CN216659299U - High-efficient solidification equipment of water-based ink - Google Patents

High-efficient solidification equipment of water-based ink Download PDF

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Publication number
CN216659299U
CN216659299U CN202123435326.1U CN202123435326U CN216659299U CN 216659299 U CN216659299 U CN 216659299U CN 202123435326 U CN202123435326 U CN 202123435326U CN 216659299 U CN216659299 U CN 216659299U
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China
Prior art keywords
transmission
frame
curing box
based ink
water
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CN202123435326.1U
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Chinese (zh)
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张�诚
吉凯
颛孙玉恩
张盼
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Kunshan Tianfeng Printing And Packaging Co ltd
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Kunshan Tianfeng Printing And Packaging Co ltd
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Abstract

The utility model relates to a high-efficient solidification equipment of water-based ink relates to printing machine technical field, causes light pollution's problem in order to solve the part ultraviolet reflection of shining the in-process, and it includes the frame, be provided with the drive mechanism who is used for the paper transmission in the frame, one side that the frame is close to drive mechanism is provided with the curing box, be provided with a plurality of ultraviolet lamp in the curing box, the curing box all is provided with the light screen along frame length direction's both sides, be provided with elevating system on the light screen, elevating system links to each other with the curing box. The application has the effect of the utilization rate of ultraviolet irradiation.

Description

High-efficient solidification equipment of water-based ink
Technical Field
The application relates to the technical field of printing machinery, in particular to a high-efficiency curing device for water-based ink.
Background
The printing is a technology of transferring printing ink to the surface of paper, fabric, plastic product, leather and other material through plate making, ink applying, pressurizing and other steps, and the printing process is especially one critical process of printing and stoving.
The curable ink is an ink which is formed into a film and dried by polymerizing monomers in an ink binder into a polymer by using ultraviolet light with different wavelengths and energies under the irradiation of ultraviolet light. As inks, they must possess brilliant color, good printability, and suitable cure drying rates. Meanwhile, the paint has good adhesive force and has the characteristics of wear resistance, corrosion resistance, weather resistance and the like.
In the correlation technique, through need a plurality of ultraviolet lamps to its even irradiation when solidifying the paper that is printed with printing ink, ultraviolet lamp's light is stronger, reflects at irradiation process middle part ray, causes light pollution, and ultraviolet ray has harm to the human body simultaneously, influences staff's healthy, so await improvement.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem that partial ultraviolet reflection causes light pollution in the irradiation process, the application provides a high-efficient solidification equipment of water-based ink.
The application provides a high-efficient solidification equipment of water-based ink adopts following technical scheme:
the utility model provides a high-efficient solidification equipment of water-based ink, includes the frame, be provided with the drive mechanism who is used for the paper transmission in the frame, one side that the frame is close to drive mechanism is provided with the curing box, be provided with a plurality of ultraviolet lamp in the curing box, the curing box all is provided with the light screen along frame length direction's both sides, be provided with elevating system on the light screen, elevating system links to each other with the curing box.
Because a plurality of ultraviolet lamps are required to uniformly irradiate the paper printed with the printing ink when the paper is cured, the light of the ultraviolet lamps is strong, partial light is reflected in the irradiation process, so that light pollution is caused, and meanwhile, the ultraviolet rays are harmful to human bodies and influence the health of workers; by adopting the technical scheme, an operator installs the transmission mechanism and the curing box on the frame, a plurality of ultraviolet lamps are welded in the curing box, the two sides of the curing box are respectively provided with the shading plates, and the shading plates are provided with the lifting mechanism; when the paper printed with the printing ink is transported into the curing box through the transmission mechanism, an operator closes the transmission mechanism, starts the lifting mechanism, moves the shielding plates on the two sides of the curing box downwards, and turns on the ultraviolet lamp to dry the paper; through the arrangement of the curing box, the shading plate and the lifting mechanism, the possibility that part of ultraviolet rays are reflected out of the curing box is reduced, the utilization rate of ultraviolet irradiation is improved, and the drying treatment of the ultraviolet rays on paper is accelerated; meanwhile, the health of field operators is protected.
Optionally, elevating system includes first driving piece, rotation lead screw and sliding block, a plurality of grooves of sliding have been seted up on the curing box inside wall respectively, the groove of sliding sets up along the direction of height of curing box, it connects at the inslot that slides to rotate the lead screw rotation, first driving piece sets up in the top of curing box, the one end of rotating the lead screw runs through the curing box and links to each other with the output of first driving piece, sliding block threaded connection is on rotating the lead screw, sliding block pastes with the inside wall in groove of sliding mutually, one side that sliding block kept away from the groove diapire that slides links to each other with the light screen.
By adopting the technical scheme, the lifting mechanism consists of the first driving piece, the rotating screw rod and the sliding block; when the paper printed with the ink is transported into the curing box through the transmission mechanism, an operator starts the first driving piece, the rotating screw rod rotates, the sliding block and the rotating screw rod move, the sliding block is connected in the sliding groove in a sliding mode, so that the shielding plate is driven to move downwards, the side wall of the curing box is shielded, and the ultraviolet lamp starts to work to perform paper drying treatment; through the setting of first driving piece, rotation lead screw and sliding block, need not manual operation, realize the automation of equipment, improved work efficiency.
Optionally, a linkage mechanism is arranged on the rotary screw rod and comprises a belt and two linkage wheels, the two linkage wheels are respectively sleeved on the adjacent rotary screw rod and are arranged at the top of the curing box, and two ends of the belt are respectively tensioned on the two linkage wheels and are rotatably connected with the two linkage wheels.
By adopting the technical scheme, an operator installs a linkage mechanism on the adjacent rotating screw rods, and the linkage mechanism consists of a belt and two linkage wheels; when the first driving piece is started, the rotating screw rod on the first driving piece rotates, the linkage wheels rotate simultaneously, the belt drives the linkage wheel on the other side to rotate, so that the rotating screw rod on the other side is driven to rotate, the adjacent sliding blocks move simultaneously, and the shielding plate moves; through the setting of belt and linkage wheel, improved the synchronism that the shielding plate both sides removed, the shielding plate appears the possibility of slope when reducing the rotation lead screw rotational speed nonconformity of shielding plate both sides, has guaranteed the effect of sheltering from of shielding plate, has reduced the quantity that the drive shielding plate moved required first driving piece down simultaneously, has practiced thrift manufacturing cost.
Optionally, an embedding groove is formed in the side wall of the linkage wheel, the embedding groove is arranged along the circumferential direction of the linkage wheel, and the belt is arranged on the inner side wall of the embedding groove.
By adopting the technical scheme, an operator sets embedding grooves on the side walls of the linkage wheels, and two ends of the belt are respectively embedded in the embedding grooves of the adjacent linkage wheels; through the arrangement of the embedding groove, the possibility that the linkage wheel is separated from the belt due to the fact that the surface of the linkage wheel is smooth in the moving process is reduced, and therefore the light screen cannot move downwards normally, and the moving stability of the light screen is improved.
Optionally, drive mechanism includes second driving piece, transmission band and two transmission rollers, two the transmission roller rotates respectively to be connected on the lateral wall of frame, two mutual parallel arrangement between the transmission roller, the both ends of transmission band tensioning respectively on two transmission rollers and with two transmission roller rotate to be connected, the output of second driving piece links to each other with one of them transmission roller, the second driving piece sets up in the frame.
By adopting the technical scheme, the transmission mechanism consists of the second driving piece, the transmission belt and two transmission rollers, when the paper printed with the printing ink is placed on the transmission belt, the second driving piece is started, the transmission roller on one side of the second driving piece rotates, and the transmission belt drives the transmission roller on the other side to rotate simultaneously, so that the paper is transmitted into the curing box; through the setting of second driving piece, transmission band and transmission roller, the simple operation reduces because the paper is comparatively soft, and operating personnel directly places the in-process at the curing box with the paper, and printing ink on the operating personnel touched the paper leads to printing ink to appear phenomenons such as fuzzy, has improved the clear degree of paper printing.
Optionally, two all be provided with a plurality of archs, a plurality of on the outer fringe lateral wall of transmission roller the length direction equidistance setting along the transmission roller is protruding, a plurality of recesses have been seted up on the inside wall of transmission band, it is a plurality of protruding and a plurality of recess looks adaptation.
By adopting the technical scheme, the operator integrally forms a plurality of bulges on the side wall of the outer edge of the conveying roller, the inner side wall of the conveying belt is provided with a plurality of grooves, and the bulges are matched with the grooves; through the arrangement of the bulges and the grooves, the friction between the conveying roller and the conveying belt is increased, and the possibility of slippage of the conveying belt in the moving process is reduced.
Optionally, two be provided with a plurality of tensioning rollers between the transmission roller, it is a plurality of the both sides of tensioning roller are all rotated and are connected on the lateral wall of frame, mutual parallel arrangement between tensioning roller and the transmission roller, the tensioning roller pastes with the lateral wall of transmission band mutually.
In the process of conveying paper by the conveying belt, the conveying belt is long, so that the middle end of the conveying belt is possibly loosened and the like, and the conveying effect is influenced; through adopting above-mentioned technical scheme, the setting of tensioning roller has increased the friction with the transmission band, provides certain tensioning capacity, reduces the transmission band and the possibility of skew appears in the transmission course.
Optionally, a limiting plate for preventing the paper from shifting is arranged on the side wall of the rack, and the limiting plate is arranged along the length direction of the rack.
By adopting the technical scheme, the operator installs the limit plate on the side wall of the rack; through the setting of limiting plate, reduce the skew of paper appearance in transmission process to the possibility of landing from the conveyer belt has improved the stability when transmitting.
In summary, the present application includes at least one of the following beneficial technical effects:
1. through the arrangement of the curing box, the light screen and the lifting mechanism, the possibility that part of ultraviolet rays are reflected out of the curing box is reduced, the utilization rate of ultraviolet irradiation is improved, and the drying treatment of the ultraviolet rays on paper is accelerated; meanwhile, the health of field operators is protected;
2. through the arrangement of the belt and the linkage wheel, the synchronism of the movement of the two sides of the shielding plate is improved, the possibility that the shielding plate is inclined when the rotating speeds of the rotating screw rods on the two sides of the shielding plate are inconsistent is reduced, the shielding effect of the shielding plate is ensured, the number of first driving rooms required for driving the shielding plate to move downwards is reduced, and the production cost is saved;
3. through the setting of second driving piece, transmission band and transmission roller, the simple operation reduces because the paper is comparatively soft, and operating personnel directly places the in-process of curing box with the paper, and operating personnel touches printing ink on the paper and leads to phenomenon such as printing ink blurring to appear, has improved the clear degree of paper printing.
Drawings
FIG. 1 is a schematic structural diagram of an apparatus for efficiently curing an aqueous ink according to an embodiment of the present disclosure.
FIG. 2 is a top view of an apparatus for curing water-based ink with high efficiency according to an embodiment of the present disclosure.
Fig. 3 is a sectional view taken along line a-a in fig. 2.
Fig. 4 is a sectional view taken along line B-B in fig. 2.
Fig. 5 is an enlarged view of a portion a of fig. 4.
Description of reference numerals: 1. a frame; 2. a transmission mechanism; 21. a conveyor belt; 211. a groove; 22. a transfer roller; 221. a protrusion; 23. a second driving member; 3. curing the box; 31. an ultraviolet lamp; 32. a visor; 33. a sliding groove; 4. a lifting mechanism; 41. a first driving member; 42. rotating the screw rod; 43. a sliding block; 5. a linkage mechanism; 51. a belt; 52. a linkage wheel; 521. an embedding groove; 6. a tension roller; 7. and a limiting plate.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses high-efficient solidification equipment of water-based ink. Referring to fig. 1, the high-efficient solidification equipment of water-based ink includes frame 1, and the welding has limiting plate 7 on the lateral wall of frame 1, and limiting plate 7 sets up along the length direction of frame 1, installs the drive mechanism 2 that is used for the paper transmission in frame 1, and drive mechanism 2 is located the inside wall of frame 1, and one side welded fastening that frame 1 is close to drive mechanism 2 has curing box 3, and curing box 3 is hollow structure.
Referring to fig. 1 and 3, a plurality of ultraviolet lamps 31 are fixedly welded in the curing box 3, light shielding plates 32 are respectively installed on both sides of the curing box 3 along the opening direction, an elevating mechanism 4 for elevating the light shielding plates 32 is further installed on the curing box 3, and the elevating mechanism 4 is fixedly connected with the side walls of the light shielding plates 32.
Referring to fig. 3, the transmission mechanism 2 includes a second driving member 23, a transmission belt 21 and two transmission rollers 22, the two transmission rollers 22 are respectively located on the inner side wall of the length direction of the frame 1, the transmission rollers 22 are rotatably connected with the inner side wall of the frame 1 through bearings, the two transmission rollers 22 are parallel to each other, two ends of the transmission belt 21 are tensioned on the side walls of the two transmission rollers 22 and rotatably connected with the two transmission rollers 22, the second driving member 23 is welded and fixed on the side wall of the frame 1, the second driving member 23 can be an ac motor, and an output end of the second driving member 23 penetrates through the frame 1 and is welded and fixed with the transmission rollers 22.
Referring to fig. 3, homogeneous body shaping has a plurality of archs 221 on two transmission roller 22's the outer fringe lateral wall, a plurality of archs 221 set up along transmission roller 22's length direction equidistance, a plurality of recesses 211 have been seted up on transmission belt 21's the inside wall, a plurality of archs 221 and a plurality of recess 211 looks adaptation, it is connected with a plurality of tensioning rollers 6 to rotate on frame 1's the inside wall, a plurality of tensioning rollers 6 all are located between two transmission roller 22, parallel arrangement between transmission roller 22 and the tensioning roller 6, tensioning roller 6 pastes with transmission belt 21's the inside wall.
Referring to fig. 4 and 5, the lifting mechanism 4 includes a first driving part 41, a plurality of sliding grooves 33 have been seted up to the inside wall of curing box 3, the direction of height setting along curing box 3 is all followed to a plurality of sliding grooves 33, first driving part 41 is located the top at curing box 3, first driving part 41 can be alternating current motor, the output and the rotating screw 42 welded fastening of first driving part 41, rotating screw 42 runs through curing box 3 and rotates through the bearing and connect in sliding grooves 33, sliding block 43 and rotating screw 42 threaded connection, sliding block 43's the lateral wall pastes with sliding groove 33's the inside wall, one side welded fastening that sliding block 43 kept away from sliding groove 33 diapire is on the lateral wall of light screen 32.
Referring to fig. 4 and 5, a linkage mechanism 5 is mounted on the adjacent rotating lead screw 42, the linkage mechanism 5 includes a belt 51 and two linkage wheels 52, the two linkage wheels 52 are respectively sleeved on the adjacent rotating lead screw 42 on the same side, an embedding groove 521 is formed in a side wall of each linkage wheel 52, the embedding groove 521 is arranged along the circumferential direction of each linkage wheel 52, the belt 51 is tensioned on the side wall of each linkage wheel 52 and is located in the embedding groove 521 of each linkage wheel 52, and the belt 51 is rotatably connected with the linkage wheels 52.
The implementation principle of the high-efficient solidification equipment of water-based ink of this application embodiment is: an operator places the paper printed with the ink on a transmission belt 21, starts a second driving part 23, a transmission roller 22 on one side of the second driving part 23 rotates, a plurality of protrusions 221 on the transmission roller 22 and a plurality of grooves 211 on the transmission belt 21 move, the transmission belt 21 drives a transmission roller 22 on the other side to rotate simultaneously, a plurality of tensioning rollers 6 rotate, at the moment, the paper is conveyed into a curing box 3 from the transmission belt 21, the second driving part 23 is closed, the first driving part 41 is started, a rotating screw rod 42 on one side of the first driving part 41 rotates, a linkage wheel 52 rotates simultaneously, a belt 51 drives a linkage wheel 52 on the other side to rotate, adjacent rotating screw rods 42 on the same side rotate at the same speed, a sliding block moves on the rotating screw rod 42, after a shading plate 32 moves downwards to a designated position, the second driving part 23 is closed, at the moment, an ultraviolet lamp 31 starts to work, and the paper is dried; through the arrangement of the curing box 3, the light shielding plate 32 and the lifting mechanism 4, the possibility that part of ultraviolet rays are reflected out of the curing box 3 is reduced, the utilization rate of ultraviolet irradiation is improved, and the drying treatment of the paper by the ultraviolet rays is accelerated; meanwhile, the health of field operators is protected.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: equivalent changes in structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a high-efficient solidification equipment of water-based ink, includes frame (1), its characterized in that: be provided with drive mechanism (2) that are used for paper transmission on frame (1), one side that frame (1) is close to drive mechanism (2) is provided with curing box (3), be provided with a plurality of ultraviolet lamp (31) in curing box (3), curing box (3) all are provided with light screen (32) along frame (1) length direction's both sides, be provided with elevating system (4) on light screen (32), elevating system (4) link to each other with curing box (3).
2. The efficient curing device for the water-based ink according to claim 1, wherein: elevating system (4) include first driving piece (41), rotate lead screw (42) and sliding block (43), a plurality of grooves (33) that slide have been seted up on curing box (3) inside wall respectively, the direction of height setting along curing box (3) in groove (33) that slides, it connects in groove (33) that slides to rotate lead screw (42), first driving piece (41) set up in the top of curing box (3), the one end that rotates lead screw (42) runs through curing box (3) and links to each other with the output of first driving piece (41), sliding block (43) threaded connection is on rotating lead screw (42), sliding block (43) and the interior lateral wall of groove (33) that slides paste, sliding block (43) keep away from one side of sliding groove (33) diapire and link to each other with light screen (32).
3. The efficient curing device for the water-based ink according to claim 2, wherein: it is adjacent to rotate and be provided with link gear (5) on lead screw (42), link gear (5) include belt (51) and two linkage wheels (52), two linkage wheel (52) cover is established respectively on adjacent rotation lead screw (42), and two linkage wheel (52) all set up in the top of curing box (3), the both ends of belt (51) tensioning respectively on two linkage wheels (52) and with two linkage wheels (52) rotate to be connected.
4. The efficient curing device for the water-based ink according to claim 3, wherein: the linkage wheel is characterized in that an embedding groove (521) is formed in the side wall of the linkage wheel (52), the embedding groove (521) is formed in the circumferential direction of the linkage wheel (52), and the belt (51) is arranged on the inner side wall of the embedding groove (521).
5. The efficient curing device for the water-based ink according to claim 1, wherein: drive mechanism (2) include second driving piece (23), transmission band (21) and two transmission rollers (22), two transmission roller (22) rotate respectively and connect on the lateral wall of frame (1), two mutual parallel arrangement between transmission roller (22), the both ends difference tensioning of transmission band (21) just rotate with two transmission rollers (22) on two transmission rollers (22) and be connected, the output of second driving piece (23) links to each other with one of them transmission roller (22), second driving piece (23) set up in frame (1).
6. The efficient curing device for the water-based ink according to claim 5, wherein: two all be provided with a plurality of archs (221), a plurality of on the outer fringe lateral wall of transmission roller (22) protruding (221) set up along the length direction equidistance of transmission roller (22), a plurality of recess (211), a plurality of have been seted up on the inside wall of transmission band (21) protruding (221) and a plurality of recess (211) looks adaptation.
7. The efficient curing device for the water-based ink according to claim 6, wherein: two be provided with a plurality of tensioning rollers (6) between transmission roller (22), it is a plurality of the both sides of tensioning roller (6) are all rotated and are connected on the lateral wall of frame (1), mutual parallel arrangement between tensioning roller (6) and transmission roller (22), tensioning roller (6) paste mutually with the lateral wall of transmission band (21).
8. The efficient curing device for the water-based ink according to claim 1, wherein: be provided with on the lateral wall of frame (1) and be used for preventing limiting plate (7) of paper skew, limiting plate (7) set up along the length direction of frame (1).
CN202123435326.1U 2021-12-30 2021-12-30 High-efficient solidification equipment of water-based ink Active CN216659299U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123435326.1U CN216659299U (en) 2021-12-30 2021-12-30 High-efficient solidification equipment of water-based ink

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123435326.1U CN216659299U (en) 2021-12-30 2021-12-30 High-efficient solidification equipment of water-based ink

Publications (1)

Publication Number Publication Date
CN216659299U true CN216659299U (en) 2022-06-03

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ID=81760712

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123435326.1U Active CN216659299U (en) 2021-12-30 2021-12-30 High-efficient solidification equipment of water-based ink

Country Status (1)

Country Link
CN (1) CN216659299U (en)

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