CN207931277U - For the automatic off-network structure of printing material deformation - Google Patents
For the automatic off-network structure of printing material deformation Download PDFInfo
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- CN207931277U CN207931277U CN201820325417.9U CN201820325417U CN207931277U CN 207931277 U CN207931277 U CN 207931277U CN 201820325417 U CN201820325417 U CN 201820325417U CN 207931277 U CN207931277 U CN 207931277U
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- printing
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- screw rod
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Abstract
The utility model discloses a kind of automatic off-network structures for printing material deformation comprising upper frame, support platform, printing screen plate, off-network linear drive apparatus, adjusting screw rod and universal connecting components;The utility model smart structural design, rationally, under the synchronous driving of four off-network linear drive apparatus, it may remain in print station version moving process, it avoids causing because of material gross distortion generating scraping and contact phenomena between stock and printing screen plate, effectively increase the utilization of stock, solves the unilateral off-grid deficiency of traditional printing, universal connecting components can eliminate the position deviation of positioning belt simultaneously, and adjusting screw rod has height adjusting function, meet different use demands, it is applied widely, in addition compact overall structure, simply, it is easily achieved, work efficiency is high, it has wide range of applications, it can be adapted for rectilinear printing machine, oblique-arm type printing machine, full-automatic roll-to-roll printing machine, the various flat surface screen printing machines such as treadmill type printing machine.
Description
Technical field
The utility model is related to install technique of counterpoint field when printing screen plate, and in particular to one kind becomes for printing material
The automatic off-network structure of shape.
Background technology
With the gradually development of silk-screen printing, the requirement of the precision and efficiency of press quality and multiple chromatography to product
It is higher and higher, thus properties to printing press and structure also require it is more next perfect.
Although conventional screen lithographic equipment has automatic off-network function, can reach general printing stock and printed with web plate
Efficiently separating when brush, but traditional off-network structure is unilateral off-network structure, and can only be acted when printing.Such as
The gross distortion of fruit material and in the case of having relative motion with printing screen plate, since material deformation is higher than printing screen plate and print
The spacing of brush platform version, causes stock to be contacted with halftone, at this time the printing machine of traditional off-network structure can only improve printing screen plate with
The distance for printing platen, due to the variation of this distance, to cause the printing precision of printing, the quality decline of printing.As replaced
Stock then causes unnecessary waste.
Utility model content
Against the above deficiency, the purpose of the utility model is to provide a kind of smart structural design, rationally, it is easy to operate,
Contraposition is easily for the automatic off-network structure of printing material deformation.
To achieve the above object, technical solution provided by the utility model is:It is a kind of for printing material deformation from
Dynamic off-network structure comprising upper frame, support platform, printing screen plate, off-network linear drive apparatus, adjusting screw rod and universal connection
Part, support platform are located at the lower position of upper frame, and four off-network linear drive apparatus correspond to the four corners position of support platform
It sets and is distributed on frame, the four corners of support platform are respectively provided with a mounting base, and the lower end of adjusting screw rod is connected with mounting base
It connects, upper end is connected with one end of universal connecting components, and the other end of universal connecting components is distinguished off-network straight line corresponding thereto and driven
Dynamic device is connected, and printing screen plate is set by printing net sandwiched in the bottom surface of support platform.
As a kind of improvement of the utility model, the off-network linear drive apparatus is cylinder, oil cylinder or linear motor.
As a kind of improvement of the utility model, the universal connecting components are universal bearing, universal joint or universal ball end.
As a kind of improvement of the utility model, the mounting base is equipped with adjusting spiral shell compatible with the adjusting screw rod
Pit.
The beneficial effects of the utility model are:The utility model smart structural design, rationally, in four off-network linear drives
Under the synchronous driving of device, it may remain in print station version moving process, avoid leading to stock because of material gross distortion
Between printing screen plate generate scrape and contact phenomena, effectively increase the utilization of stock, solve traditional printing it is unilateral from
The deficiency of net, while universal connecting components can eliminate the position deviation of positioning belt, and adjusting screw rod has height adjusting function,
Meet different use demands, applied widely, other compact overall structure, simple, it is easy to accomplish, work efficiency is high, using model
It encloses extensively, can be adapted for rectilinear printing machine, oblique-arm type printing machine, full-automatic roll-to-roll printing machine, treadmill type printing machine etc.
Various flat surface screen printing machines.
Below in conjunction with the accompanying drawings with embodiment, the utility model is further illustrated.
Description of the drawings
Fig. 1 is the dimensional structure diagram of the utility model.
Fig. 2 is the structural schematic diagram faced of the utility model.
Fig. 3 is the structural schematic diagram of the side view of the utility model.
Specific implementation mode
Embodiment, referring to Fig. 1 to Fig. 3, a kind of automatic off-network structure for printing material deformation provided in this embodiment,
It includes upper frame 1, support platform 2, printing screen plate 3, off-network linear drive apparatus 4, adjusting screw rod 5 and universal connecting components 6, branch
Support platform 2 is located at the lower position of upper frame 1, and four off-network linear drive apparatus 4 correspond to the four corners position of support platform 2
It is distributed on frame 1, the four corners of support platform 2 are respectively provided with a mounting base 7, lower end and 7 phase of mounting base of adjusting screw rod 5
Connection, specifically, being equipped with adjusting threaded hole compatible with the adjusting screw rod 5 in the mounting base 7.Adjusting screw rod 5
Upper end is connected with one end of universal connecting components 6, and the other end of the universal connecting components 6 distinguishes off-network straight line corresponding thereto
Driving device 4 is connected, and universal connecting components 6 can eliminate the position deviation of positioning belt, and there is adjusting screw rod 5 height to adjust
Function meets different use demands, applied widely.Printing screen plate 3 is set by printing net sandwiched in the bottom surface of support platform 2.
In the present embodiment, the off-network linear drive apparatus 4 is preferably cylinder, and in other embodiments, which drives
Dynamic device 4 or oil cylinder or linear motor.
In the present embodiment, the universal connecting components 6 are universal bearing, and in other embodiments, which can also
For universal joint, universal ball end or connector with the same function.
When work, off-network linear drive apparatus 4 rises, and printing screen plate 3 increases relative to the distance of print station version 8 at this time,
Print station version 8 is moved according to technological requirement to for printing screen plate 3, or when having reapposed stock, at this time off-network straight line
Driving device 4 declines, and printing screen frame is fixed under the action of positioning cylinder relative to 8 position of print station version, then completes a print
Brush cycle.It realizes under the synchronous driving of four off-network linear drive apparatus 4, may remain in 8 moving process of print station version,
It avoids causing because of material gross distortion generating scraping and contact phenomena between stock and printing screen plate 3, effectively increases and hold
The utilization for printing object, solves the unilateral off-grid deficiency of traditional printing, effectively promotes printing efficiency and reduces unnecessary waste, drop
Low cost.
According to the disclosure and teachings of the above specification, the utility model those skilled in the art can also be to above-mentioned reality
The mode of applying is changed and is changed.Therefore, the utility model is not limited to specific implementation mode disclosed and described above, right
Some modifications and changes of the utility model should also be as falling into the protection scope of the claims of the present utility model.In addition, to the greatest extent
Some specific terms are used in pipe this specification, these terms are merely for convenience of description, not to the utility model
Constitute any restrictions.As described in the utility model above-described embodiment, using other obtained from same or similar structure
Structure, in scope of protection of the utility model.
Claims (4)
1. a kind of automatic off-network structure for printing material deformation, which is characterized in that it includes upper frame, support platform, print
Brush halftone, off-network linear drive apparatus, adjusting screw rod and universal connecting components, support platform are located at the lower position of upper frame, and four
A off-network linear drive apparatus corresponds to the four corners position distribution of support platform on upper frame, the four corners of support platform
It is respectively provided with a mounting base, the lower end of adjusting screw rod is connected with mounting base, and upper end is connected with one end of universal connecting components, universal
The off-network linear drive apparatus of the other end of connector respectively corresponding thereto is connected, and printing screen plate is set by printing net sandwiched
In the bottom surface of support platform.
2. the automatic off-network structure according to claim 1 for printing material deformation, it is characterised in that:The off-network is straight
Line driving device is cylinder, oil cylinder or linear motor.
3. the automatic off-network structure according to claim 1 or 2 for printing material deformation, it is characterised in that:Described ten thousand
It is universal bearing, universal joint or universal ball end to connector.
4. the automatic off-network structure according to claim 1 for printing material deformation, it is characterised in that:The mounting base
It is equipped with adjusting threaded hole compatible with the adjusting screw rod.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820325417.9U CN207931277U (en) | 2018-03-09 | 2018-03-09 | For the automatic off-network structure of printing material deformation |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201820325417.9U CN207931277U (en) | 2018-03-09 | 2018-03-09 | For the automatic off-network structure of printing material deformation |
Publications (1)
Publication Number | Publication Date |
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CN207931277U true CN207931277U (en) | 2018-10-02 |
Family
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Family Applications (1)
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CN201820325417.9U Active CN207931277U (en) | 2018-03-09 | 2018-03-09 | For the automatic off-network structure of printing material deformation |
Country Status (1)
Country | Link |
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CN (1) | CN207931277U (en) |
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2018
- 2018-03-09 CN CN201820325417.9U patent/CN207931277U/en active Active
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