CN107433787A - A kind of printing process that can strengthen the sun-proof ability of color - Google Patents

A kind of printing process that can strengthen the sun-proof ability of color Download PDF

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Publication number
CN107433787A
CN107433787A CN201710681241.0A CN201710681241A CN107433787A CN 107433787 A CN107433787 A CN 107433787A CN 201710681241 A CN201710681241 A CN 201710681241A CN 107433787 A CN107433787 A CN 107433787A
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CN
China
Prior art keywords
color
ink
sun
printing process
site
Prior art date
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Granted
Application number
CN201710681241.0A
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Chinese (zh)
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CN107433787B (en
Inventor
廖文
罗文林
王春梅
张青
王文娜
温天生
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Guangzhou Hengyuan Printing Co Ltd
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Guangzhou Hengyuan Printing Co Ltd
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Priority to CN201710681241.0A priority Critical patent/CN107433787B/en
Publication of CN107433787A publication Critical patent/CN107433787A/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41MPRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
    • B41M1/00Inking and printing with a printer's forme

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  • Printing Methods (AREA)

Abstract

The invention discloses a kind of printing process that can strengthen the sun-proof ability of color, the ink formed using the diluent allotment by the color ink for colour developing and the color for watering down the color ink is printed, and, when it is Q1 to water down ratio value, the form and aspect of the ink in itself are target form and aspect, wherein, the percentage by weight for watering down ratio and the ink being accounted for for the diluent, and 0%<Q1<100%, it is characterised in that:Described printing process includes:Step 1: it is Q2 to water down ratio value described in allotment<Q1 ink;Step 2: the ink allocated with the step 1 is printed using site, also, the technique of the printing meets formula:P=(100% Q2)+10%, wherein, P represents dot area coverage, and it is that the percentage of the grid area, and 0% are accounted for using the dot area in the typography of site in a grid<P<100%.The present invention can go out the sun-proof ability of color of color on the basis of the color with target form and aspect is printed out, printed by enhancing.

Description

A kind of printing process that can strengthen the sun-proof ability of color
Technical field
The present invention relates to a kind of printing process that can strengthen the sun-proof ability of color.
Background technology
Due to printed matter color characteristic in itself and concocting method, most colors are not in numerous color form and aspect Sun-proof, these colors easily occur fading in the sunlight, bleach, turn to be yellow, and lose the form and aspect of itself.Significantly influence The outward appearance of product, directly affect the sale of product.
The content of the invention
The technical problems to be solved by the invention are:A kind of printing process that can strengthen the sun-proof ability of color is provided.
Solves above-mentioned technical problem, the technical solution adopted in the present invention is as follows:
A kind of printing process that can strengthen the sun-proof ability of color, using by the color ink for colour developing and described for watering down The ink that the diluent allotment of color ink color forms is printed, also, when it is Q1 to water down ratio value, the ink is in itself Form and aspect be target form and aspect, wherein, the ratio that waters down accounts for the percentage by weight of the ink, and 0% for the diluent<Q1 <100%, it is characterised in that:Described printing process includes:Step 1: it is Q2 to water down ratio value described in allotment<Q1 oil Ink;Step 2: the ink allocated with the step 1 is printed using site, also, the technique of the printing meets formula:P =(100%-Q2)+10%, wherein, P represents dot area coverage, and it is using the net in the typography of site in a grid Point area accounts for the percentage of the grid area, and 0%<P<100%.
In order to strengthen the sun-proof ability of the color of printed matter to greatest extent, as the preferred embodiment of the present invention:It is described The ratio value Q2 that waters down of the ink of step 1 allotment is the minimum value that disclosure satisfy that following two conditions:Condition one, the step The form and aspect of rapid two colors printed out are the target form and aspect;The dot area coverage P that condition two, the formula calculate falls pre- If dot area coverage maximum occurrences within the scope of.
In order to ensure the effect of net-point printing, as the preferred embodiment of the present invention:The dot area coverage maximum takes It is 5% to 95% to be worth scope.
As the preferred embodiment of the present invention:The site is amplitude.
In order to ensure the stability of amplitude, as the preferred embodiment of the present invention:The netting twine of the amplitude Number is in 100 lines between 200 lines.
As the preferred embodiment of the present invention:The site is frequency-modulation halftone dot.
In order to ensure the stability of frequency-modulation halftone dot, as the preferred embodiment of the present invention:The size of the frequency-modulation halftone dot Between 10 μm to 30 μm.
In order that stability of the frequency-modulation halftone dot in actual production is optimal, as the preferred embodiment of the present invention: The size of the frequency-modulation halftone dot is 20 μm.
Compared with prior art, the invention has the advantages that:
By the present invention printing use ink water down ratio Q2 be less than in Q1, namely the ink water down agent content want Less than the ink that the ratio that waters down is Q1, and ink is not sun-proof caused by just because of diluent, and therefore, present invention printing is used Ink it is more sun-proof compared to the ink that the ratio that waters down is Q1, but this also result in present invention printing and uses the color of ink Deeper compared to the ink colors that the ratio that waters down is Q1, i.e. the form and aspect of the ink deviate from target form and aspect;And due to this hair It is bright to be printed with foregoing ink using site, and make the dot area coverage P=(100%-Q2)+10% in typography, i.e., It make use of the color shown after being printed using the mode of printing of site to ink to play a part of lighter, offset with this The influence of " present invention printing use the color of ink deeper for Q1 ink colors compared to the ratio that waters down ", therefore, this hair It is bright that the color with target form and aspect can be printed out by step 1 and step 2, also, compared in the prior art using punching The ink that light ratio is Q1 carries out the printing process of all standing printing (being 100% equivalent to dot area coverage P), and the present invention is same On the basis of sample can print out the color with target form and aspect, enhance it is printed go out color the sun-proof ability of color.
Embodiment
Disclosed by the invention is a kind of printing process that can strengthen the sun-proof ability of color, and its inventive concept is:
As existing printing process, the present invention is also used by the color ink for colour developing and for watering down color ink color The ink that diluent allotment forms is printed, also, when it is Q1 to water down ratio value, the form and aspect of the ink in itself are target Form and aspect, wherein, water down the percentage by weight that ratio accounts for ink for diluent, and 0%<Q1<100%.
And unlike existing printing process, printing process of the invention includes:Step 1: allotment waters down ratio and taken It is worth for Q2<Q1 ink;Step 2: the ink allocated with step 1 is printed using site, also, the technique of the printing expires Sufficient formula:P=(100%-Q2)+10%, wherein, P represents dot area coverage, and it is using a net in the typography of site Dot area in lattice accounts for the percentage of the grid area, and 0%<P<100%.
So as to by present invention printing uses the diluent for watering down ratio Q2 and being less than in Q1, namely the ink of ink Content will be less than the ink that the ratio that waters down is Q1, and ink is not sun-proof caused by just because of diluent, therefore, present invention printing Used ink is more sun-proof compared to the ink that the ratio that waters down is Q1, but this also result in present invention printing and uses ink Color compared to the ratio that waters down be Q1 ink colors it is deeper, i.e. the form and aspect of the ink deviate from target form and aspect;And by Printed in the present invention with foregoing ink using site, and make dot area coverage P=(100%-Q2) in typography+ 10%, that is, it make use of the color shown after being printed using the mode of printing of site to ink to play a part of lighter, The influence of " present invention printing use the color of ink deeper as Q1 ink colors compared to the ratio that waters down " is offset using this, because This, the present invention can print out the color with target form and aspect by step 1 and step 2, also, compared in the prior art The ratio of watering down is used to carry out the printing process of all standing printing (being 100% equivalent to dot area coverage P), this hair for Q1 ink It is bright on the basis of it equally can print out the color with target form and aspect, enhance it is printed go out color the sun-proof energy of color Power.
On the basis of foregoing invention design, the present invention uses following preferred embodiment:
In order to strengthen the sun-proof ability of the color of printed matter to greatest extent, as the preferred embodiment of the present invention:Step The ratio value Q2 that waters down of the ink of one allotment is the minimum value that disclosure satisfy that following two conditions:Condition one, step 2 printing The form and aspect of the color gone out are target form and aspect;The dot area coverage P that condition two, formula calculate falls in default dot area coverage most Within big span.
In order to ensure the effect of net-point printing, as the preferred embodiment of the present invention:Dot area coverage maximum occurrences model Enclose for 5% to 95%.
As the preferred embodiment of the present invention:Above-mentioned site can be frequency-modulation halftone dot.Also, in order to ensure frequency-modulation halftone dot Stability, the size of frequency-modulation halftone dot is between 10 μm to 30 μm.Wherein, the size of frequency-modulation halftone dot is chosen to be 20 μm, can be with It is optimal stability of the frequency-modulation halftone dot in actual production.
As the preferred embodiment of the present invention:It is amplitude that above-mentioned site, which can also be selected excellent,.Also, in order to ensure adjusting The stability of width site, the screen density of amplitude is in 100 lines between 200 lines.
The present invention is not limited to above-mentioned embodiment, according to the above, according to the ordinary technical knowledge of this area And customary means, under the premise of the above-mentioned basic fundamental thought of the present invention is not departed from, the present invention can also make other diversified forms Equivalent modifications, replacement or change, all fall among protection scope of the present invention.

Claims (8)

  1. A kind of 1. printing process that can strengthen the sun-proof ability of color, using by the color ink for colour developing and for watering down the color The ink that forms of diluent allotment of black color is printed, also, when it is Q1 to water down ratio value, and the ink is in itself Form and aspect are target form and aspect, wherein, the percentage by weight for watering down ratio and the ink being accounted for for the diluent, and 0%<Q1< 100%, it is characterised in that:Described printing process includes:Step 1: it is Q2 to water down ratio value described in allotment<Q1 ink; Step 2: the ink allocated with the step 1 is printed using site, also, the technique of the printing meets formula:P= (100%-Q2)+10%, wherein, P represents dot area coverage, and it is using the site in the typography of site in a grid Area accounts for the percentage of the grid area, and 0%<P<100%.
  2. 2. the printing process of the sun-proof ability of color can be strengthened according to claim 1, it is characterised in that:The step 1 is adjusted The ratio value Q2 that waters down for the ink matched somebody with somebody is the minimum value that disclosure satisfy that following two conditions:Condition one, step 2 printing The form and aspect of the color gone out are the target form and aspect;The dot area coverage P that condition two, the formula calculate falls in default site Within the scope of coverage rate maximum occurrences.
  3. 3. the printing process of the sun-proof ability of color can be strengthened according to claim 2, it is characterised in that:The site covering Rate maximum occurrences scope is 5% to 95%.
  4. 4. the printing process of the sun-proof ability of color can be strengthened according to claims 1 to 3 any one, it is characterised in that: The site is amplitude.
  5. 5. the printing process of the sun-proof ability of color can be strengthened according to claim 4, it is characterised in that:The amplitude Screen density in 100 lines between 200 lines.
  6. 6. the printing process of the sun-proof ability of color can be strengthened according to claims 1 to 3 any one, it is characterised in that: The site is frequency-modulation halftone dot.
  7. 7. the printing process of the sun-proof ability of color can be strengthened according to claim 6, it is characterised in that:The frequency-modulation halftone dot Size between 10 μm to 30 μm.
  8. 8. the printing process of the sun-proof ability of color can be strengthened according to claim 6, it is characterised in that:The frequency-modulation halftone dot Size be 20 μm.
CN201710681241.0A 2017-08-10 2017-08-10 A kind of printing process that can enhance the sun-proof ability of color Active CN107433787B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111873653A (en) * 2020-08-06 2020-11-03 美盈森集团股份有限公司 Printing process with three-dimensional gradient effect

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5276114A (en) * 1975-12-22 1977-06-27 Toyo Ink Mfg Co Method of forming pseudo etching pattern
EP0589681A2 (en) * 1992-09-22 1994-03-30 Shiseido Company Limited Red pigment and manufacturing method for it
CN101380161A (en) * 2008-10-22 2009-03-11 中国印钞造币总公司 Technique of applying temperature-sensing discolored ink in noble metal coin (badge)
CN103507541A (en) * 2013-10-28 2014-01-15 临沂康亿家生态木业有限公司 Processing method for surface textures of wood-plastic composite material
CN103971595A (en) * 2014-04-29 2014-08-06 上海美声服饰辅料有限公司 Method for manufacturing black card hang tag
CN104191850A (en) * 2014-08-04 2014-12-10 郑州玉海玻璃技术有限公司 Transfer printing process for ultra-large specification glass and laminating machine for transfer printing process

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5276114A (en) * 1975-12-22 1977-06-27 Toyo Ink Mfg Co Method of forming pseudo etching pattern
EP0589681A2 (en) * 1992-09-22 1994-03-30 Shiseido Company Limited Red pigment and manufacturing method for it
CN101380161A (en) * 2008-10-22 2009-03-11 中国印钞造币总公司 Technique of applying temperature-sensing discolored ink in noble metal coin (badge)
CN103507541A (en) * 2013-10-28 2014-01-15 临沂康亿家生态木业有限公司 Processing method for surface textures of wood-plastic composite material
CN103971595A (en) * 2014-04-29 2014-08-06 上海美声服饰辅料有限公司 Method for manufacturing black card hang tag
CN104191850A (en) * 2014-08-04 2014-12-10 郑州玉海玻璃技术有限公司 Transfer printing process for ultra-large specification glass and laminating machine for transfer printing process

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111873653A (en) * 2020-08-06 2020-11-03 美盈森集团股份有限公司 Printing process with three-dimensional gradient effect

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