CN201633300U - Optical spot-reading printing structure - Google Patents

Optical spot-reading printing structure Download PDF

Info

Publication number
CN201633300U
CN201633300U CN2010201220487U CN201020122048U CN201633300U CN 201633300 U CN201633300 U CN 201633300U CN 2010201220487 U CN2010201220487 U CN 2010201220487U CN 201020122048 U CN201020122048 U CN 201020122048U CN 201633300 U CN201633300 U CN 201633300U
Authority
CN
China
Prior art keywords
printing
printed layers
base material
transfer film
induction
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2010201220487U
Other languages
Chinese (zh)
Inventor
林骏煌
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN2010201220487U priority Critical patent/CN201633300U/en
Application granted granted Critical
Publication of CN201633300U publication Critical patent/CN201633300U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model relates to an optical spot-reading printing structure, which comprises a base material (1), a printing layer (2) and two or more than two induction spots (3), wherein the printing layer can blend the color by mixing three primary colors of yellow, magenta and cyan, so as to form patterns on the surface of the base material; the two or more than two induction spots are formed by printing by adopting the black in the printing primary color and are arranged on the printing layer; the printing layer can blend the color by mixing the three colors of Y (yellow), M (magenta) and C (cyan) in the printing four primary colors and form the patterns, while the induction spots are formed by printing by the K (black), so as to distinguish the difference of the printing layer and the induction spots. If the fault is caused or the printed patterns are wrong in the printing process, only the transfer printing thin film needs to be replaced, and the cost of the transfer printing thin film is very low, thereby achieving the aim of saving the cost; in addition, the optical spot-reading printing structure has the characteristics of fast printing and low cost.

Description

The structure of optical read point printing
Technical field
The utility model relates to a kind of structure of optical read point printing.
Background technology
Traditional printing technology mainly is earlier the metal intaglio plate to be carved in the laser mode, make and present the pattern that forms with concavo-convex groove on the metal intaglio plate, then printing ink is evenly coated this concavo-convex groove, with operations such as pressing, roll and heat that printing ink is vicarious on substrate surface, make substrate surface present the pattern of printing.Yet this kind mode of printing promptly can't be revised after the metal intaglio plate carries out depiction or engraving again once more, the metal intaglio plate that must more renew, and also laser carved needs expend considerable time, and the cost of metal intaglio plate is also higher relatively.In addition, owing to need stronger pressing and rolling pressure on base material the time with printing ink is vicarious, and higher heating-up temperature, could be smoothly with printing ink even and smooth be needed on substrate surface, but high pressure may be different because of the base material material with the influence of high temperature, damage the problem of base material.
The utility model content
In view of above-mentioned the deficiencies in the prior art, the purpose of this utility model provides a kind of structure of optical read point printing,
The utility model provides a kind of structure of optical read point printing, mainly includes:
One base material;
One printed layers goes out color with yellow, carmetta and cyan three primary colors mixing preparation, forms pattern and places substrate surface;
Two or more induction points form with the printing of the black in the printing color, and are laid on the printed layers.
The utility model also further provides the optimal technical scheme of the structure of above-mentioned optical read point printing:
As preferably, described printed layers is earlier coating to be printed on the transfer film, form pattern after, entirely be layed in transfer film on the base material, printed layers is transferred to substrate surface, preferred 120~140 ℃ of this heating-up temperature, 0.5~2 minute heat time heating time in the mode that continues heating.
As preferably, include transfer ink in the described printed layers.
As preferably, described induction point is laid on the printed layers in equidistant mode.
As preferably, the material of described transfer film is the PET plastics, and thickness is 0.08~0.1mm.
As preferably, the thickness of described transfer film is 0.09mm.
The utility model mainly is to be printed on printed layers on the transfer film and to form specific pattern, mode by heating is transferred to substrate surface with the printed layers on the transfer film, make base material paste the pattern that forms by printed layers, owing to only need during transfer printing can finish by the mode of heating, therefore, the present invention has reached the purpose of quick print.Because printed layers is to be printed in advance on the transfer film, therefore, if in the printing process error or the WRONG PATTERN printed, only the transfer film that need more renew get final product, and suitable cheap of the cost of transfer film, so has reached cost-effective purpose.
Description of drawings
Fig. 1 is the stereo appearance figure of printed layers and base material.
Fig. 2 is the three-dimensional exploded view of printed layers and base material.
Fig. 3 is the local enlarged diagram of Fig. 2.
Among the figure, 1 is base material; 2 is printed layers; 3 is induction point.
The specific embodiment
The utility model is described in further detail below in conjunction with the drawings and specific embodiments, so that those skilled in the art can better understand the utility model and being implemented, but illustrated embodiment is not as to qualification of the present utility model.
Embodiment 1
In order to reach the effect that reaches of above-mentioned projects,, lift a preferred embodiment, so that those of skill in the art can be with regard to the enforcement according to this of projects in this careful collocation accompanying drawing.
As Fig. 1, Fig. 2 and shown in Figure 3, the utility model mainly comprises:
One base material 1;
One printed layers 2 mixes color with Y (yellow), M (carmetta) with C (cyan) three mixture of colours, and forms the surface that specific pattern places base material 1;
Two or more induction points 3 form with the K in the printing color (black) printing, and are laid on the printed layers 2 in equidistant mode.
The utility model mainly is with Y (yellow), M (carmetta) and C (cyan) three mixture of colours in the printing four primaries, mix the color layers of various different colours, formation at last has the printed layers 2 of pattern, and the two or more induction points 3 that are laid on the printed layers 2 form with K (black) printing in the printing four primaries.What deserves to be mentioned is, even need to occur the pattern of black in the middle of the printed layers 2, also be to mix black with C (cyan) three mixture of colours with Y (yellow), M (carmetta), and can not use the K (black) identical with induction point 3, though be identical on the black that the two presented is visual, but be actually difference to some extent, the purposes that mainly is induction point 3 provides the identification code that outside induction installation is responded to, and outside induction installation also is set at the induction point 3 that only can sense use K (black) pigment.Therefore, the printing color of using different colours is distinguished the different of printed layers 2 and induction point 3, is the characteristics of the utility model maximum.
In addition, the way of printed layers 2 mainly is earlier coating to be printed on the transfer film, after forming specific pattern, transfer film entirely is laid on the surface of base material 1, printed layers 2 is transferred to the surface of base material 1 in the mode that continues heating, owing to contain transfer ink in the middle of the printed layers 2, therefore the surface that is printed on base material 1 that can printed layers 2 is complete.
The utility model mainly is to utilize transfer film carrying printed layers 2, mode by heating is transferred to printed layers 2 on the base material 1 again, and general habitual printing technology is earlier printing ink to be coated on the figuratum metal intaglio plate of engraving, printing ink is needed on the surface of base material 1 again.Because it is cheap many that the habitual metal intaglio plate of the cost of transfer film is wanted, therefore, if error takes place in the middle of the process of printing printed layers 2 or need print again the time, only the transfer film that need more renew get final product, can not cause the problem of increase cost.Printed layers 2 is printed on the transfer film after the drying, because transfer film is to make and thickness is about 0.08~0.1mm with the PET plastic material, therefore very frivolous and have reelability, both be convenient to construction, is easy to carry again.Transfer film can be needed on printed layers 2 on the base material 1 after printing printed layers 2 immediately, and the folding back of transfer film is stored as collection or according to the pattern classification storehouse, and does not take up space;
Except above-mentioned advantage, transfer film also can be according to the size of selecting base material 1 for use and specification on being needed on base material 1 time, transfer film is cut out, make the pattern that forms with printed layers 2 on the transfer film, can meet the size of base material 1, and be transferred on the desired location of base material 1.
In fact, the printing technology of transfer film can be applicable to be not limited on the base material 1 of specific materials or purposes on the base material 1 of the floor of unlike material, floor tile, wall material or other purposes.
The above embodiment is the preferred embodiment that proves absolutely that the utility model is lifted, and protection domain of the present utility model is not limited thereto.Being equal to that those skilled in the art are done on the utility model basis substitutes or conversion, all in protection domain of the present utility model.Protection domain of the present utility model is as the criterion with claims.

Claims (6)

1. the structure of optical read point printing is characterized in that: include:
One base material;
One printed layers goes out color with yellow, carmetta and cyan three primary colors mixing preparation, forms pattern and places substrate surface;
Two or more induction points form with the printing of the black in the printing color, and are laid on the printed layers.
2. the structure of optical read point printing as claimed in claim 1, it is characterized in that: described printed layers is earlier coating to be printed on the transfer film, after forming pattern, transfer film entirely is layed on the base material, printed layers is transferred to substrate surface in the mode that continues heating.
3. the structure of optical read point printing as claimed in claim 1 is characterized in that: include transfer ink in the described printed layers.
4. the structure of optical read point printing as claimed in claim 1, it is characterized in that: described induction point is laid on the printed layers in equidistant mode.
5. the structure of optical read point printing as claimed in claim 1, it is characterized in that: the material of described transfer film is the PET plastics, thickness is 0.08~0.1mm.
6. the structure of optical read point printing as claimed in claim 5, it is characterized in that: the thickness of described transfer film is 0.09mm.
CN2010201220487U 2010-02-10 2010-02-10 Optical spot-reading printing structure Expired - Fee Related CN201633300U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201220487U CN201633300U (en) 2010-02-10 2010-02-10 Optical spot-reading printing structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201220487U CN201633300U (en) 2010-02-10 2010-02-10 Optical spot-reading printing structure

Publications (1)

Publication Number Publication Date
CN201633300U true CN201633300U (en) 2010-11-17

Family

ID=43077780

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010201220487U Expired - Fee Related CN201633300U (en) 2010-02-10 2010-02-10 Optical spot-reading printing structure

Country Status (1)

Country Link
CN (1) CN201633300U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102145606A (en) * 2010-02-10 2011-08-10 林骏煌 Heat transfer printing method for optical reading point printing and printing structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102145606A (en) * 2010-02-10 2011-08-10 林骏煌 Heat transfer printing method for optical reading point printing and printing structure
CN102145606B (en) * 2010-02-10 2013-09-18 林骏煌 Heat transfer printing method for optical reading point printing and printing structure

Similar Documents

Publication Publication Date Title
US10238229B2 (en) Article including a heat-stable coating provided with an at least two-color decoration having continuous tones
CN101418525B (en) Transfer printing paper for disposable printing thermal sublimation pattern and brilliant color pattern and preparation method and use
CN103753990B (en) A kind of decal paper for ceramic ware silk screen printing process
CN101387089A (en) Solid emblema papers and printing method thereof
CN105948823A (en) Ceramic tile containing color paste and permeable ink and making method
CN101092098A (en) Laser transfer printing method without printing plate
CN201633300U (en) Optical spot-reading printing structure
CN105946232A (en) Colouring method for 3D printing technology
CN102146642A (en) Laminated paper manufacturing method
CN102145606B (en) Heat transfer printing method for optical reading point printing and printing structure
CN102774153A (en) Forming process of PVC (Polyvinyl Chloride) substrate surface pattern layer
US20160176183A1 (en) Decal Printing Paper For Ceramics
KR100958851B1 (en) Edge molding strip for furniture and decoration film used the same
CN102632738A (en) Digital image film and preparation method thereof
CN206344526U (en) A kind of embedded texture PC decorations panel
CN103129295A (en) Manufacturing method of decorative picture
KR101216002B1 (en) Heat transcription film and the manufacture method to have pattern effect of engraving in relief
KR102608315B1 (en) Wallpaper made with pet foam
CN105523779A (en) Method for forming sunken pattern, material with sunken function, manufacturing method and product thereof
KR20040095084A (en) a synthetic leather and manufactured method the same
CN106905775A (en) Distillation wax crayon
JPH1160358A (en) Ceramic tile having various sharp pattern
CN201646206U (en) Environmental protection small mold stained paper for transfer film facing
CN105645928A (en) Manufacturing method of decorative porcelain
CN205686014U (en) The product configurations of thermal insulation layer is increased between non-paper base material and pattern material layer

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20101117

Termination date: 20180210

CF01 Termination of patent right due to non-payment of annual fee