectively with four pigment carrier 16 welded connection, the connecting post cover 14 that sets up on the outer wall of rotatory support year post 13 plays the effect of bearing connecting arm pole 15.
Further, be provided with the inscription on the inner wall of connecting frame 8 and follow board 34, the inscription is followed board 34 and the setting of connecting frame 8 integrated into one piece, the inscription is followed board 34 and the inside of filter screen frame 33 and is all provided with screw thread hole 35, screw thread hole 35 and inscription are followed board 34 and the setting of filter screen frame 33 integrated into one piece, the lower extreme of connecting frame 8 is provided with supports roof-rack 6, support the both ends of roof-rack 6 respectively with connecting frame 8 and 5 welded connection of proportioning bins, the inscription that sets up on the inner wall of connecting frame 8 plays the effect of the installation of filter screen frame 33 of being convenient for along board 34.
Further, an ink barrel 25 is arranged inside the mixing bin 17, a traction handle 26 is arranged at the upper end of the ink barrel 25, the traction handle 26 and the ink barrel 25 are integrally formed, and the ink barrel 25 arranged inside the mixing bin 17 plays a role in loading printing ink.
Further, the top of supporting and carrying the fore-set 24 is provided with movable through hole 40, and movable through hole 40 and the support carry the setting of fore-set 24 integrated into one piece, and the bottom of second grade fore-set 38 is provided with anticreep tailboard 39, and anticreep tailboard 39 sets up with second grade fore-set 38 integrated into one piece, and anticreep tailboard 39's size is greater than movable through hole 40's bore, and the movable through hole 40 that the top of supporting and carrying the fore-set 24 set up plays the effect of the second grade fore-set 38 activity of being convenient for.
Further, the inside of base 2 is kept in to material is provided with the storage tube and puts groove 36, the storage tube is put groove 36 and is kept in base 2 integrated into one piece setting with the material, the inside that the storage tube was put groove 36 is provided with the magnetism and is inhaled seat 37, the inside absorption installation that groove 36 was put to the material storage tube 3 through magnetism and inhale seat 37 with the storage tube, sealed screw cap 4 is installed at the top of material storage tube 3, the storage tube that the inside of base 2 was kept in to the material was set up puts groove 36 and plays the effect that the material storage tube 3 of being convenient for was put.
Further, a mixing blade shaft 23 is arranged at the output end of the driving machine 20, an electric hydraulic rod 22 is arranged on one side of the mixing bin 17, a transmission connecting plate 21 is arranged at the top of the electric hydraulic rod 22, the transmission connecting plate 21 is fixedly connected with the output end of the electric hydraulic rod 22 through screws, the transmission connecting plate 21 and the support plate of the driving machine 20 are integrally formed, and the mixing blade shaft 23 arranged at the output end of the driving machine 20 plays a role in mixing and stirring ink manufacturing materials.
Further, be provided with door plant 18 on the preceding terminal surface of blending bunker 17, door plant 18 passes through hinge swing joint with blending bunker 17, is provided with magnetism on door plant 18's the inner wall and inhales formula fishplate bar 19, magnetism is inhaled formula fishplate bar 19 and is connected with door plant 18 embedded, and door plant 18 adsorbs with blending bunker 17 through magnetism and is connected that formula fishplate bar 19 is inhaled, and the door plant 18 that sets up on the preceding terminal surface of blending bunker 17 plays the effect of being convenient for seal blending bunker 17.
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 (10)

1. The manufacturing process of the environment-friendly material applied to printing and packaging is characterized by comprising the following steps of: the method comprises the following steps:
the method comprises the following steps: preparing substances required by ink production, namely resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent, and respectively filling the substances required to be prepared into independent substance storage cylinders for temporary storage;
step two: the pigment required by the color matching of the ink is loaded into the pigment carrier cylinders, the three primary colors of red, yellow and blue are respectively loaded into the four pigment carrier cylinders, and the remaining pigment carrier cylinder is used for loading the specific pigment required by manufacturing the special printing packaging material;
step three: resin, deionized water, a connecting material, a filler, an additive, glycerol, aqueous amino resin liquid and a defoaming agent are respectively poured into a material taking cup from the inside of a material storage cylinder, materials with proper dosage are respectively weighed by a weighing scale and poured into a proportioning bin, and before the materials are poured into the proportioning bin, the resin, the deionized water, the connecting material, the filler, the additive, the glycerol, the aqueous amino resin liquid and the defoaming agent are subjected to impurity removal treatment one by one through a material screen;
step four: opening a valve at the bottom of the proportioning bin to pour the proportioned substances into an ink barrel, then loading the ink barrel filled with ink proportioning substances into the mixing bin, then driving a driving machine to descend by an electric hydraulic rod to enable a mixing blade shaft to be immersed into the ink barrel, and then starting the driving machine to drive the mixing blade shaft to mix and proportion the proportioned substances to produce raw materials;
step five: after the ink is produced, placing an ink barrel below a pigment carrier, adding colors into the ink according to needs, and coloring the ink after mixing, wherein red, yellow and blue are three primary color coloring raw materials, and when other colors are needed, the ink of other colors can be generated by mixing the three primary color coloring raw materials;
step six: finally, pouring the prepared printing ink from an ink barrel into filling equipment for packaging treatment; then a sealing screw cover, a bin door plate and an internal connecting cover plate of the manufacturing device are covered, and the material filter screen is taken down for cleaning and replacing.
2. The device applied to the manufacturing process of the environment-friendly material for printing and packaging, which is based on the claim 1, comprises a device carrier plate (1), and is characterized in that: the device is characterized in that a material temporary storage seat (2), a proportioning bin (5), a rotary pedestal (12) and a mixing bin (17) are arranged at the upper end of a carrier plate (1) of the device, a material storage cylinder (3) is arranged at the upper end of the material temporary storage seat (2), a weighing scale (10) is arranged on the carrier plate on the outer wall of one side of the proportioning bin (5), a material taking cup (11) is arranged at the upper end of the weighing scale (10), a connecting frame (8) is arranged above the proportioning bin (5), a filter screen frame (33) is arranged inside the connecting frame (8), a material filter screen (9) is arranged inside the filter screen frame (33), a pretreatment hopper (7) is arranged at the bottom of the connecting frame (8), a rotary supporting column (13) is arranged at the upper end of the rotary pedestal (12), four pigment carrying cylinders (16) are arranged around the rotary supporting column (13), and a supporting top column (24) is arranged at the upper end of the mixing bin (17), a secondary ejection column (38) is arranged inside the supporting ejection column (24), and a driving machine (20) is arranged on a top carrier plate of the secondary ejection column (38).
3. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: be provided with on the outer wall of pigment carrier (16) label groove (27), label groove (27) and pigment carrier (16) integrated into one piece set up, the bottom of pigment carrier (16) is provided with gets material mouth (28), gets the inside intercommunication setting of material mouth (28) and pigment carrier (16), get and be provided with valve (29) on material mouth (28), valve (29) and get material mouth (28) flange seal connection, the top of pigment carrier (16) is provided with inscription apron (30), is provided with flexible connecting rod (31) on the hookup location of inscription apron (30) and pigment carrier (16), the top of inscription apron (30) is provided with lifting groove (32), and lifting groove (32) and inscription apron (30) integrated into one piece set up.
4. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: be provided with on the outer wall of rotatory support year post (13) connecting post cover (14), connecting post cover (14) and rotatory support year post (13) integrated into one piece setting, be provided with four connecting arm pole (15) on the outer wall of connecting post cover (14), connecting arm pole (15) and connecting post cover (14) integrated into one piece setting, the other end of four connecting arm poles (15) respectively with four pigment carry a section of thick bamboo (16) welded connection.
5. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: be provided with the inscription on the inner wall of coupling frame (8) along board (34), the inscription is along board (34) and coupling frame (8) integrated into one piece setting, and the inscription is all provided with screw thread hole (35) along board (34) and filter screen frame (33) inside, and screw thread hole (35) set up with the inscription along board (34) and filter screen frame (33) integrated into one piece, the lower extreme of coupling frame (8) is provided with supports roof-rack (6), supports the both ends of roof-rack (6) respectively with coupling frame (8) and proportioning bins (5) welded connection.
6. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: the inside mounting of blending bunker (17) has printing ink barrelling (25), the upper end of printing ink barrelling (25) is provided with pulls (26), pulls (26) and printing ink barrelling (25) integrated into one piece setting.
7. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: the top of support year fore-set (24) is provided with activity through-hole (40), and activity through-hole (40) and support year fore-set (24) integrated into one piece setting, the bottom of second grade fore-set (38) is provided with anticreep tailboard (39), and anticreep tailboard (39) and second grade fore-set (38) integrated into one piece set up, and the size of anticreep tailboard (39) is greater than the bore of activity through-hole (40).
8. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: the inside of material seat (2) of keeping in is provided with the storage tube and puts groove (36), and the storage tube is put groove (36) and is kept in seat (2) integrated into one piece setting with the material, the inside that the storage tube was put groove (36) is provided with magnetism and inhales seat (37), and the inside adsorption who puts groove (36) is inhaled seat (37) and storage tube through magnetism in material storage tube (3), sealed twist cap (4) are installed at the top of material storage tube (3).
9. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: be provided with compounding leaf axle (23) on the output of driver (20), one side of blending bunker (17) is provided with electronic hydraulic stem (22), the top of electronic hydraulic stem (22) is provided with transmission even board (21), and the transmission is even board (21) and the output of electronic hydraulic stem (22) and is passed through screw fixed connection, and the transmission is even board (21) and the support plate integrated into one piece setting of driver (20).
10. The apparatus for manufacturing environmental friendly material for printed packaging as claimed in claim 2, wherein: be provided with bin gate board (18) on the preceding terminal surface of blending bunker (17), bin gate board (18) pass through hinge swing joint with blending bunker (17), be provided with magnetism on the inner wall of bin gate board (18) and inhale formula fishplate bar (19), magnetism is inhaled formula fishplate bar (19) and is connected with bin gate board (18) embedded, and bin gate board (18) are inhaled formula fishplate bar (19) and are connected with blending bunker (17) absorption through magnetism.
CN202111522394.3A 2021-12-14 2021-12-14 Environment-friendly material manufacturing process and device applied to printing and packaging Pending CN114345173A (en)

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CN112973557A (en) * 2021-05-06 2021-06-18 余闯 Preparation method of printing ink
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