CN204914939U - Transmission of follow -on intelligent inkjet printing line mechanism - Google Patents
Transmission of follow -on intelligent inkjet printing line mechanism Download PDFInfo
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- CN204914939U CN204914939U CN201520589568.1U CN201520589568U CN204914939U CN 204914939 U CN204914939 U CN 204914939U CN 201520589568 U CN201520589568 U CN 201520589568U CN 204914939 U CN204914939 U CN 204914939U
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- print line
- line mechanism
- ink
- jet print
- conveyer belt
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Abstract
The utility model discloses a transmission of follow -on intelligent inkjet printing line mechanism, including being equipped with the planar board of the work body, set a conveyer belt that is used for carrying the stock on this board body, the conveyer belt is equipped with a slide rail respectively along its direction of delivery's both sides, and the cooperation carriage is equipped with a seal line crossbearer body, the seal line crossbearer body and its edge of drive on the slide rail the drive assembly drive that the direction of delivery of conveyer belt vertically moved is connected, be equipped with the inkjet printing line mechanism that a slidable set up on the seal line crossbearer body, be connected with its secondary drive subassembly drive along the operation of the horizontal direction of conveyer belt of a drive in the inkjet printing line mechanism. The utility model discloses can more accurately realize the position of inkjet printing line mechanism and move, change traditional driving method, can realize that more accurate ground position change moves, improves the seal line precision of inkjet printing line mechanism.
Description
Technical field
The utility model relates to printing, print line technical field of mechanical equipment, is more particularly a kind of transmission device of follow-on intelligent ink-jet print line mechanism.
Background technology
Screen process press is the machine utilizing screen printing forme to execute print, belong to the one of printing machine, it is for printing word and image, be produce the machine of printed matter or the general name of equipment, screen process press is widely used in the processing of the stamp of the industry plane materials such as picture and text, footwear industry, clothes, case and bag, ceramic tile, glass or the processing of large area stamp.
The operation principle of screen process press: first, power is transmitted through transmission mechanism, allow sdueegee extrude ink and screen printing forme at the volley, make screen printing forme and stock form a nip, because silk screen has tension force N1 and N2, power F2 is produced to sdueegee, screen resilience makes screen printing forme not contact with stock except nip, and ink, under the extruding force F1 effect of sdueegee, passes through mesh, bite stock from moving nip, complete presswork.In printing process, screen printing forme and sdueegee carry out relative motion, extruding force F1 and screen resilience F2 also synchronizing moving thereupon, silk screen is under screen resilience effect, and timely return and stock disengage, in order to avoid trace set-off, namely silk screen is in printing process, is constantly among distortion and resilience.
At present, screen process press is generally divided into hand screen process press, Semi-automatic screen process press, automatic press and serigraphy gear, hand screen process press is generally made up of hinged support, undertake the printing of platform and silk-screen plate, and whole action is completed by manual operations; Semi-automatic screen process press is when printing, various action realizes partial automation, general title wiping, even ink and silk screen chase are 1/4 automatic screen printing machine automatically, the absorption of wiping, even ink, silk screen chase and stock is claimed to be 1/2 automatic screen printing machine all automatically, in addition, stock is sent into and also can be called 3/4 automatic screen printing machine automatically; And automatic screen printing machine adds the lifting of automatic printed document, conveying in the front and back of 3/4 automatic screen printing machine respectively, dries and the printing machine of addressee stacking mechanism, its print speed printing speed significantly improves than Semi-automatic printer; And serigraphy gear is by several groups of printings, drying unit and gold stamping, impression, applies the device such as film, cross cutting and be in series, complete machine available computers controls, and can print multicolor print, the serigraphy type that efficiency is high, function is complete.
But along with the development of science and technology, this kind of screen process press encounters very large technical bottleneck, first, it is all need to customize silk-screen plate when presswork, and when printing different patterns or lines, all needs to customize out special silk-screen plate; Secondly, its printing precision depends on the wiping precision of manually reloading with web plate, and uncertainty is very high; 3rd, owing to adopting wiping technology during serigraphy operation, so the consumptive material of ink is larger, and print, raw material and ink residue thing all need cleaning at every turn, not only waste but also not environmentally; 4th, equipment is very high to the positioning requirements of stock, all need during blowing to carry out contraposition, there is artificial contraposition, also machine automatic aligning is had, if position occurs that skew will make the printing quality of whole stock be affected, once occur that position deviation all must adjust in time, so this equipment must be very strict to the job requirement detecting post; 5th, printing efficiency is low, even if the serigraphy gear that automation is best, its printing speed also can not more than 1500 prints/hour, and when running into complex figure or lines, also there will be the phenomenons such as ink print is rubbed, having a strong impact on printing precision and printing efficiency.
In order to solve the technical bottleneck of above-mentioned appearance, the research staff of this area is changing this problem in industry by technological innovation, if the applicant was application on 07 31st, 2014, a kind of smart tags print line machine of Authorization Notice No. CN203957532U, this mark print line machine revolutionizes mode of printing and the method for traditional wire mechanical equipment by the mode utilizing ink spray gun and print, not only can overcome above-mentioned technical disadvantages and problem that screen printing apparatus in use occurs, and can further improve industry printing quality and printing efficiency, update for industry is got up breakthrough, the effect of the property changed, initiating in the industry, the printing technology of the industry is moved towards the industrialization, precision, automation and intellectuality, accelerate industrial upgrading transformation.But above-mentioned disclosed technical scheme still also exists some shortcomings in actual applications, such as, its ink jet printing is, by spray gun, each ink-jet point is formed last ink-jet print line tracking, in the ink jet process completing this print line tracking, this lance head be all need ceaselessly to carry out moving on whole stock, ink-jet operation, so have impact on the speed of its printing ink-jet, so develop a kind of better transmission device, ink-jet print line, the speed of printing and precision can be improved further, there is extraordinary using value.
Utility model content
Be a kind of transmission device of follow-on intelligent ink-jet print line mechanism disclosed in the utility model, its main purpose is the problems referred to above and the shortcoming that overcome prior art existence.
The technical solution adopted in the utility model is as follows:
A kind of transmission device of follow-on intelligent ink-jet print line mechanism, comprise the board body being provided with working face, this board body is equipped with one for the conveyer belt of delivering printing, described conveyer belt is respectively equipped with a slide rail along the both sides of its throughput direction, described slide rail coordinates travelling carriage be provided with a print line crossbearer body, the first transmission component that described print line crossbearer body and drives its throughput direction along described conveyer belt to carry out longitudinally running drives and is connected; Described print line crossbearer body is provided with an ink-jet print line mechanism slidably arranged, and described ink-jet print line mechanism drives with one it drive along the second transmission component that conveyer belt horizontal direction runs and is connected.
Further, described first transmission component comprise the first servomotor, with the drag chain bar of the supporting setting of this servomotor, described drag chain bar is fixedly connected with described print line crossbearer body.
Further, described second transmission component comprises the second servomotor, Timing Belt, and this Timing Belt coordinates and is installed on described second servomotor, and described ink-jet print line mechanism coordinates to be connected with described Timing Belt and arranges.
Further, the two ends of described print line crossbearer body are also respectively equipped with a touching joint derailed for preventing ink-jet from printing line mechanism.
Further, described first transmission component drives described print line crossbearer body to carry out moving setting along X-direction, and described second transmission component drives described ink-jet print line mechanism to carry out moving setting along Y direction.
By above-mentioned known to description of the present utility model, compared to the prior art, the utility model has the advantage of:
The utility model drives described print line crossbearer body to move along X-direction by arranging the first transmission component, arrange the second transmission component drives described ink-jet print line mechanism to move along Y direction simultaneously, the position that can realize ink-jet print line mechanism is more accurately moved, change traditional type of drive, change in location more accurately can be realized move, improve the print line precision of ink-jet print line mechanism.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Detailed description of the invention
Illustrate with reference to the accompanying drawings and detailed description of the invention of the present utility model is described further.
As shown in Figure 1, a kind of transmission device of follow-on intelligent ink-jet print line mechanism, comprise the board body 1 being provided with working face, this board body 1 is equipped with one for the conveyer belt 2 of delivering printing, described conveyer belt 2 is respectively equipped with a slide rail 3 along the both sides of its throughput direction, described slide rail 3 coordinates travelling carriage be provided with a print line crossbearer body 4, the first transmission component 5 that described print line crossbearer body 4 and drives its throughput direction along described conveyer belt 2 to carry out longitudinally running drives and is connected; Described print line crossbearer body 4 is provided with an ink-jet print line mechanism 6 slidably arranged, and described ink-jet print line mechanism 6 drives with one it drive along the second transmission component 7 that conveyer belt 2 horizontal direction runs and is connected.
As shown in Figure 1, described first transmission component 5 comprise the first servomotor 51, with the drag chain bar 52 of the supporting setting of this servomotor 51, described drag chain bar 52 is fixedly connected with described print line crossbearer body 4.Described second transmission component 7 comprises the second servomotor 71, Timing Belt 72, and this Timing Belt 62 coordinates and is installed on described second servomotor 71, and described ink-jet print line mechanism 6 coordinates to be connected with described Timing Belt 72 and arranges.The two ends of described print line crossbearer body 4 are also respectively equipped with a touching joint 41 derailed for preventing ink-jet from printing line mechanism 6, when ink-jet print line mechanism 6 touches this touching joint 41 time, automatically change traffic direction, prevent it from continuing run and derail.Described first transmission component 5 drives described print line crossbearer 4 body to carry out moving setting along X-direction, and described second transmission component 7 drives described ink-jet print line mechanism 6 to carry out moving setting along Y direction.
The utility model drives described print line crossbearer body to move along X-direction by arranging the first transmission component, arrange the second transmission component drives described ink-jet print line mechanism to move along Y direction simultaneously, the position that can realize ink-jet print line mechanism is more accurately moved, change traditional type of drive, change in location more accurately can be realized move, improve the print line precision of ink-jet print line mechanism.
The above is only preferred embodiment of the present utility model; should be understood that; for those skilled in the art; under the prerequisite not departing from the utility model know-why; can also make some improvements and modifications, these improvements and modifications also should be considered as protection domain of the present utility model.
Claims (5)
1. the transmission device of a follow-on intelligent ink-jet print line mechanism, comprise the board body being provided with working face, this board body is equipped with one for the conveyer belt of delivering printing, it is characterized in that: described conveyer belt is respectively equipped with a slide rail along the both sides of its throughput direction, described slide rail coordinates travelling carriage be provided with a print line crossbearer body, the first transmission component that described print line crossbearer body and drives its throughput direction along described conveyer belt to carry out longitudinally running drives and is connected; Described print line crossbearer body is provided with an ink-jet print line mechanism slidably arranged, and described ink-jet print line mechanism drives with one it drive along the second transmission component that conveyer belt horizontal direction runs and is connected.
2. the transmission device of a kind of follow-on intelligent ink-jet print line mechanism according to claim 1, it is characterized in that: described first transmission component comprise the first servomotor, with the drag chain bar of the supporting setting of this servomotor, described drag chain bar is fixedly connected with described print line crossbearer body.
3. the transmission device of a kind of follow-on intelligent ink-jet print line mechanism according to claim 1, it is characterized in that: described second transmission component comprises the second servomotor, Timing Belt, this Timing Belt coordinates and is installed on described second servomotor, and described ink-jet print line mechanism coordinates to be connected with described Timing Belt and arranges.
4. the transmission device of a kind of follow-on intelligent ink-jet print line mechanism according to claim 1, is characterized in that: the two ends of described print line crossbearer body are also respectively equipped with a touching joint derailed for preventing ink-jet from printing line mechanism.
5. the transmission device of a kind of follow-on intelligent ink-jet print line mechanism according to claim 1, it is characterized in that: described first transmission component drives described print line crossbearer body to carry out moving setting along X-direction, described second transmission component drives described ink-jet print line mechanism to carry out moving setting along Y direction.
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CN201520589568.1U CN204914939U (en) | 2015-08-03 | 2015-08-03 | Transmission of follow -on intelligent inkjet printing line mechanism |
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CN201520589568.1U CN204914939U (en) | 2015-08-03 | 2015-08-03 | Transmission of follow -on intelligent inkjet printing line mechanism |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106827784A (en) * | 2017-01-23 | 2017-06-13 | 王志远 | A kind of line-transect printing equipment |
CN107703152A (en) * | 2017-10-27 | 2018-02-16 | 深圳精创视觉科技有限公司 | The automatic indication device of optical film shortcoming |
-
2015
- 2015-08-03 CN CN201520589568.1U patent/CN204914939U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106827784A (en) * | 2017-01-23 | 2017-06-13 | 王志远 | A kind of line-transect printing equipment |
CN106827784B (en) * | 2017-01-23 | 2021-02-26 | 王志远 | Sample line printing device |
CN107703152A (en) * | 2017-10-27 | 2018-02-16 | 深圳精创视觉科技有限公司 | The automatic indication device of optical film shortcoming |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20151230 Termination date: 20200803 |