CN209999780U - composite printing embossing device - Google Patents
composite printing embossing device Download PDFInfo
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- CN209999780U CN209999780U CN201920351878.8U CN201920351878U CN209999780U CN 209999780 U CN209999780 U CN 209999780U CN 201920351878 U CN201920351878 U CN 201920351878U CN 209999780 U CN209999780 U CN 209999780U
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Abstract
The utility model discloses an composite printing embossing apparatus, including frame, stamp membrane material conveying mechanism and set up in pan feeding guide roll, pressing mechanism, refrigeration conveying roller and rolling roller seat in the frame, the adjacent curtain coating extruder discharge end of frame set up, the pan feeding guide roll set up the pressing mechanism top and to the extrusion material of pressing mechanism transport curtain coating extruder discharge end, stamp membrane material conveying mechanism set up in pressing mechanism front end or rear end, refrigeration conveying roller and rolling roller seat set up in pressing mechanism below, pressing mechanism include pressure roller and drive roll, pressure roller and drive roll setting in with horizontal plane and both roll surfaces contact each other with the extrusion material laminating, this stamp composite embossing apparatus can make the stamp well shaping on required material, compare traditional stamp shaping mode and can reduce the manufacturing cost of enterprise again.
Description
The technical field is as follows:
the utility model relates to a stamp equipment technology field especially relates to kind of compound stamp embossing apparatus.
Background art:
in daily life, the printing can be printed on the surfaces of materials such as liners, packaging foils and non-woven fabrics for decoration, but when the printing needs to be printed on the surface of a textured material, the traditional printing processing mode can deform the printed printing due to the uneven surface of the material, the forming effect is poor, the existing printing processing mode usually uses a letterpress printing machine to emboss and perform printing forming to solve the problem, but the processing mode has high cost, and the production cost of enterprises is increased.
The utility model has the following contents:
in order to solve the technical problem, the utility model provides an kind of compound stamp embossing apparatus, including frame, stamp membrane material conveying mechanism and set up in pan feeding guide roll, pressing mechanism, refrigeration conveying roller and rolling roller seat in the frame, the adjacent curtain coating extruder discharge end of frame set up, the pan feeding guide roll set up pressing mechanism top and to the extrusion material of pressing mechanism transport curtain coating extruder discharge end, stamp membrane material conveying mechanism set up in pressing mechanism front end or rear end, refrigeration conveying roller and rolling roller seat set up in pressing mechanism below, pressing mechanism include pressure roller and drive roll, pressure roller and drive roll setting contact with the extrusion material laminating with horizontal plane and both roll surfaces each other.
Preferably, the printing film material conveying mechanism comprises a printing film unwinding roller and a printing film conveying roller, the mounting height of the printing film conveying roller is higher than that of the pressing mechanism, and the mounting height of the printing film unwinding roller is higher than that of the printing film conveying roller.
Preferably, the installation height of the winding roller seat is lower than that of the refrigeration conveying roller.
Preferably, the printing film material conveying mechanism, the driving roller, the refrigerating conveying roller and the winding roller seat are driven by a motor to operate.
Preferably, the axial surface of the pressure roller is provided with embossments for forming the surface of the material.
Preferably, chilled water is introduced into the pressure roller, the driving roller and the refrigerating conveying roller for refrigeration, and a rubber layer is arranged on the surface of the driving roller.
The utility model has the advantages that: the printing composite embossing device can convey a printing film material and a PE or EVA extrusion material to the pressing mechanism, the printing film material and the extrusion material are tightly attached through the matching of the pressure roller and the driving roller of the pressing mechanism in a cold pressing mode, and meanwhile, the roller surface of the pressure roller is provided with embossing to form required textures in the pressing process, so that the printing can be well formed on the required materials, and the high-cost traditional printing forming mode can be avoided.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
In the figure: the printing machine comprises a frame 1, a printing film material conveying mechanism 2, a printing film unwinding roller 21, a printing film conveying roller 22, a feeding guide roller 3, a pressing mechanism 4, a pressure roller 41, a driving roller 42, a refrigerating conveying roller 5 and a winding roller seat 6.
Detailed Description
The following description steps are taken in conjunction with the accompanying drawings and the embodiments to more clearly understand the technical idea claimed in the present invention.
As shown in fig. 1, kinds of composite printing embossing devices include a rack 1, a printing film material conveying mechanism 2, and a feeding guide roller 3, a pressing mechanism 4, a cooling conveying roller 5 and a rolling roller seat 6 which are arranged in the rack 1, the rack 1 is adjacent to a discharge end of a casting extruder, the feeding guide roller 3 is arranged above the pressing mechanism 4 and conveys an extrusion material at the discharge end of the casting extruder to the pressing mechanism 4, the printing film material conveying mechanism 2 is arranged at a front end or/and a rear end of the pressing mechanism 4, it should be noted that in a specific embodiment, the printing film material conveying mechanism is respectively arranged at the front end and the rear end of the pressing mechanism, so that the printing film material can be attached to surfaces of the extrusion material or two surfaces of the extrusion material, wherein the material from the casting extruder can be processed by PE or EVA and used as the pressing mechanism for processing materials such as foil, non-woven fabric and liner, the cooling conveying roller 5 and the rolling roller seat 6 are arranged below the pressing mechanism 4, specifically, the installation height of the rolling roller seat 6 is lower than that the cooling roller 5 and the cooling roller 42 are arranged on a surface of a cooling roller, and a cooling roller 52, and a cooling roller seat, so that the cooling roller and the cooling roller are arranged on a cooling roller 5 and a cooling roller, the cooling roller seat are arranged on a cooling roller, and a cooling roller, so that the cooling roller are arranged on the pressing roller, and a cooling roller are arranged on a cooling roller, and a cooling roller are arranged on.
On stamp conveying mechanism's concrete structure, stamp coating material conveying mechanism 2 includes that the stamp membrane unreels roller 21 and stamp membrane conveying roller 22, stamp membrane conveying roller 22 mounting height be higher than 4 mounting height of pressing fit mechanism, just the stamp membrane unreels roller 21 mounting height be higher than stamp membrane conveying roller 22 mounting height, the stamp coating material is carried to pressing fit mechanism through the stamp membrane conveying roller on unreeling roller from the stamp membrane, and the stamp conveying mechanism at both ends can all provide stamp coating material laminating processing around the pressing fit mechanism.
The working principle of the printing composite embossing device is that PE or EVA extrusion materials come out from the discharge end of a casting extruder and are conveyed to a pressing mechanism through a feeding guide roller, printing film materials are discharged from a printing film unwinding roller and are conveyed to the pressing mechanism through a printing film conveying roller, the printing film materials are positioned on surfaces or two surfaces of the extrusion materials and enter the pressing mechanism together with the extrusion materials , then a pressure roller and a driving roller of the pressing mechanism are matched with cold pressing of the printing film materials and the extrusion materials to enable the printing film materials and the extrusion materials to be tightly attached, meanwhile, embossing on the roller surface of the pressure roller enables the surface of the materials to form required textures in the pressing process, the materials after being pressed are shaped through a refrigerating conveying roller and are conveyed continuously, and finally, finished products are wound on a winding roller seat.
The above is only the concrete embodiment of the present invention, and not therefore the limit of the patent scope of the present invention, all the equivalent structures or equivalent flow changes made by the contents of the specification and the drawings, or directly or indirectly applied to other related technical fields, are included in the patent protection scope of the present invention.
Claims (6)
- The composite printing embossing device is characterized in that the feeding guide roller is arranged above the pressing mechanism and conveys extruded materials at the discharge end of the casting extruder to the pressing mechanism, the printing film material conveying mechanism is arranged at the front end or/and the rear end of the pressing mechanism, the refrigerating conveying roller and the rolling roller seat are arranged below the pressing mechanism, the pressing mechanism comprises a pressure roller and a driving roller, the pressure roller and the driving roller are arranged on the same horizontal plane, and the roller surfaces of the pressure roller and the driving roller are in contact with each other to extrude the materials to be laminated.
- 2. The composite printing and embossing device as claimed in claim 1, wherein the printed film feeding mechanism comprises a printed film unwinding roller and a printed film feeding roller, the mounting height of the printed film feeding roller is higher than that of the pressing mechanism, and the mounting height of the printed film unwinding roller is higher than that of the printed film feeding roller.
- 3. The composite printing embossing device as claimed in claim 1, wherein the installation height of the take-up roller base is lower than that of the refrigeration conveying roller.
- 4. The composite embossing device of claim 1, wherein the film feeding mechanism, the driving roller, the cooling feeding roller and the winding roller seat are driven by a motor.
- 5. The composite embossing apparatus as claimed in claim 1, wherein the pressure roller has embossments on its surface for shaping the surface of the material.
- 6. The composite embossing apparatus as set forth in claim 1, wherein the pressure rollers, the driving rollers and the cooling rollers are all cooled by chilled water, and the driving rollers are provided with rubber layers on their surfaces.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920351878.8U CN209999780U (en) | 2019-03-20 | 2019-03-20 | composite printing embossing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920351878.8U CN209999780U (en) | 2019-03-20 | 2019-03-20 | composite printing embossing device |
Publications (1)
Publication Number | Publication Date |
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CN209999780U true CN209999780U (en) | 2020-01-31 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920351878.8U Active CN209999780U (en) | 2019-03-20 | 2019-03-20 | composite printing embossing device |
Country Status (1)
Country | Link |
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CN (1) | CN209999780U (en) |
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2019
- 2019-03-20 CN CN201920351878.8U patent/CN209999780U/en active Active
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