CN105946347A - Multi-stage composite light source ultraviolet rapid curing device for label printing machine - Google Patents
Multi-stage composite light source ultraviolet rapid curing device for label printing machine Download PDFInfo
- Publication number
- CN105946347A CN105946347A CN201610357767.9A CN201610357767A CN105946347A CN 105946347 A CN105946347 A CN 105946347A CN 201610357767 A CN201610357767 A CN 201610357767A CN 105946347 A CN105946347 A CN 105946347A
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- light source
- facet
- filled radiator
- ultraviolet
- rectangle water
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- 238000007639 printing Methods 0.000 title claims abstract description 24
- 239000002131 composite material Substances 0.000 title claims abstract description 9
- 238000001514 detection method Methods 0.000 claims abstract description 28
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 109
- 239000000919 ceramic Substances 0.000 claims description 74
- 238000005286 illumination Methods 0.000 claims description 32
- 239000003292 glue Substances 0.000 claims description 18
- 238000001816 cooling Methods 0.000 claims description 12
- 238000012360 testing method Methods 0.000 claims description 7
- 238000005401 electroluminescence Methods 0.000 claims description 6
- 238000004020 luminiscence type Methods 0.000 claims description 3
- 238000011897 real-time detection Methods 0.000 claims description 2
- 239000010410 layer Substances 0.000 abstract 1
- 239000002344 surface layer Substances 0.000 abstract 1
- 238000001723 curing Methods 0.000 description 21
- 239000000976 ink Substances 0.000 description 10
- 238000007711 solidification Methods 0.000 description 8
- 230000008023 solidification Effects 0.000 description 8
- 239000000203 mixture Substances 0.000 description 6
- QSHDDOUJBYECFT-UHFFFAOYSA-N mercury Chemical compound [Hg] QSHDDOUJBYECFT-UHFFFAOYSA-N 0.000 description 5
- 229910052751 metal Inorganic materials 0.000 description 5
- 239000002184 metal Substances 0.000 description 5
- 238000000034 method Methods 0.000 description 5
- 125000005843 halogen group Chemical group 0.000 description 4
- 230000005622 photoelectricity Effects 0.000 description 4
- 239000007787 solid Substances 0.000 description 4
- 239000011248 coating agent Substances 0.000 description 2
- 238000000576 coating method Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 230000005611 electricity Effects 0.000 description 2
- 229910001385 heavy metal Inorganic materials 0.000 description 2
- 239000000565 sealant Substances 0.000 description 2
- CBENFWSGALASAD-UHFFFAOYSA-N Ozone Chemical compound [O-][O+]=O CBENFWSGALASAD-UHFFFAOYSA-N 0.000 description 1
- 239000000853 adhesive Substances 0.000 description 1
- 230000001070 adhesive effect Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 239000000356 contaminant Substances 0.000 description 1
- 238000004134 energy conservation Methods 0.000 description 1
- 238000005265 energy consumption Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 238000003912 environmental pollution Methods 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 229910052736 halogen Inorganic materials 0.000 description 1
- 150000002367 halogens Chemical class 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 229910052753 mercury Inorganic materials 0.000 description 1
- 238000006552 photochemical reaction Methods 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F23/00—Devices for treating the surfaces of sheets, webs, or other articles in connection with printing
- B41F23/04—Devices for treating the surfaces of sheets, webs, or other articles in connection with printing by heat drying, by cooling, by applying powders
- B41F23/0403—Drying webs
- B41F23/0406—Drying webs by radiation
- B41F23/0409—Ultraviolet dryers
Landscapes
- Health & Medical Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Toxicology (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Led Device Packages (AREA)
- Non-Portable Lighting Devices Or Systems Thereof (AREA)
Abstract
The invention provides a multi-stage composite light source ultraviolet rapid curing device for a label printing machine. The multi-stage composite light source ultraviolet rapid curing device is composed of a rectangular box body, a light source controller, N ultraviolet powerful light source generators, a width detection mechanism and a speed sensor. According to the multi-stage composite light source ultraviolet rapid curing device for the label printing machine, ultraviolet light-emitting diodes and parabolic cylinder reflectors are adopted to form a multi-stage ultraviolet composite light source; ink on the surface layer and ink on the deep layer of label paper are cured at the same time; and in addition, the irradiation range and the irradiation intensity of two groups of light sources can be adjusted in real time by detecting the label printing width and the label printing speed in real time.
Description
Technical field:
The present invention relates to a kind of ultraviolet curing device, particularly a kind of label printing machine multistage composite light source ultraviolet is quickly solid
Gasifying device, this device compared with traditional ultraviolet curing device, more energy efficient, environmental protection, quickly, efficiently, may replace existing label
The ultraviolet curing device of printer.
Background technology:
Solidification refers to that ink, coating, adhesive, sealant etc. are converted into the process of solid state by liquid condition, and ultraviolet is solid
Change is to utilize ultraviolet and the light trigger generation photochemical reaction joined in ink, coating, sealant to realize fast setting
Method,
In label printing, the fast setting of ink is the important step of label printing process, but in label printing industry, mostly
High-pressure mercury-vapor lamp and the point source of metal halid lamp composition and line source is utilized to realize ultraviolet curing, high-pressure mercury-vapor lamp and metal
Halogen light all exist power consumption high, containing the short feature of heavy metal contaminants and life-span, in use need frequently to change high-pressure mercury
Lamp and metal halid lamp, realize ultraviolet curing hence with high-pressure mercury-vapor lamp and metal halid lamp, and cost is high, energy consumption the most also can
Formed heavy metal environmental pollution, the most energy-conservation the most not environmentally,
People are incorporated into ultraviolet curing field ultraviolet light-emitting diodes in recent years, have developed ultraviolet light-emitting diodes
Solidification equipment,
Comparing with metal halid lamp ultraviolet curing method with high-pressure mercury-vapor lamp, ultraviolet light-emitting diodes curing can be big
Amplitude reduction energy resource consumption, solidification process do not produce ozone and the discharge of volatile organism matter, light source length in service life, need not
Preheating and cooling, be particularly conducive to label printing and print heat sensitive printable fabric, but existing UV-light luminous two pole
The light source range of exposures of pipe solidification equipment and light source exposure rate are all changeless, it is impossible to according to width and the print of leaflet
Brush speed adjusts light source range of exposures and light source exposure rate in good time, energy resource consumption is relatively big, system stability and control accuracy not
Height, ultraviolet curing effect are poor,
Therefore, adjust light source range of exposures and light source exposure rate according to label printing width and label print speed printing speed in good time, and
And use multistage ultraviolet compounded light source, the energy resource consumption of ultraviolet light light-emitting diode curing device, raising can be reduced further
System stability and control accuracy and ultraviolet curing speed is greatly improved,
Summary of the invention:
In order to reduce the energy resource consumption of ultraviolet light light-emitting diode curing device further, improve system stability and control essence
Degree, raising ultraviolet curing effect, the present invention proposes a kind of label printing machine multistage composite light source ultraviolet fast-curing dress
Putting, this device uses ultraviolet light-emitting diodes and parabolic cylinder illuminator to constitute multistage ultraviolet compounded light source, simultaneously to mark
Top layer and the deep layer ink of signing paper solidify, and this device is by detecting width and the label printing of label printing in real time
Speed, range of exposures and the exposure rate of two groups of light sources can be adjusted in real time,
The technical solution adopted for the present invention to solve the technical problems is: by a rectangular box, light source controller, a N
The label printing machine solidification dress that individual ultraviolet intense light source generator, a width detection mechanism and a velocity sensor are constituted
Putting, the structure of each ultraviolet intense light source generator and every equivalently-sized, rectangular box is divided into upper box and lower box two
Part, upper box and lower box are connected by a combined page, have on the top of lower box a rectangular paper feed hole and
Rectangular paper out opening, label paper is under the drive of label printing machine, with speed v through rectangular paper feed hole and rectangle
Paper out opening,
Light source controller is divided by illumination width detection part, intensity of illumination detection part, light source drive part and constitutes, and illumination width is examined
Survey part and be used in real time detection label paper width, and divided to adjust in real time according to label paper width by light source drive part and put down
The range of exposures of area source, intensity of illumination test section demultiplexing detects the translational speed of label paper in real time, and is driven by light source
Part adjusts the irradiation exposure rate of planar light source in real time according to the translational speed of label paper, and light source drive part divides and passes through
Illumination width detection part and the testing result of intensity of illumination detection part, provide electric energy to planar light source,
Light source controller and N number of ultraviolet intense light source generator are all disposed within upper box, and light source controller is arranged on upper box
Upper end, N number of ultraviolet intense light source generator is neat from paper feed hole to paper out opening to be disposed side by side on below light source controller,
The bottom surface of each ultraviolet intense light source generator is all parallel with the paper of label paper,
Width detection mechanism is made up of M photoelectric tube, and each photoelectric tube has a light-emitting tube and a light receiving tube,
M photoelectric tube all electrically connects with the illumination width detection part of light source controller, and M photoelectric tube is neat along paper out opening
Equidistant word order, the transmitting tube of each photoelectric tube is arranged on the upper end of rectangular paper out opening, the reception of each photoelectric tube
Pipe is arranged on the lower end of rectangular paper out opening,
First ultraviolet intense light source generator is by a small box, the first rectangle water-filled radiator, the second rectangle water-cooled
Radiator, the 3rd rectangle water-filled radiator, the 4th rectangle water-filled radiator, the first area source, the second area source, the 3rd
Light source, fourth face light source, the 5th area source, hexahedro light source, the first big parabolic cylinder illuminator, second largest parabolic cylinder are reflective
Mirror, little parabolic cylinder illuminator are constituted, the first rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle
Water-filled radiator, the 4th rectangle water-filled radiator, the first area source, the second area source, the 3rd area source, fourth face light source,
5th area source, hexahedro light source, the first big parabolic cylinder illuminator, second largest parabolic cylinder illuminator, little parabolic cylinder are anti-
Light microscopic is all disposed within small box, the 3rd rectangle water-filled radiator, the 4th rectangle water-filled radiator, the first big parabolic cylinder
Illuminator and little parabolic cylinder illuminator are disposed side by side on the upper end of small box, and it is rectangular that little parabolic cylinder illuminator is arranged on the 3rd
Between shape water-filled radiator and the 4th rectangle water-filled radiator, the first rectangle water-filled radiator and the second rectangle water-cooled dissipate
Hot device is disposed side by side on below the first big parabolic cylinder illuminator, and second largest parabolic cylinder illuminator is arranged on the 3rd rectangle
Below water-filled radiator and the 4th rectangle water-filled radiator, the first rectangle water-filled radiator, the second rectangle water-cooled dissipate
Hot device, the 3rd rectangle water-filled radiator and the bottom surface of the 4th rectangle water-filled radiator and upper surface all with label paper sheet of planar
Parallel, long the first rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle water-filled radiator and the 4th
Being both provided with an inlet opening and an apopore before and after square water cold heat sink in both ends of the surface, cold water flows into the from inlet opening
One rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle water-filled radiator and the 4th rectangle water-cooled
Radiator, hot water flows out the first rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle water from apopore
Cold heat sink and the 4th rectangle water-filled radiator,
First area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on first piece of ceramic base light source board front
Becoming, the back side of first piece of ceramic base light source board is pasted onto on the upper surface of the first rectangle water-filled radiator by heat-conducting glue, the
Ultraviolet light-emitting diodes on one piece of ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light
Source and M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by right with it
The photoelectric tube of neat arrangement controls, after ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series and light source controller
Light source drive part divide electrical connection,
Second area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on second piece of ceramic base light source board front
Becoming, the back side of second piece of ceramic base light source board is pasted onto on the bottom surface of the first rectangle water-filled radiator by heat-conducting glue, and second
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
3rd area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 3rd piece of ceramic base light source board front
Becoming, the back side of the 3rd piece of ceramic base light source board is pasted onto on the upper surface of the second rectangle water-filled radiator by heat-conducting glue, the
Ultraviolet light-emitting diodes on three pieces of ceramic base light source boards is divided into the M group facet light source that length and width are identical, M group facet light
Source and M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by right with it
The photoelectric tube of neat arrangement controls, after ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series and light source controller
Light source drive part divide electrical connection,
Fourth face light source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 4th piece of ceramic base light source board front
Becoming, the back side of the 4th piece of ceramic base light source board is pasted onto on the bottom surface of the second rectangle water-filled radiator by heat-conducting glue, and the 4th
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
5th area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 5th piece of ceramic base light source board front
Becoming, the back side of the 5th piece of ceramic base light source board is pasted onto on the bottom surface of the 3rd rectangle water-filled radiator by heat-conducting glue, and the 5th
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
Hexahedro light source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 6th piece of ceramic base light source board front
Becoming, the back side of the 6th piece of ceramic base light source board is pasted onto on the bottom surface of the 4th rectangle water-filled radiator by heat-conducting glue, and the 6th
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
Each on first area source, the second area source, the 3rd area source, fourth face light source, the 5th area source and hexahedro light source
The length and width of group facet light source is identical,
The directional light direct irradiation that second area source and fourth face light source send is on the paper of label paper, on label paper
The top layer of ink solidifies,
Open Side Down is arranged on the 3rd rectangle water-filled radiator and the 4th rectangle water-cooling for little parabolic cylinder illuminator
Between device, second largest parabolic cylinder illuminator opening upwards be arranged on the 3rd rectangle water-filled radiator and the 4th rectangle
The underface of water-filled radiator, the reflective surface of second largest parabolic cylinder illuminator just reflective surface to little parabolic cylinder illuminator,
Second largest parabolic cylinder illuminator overlaps with the focal line of little parabolic cylinder illuminator, in the centre of second largest parabolic cylinder illuminator
Position is just having the guide-lighting slit that a width is identical with little parabolic cylinder illuminator A/F to little parabolic cylinder illuminator,
The front of the 5th piece and the 6th piece ceramic base light source board just reflective surface to second largest thing cylindrical mirror so that the 5th piece and
The directional light that each group facet light source on six pieces of ceramic base light source board fronts sends by second largest parabolic cylinder illuminator and
The reflection of little parabolic cylinder illuminator, the directional light forming the multiplication of a branch of light intensity passes the vertical irradiation of guide-lighting slit at label paper
Zhang Shang, solidifies the shallow top layer of label paper curing ink,
First big parabolic cylinder illuminator is positioned at the surface of first piece and the 3rd piece ceramic base light source board, and the first big parabolic
The focal line of cylindrical mirror falls on the paper of label paper so that the front of first piece and the 3rd piece ceramic base light source board is the most right
The reflective surface of the first big thing cylindrical mirror, and make respectively to organize facet on first piece and the 3rd piece of ceramic base light source board front
The directional light that light source the sends reflection by the first big parabolic cylinder illuminator, focuses on Jiao of the first big parabolic cylinder illuminator
On line, focal line is formed the wire high light of light intensity multiplication, the deep layer of label paper curing ink is solidified,
The structure of N number of ultraviolet intense light source generator and every size all with first ultraviolet complete phase of intense light source generator
With,
When the label paper of one fixed width through rectangular paper feed hole and paper out opening through the transmitting of mid portion photoelectric tube
Time between pipe and reception pipe, the light that the transmitting tube of this part photoelectric tube sends is cut off by label paper can not arrive reception
Pipe, this part photoelectric tube is off, and remaining photoelectric tube is in the conduction state, and the state of each photoelectric tube is sent to
The illumination width detection part of light source controller, with the photoelectric tube being off in N number of ultraviolet intense light source generator
Each group facet light source of alignment is divided by the light source drive part of light source controller and adds electroluminescence, and remaining respectively organizes facet light
The not powered luminescence in source,
Velocity sensor is arranged in lower box, and velocity sensor is positioned at the lower end in rectangular paper feed hole, velocity pick-up
Device detects part with the intensity of illumination of light source controller and electrically connects, and label paper is close to by velocity sensor, when label paper is at mark
Sign under the drive of printer, during with speed v through rectangular paper feed hole and rectangular paper out opening, the mobile speed of label paper
Degree signal Negotiation speed sensor is sent to the intensity of illumination detection part of light source controller, light source controller pass according to speed
The rate signal that sensor detects adjusts the illumination of each group of facet light source adding electroluminescence in N number of ultraviolet intense light source generator
Intensity,
The invention has the beneficial effects as follows: detected width and the mark of label printing in real time by width detection mechanism and velocity sensor
Endorse the speed of brush, range of exposures and the exposure rate of light source can be adjusted in real time, reduce ultraviolet light-emitting diodes further solid
The energy resource consumption of gasifying device and raising system stability and control accuracy, and use multistage ultraviolet compounded light source to be greatly improved
Ultraviolet curing speed.
Accompanying drawing illustrates:
The present invention is further described with embodiment below in conjunction with the accompanying drawings.
Fig. 1 is the overall front view of the present invention.
Fig. 2 is the A-A sectional view of the present invention.
Fig. 3 is the B-B sectional view of the present invention.
Fig. 4 is the C-C sectional view of the present invention.
Fig. 5 is the D-D sectional view of the present invention.
Fig. 6 is the E-E sectional view of the present invention.
Fig. 7 is the F-F sectional view of the present invention.
Fig. 8 is the G-G sectional view of the present invention.
Detailed description of the invention:
In Fig. 1, Fig. 2 and Fig. 3, by a rectangular box, light source controller 11, N number of ultraviolet intense light source generator,
The label printing machine solidification equipment that one width detection mechanism and a velocity sensor 12 are constituted, N number of ultraviolet intense light source is sent out
The structure of raw device and every equivalently-sized, rectangular box is divided into upper box 16 and lower box 17 two parts, upper box 16 and under
Casing 17 is connected by a combined page 14, has a rectangular paper feed hole 7-1 and rectangle on the top of lower box 17
Paper out opening 7-2, label paper 18 is under the drive of label printing machine, with speed v through rectangular paper feed hole 7-1 and rectangular
The paper out opening 7-2 of shape,
Light source controller 11 is divided by illumination width detection part, intensity of illumination detection part, light source drive part and constitutes, illumination width
Test section demultiplexing detects label paper width in real time, and is divided according to the adjustment in real time of label paper width by light source drive part
The range of exposures of planar light source, intensity of illumination test section demultiplexing detects the translational speed of label paper in real time, and is driven by light source
Dynamic part adjusts the irradiation exposure rate of planar light source in real time according to the translational speed of label paper, and light source drive part divides logical
Cross illumination width detection part and the testing result of intensity of illumination detection part, provide electric energy to planar light source,
Light source controller 11 and N number of ultraviolet intense light source generator are all disposed within upper box 16, and light source controller 11 is arranged on
The upper end of upper box 16, N number of ultraviolet intense light source generator from paper feed hole 7-1 to paper out opening 7-2 neat be disposed side by side on light
Below source controller 11, the bottom surface of each ultraviolet intense light source generator is all parallel with the paper of label paper 18,
In figs. 2 and 3, width detection mechanism by transmitting tube 8-1 and receives the first photoelectric tube, the transmitting tube that pipe 8-2 is constituted
The second photoelectric tube, transmitting tube 8-5 and the 3rd photoelectric tube of reception pipe 8-6 composition, the transmitting that 8-3 and reception pipe 8-4 is constituted
Pipe 8-7 and receive pipe 8-8 constitute the 4th photoelectric tube, transmitting tube 8-9 and receive pipe 8-10 constitute the 5th photoelectric tube, send out
Penetrate pipe 8-11 and receive the 6th photoelectric tube, transmitting tube 8-13 and the 7th photoelectricity pair of reception pipe 8-14 composition that pipe 8-12 is constituted
The 8th photoelectric tube, transmitting tube 8-17 and the 9 of reception pipe 8-18 composition that pipe, transmitting tube 8-15 and reception pipe 8-16 are constituted
The tenth photoelectric tube, transmitting tube 8-21 and reception pipe 8-22 that photoelectric tube, transmitting tube 8-19 and reception pipe 8-20 are constituted are constituted
The 11st photoelectric tube, transmitting tube 8-23 and receive pipe 8-24 constitute the 12nd photoelectric tube, transmitting tube 8-25 and reception
The 13rd photoelectric tube, transmitting tube 8-27 and the 14th photoelectric tube of reception pipe 8-28 composition, the transmitting tube that pipe 8-26 is constituted
The 16th photoelectricity pair that the 15th photoelectric tube, transmitting tube 8-31 and the reception pipe 8-32 that 8-29 and reception pipe 8-30 is constituted is constituted
Pipe, transmitting tube 8-33 and receive the 17th photoelectric tube that pipe 8-34 constitutes, transmitting tube 8-35 and receive that pipe 8-36 is constituted the
The 19th photoelectric tube, transmitting tube 8-39 and the reception pipe 8-that 18 photoelectric tubes, transmitting tube 8-37 and reception pipe 8-38 are constituted
40 the 20th photoelectric tubes constituted, transmitting tube 8-41 and the 21st photoelectric tube of reception pipe 8-42 composition, transmitting tube 8-
The 23rd photoelectricity that 43 and reception pipe 8-44 the 22nd photoelectric tubes constituted, transmitting tube 8-45 and reception pipe 8-46 are constituted
Constituting pipe, the transmitting tube of each photoelectric tube is arranged on the upper end of rectangular paper out opening 7-2, and the reception pipe of each photoelectric tube sets
Put the lower end at rectangular paper out opening 7-2,23 photoelectric tubes along equidistant word order neat for paper out opening 7-2,
In Fig. 2, Fig. 4, Fig. 5, Fig. 6, Fig. 7 and Fig. 8, first ultraviolet intense light source generator is by a small box 22, first
Rectangle water-filled radiator 10-1, the second rectangle water-filled radiator 10-2, the 3rd rectangle water-filled radiator 10-3, the 4th length
Square water cold heat sink 10-4, the first area source, the second area source, the 3rd area source, fourth face light source, the 5th area source,
Hexahedro light source, the first big parabolic cylinder illuminator 13-1, second largest parabolic cylinder illuminator 13-2 and little parabolic cylinder illuminator
13-3 is constituted, the first rectangle water-filled radiator 10-1, the second rectangle water-filled radiator 10-2, the 3rd rectangle water-cooling
Device 10-3, the 4th rectangle water-filled radiator 10-4, the first area source, the second area source, the 3rd area source, fourth face light source,
5th area source, hexahedro light source, the first big parabolic cylinder illuminator 13-1, second largest parabolic cylinder illuminator 13-2, little throwing
Thing cylindrical mirror 13-3 is all disposed within small box 22, and the 3rd rectangle water-filled radiator 10-3, the 4th rectangle water-cooled dissipate
Hot device 10-4, the first big parabolic cylinder illuminator 13-1 and little parabolic cylinder illuminator 13-3 are disposed side by side on the upper of small box 22
End, little parabolic cylinder illuminator 13-3 is arranged on the 3rd rectangle water-filled radiator 10-3 and the 4th rectangle water-filled radiator
Between 10-4, the first rectangle water-filled radiator 10-1 and the second rectangle water-filled radiator 10-2 is disposed side by side on first and throws greatly
Below thing cylindrical mirror 13-1, second largest parabolic cylinder illuminator 13-2 is arranged on the 3rd rectangle water-filled radiator 10-3
Below the 4th rectangle water-filled radiator 10-4, the first rectangle water-filled radiator 10-1, the second rectangle water-cooling
Device 10-2, the 3rd rectangle water-filled radiator 10-3 and the bottom surface of the 4th rectangle water-filled radiator 10-4 and upper surface all with mark
Sign paper 18 plane parallel, the front end face of the first rectangle water-filled radiator 10-1 is provided with inlet opening 9-1, long first
It is provided with apopore 9-2, at the front end face of the second rectangle water-filled radiator 10-2 on square water cold heat sink 10-1 rear end face
On be provided with inlet opening 9-3, the second rectangle water-filled radiator 10-2 rear end face is provided with apopore 9-4, long the 3rd
It is provided with inlet opening 9-5, at the 3rd rectangle water-filled radiator 10-3 rear end face on the front end face of square water cold heat sink 10-3
On be provided with apopore 9-6, the front end face of the 4th rectangle water-filled radiator 10-4 is provided with inlet opening 9-7, the 4th
Being provided with apopore 9-8 on rectangle water-filled radiator 10-4 rear end face, cold water flows into each rectangle water-cooling from inlet opening
Device, hot water flows out each rectangle water-filled radiator from apopore,
In Figure 5, the first area source is by the neat multiple ultraviolet lights being welded on first piece of ceramic base light source board 15-1 front
Light emitting diode is constituted, and the back side of first piece of ceramic base light source board 15-1 is pasted onto the first rectangle water-cooling by heat-conducting glue
On the upper surface of device 10-1, the ultraviolet light-emitting diodes on first piece of ceramic base light source board 15-1 is divided into facet light source
1-1, facet light source 1-2, facet light source 1-3, facet light source 1-4, facet light source 1-5, facet light source 1-6, little
Planar light source 1-7, facet light source 1-8, facet light source 1-9, facet light source 1-10, facet light source 1-11, facet
Light source 1-12, facet light source 1-13, facet light source 1-14, facet light source 1-15, facet light source 1-16, facet light
Source 1-17, facet light source 1-18, facet light source 1-19, facet light source 1-20, facet light source 1-21, facet light source
1-22, facet light source 1-23, each facet light source length and width are identical, the ultraviolet light-emitting diodes electricity in each facet light source
After series connection, light source drive part with light source controller 11 divides and electrically connects, and 23 groups of facet light sources and 23 photoelectric tubes align one by one
Along the equidistant word order of paper out opening 7-2, and respectively group facet light source is controlled by the photoelectric tube aligning arrangement,
In Figure 5, the second area source is by the neat multiple ultraviolet lights being welded on second piece of ceramic base light source board 15-2 front
Light emitting diode is constituted, and the back side of second piece of ceramic base light source board 15-2 is pasted onto the first rectangle water-cooling by heat-conducting glue
On the bottom surface of device 10-1, the ultraviolet light-emitting diodes on second piece of ceramic base light source board 15-2 be divided into facet light source 2-1,
Facet light source 2-2, facet light source 2-3, facet light source 2-4, facet light source 2-5, facet light source 2-6, facet
Light source 2-7, facet light source 2-8, facet light source 2-9, facet light source 2-10, facet light source 2-11, facet light source
2-12, facet light source 2-13, facet light source 2-14, facet light source 2-15, facet light source 2-16, facet light source 2-
17, facet light source 2-18, facet light source 2-19, facet light source 2-20, facet light source 2-21, facet light source 2-
22, facet light source 2-23, each facet light source length and width are identical, the ultraviolet light-emitting diodes electricity string in each facet light source
After connection, light source drive part with light source controller 11 divides and electrically connects, and 23 groups of facet light sources and 23 photoelectric tubes align one by one
Along the equidistant word order of paper out opening 7-2, and respectively group facet light source is controlled by the photoelectric tube aligning arrangement,
In figure 6, the 3rd area source is by the neat multiple ultraviolet lights being welded on the 3rd piece of ceramic base light source board 15-3 front
Light emitting diode is constituted, and the back side of the 3rd piece of ceramic base light source board 15-3 is pasted onto the second rectangle water-cooling by heat-conducting glue
On the upper surface of device 10-2, the ultraviolet light-emitting diodes on the 3rd piece of ceramic base light source board 15-3 is divided into facet light source 3-
1, facet light source 3-2, facet light source 3-3, facet light source 3-4, facet light source 3-5, facet light source 3-6, little flat
Area source 3-7, facet light source 3-8, facet light source 3-9, facet light source 3-10, facet light source 3-11, facet light
Source 3-12, facet light source 3-13, facet light source 3-14, facet light source 3-15, facet light source 3-16, facet light source
3-17, facet light source 3-18, facet light source 3-19, facet light source 3-20, facet light source 3-21, facet light source 3-
22, facet light source 3-23, the ultraviolet light-emitting diodes in each facet light source is electrically coupled in series rear and light source controller 11
Light source drive part divides electrical connection, and it is equidistant along paper out opening 7-2 that 23 groups of facet light sources and 23 photoelectric tubes align one by one
Word order, and respectively group facet light source is controlled by the photoelectric tube aligning arrangement,
In figure 6, fourth face light source is by the neat multiple ultraviolet lights being welded on the 4th piece of ceramic base light source board 15-4 front
Light emitting diode is constituted, and the back side of the 4th piece of ceramic base light source board 15-4 is pasted onto the second rectangle water-cooling by heat-conducting glue
On the bottom surface of device 10-2, the ultraviolet light-emitting diodes on the 4th piece of ceramic base light source board 15-4 is also divided into facet light source 4-
1, facet light source 4-2, facet light source 4-3, facet light source 4-4, facet light source 4-5, facet light source 4-6, little flat
Area source 4-7, facet light source 4-8, facet light source 4-9, facet light source 4-10, facet light source 4-11, facet light
Source 4-12, facet light source 4-13, facet light source 4-14, facet light source 4-15, facet light source 4-16, facet light source
4-17, facet light source 4-18, facet light source 4-19, facet light source 4-20, facet light source 4-21, facet light source 4-
22, facet light source 4-23, the ultraviolet light-emitting diodes in each facet light source is electrically coupled in series rear and light source controller 11
Light source drive part divides electrical connection, and it is equidistant along paper out opening 7-2 that 23 groups of facet light sources and 23 photoelectric tubes align one by one
Word order, and respectively group facet light source is controlled by the photoelectric tube aligning arrangement,
In the figure 7, the 5th area source is by the neat multiple ultraviolet lights being welded on the 4th piece of ceramic base light source board 15-5 front
Light emitting diode is constituted, and the back side of the 5th piece of ceramic base light source board 15-5 is pasted onto the 3rd rectangle water-cooling by heat-conducting glue
On the bottom surface of device 10-3, the ultraviolet light-emitting diodes on the 5th piece of ceramic base light source board 15-5 is also divided into facet light source 5-
1, facet light source 5-2, facet light source 5-3, facet light source 5-4, facet light source 5-5, facet light source 5-6, little flat
Area source 5-7, facet light source 5-8, facet light source 5-9, facet light source 5-10, facet light source 5-11, facet light
Source 5-12, facet light source 5-13, facet light source 5-14, facet light source 5-15, facet light source 5-16, facet light source
5-17, facet light source 5-18, facet light source 5-19, facet light source 5-20, facet light source 5-21, facet light source 5-
22, facet light source 5-23, the ultraviolet light-emitting diodes in each facet light source is electrically coupled in series rear and light source controller 11
Light source drive part divides electrical connection, and it is equidistant along paper out opening 7-2 that 23 groups of facet light sources and 23 photoelectric tubes align one by one
Word order, and respectively group facet light source is controlled by the photoelectric tube aligning arrangement,
In fig. 8, hexahedro light source is by the neat multiple ultraviolet lights being welded on the 6th piece of ceramic base light source board 15-6 front
Light emitting diode is constituted, and the back side of the 6th piece of ceramic base light source board 15-6 is pasted onto the 4th rectangle water-cooling by heat-conducting glue
On the bottom surface of device 10-4, the ultraviolet light-emitting diodes on the 6th piece of ceramic base light source board 15-6 is also divided into facet light source 6-
1, facet light source 6-2, facet light source 6-3, facet light source 6-4, facet light source 6-5, facet light source 6-6, little flat
Area source 6-7, facet light source 6-8, facet light source 6-9, facet light source 6-10, facet light source 6-11, facet light
Source 6-12, facet light source 6-13, facet light source 6-14, facet light source 6-15, facet light source 6-16, facet light source
6-17, facet light source 6-18, facet light source 6-19, facet light source 6-20, facet light source 6-21, facet light source 6-
22, facet light source 6-23, the ultraviolet light-emitting diodes in each facet light source is electrically coupled in series rear and light source controller 11
Light source drive part divides electrical connection, and it is equidistant along paper out opening 7-2 that 23 groups of facet light sources and 23 photoelectric tubes align one by one
Word order, and respectively group facet light source is controlled by the photoelectric tube aligning arrangement,
Each on first area source, the second area source, the 3rd area source, fourth face light source, the 5th area source and hexahedro light source
The length and width of group facet light source is identical,
The directional light direct irradiation that second area source and fourth face light source send is on the paper of label paper 18, to label paper
The top layer of 18 curing inks 19 solidifies,
Open Side Down is arranged on the 3rd rectangle water-filled radiator 10-3 and the 4th rectangle for little parabolic cylinder illuminator 13-3
Between water-filled radiator 10-4, the 3rd rectangle water-cooled that is arranged on of second largest parabolic cylinder illuminator 13-2 opening upwards dissipates
Hot device 10-3 and the underface of the 4th rectangle water-filled radiator 10-4, the reflective surface of second largest parabolic cylinder illuminator 13-2 is just
Reflective surface to little parabolic cylinder illuminator 13-3, the focal line F of second largest parabolic cylinder illuminator 13-2 is anti-with little parabolic cylinder
The focal line f of light microscopic 13-3 overlaps, in the centre position of second largest parabolic cylinder illuminator 13-2 just to little parabolic cylinder illuminator
13-3 has the guide-lighting slit W that a width is identical with little parabolic cylinder illuminator 13-3 A/F, the 5th block of ceramic base light
The front of source plate 15-5 and the 6th piece of ceramic base light source board 15-6 just reflective surface to second largest thing cylindrical mirror 13-2 so that
It is flat that each group facet light source on 5th piece of ceramic base light source board 15-5 and the 6th piece of ceramic base light source board 15-6 front sends
Row light, by second largest parabolic cylinder illuminator 13-2 and the reflection of little parabolic cylinder illuminator 13-3, forms the multiplication of a branch of light intensity
Directional light through irradiation vertical for guide-lighting slit W on label paper 18, the shallow top layer of label paper 18 curing ink 19 is entered
Row solidification,
First big parabolic cylinder illuminator 13-1 is positioned at first piece of ceramic base light source board 15-1 and the 3rd piece of ceramic base light source board 15-
The surface of 3, and the focal line F of the first big parabolic cylinder illuminator 13-1 falls on the paper of label paper 18 so that first
The front of block ceramic base light source board 15-1 and the 3rd piece of ceramic base light source board 15-3 is just to the first big thing cylindrical mirror 13-1's
Reflective surface, and make respectively to organize facet on first piece of ceramic base light source board 15-1 and the 3rd piece of ceramic base light source board 15-3 front
The directional light that light source the sends reflection by the first big parabolic cylinder illuminator 13-1, focuses on the first big parabolic cylinder illuminator
On the focal line F of 13-1, focal line F is formed the wire high light of light intensity multiplication, the deep layer of label paper 18 curing ink 19 is carried out
Solidification,
Structure, every size and the work process of N number of ultraviolet intense light source generator all occurs with first ultraviolet intense light source
Device is identical,
When the label paper 18 of one fixed width passes mid portion photoelectricity pair through rectangular paper feed hole 7-1 and paper out opening 7-2
Time between transmitting tube and the reception pipe of pipe, the light that the transmitting tube of this part photoelectric tube sends is cut off by label paper 18 can not
Arriving and receive pipe, this part photoelectric tube is off, and remaining photoelectric tube is in the conduction state, the shape of each photoelectric tube
State is sent to the illumination width detection part of light source controller 11, in N number of ultraviolet intense light source generator be off
Each group facet light source of photoelectric tube alignment divided by the light source drive part of light source controller 11 and add electroluminescence, remaining
The not powered luminescence of facet light source of each group,
In fig. 2, velocity sensor 12 is arranged in lower box 17, and velocity sensor 12 is positioned at rectangular paper feed hole 7-
The lower end of 1, velocity sensor 12 detects part with the intensity of illumination of light source controller 11 and electrically connects, and mark is close to by velocity sensor 12
Sign paper 18, when label paper 18 is under the drive of label printing machine, with speed v through rectangular paper feed hole 7-1 and rectangular
During the paper out opening 7-2 of shape, the translational speed signal Negotiation speed sensor 12 of label paper 18 is sent to light source controller 11
Intensity of illumination detection part, light source controller 11 rate signal detected according to velocity sensor 12, adjust N number of ultraviolet
The intensity of illumination of each group of facet light source adding electroluminescence in intense light source generator.
Claims (1)
1. a label printing machine multistage composite light source ultraviolet fast-curing device, by a rectangular box, a light source
Controller, N number of ultraviolet intense light source generator, a width detection mechanism and a velocity sensor are constituted, and it is characterized in that: each
The structure of individual ultraviolet intense light source generator and every equivalently-sized, rectangular box is divided into upper box and lower box two parts,
Upper box is connected by a combined page with lower box, has a rectangular paper feed hole and rectangle on the top of lower box
Paper out opening, label paper is under the drive of label printing machine, with speed v through rectangular paper feed hole and rectangular paper delivery
Hole,
Light source controller is divided by illumination width detection part, intensity of illumination detection part, light source drive part and constitutes, and illumination width is examined
Survey part and be used in real time detection label paper width, and divided to adjust in real time according to label paper width by light source drive part and put down
The range of exposures of area source, intensity of illumination test section demultiplexing detects the translational speed of label paper in real time, and is driven by light source
Part adjusts the irradiation exposure rate of planar light source in real time according to the translational speed of label paper, and light source drive part divides and passes through
Illumination width detection part and the testing result of intensity of illumination detection part, provide electric energy to planar light source,
Light source controller and N number of ultraviolet intense light source generator are all disposed within upper box, and light source controller is arranged on upper box
Upper end, N number of ultraviolet intense light source generator is neat from paper feed hole to paper out opening to be disposed side by side on below light source controller,
The bottom surface of each ultraviolet intense light source generator is all parallel with the paper of label paper,
Width detection mechanism is made up of M photoelectric tube, and each photoelectric tube has a light-emitting tube and a light receiving tube,
M photoelectric tube all electrically connects with the illumination width detection part of light source controller, and M photoelectric tube is neat along paper out opening
Equidistant word order, the transmitting tube of each photoelectric tube is arranged on the upper end of rectangular paper out opening, the reception of each photoelectric tube
Pipe is arranged on the lower end of rectangular paper out opening,
First ultraviolet intense light source generator is by a small box, the first rectangle water-filled radiator, the second rectangle water-cooled
Radiator, the 3rd rectangle water-filled radiator, the 4th rectangle water-filled radiator, the first area source, the second area source, the 3rd
Light source, fourth face light source, the 5th area source, hexahedro light source, the first big parabolic cylinder illuminator, second largest parabolic cylinder are reflective
Mirror, little parabolic cylinder illuminator are constituted, the first rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle
Water-filled radiator, the 4th rectangle water-filled radiator, the first area source, the second area source, the 3rd area source, fourth face light source,
5th area source, hexahedro light source, the first big parabolic cylinder illuminator, second largest parabolic cylinder illuminator, little parabolic cylinder are anti-
Light microscopic is all disposed within small box, the 3rd rectangle water-filled radiator, the 4th rectangle water-filled radiator, the first big parabolic cylinder
Illuminator and little parabolic cylinder illuminator are disposed side by side on the upper end of small box, and it is rectangular that little parabolic cylinder illuminator is arranged on the 3rd
Between shape water-filled radiator and the 4th rectangle water-filled radiator, the first rectangle water-filled radiator and the second rectangle water-cooled dissipate
Hot device is disposed side by side on below the first big parabolic cylinder illuminator, and second largest parabolic cylinder illuminator is arranged on the 3rd rectangle
Below water-filled radiator and the 4th rectangle water-filled radiator, the first rectangle water-filled radiator, the second rectangle water-cooled dissipate
Hot device, the 3rd rectangle water-filled radiator and the bottom surface of the 4th rectangle water-filled radiator and upper surface all with label paper sheet of planar
Parallel, long the first rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle water-filled radiator and the 4th
Being both provided with an inlet opening and an apopore before and after square water cold heat sink in both ends of the surface, cold water flows into the from inlet opening
One rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle water-filled radiator and the 4th rectangle water-cooled
Radiator, hot water flows out the first rectangle water-filled radiator, the second rectangle water-filled radiator, the 3rd rectangle water from apopore
Cold heat sink and the 4th rectangle water-filled radiator,
First area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on first piece of ceramic base light source board front
Becoming, the back side of first piece of ceramic base light source board is pasted onto on the upper surface of the first rectangle water-filled radiator by heat-conducting glue, the
Ultraviolet light-emitting diodes on one piece of ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light
Source and M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by right with it
The photoelectric tube of neat arrangement controls, after ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series and light source controller
Light source drive part divide electrical connection,
Second area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on second piece of ceramic base light source board front
Becoming, the back side of second piece of ceramic base light source board is pasted onto on the bottom surface of the first rectangle water-filled radiator by heat-conducting glue, and second
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
3rd area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 3rd piece of ceramic base light source board front
Becoming, the back side of the 3rd piece of ceramic base light source board is pasted onto on the upper surface of the second rectangle water-filled radiator by heat-conducting glue, the
Ultraviolet light-emitting diodes on three pieces of ceramic base light source boards is divided into the M group facet light source that length and width are identical, M group facet light
Source and M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by right with it
The photoelectric tube of neat arrangement controls, after ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series and light source controller
Light source drive part divide electrical connection,
Fourth face light source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 4th piece of ceramic base light source board front
Becoming, the back side of the 4th piece of ceramic base light source board is pasted onto on the bottom surface of the second rectangle water-filled radiator by heat-conducting glue, and the 4th
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
5th area source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 5th piece of ceramic base light source board front
Becoming, the back side of the 5th piece of ceramic base light source board is pasted onto on the bottom surface of the 3rd rectangle water-filled radiator by heat-conducting glue, and the 5th
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
Hexahedro light source is by the neat multiple ultraviolet light-emitting diodes structures being welded on the 6th piece of ceramic base light source board front
Becoming, the back side of the 6th piece of ceramic base light source board is pasted onto on the bottom surface of the 4th rectangle water-filled radiator by heat-conducting glue, and the 6th
Ultraviolet light-emitting diodes on block ceramic base light source board is divided into the M group facet light source that length and width are identical, M group facet light source
With M photoelectric tube align one by one along the equidistant word order of paper out opening, and respectively group facet light source by aligning
The photoelectric tube of arrangement controls, and the ultraviolet light-emitting diodes in each group of facet light source is electrically coupled in series rear and light source controller
Light source drive part divides electrical connection,
Each on first area source, the second area source, the 3rd area source, fourth face light source, the 5th area source and hexahedro light source
The length and width of group facet light source is identical,
The directional light direct irradiation that second area source and fourth face light source send is on the paper of label paper, on label paper
The top layer of ink solidifies,
Open Side Down is arranged on the 3rd rectangle water-filled radiator and the 4th rectangle water-cooling for little parabolic cylinder illuminator
Between device, second largest parabolic cylinder illuminator opening upwards be arranged on the 3rd rectangle water-filled radiator and the 4th rectangle
The underface of water-filled radiator, the reflective surface of second largest parabolic cylinder illuminator just reflective surface to little parabolic cylinder illuminator,
Second largest parabolic cylinder illuminator overlaps with the focal line of little parabolic cylinder illuminator, in the centre of second largest parabolic cylinder illuminator
Position is just having the guide-lighting slit that a width is identical with little parabolic cylinder illuminator A/F to little parabolic cylinder illuminator,
The front of the 5th piece and the 6th piece ceramic base light source board just reflective surface to second largest thing cylindrical mirror so that the 5th piece and
The directional light that each group facet light source on six pieces of ceramic base light source board fronts sends by second largest parabolic cylinder illuminator and
The reflection of little parabolic cylinder illuminator, the directional light forming the multiplication of a branch of light intensity passes the vertical irradiation of guide-lighting slit at label paper
Zhang Shang, solidifies the shallow top layer of label paper curing ink,
First big parabolic cylinder illuminator is positioned at the surface of first piece and the 3rd piece ceramic base light source board, and the first big parabolic
The focal line of cylindrical mirror falls on the paper of label paper so that the front of first piece and the 3rd piece ceramic base light source board is the most right
The reflective surface of the first big thing cylindrical mirror, and make respectively to organize facet on first piece and the 3rd piece of ceramic base light source board front
The directional light that light source the sends reflection by the first big parabolic cylinder illuminator, focuses on Jiao of the first big parabolic cylinder illuminator
On line, focal line is formed the wire high light of light intensity multiplication, the deep layer of label paper curing ink is solidified,
The structure of N number of ultraviolet intense light source generator and every size all with first ultraviolet complete phase of intense light source generator
With,
When the label paper of one fixed width through rectangular paper feed hole and paper out opening through the transmitting of mid portion photoelectric tube
Time between pipe and reception pipe, the light that the transmitting tube of this part photoelectric tube sends is cut off by label paper can not arrive reception
Pipe, this part photoelectric tube is off, and remaining photoelectric tube is in the conduction state, and the state of each photoelectric tube is sent to
The illumination width detection part of light source controller, with the photoelectric tube being off in N number of ultraviolet intense light source generator
Each group facet light source of alignment is divided by the light source drive part of light source controller and adds electroluminescence, and remaining respectively organizes facet light
The not powered luminescence in source,
Velocity sensor is arranged in lower box, and velocity sensor is positioned at the lower end in rectangular paper feed hole, velocity pick-up
Device detects part with the intensity of illumination of light source controller and electrically connects, and label paper is close to by velocity sensor, when label paper is at mark
Sign under the drive of printer, during with speed v through rectangular paper feed hole and rectangular paper out opening, the mobile speed of label paper
Degree signal Negotiation speed sensor is sent to the intensity of illumination detection part of light source controller, light source controller pass according to speed
The rate signal that sensor detects adjusts the illumination of each group of facet light source adding electroluminescence in N number of ultraviolet intense light source generator
Intensity.
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JP2008307891A (en) * | 2007-05-15 | 2008-12-25 | Komori Corp | Liquid hardening apparatus of liquid transfer press |
CN202045991U (en) * | 2011-04-20 | 2011-11-23 | 吴江市华源印铁制罐有限责任公司 | UV (Ultraviolet) light curing device |
CN205818661U (en) * | 2016-05-26 | 2016-12-21 | 北京印刷学院 | The ultraviolet compounded multistage rapid solidification device of light source label printing machine |
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JP2008307891A (en) * | 2007-05-15 | 2008-12-25 | Komori Corp | Liquid hardening apparatus of liquid transfer press |
CN101232766A (en) * | 2008-02-22 | 2008-07-30 | 刘洪生 | Ultraviolet ray light tube stepless power regulating eqiupment |
CN202045991U (en) * | 2011-04-20 | 2011-11-23 | 吴江市华源印铁制罐有限责任公司 | UV (Ultraviolet) light curing device |
CN205818661U (en) * | 2016-05-26 | 2016-12-21 | 北京印刷学院 | The ultraviolet compounded multistage rapid solidification device of light source label printing machine |
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Effective date of registration: 20230727 Address after: 063000 New Technology Industrial Park, Yutian Town, Yutian County, Tangshan City, Hebei Province Patentee after: Tangshan Shanghe Technology Co.,Ltd. Address before: 102600 Beijing Institute of Graphic Communication, 25 Xinghua North Road, Daxing District, Beijing Patentee before: BEIJING INSTITUTE OF GRAPHIC COMMUNICATION |