CN215850270U - Printed matter rubber surface printing stripping composite device - Google Patents
Printed matter rubber surface printing stripping composite device Download PDFInfo
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- CN215850270U CN215850270U CN202122295089.7U CN202122295089U CN215850270U CN 215850270 U CN215850270 U CN 215850270U CN 202122295089 U CN202122295089 U CN 202122295089U CN 215850270 U CN215850270 U CN 215850270U
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Abstract
The utility model discloses a printed matter rubber surface printing and stripping composite device which comprises a supporting base, a supporting top frame, a printed matter stripping composite device and a printing and drying device, wherein the printed matter stripping composite device comprises a supporting vertical plate, a driving motor, a rotary transmission shaft, a transmission roller shaft, a transmission belt, a rotary driven shaft, a printed matter body to be separated, a lifting hydraulic rod, a separating and cutting plate, a driven transmission belt, a driven winding shaft, a printed matter winding shaft, a roller shaft supporting frame and a compacting roller shaft, and the printing and drying device comprises a supporting ring plate, a motor supporting shaft, a drying motor, a drying transmission shaft, rotary drying fan blades and a heating screen plate. The utility model belongs to the technical field of printing equipment, and particularly relates to a printed matter rubber surface printing stripping composite device which effectively solves the problems of low automation degree, time and labor waste and inconvenient drying of printed matter rubber surface stripping, and achieves the purposes of high automation degree, time and labor saving and convenient drying of printed matters when the printed matter rubber surface printing stripping composite device is used.
Description
Technical Field
The utility model belongs to the technical field of printing equipment, and particularly relates to a printing and stripping composite device for a rubber surface of a printed matter.
Background
Printing is a process technique in which a printing plate or other means is used to transfer the graphic information on an original to a substrate, and may also be understood as a reproduction process in which an analog or digital image carrier is used to transfer a colouring agent or pigment to a substrate, if printing is performed only on the front side of the print, the adhesive surface of the non-setting adhesive is not printed and directly covered by the covering layer, so that the printed matter is difficult to tear off and easy to tear up and recover when being stuck on the attached products such as cosmetics, washing bottles and the like, the adhesive surface of the printed matter needs to be printed, peeled and compounded, and the printed matter has a sealing label with the characteristics of re-sticking and removable sticking, the existing printed matter rubber surface printing stripping composite device has low automation degree, wastes time and labor and is inconvenient to dry the printed surface, so that the problem is solved by urgently needing a printed matter rubber surface printing stripping composite device.
SUMMERY OF THE UTILITY MODEL
In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a printed matter rubber surface printing stripping composite device, which effectively solves the problems of low automation degree, time and labor waste and inconvenience for drying a printed surface during the current printing and stripping composite of the rubber surface of the printed matter, realizes the purposes of high automation degree, time and labor saving and convenience for drying the printed surface during the printing and stripping composite device of the rubber surface of the printed matter, and is a very practical printed matter rubber surface printing stripping composite device.
The technical scheme adopted by the utility model is as follows: the utility model relates to a printed matter rubber surface printing stripping composite device, which comprises a supporting base, a supporting top frame, a printed matter stripping composite device and a printing drying device, wherein the supporting top frame is arranged on the supporting base, the printed matter stripping composite device is arranged on the supporting base, the printing drying device is arranged on the supporting top frame, the printed matter stripping composite device comprises a supporting vertical plate, a driving motor, a rotating transmission shaft, a transmission roller shaft, a transmission belt, a rotating driven shaft, a to-be-separated printed matter body, a lifting hydraulic rod, a separating cutting plate, a driven transmission belt, a driven winding shaft, a printed matter winding shaft, a roller shaft supporting frame and a compaction roller shaft, the supporting vertical plate is arranged on the supporting base, the driving motor is arranged on the supporting vertical plate, the rotating transmission shaft is arranged on the driving motor, the transmission roller shaft is arranged on the rotating transmission shaft, and the transmission belt is arranged on the rotating transmission shaft, the rotary driven shaft is arranged on the transmission belt, the printed matter body to be separated is arranged on the transmission roller shaft, the lifting hydraulic rod is arranged on the supporting top frame, the separating cutting plate is arranged on the lifting hydraulic rod, the driven transmission belt is arranged on the rotary driven shaft, the driven winding shaft is arranged on the driven transmission belt, the printed matter winding shaft is arranged on the driven winding shaft, the roller shaft supporting frame is arranged on the lifting hydraulic rod, the compacting roller shaft is arranged on the roller shaft supporting frame, the printing and drying device comprises a supporting ring plate, a motor supporting shaft, a drying motor, a drying transmission shaft, rotary drying fan blades and a heating screen plate, the supporting ring plate is arranged on the supporting top frame, the motor supporting shaft is arranged on the supporting ring plate, the drying motor is arranged on the motor supporting shaft, the drying transmission shaft is arranged on the drying motor, and the rotary drying fan blades are arranged on the drying transmission shaft, the heating screen plate is arranged on the supporting ring plate, the supporting top frame is used for supporting the lifting hydraulic rod, the supporting vertical plate is used for supporting the driving motor, the rotating transmission shaft is used for rotating to drive the transmission roller shaft to rotate, the transmission roller shaft is used for rotating to drive the transmission belt to rotate, the transmission belt is used for rotating to drive the rotating driven shaft to rotate, the rotating driven shaft is used for rotating to wind a to-be-separated printed matter body, the lifting hydraulic rod is used for telescopically driving the separating cutting plate to move to change positions, the separating cutting plate is used for moving to separate printed matters, the driven transmission belt is used for rotating to drive the driven winding shaft to rotate, the driven winding shaft is used for rotating to drive the printed matter winding shaft to rotate, the printed matter winding shaft is used for conveniently winding printed matters, and the roller shaft supporting frame is used for supporting and compacting the roller shaft, the effect of compaction roller is to rotate and to compact the printed matter, the effect of backup ring board is support motor back shaft, the effect of motor back shaft is to support drying motor, the effect of stoving transmission shaft is to rotate and drive and rotate and drive rotatory stoving flabellum and rotate, the effect of rotatory stoving flabellum is to rotate and blow to the printed matter and dry, the effect of heating otter board is conveniently with the air heating.
Furthermore, the transmission roller shaft is arranged between the rotating transmission shaft and the to-be-separated printed matter body, the lifting hydraulic rod is arranged between the supporting top frame and the separating cutting plate, the roller shaft supporting frame is arranged between the lifting hydraulic rod and the compacting roller shaft, and the motor supporting shaft is arranged between the supporting ring plate and the drying motor.
Further, rotatory transmission shaft is perpendicular setting with driving motor, the driving roller axle is perpendicular setting with rotatory transmission shaft, the lift hydraulic stem is perpendicular setting with supporting the roof-rack, the roller support frame is perpendicular setting with the lift hydraulic stem, drying motor is perpendicular setting with the motor back shaft.
Further, the support base is rectangle setting, the support riser is rectangle setting, the roller support frame is the U-shaped setting, the support collar plate is the annular setting.
Further, the transmission roller shafts are provided with two groups, the lifting hydraulic rods are provided with two groups, the motor support shafts are provided with four groups, and the drying transmission shafts are provided with four groups.
Furthermore, two sets of driving roller axle is the symmetry setting about the drive belt, and two sets of lift hydraulic stem is the symmetry setting about supporting the roof-rack.
The utility model with the structure has the following beneficial effects: this scheme a composite set is peeled off in printing gluey face printing, the effectual problem of having solved that present printing glue face printing degree of automation is low when peeling off the complex, waste time and energy and inconvenient carrying out the stoving to the printing face, degree of automation is high when having realized printing glue face printing and peeling off composite set, labour saving and time saving and the convenient purpose of drying to the printing face is a very practical composite set is peeled off in printing glue face printing.
Drawings
FIG. 1 is a schematic structural view of a printing product offset printing stripping compound device according to the present invention;
fig. 2 is another angle structure diagram of the printing product offset printing stripping composite device of the present invention.
The device comprises a supporting base, a supporting top frame, a printed matter stripping composite device, a printing drying device, a supporting vertical plate, a driving motor, a rotating transmission shaft, a transmission roller shaft, a 9 transmission belt, a 10 transmission shaft, a rotating driven shaft, a 11 to-be-separated printed matter body, a 12 lifting hydraulic rod, a 13 separation cutting plate, a 14 driven transmission belt, a 15 driven winding shaft, a 16 driven winding shaft, a printed matter winding shaft, a 17 roller shaft supporting frame, a 18 compaction roller shaft, a 19 supporting ring plate, a 20 motor supporting shaft, a 21 drying motor, a 22 drying transmission shaft, a 23 rotating drying fan blade, a 24 heating screen plate and a drying device.
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the principles of the utility model and not to limit the utility model.
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; all other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1-2, the printing product glue surface printing stripping composite device of the utility model comprises a supporting base 1, a supporting top frame 2, a printing product stripping composite device 3 and a printing drying device 4, wherein the supporting top frame 2 is arranged on the supporting base 1, the printing product stripping composite device 3 is arranged on the supporting base 1, the printing drying device 4 is arranged on the supporting top frame 2, the printing product stripping composite device 3 comprises a supporting vertical plate 5, a driving motor 6, a rotary transmission shaft 7, a transmission roller shaft 8, a transmission belt 9, a rotary driven shaft 10, a printing product body 11 to be separated, a lifting hydraulic rod 12, a separating cutting plate 13, a driven transmission belt 14, a driven winding shaft 15, a printing product winding shaft 16, a roller shaft supporting frame 17 and a compaction roller shaft 18, the supporting vertical plate 5 is arranged on the supporting base 1, the driving motor 6 is arranged on the supporting vertical plate 5, the rotary transmission shaft 7 is arranged on the driving motor 6, the transmission roller shaft 8 is arranged on the rotary transmission shaft 7, the transmission belt 9 is arranged on the rotary transmission shaft 7, the rotary driven shaft 10 is arranged on the transmission belt 9, the to-be-separated printed matter body 11 is arranged on the transmission roller shaft 8, the lifting hydraulic rod 12 is arranged on the supporting top frame 2, the separating cutting plate 13 is arranged on the lifting hydraulic rod 12, the driven transmission belt 14 is arranged on the rotary driven shaft 10, the driven winding shaft 15 is arranged on the driven transmission belt 14, the printed matter winding shaft 16 is arranged on the driven winding shaft 15, the roller shaft supporting frame 17 is arranged on the lifting hydraulic rod 12, the compaction roller shaft 18 is arranged on the roller shaft supporting frame 17, the printing and drying device 4 comprises a supporting ring plate 19, a motor supporting shaft 20, a drying motor 21, a drying transmission shaft 22, rotary drying fan blades 23 and a heating screen plate 24, the supporting ring plate 19 is arranged on the supporting top frame 2, the motor supporting shaft 20 is arranged on the supporting ring plate 19, the drying motor 21 is arranged on the motor supporting shaft 20, the drying transmission shaft 22 is arranged on the drying motor 21, the rotary drying fan blades 23 are arranged on the drying transmission shaft 22, and the heating screen plate 24 is arranged on the supporting ring plate 19.
The transmission roller shaft 8 is arranged between the rotating transmission shaft 7 and the to-be-separated printed matter body 11, the lifting hydraulic rod 12 is arranged between the supporting top frame 2 and the separating cutting plate 13, the roller shaft supporting frame 17 is arranged between the lifting hydraulic rod 12 and the compacting roller shaft 18, and the motor supporting shaft 20 is arranged between the supporting ring plate 19 and the drying motor 21.
Rotatory transmission shaft 7 is perpendicular setting with driving motor 6, driving roller 8 is perpendicular setting with rotatory transmission shaft 7, lift hydraulic stem 12 is perpendicular setting with supporting roof-rack 2, roller support frame 17 is perpendicular setting with lift hydraulic stem 12, drying motor 21 is perpendicular setting with motor back shaft 20.
The support base 1 is arranged in a rectangular shape, the support vertical plate 5 is arranged in a rectangular shape, the roll shaft support frame 17 is arranged in a U-shaped shape, and the support ring plate 19 is arranged in an annular shape.
The transmission roller shafts 8 are provided with two groups, the lifting hydraulic rods 12 are provided with two groups, the motor support shafts 20 are provided with four groups, and the drying transmission shafts 22 are provided with four groups.
The two groups of transmission roll shafts 8 are symmetrically arranged relative to the transmission belt 9, and the two groups of lifting hydraulic rods 12 are symmetrically arranged relative to the supporting top frame 2.
When the device is used specifically, a user fixes one end of a to-be-separated printed matter body 11 on a transmission roller shaft 8, then opens a lifting hydraulic rod 12 to extend, then a separation cutting plate 13 moves along with the lifting hydraulic rod, stops the lifting hydraulic rod 12 when the to-be-separated printed matter body 11 is moved to a position convenient for separating, then opens a driving motor 6, then a rotary transmission shaft 7 rotates along with the separation hydraulic rod to drive the transmission roller shaft 8 to rotate, the transmission roller shaft 8 rotates to drive the to-be-separated printed matter body 11 to move, the to-be-separated printed matter body 11 is separated through the separation cutting plate 13, a transmission belt 9 drives a rotary driven shaft 10 to rotate, then the separated printed matter is wound on the transmission roller shaft 8, the driving motor 6 is closed after the separation is finished, then one end of the printed matter is fixed on a printed matter winding shaft 16, then opens the lifting hydraulic rod 12 to extend, then a roller shaft support 17 and a compaction roller shaft 18 move along with the separation, when the lifting hydraulic rod 12 is stopped when the lifting hydraulic rod moves to a position where the printed matter is convenient to compact, the driving motor 6 is started, the rotary transmission shaft 7 rotates to drive the transmission belt 9 to rotate, the transmission belt 9 rotates to drive the rotary driven shaft 10 to rotate, the rotary driven shaft 10 rotates to drive the driven transmission belt 14 to rotate, the driven transmission belt 14 rotates to drive the driven winding shaft 15 to rotate, meanwhile, the printed matter winding shaft 16 rotates to wind the printed matter, meanwhile, the printed matter body 11 to be separated is compacted through the compaction roller shaft 18, the drying motor 21 is started, the drying transmission shaft 22 rotates along with the rotation to drive the rotary drying fan blades 23 to rotate, the rotary drying fan blades 23 rotate to blow air to the heating screen plate 24, the heating screen plate 24 is started to heat air, and then the air is blown to the printed matter to be further dried, and the whole using process of the whole printed matter glue face printing and stripping composite device is completed.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
The present invention and its embodiments have been described above, and the description is not intended to be limiting, and the drawings are only one embodiment of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should appreciate that they can readily use the disclosed conception and specific embodiments as a basis for designing or modifying other structures for carrying out the same purposes of the present invention without departing from the spirit and scope of the utility model as defined by the appended claims.
Claims (6)
1. The utility model provides a printed matter is glued face printing and is peeled off set composite which characterized in that: the device comprises a supporting base, a supporting top frame, a printed matter stripping composite device and a printing and drying device, wherein the supporting top frame is arranged on the supporting base, the printed matter stripping composite device is arranged on the supporting top frame, the printed matter stripping composite device comprises a supporting vertical plate, a driving motor, a rotary transmission shaft, a transmission roller shaft, a transmission belt, a rotary driven shaft, a to-be-separated printed matter body, a lifting hydraulic rod, a separating cutting plate, a driven transmission belt, a driven winding shaft, a printed matter winding shaft, a roller shaft supporting frame and a compaction roller shaft, the supporting vertical plate is arranged on the supporting base, the driving motor is arranged on the supporting vertical plate, the rotary transmission shaft is arranged on the driving motor, the transmission roller shaft is arranged on the rotary transmission shaft, the transmission belt is arranged on the rotary transmission shaft, and the rotary driven shaft is arranged on the transmission belt, the body of the printed matter to be separated is arranged on the transmission roller shaft, the lifting hydraulic rod is arranged on the supporting top frame, the separation cutting plate is arranged on the lifting hydraulic rod, the driven conveyor belt is arranged on the rotary driven shaft, the driven winding shaft is arranged on the driven conveyer belt, the printed matter winding shaft is arranged on the driven winding shaft, the roll shaft supporting frame is arranged on the lifting hydraulic rod, the compaction roll shaft is arranged on the roll shaft supporting frame, the printing and drying device comprises a supporting ring plate, a motor supporting shaft, a drying motor, a drying transmission shaft, a rotary drying fan blade and a heating screen plate, the supporting ring plate is arranged on the supporting top frame, the motor supporting shaft is arranged on the supporting ring plate, the drying motor is arranged on the motor supporting shaft, the drying transmission shaft is arranged on the drying motor, the rotary drying fan blades are arranged on the drying transmission shaft, and the heating screen plate is arranged on the supporting ring plate.
2. The offset printing and stripping composite device for the presswork according to claim 1, characterized in that: the transmission roller shaft is arranged between the rotating transmission shaft and the to-be-separated printed matter body, the lifting hydraulic rod is arranged between the supporting top frame and the separating cutting plate, the roller shaft supporting frame is arranged between the lifting hydraulic rod and the compacting roller shaft, and the motor supporting shaft is arranged between the supporting ring plate and the drying motor.
3. The offset printing and stripping composite device for the presswork according to claim 2, wherein: rotatory transmission shaft is perpendicular setting with driving motor, the driving roller axle is perpendicular setting with rotatory transmission shaft, the lift hydraulic stem is perpendicular setting with supporting the roof-rack, the roller support frame is perpendicular setting with the lift hydraulic stem, drying motor is perpendicular setting with the motor back shaft.
4. The off-set composite apparatus for printing on the offset surface of printed matter according to claim 3, wherein: the supporting base is arranged in a rectangular mode, the supporting vertical plate is arranged in a rectangular mode, the roll shaft supporting frame is arranged in a U-shaped mode, and the supporting ring plate is arranged in an annular mode.
5. The off-set composite apparatus for printing on the offset surface of printed matter according to claim 4, wherein: the transmission roller shafts are provided with two groups, the lifting hydraulic rods are provided with two groups, the motor support shafts are provided with four groups, and the drying transmission shafts are provided with four groups.
6. The off-set composite apparatus for printing on the offset surface of printed matter according to claim 5, wherein: the two sets of transmission roller shafts are symmetrically arranged relative to the transmission belt, and the two sets of lifting hydraulic rods are symmetrically arranged relative to the supporting top frame.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122295089.7U CN215850270U (en) | 2021-09-23 | 2021-09-23 | Printed matter rubber surface printing stripping composite device |
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CN202122295089.7U CN215850270U (en) | 2021-09-23 | 2021-09-23 | Printed matter rubber surface printing stripping composite device |
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CN215850270U true CN215850270U (en) | 2022-02-18 |
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CN202122295089.7U Active CN215850270U (en) | 2021-09-23 | 2021-09-23 | Printed matter rubber surface printing stripping composite device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115198458A (en) * | 2022-07-19 | 2022-10-18 | 浙江蓝之梦纺织有限公司 | Quick high-efficient jean fabric dyeing equipment |
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2021
- 2021-09-23 CN CN202122295089.7U patent/CN215850270U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115198458A (en) * | 2022-07-19 | 2022-10-18 | 浙江蓝之梦纺织有限公司 | Quick high-efficient jean fabric dyeing equipment |
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