CN103950279B - A kind of printing equipment of belt variable figure magnetic orientation device - Google Patents

A kind of printing equipment of belt variable figure magnetic orientation device Download PDF

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Publication number
CN103950279B
CN103950279B CN201410204218.9A CN201410204218A CN103950279B CN 103950279 B CN103950279 B CN 103950279B CN 201410204218 A CN201410204218 A CN 201410204218A CN 103950279 B CN103950279 B CN 103950279B
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electromagnet
conveyer
magnetic orientation
orientation device
magnetic
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CN103950279A (en
Inventor
孔繁辉
徐军
刘建锋
詹德清
杨建江
刘麒
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Changde Jinpeng Printing Co Ltd
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Changde Jinpeng Printing Co Ltd
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Abstract

The invention discloses a kind of printing equipment of belt variable figure magnetic orientation device, comprise conveyer, printing equipment, magnetic orientation device, solidification equipment, described magnetic orientation device comprises and arranging and relative the first electromagnet of opposite pole and the second electromagnet in upper-lower position, described first electromagnet is not identical with the area of section of the second electromagnet, and printed matter is in after entering described magnetic orientation device between described first electromagnet and the second electromagnet and carries out magnetic orientation; In printing equipment of the present invention, electromagnet magnetic field intensity can arbitrarily regulate, magnetic field conversion can complete instantaneously, can not have an impact to not completely crued printed matter pattern, corresponding integrality and the definition that improve pattern, arranged by the magnet in magnetic orientation device, enriched printing effect; By part flow arrangement, hardening time and printing time can also to be carried out better coupling.

Description

A kind of printing equipment of belt variable figure magnetic orientation device
Technical field
The present invention relates to printing equipment field, refer to a kind of printing equipment of belt variable figure magnetic orientation device especially.
Background technology
At present, at magnetic anti-counterfeit print field, usually utilize the magnetic pigment flakes of magnetic orientation device to magnetic photochromatic printing ink inside to carry out magnetic orientation, and produce the particular optical pattern of artificial design.The application of this technology needs specific printing equipment to realize, as: application number: 201210276242.4, name is called a kind of prior art of magnetic printing equipment, and it mainly comprises: for transmit printed matter the first transmission mechanism, for print printing equipment, for carrying out the magnetic orientation device of magnetic orientation, the solidification equipment for being cured magnetic ink to magnetic ink.Current magnetic anti-counterfeit printing effect is comparatively single, and this is mainly owing to being subject in magnetic orientation device, and magnet arranges the restriction of form, and be namely only at present generally the magnet selecting rectangular magnet to be used as in magnetic orientation device, printing effect is simple, and anti-fake effect is general.In addition, the printing time of existing printing equipment is often less than the hardening time of solidification equipment, and namely the two does not mate, life period is poor, more complicated for the apparatus design structure solving this problem, not easily accurately controls, and production efficiency is also very difficult has lifting again.
Summary of the invention
In view of this, the object of the invention is to the printing equipment proposing the belt variable figure magnetic orientation device that a kind of printing effect enriches, printing efficiency is better.
Based on the printing equipment of above-mentioned purpose a kind of belt variable figure magnetic orientation device provided by the invention, comprise conveyer, printing equipment, magnetic orientation device, solidification equipment, described magnetic orientation device comprises and arranging and relative the first electromagnet of opposite pole and the second electromagnet in upper-lower position, described first electromagnet is not identical with the area of section of the second electromagnet, and printed matter is in after entering described magnetic orientation device between described first electromagnet and the second electromagnet and carries out magnetic orientation.
Preferably, one end of described first electromagnet and the second electromagnet is provided with the magnetic conductor for changing magnetic line of force distribution all further.
Preferably, described first electromagnet and the second electromagnet are magnetic core coil, and described magnetic conductor is arranged on magnetic core one end of magnetic core coil.
Optionally, described first electromagnet and the second electromagnet form one group of electromagnetism monomer, and described magnetic orientation device also comprises substrate, and the described electromagnetism monomer of many groups that described substrate has been arranged in array, the described electromagnetism monomer of many groups controls power supply by PLC control circuit.
Preferably, also comprise part flow arrangement, described conveyer is split at least two way conveyers by described part flow arrangement, and all arranges described magnetic orientation device and solidification equipment on conveyer described in each road.
Optionally, described sub-conveyer and described conveyer be arranged in parallel; Described part flow arrangement comprises a diverting roller group and at least two the reversing roller groups of work that match with each described sub-conveyer; Described diverting roller group comprises multiple setting direction diverting roller vertical with conveyer direction of transfer; Described reversing roller group comprises multiple reversing roller, for changing the direction of transfer of the printed matter through shunting, makes it continue along described sub-conveyer transmission.
Optionally, comprise the first sub-conveyer and the second sub-conveyer being positioned at the oblique below of described first sub-conveyer, described part flow arrangement is the portable plate hinged with described conveyer tail end; When described portable plate is in level, described conveyer is connected with described first sub-conveyer; During the described portable plate bottom, described conveyer is connected with described second sub-conveyer with two reversing roller groups via described portable plate, and the reversing roller setting direction in described two reversing roller groups is mutually vertical.
Optionally, described portable plate is by air cylinder driven.
Optionally, described part flow arrangement comprises and is arranged on guide rail above described conveyer tail end and can along at least two group suction nozzles of described slide, and described suction nozzle is used for picking up printed matter and is transported to described sub-conveyer.
Preferably, the roll surface of the reversing roller in described reversing roller group is all evenly provided with multiple pore; One end of described reversing roller all connects negative tube; The roll shaft of described reversing roller is provided with in the axial direction " V " type groove.
As can be seen from above, the printing equipment of belt variable figure magnetic orientation device provided by the invention, adopt electromagnet as magnet in magnetic orientation device, eliminate the frame for movement of complex structure, save equipment cost, simultaneously, magnetic field intensity can arbitrarily regulate, magnetic field conversion can complete instantaneously, can not have an impact to not completely crued printed matter pattern, corresponding integrality and the definition that improve pattern; By the setting of the magnet in novel magnetic orientation device, enrich printing effect greatly, effectively improve the anti-counterfeit capability of the rear pattern of printing.In addition, also by part flow arrangement, printed matter shunting transmitted and carries out follow-up magnetic orientation and solidification, hardening time and printing time being carried out better coupling.
Accompanying drawing explanation
Fig. 1 is the part flow arrangement schematic diagram of the embodiment of the present invention 1;
Fig. 2 a is the front view of the part flow arrangement of the embodiment of the present invention 2;
Fig. 2 b is the top view of the part flow arrangement of the embodiment of the present invention 2;
Fig. 3 is the schematic diagram of the part flow arrangement of the embodiment of the present invention 3;
Fig. 4 is the bearing arrangement schematic diagram of reversing roller and diverting roller in the embodiment of the present invention;
Fig. 5 a is the magnetic orientation apparatus structure schematic diagram of the embodiment of the present invention;
Fig. 5 b is the magnetic orientation design sketch of the magnetic orientation device of the embodiment of the present invention;
Fig. 5 c is the first electromagnet schematic diagram of the embodiment of the present invention.
Detailed description of the invention
For making the object, technical solutions and advantages of the present invention clearly understand, below in conjunction with specific embodiment, and with reference to accompanying drawing, the present invention is described in more detail.
The printing equipment of a kind of belt variable figure magnetic orientation device that the embodiment of the present invention provides, comprises conveyer, printing equipment, magnetic orientation device, solidification equipment; Described magnetic orientation device comprises and arranging and relative the first electromagnet of opposite pole and the second electromagnet in upper-lower position, described first electromagnet is not identical with the area of section of the second electromagnet, and printed matter is in after entering described magnetic orientation device between described first electromagnet and the second electromagnet and carries out magnetic orientation.
In magnetic orientation device, first electromagnet and the second electromagnet are controlled to open or close by electric switch, thus substitute the mode utilizing transmission mechanism to move up and down in prior art, detailed process is, when printed matter is sent to after between the first electromagnet and the second electromagnet, adjustment magnetic ink is corresponding with magnets magnetic fields district, conveyer stops transmitting, electromagnet is energized, magnetic pigment flakes in magnetic ink on printed matter carries out regularly arranged under magnetic fields, produce specific pattern, meanwhile, solidification equipment is opened, magnetic ink starts solidification, when magnetic ink reaches relatively stable, electromagnet power-off, conveyer reopens, determine the printed matter after magnetic and continue solidification under operation, finally reach and solidify completely.Meanwhile, the first electromagnet is different with the area of section of the second electromagnet, and the pattern formed after printing can produce the effect of gradual change, in the complexity and aesthetic of pattern, is significantly improved all compared to existing technology.
In addition, the printing of the embodiment of the present invention is also by arranging part flow arrangement, conveyer is split at least two way conveyers, each way conveyer after shunting completes conventional magnetic orientation and curing schedule again, namely carrying out printed matter with part flow arrangement carries the time of shunting to fill up the time difference of printing time and hardening time, make the coupling that said two devices is good, increase work efficiency.
Below by specific embodiment, introduce structure and the working method of magnetic orientation device and part flow arrangement in the utility model embodiment.
Embodiment 1:
With reference to figure 1, it is the part flow arrangement schematic diagram of the embodiment of the present invention 1.
In the present embodiment, part flow arrangement is a diverting roller group 102, described diverting roller group 102 is made up of the diverting roller that multiple setting direction is vertical with conveyer 101 direction of transfer, is also provided with the auxiliary feed belt transmitting printed matter between two adjacent diverting rollers.
The printed matter printing magnetic ink is delivered to diverting roller group 102 through conveyer 101.The diverting roller of diverting roller group 102 can suitable, counterclockwise both direction to rotate and controlled, and the printed matter being therefore sent to diverting roller group 102 according to the need of production reversing roller group 103 that be respectively sent to both sides vertical with former direction of transfer or only can be transmitted to side all the time.In reversing roller group 103, the setting direction of reversing roller is vertical with diverting roller, and printed matter is after reversing roller group 103, and direction of transfer is again changed into former direction of transfer and is sent to the sub-conveyer 104 be connected with reversing roller group 103.Printed matter in diverting roller group 102 is alternately sent to the reversing roller group 103 of both sides, and completes above-mentioned commutation process, realizes printed matter to be divided into two-way, next continues to be transferred into follow-up magnetic orientation device and solidification equipment.
With reference to figure 5a and Fig. 5 b, be respectively the magnetic orientation design sketch of the magnetic orientation apparatus structure schematic diagram of the embodiment of the present invention and the magnetic orientation device of the embodiment of the present invention.
In the present embodiment, magnetic orientation device comprises the first electromagnet 501 and the second electromagnet 502, first electromagnet and the second electromagnet and is magnetic core coil.First electromagnet 501 is relative with the south poles of the second electromagnet 502, and the magnetic line of force of generation attracts each other, and the magnetic line of force is through the magnetic oil ink-covered area on printed matter 503.The area of section of the first electromagnet 501 is less than the area of section of the second electromagnet 502, the radial pattern that the magnetic line of force tiltedly wears ink area can be formed like this, magnetic pigment flakes in magnetic ink by circular arrangement, and will produce specific " annulus " effect as shown in Figure 5 b under magnetic fields.
Further, be all also provided with in magnetic core one end of the first electromagnet 501 and the second electromagnet 502 the magnetic conductor (not shown) distributed for changing the magnetic line of force.When mounted, printed matter 503 is pointed in the one end that the first electromagnet 501 and the second electromagnet 502 need be provided with magnetic conductor, and namely in the present embodiment, one end that the first electromagnet 501 is relative with the second electromagnet 502 opposite pole arranges described magnetic conductor respectively.
With reference to figure 5c, it is the first electromagnet schematic diagram of the embodiment of the present invention.
In the present embodiment, only area of section is different for two electromagnets, namely varies in size, then in Fig. 5 c, only for the first electromagnet 501.Magnetic conductor 504 is arranged on one end of the first electromagnet 501 magnetic core, and the magnetic line of force distribution of the first electromagnet 501 will change according to the shape of magnetic conductor 504.As in Fig. 5 c, adopt the magnetic conductor 504 of hexagram to change the first electromagnet 501 magnetic line of force distribution, after magnetic orientation, the magnetic pigment flakes on printed matter in magnetic ink will present the shape of hexagram.
In the present embodiment, magnetic conductor 504 is hexagram, needs the shape of magnetic conductor 504 can also be designed to the regular figures such as triangle, pentalpha, hexagon according to different uses, also or other irregular figures.
In order to further enrich printing effect, improve anti-counterfeit capability, can also the first electromagnet and the second electromagnet be regarded as one group of electromagnetism monomer, described electromagnetism monomer is arranged in array according to array way, be installed on substrate, by the control circuit calculated or PLC forms, switched by circuit, select to power to the electromagnetism monomer of different row and columns, change the distribution in magnetic field and the orientation of ink Magnetism granule by the various combination of electromagnetism monomer very flexibly.Simultaneously, by the Current Control of electromagnetism monomer, as to size of current, the control of waveform, realize the magnetic field intensity of this electromagnetism monomer and the change in direction, also carry out demagnetization process by alternating current, magnetic field intensity can be realized and change in time, printed article is formed very complicated fade effect.
Obviously, in the present embodiment, an electromagnet with magnetic conductor only can also be set to carry out magnetic orientation, and then also can regard an electromagnet with magnetic conductor as electromagnetism monomer, substrate carries out the better abundant magnetic orientation of effect by the multiple described electromagnetism monomer of array arrangement.
Embodiment 2:
With reference to figure 2a and Fig. 2 b, be respectively front view and the top view of the part flow arrangement of the embodiment of the present invention 2.
In the present embodiment, comprise the first sub-conveyer 204 being in same level with conveyer 201, and be positioned at the second sub-conveyer 205 of the oblique below of the first sub-conveyer 204, namely the first sub-conveyer 204 is different from the height of the second sub-conveyer 205, and office is two-layer up and down.Part flow arrangement in the present embodiment is portable plate 202, and portable plate 202 is hinged on the tail end of conveyer 201 by a rotating shaft, and the driving of the cylinder (not shown) arranged by portable plate 202 end, portable plate 202 can be accommodated from horizontal level.First reversing roller group 203 is positioned at immediately below portable plate 202, and the rotation direction of its reversing roller is vertical with the former direction of transfer of printed matter.Second reversing roller group 206 is positioned at the first reversing roller group 203 side and its front end connects with it, and rear end connects with the second sub-conveyer 205, and in the second reversing roller group 206, the rotation direction of reversing roller is identical with the former direction of transfer of printed matter.
Under portable plate 202 original state, be horizontal, it is connected to conveyer 201 and the first sub-conveyer 204, enables printed matter be sent to the first sub-conveyer 204 from conveyer 201 through portable plate 202, and then enters follow-up magnetic orientation device and solidification equipment.When portable plate 202 is accommodated, after printed matter is sent to portable plate 202, to fall along it, first the first reversing roller group 203 is fallen to, printed matter commutation is sent to the second reversing roller group 206, after again commutating, enter the second sub-conveyer 205, and then enter magnetic orientation device and solidification equipment that the second follow-up sub-conveyer 205 is arranged.Portable plate 202 is accommodated from original state, then on swing back original state, two processes hocket, and realize the shunting of printed matter.
Embodiment 3:
With reference to figure 3, it is the schematic diagram of the part flow arrangement of the embodiment of the present invention 3.
In the present embodiment, described part flow arrangement comprises two closed slides 302 be positioned at above conveyer 301 tail end, the setting direction of guide rail 302 is vertical with the former direction of transfer of printed matter, article two, slidably connect two linking arms between guide rail 302, each linking arm is provided with two scalable suction nozzles 303, is namely provided with two groups of suction nozzles 303.By electrical control, two groups of suction nozzles 303 can do directed movement along two guide rails 302.
During work, printed matter is transferred into conveyer 301 tail end, now suction nozzle 303 stretches out and produces negative pressure and printed matter is held after-contraction, printed matter is picked up and leaves conveyer 301 surface, slide along guide rail 302 simultaneously, printed matter is moved to be positioned at conveyer 301 side sub-conveyer 304 above after, suction nozzle 303 stretches out and moves down, printed matter is placed on sub-conveyer 304, eliminate negative-pressure sucking, and above echo-plex device 301 tail end, printed matter and then continuation transmit along sub-conveyer 304 and carry out follow-up magnetic orientation and curing process.Suction nozzle 303 moving direction of adjacent twice said process is contrary, is about to first latter two printed matter and is transferred to two sub-conveyers 304 of conveyer 301 both sides respectively, namely realizes printed matter shunting to transmit.
With reference to figure 4, it is the bearing arrangement schematic diagram of reversing roller in the embodiment of the present invention and diverting roller.
Further, in embodiment 1 and embodiment 2, described reversing roller and the roller surface of diverting roller are provided with multiple pore all equably, match with described pore, reversing roller is also connected with a negative tube with one end of diverting roller, for coordinating pore to form negative pressure at roller surface, suction-operated being produced to printed matter, ensures that it steadily transmits.With reference to figure 4, the roll shaft of reversing roller and diverting roller is provided with in the axial direction " V " type groove 401." V " type groove 401 can allow the roll surface of reversing roller and diverting roller only have part holes to produce negative pressure, avoid printed matter to skid not because of the smooth frictional force of roll surface can to so the certain absorption affinity of printed matter, printed matter can be avoided again to change the direction of motion because the impact by absorption affinity is too large.
In concrete use, reversing roller and diverting roller can rotate roll shaft and then be fixed on wallboard and play a supporting role, and need ensure shunting roll shaft " V " type groove 401 when installing straight up.When reversing roller and diverting roller rotate, accessing negative pressure by negative tube, with V on reversing roller and diverting roller roll surface " pore in the corresponding region of type groove 401 will form negative pressure.Can form certain absorption affinity to it when printed matter arrives, effect has two: one to be can more effective conveying printed products, two be printed matter when commutating transmission, guarantee that printed matter effectively can transmit from inactive state and non-slip or crooked.
In the present invention, the quantity of sub-conveyer, reversing roller, diverting roller and suction nozzle all can be arranged according to actual needs, is not limited to the usage quantity in above-described embodiment.
Those of ordinary skill in the field are to be understood that: the foregoing is only specific embodiments of the invention; be not limited to the present invention; within the spirit and principles in the present invention all, any amendment made, equivalent replacement, improvement etc., all should be included within protection scope of the present invention.

Claims (9)

1. the printing equipment of a belt variable figure magnetic orientation device, comprise conveyer, printing equipment, magnetic orientation device, solidification equipment, it is characterized in that, described magnetic orientation device comprises and arranging and relative the first electromagnet of opposite pole and the second electromagnet in upper-lower position, described first electromagnet is not identical with the area of section of the second electromagnet, and printed matter is in after entering described magnetic orientation device between described first electromagnet and the second electromagnet and carries out magnetic orientation;
The printing equipment of described belt variable figure magnetic orientation device also comprises part flow arrangement, and described conveyer is split at least two way conveyers by described part flow arrangement, and all arranges described magnetic orientation device and solidification equipment on conveyer described in each road.
2. the printing equipment of belt variable figure magnetic orientation device according to claim 1, is characterized in that, one end of described first electromagnet and the second electromagnet is provided with the magnetic conductor for changing magnetic line of force distribution all further.
3. the printing equipment of belt variable figure magnetic orientation device according to claim 2, it is characterized in that, described first electromagnet and the second electromagnet are magnetic core coil, and described magnetic conductor is arranged on magnetic core one end of magnetic core coil.
4. the printing equipment of belt variable figure magnetic orientation device according to claim 1, it is characterized in that, described first electromagnet and the second electromagnet form one group of electromagnetism monomer, described magnetic orientation device also comprises substrate, the described electromagnetism monomer of many groups that described substrate has been arranged in array, the described electromagnetism monomer of many groups controls power supply by PLC control circuit.
5. the printing equipment of belt variable figure magnetic orientation device according to claim 1, it is characterized in that, described sub-conveyer and described conveyer be arranged in parallel; Described part flow arrangement comprises a diverting roller group and at least two the reversing roller groups of work that match with each described sub-conveyer; Described diverting roller group comprises multiple setting direction diverting roller vertical with conveyer direction of transfer; Described reversing roller group comprises multiple reversing roller, for changing the direction of transfer of the printed matter through shunting, makes it continue along described sub-conveyer transmission.
6. the printing equipment of belt variable figure magnetic orientation device according to claim 1, it is characterized in that, comprise the first sub-conveyer and the second sub-conveyer being positioned at the oblique below of described first sub-conveyer, described part flow arrangement is the portable plate hinged with described conveyer tail end; When described portable plate is in level, described conveyer is connected with described first sub-conveyer; During the described portable plate bottom, described conveyer is connected with described second sub-conveyer with two reversing roller groups via described portable plate, and the reversing roller setting direction in described two reversing roller groups is mutually vertical.
7. the printing equipment of belt variable figure magnetic orientation device according to claim 6, it is characterized in that, described portable plate is by air cylinder driven.
8. the printing equipment of belt variable figure magnetic orientation device according to claim 1, it is characterized in that, described part flow arrangement comprises and is arranged on guide rail above described conveyer tail end and can along at least two group suction nozzles of described slide, and described suction nozzle is used for picking up printed matter and is transported to described sub-conveyer.
9. the printing equipment of the belt variable figure magnetic orientation device according to claim 5 to 7 any one, it is characterized in that, the roll surface of the reversing roller in described reversing roller group is all evenly provided with multiple pore; One end of described reversing roller all connects negative tube; The roll shaft of described reversing roller is provided with in the axial direction " V " type groove.
CN201410204218.9A 2014-05-15 2014-05-15 A kind of printing equipment of belt variable figure magnetic orientation device Active CN103950279B (en)

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CN108407482B (en) * 2018-03-22 2020-12-01 中钞油墨有限公司 Method for preparing personalized dynamic anti-counterfeiting element
CN110481145B (en) * 2019-09-16 2021-03-26 浙江澳美新材料股份有限公司 Variable-pattern magnetic printing roller

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