IP Library Granted Patent US 9,266,316
Granted Patent B2
US 9,266,316 · App. 13/352,586 · Granted Feb 23, 2016

Dual-layer laser-imageable flexographic printing precursors

Inventors: Ophira Melamed (Shoham, IL); Eynat Matzner (Adi, IL); Dana Barshishat (Petah-Tiqva, IL)
Assignee: EASTMAN KODAK COMPANY
B41C1/05B41N1/12Y10T428/24942
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Quick Facts
Patent No.
US 9,266,316
App. No.
13/352,586
Granted
Feb 23, 2016
Kind
B2
Abstract

A flexographic printing precursor can be imaged and used for flexographic printing. This precursor has at least two laser-engraveable layers, in which the underlying non-printing laser-engraveable layer is more sensitive than the outermost non-metallic printing laser-engraveable layer. The non-printing layer-engraveable layer comprises (1) a first elastomer, (2) a polymer that is nitrocellulose, a polymer comprising a triazene group, a glycidyl azide polymer, or a poly(vinyl nitrate), and (3) a first near-infrared radiation absorber. The outermost non-metallic printing laser-engraveable layer comprises a second elastomer and a second infrared radiation absorber.

Claims (23)

1. A flexographic printing precursor that is laser-engraveable to provide a relief image, the flexographic printing precursor consisting essentially of a substrate, and, in order:

a non-printing laser-engraveable layer that is directly disposed on the substrate, which non-printing laser-engraveable layer has a dry thickness of at least 300 μm and up to and including 2,500 μm and comprises: (1) at least 40 weight % and up to and including 80 weight % of a first elastomer, (2) at least 5 weight % and up to and including 20 weight %, of a polymer that is nitrocellulose, a polymer comprising a triazene group, a glycidyl azide polymer, or a poly(vinyl nitrate), and (3) at least 5 weight % and up to and including 15 weight % of a first near-infrared radiation absorber, all amounts based on the total dry weight of the non-printing laser-engraveable layer, and

an outermost non-metallic printing laser-engraveable layer disposed over the non-printing laser-engraveable layer, the outermost non-metallic, printing laser-engraveable layer having a dry thickness of at least 250 μm and up to and including 4,000 μm and comprising: (1) a second elastomer and (2) at least 1 weight % and up to and including 25 weight % of a second near-infrared radiation absorber, the amount based on the total dry weight of the outermost non-metallic printing laser-engraveable layer,

wherein the non-printing laser-engraveable layer is more sensitive to laser irradiation at a wavelength of at least 700 nm and up to and including 1300 nm than the outermost non-metallic printing laser-engraveable layer.

2. The flexographic printing precursor of claim 1 , wherein the first and second near-infrared radiation absorbers are the same or different and are selected from the group consisting of a conductive or non-conductive carbon black, graphene, graphite, carbon fibers, and carbon nanotubes.

3. The flexographic printing precursor of claim 1 , wherein the outermost non-metallic printing laser-engraveable layer comprises a polyurethane as the second elastomer.

4. The flexographic printing precursor of claim 1 , wherein the non-printing laser-engraveable layer comprises a polyurethane as the first elastomer.

5. The flexographic printing precursor of claim 1 , wherein the weight ratio of the (1) first elastomer to the (2) polymer is from 3:1 to and including 9:1.

6. The flexographic printing precursor of claim 1 , wherein the substrate comprises one or more layers of a metal, fabric, or polymeric film, or a combination thereof.

7. The flexographic printing precursor of claim 1 , wherein the substrate comprises a fabric web disposed over a polyester or aluminum support.

8. The flexographic printing precursor of claim 1 , wherein the non-printing laser-engraveable layer comprises a polyurethane, a carbon black and nitrocellulose, and

the outermost non-metallic, printing laser-engraveable layer comprises a polyurethane and a carbon black.

9. A method for providing a flexographic printed impression, comprising:

without forming and using a mask, imaging the flexographic printing precursor of claim 1 using laser-engraving near-infrared radiation to provide a flexographic printing member with a relief image in at least the outermost non-metallic printing laser-engraveable layer.

10. The method of claim 9 further comprising:

without development of the flexographic printing member, applying ink to the flexographic printing member having the relief image, and

transferring ink from the flexographic printing member to a receiver element to provide a printed impression.

11. The method of claim 9 , comprising imaging to provide a minimum dry relief image depth of at least 300 μm in at least the outermost non-metallic printing laser-engraveable layer.

12. The method of claim 9 , wherein the imaging is laser-engraving at a wavelength of at least 700 nm and up to and including 1300 nm.

13. A method for making a flexographic printing precursor, consisting of:

forming a non-printing laser-engraveable layer directly on a substrate, the non-printing laser-engraveable layer having a dry thickness of at least 300 μm and up to and including 2,500 μm and comprising: (1) at least 40 weight % and up to and including 80 weight % of a first elastomer, (2) at least 5 weight % and up to and including 20 weight of a polymer that is nitrocellulose, a polymer comprising a triazene group, a glycidyl azide polymer, or a poly(vinyl nitrate), and (3) at least 5 weight % and up to and including 15 weight % of a first near-infrared radiation absorber, all amounts based on the total dry weight of the non-printing laser-engraveable layer, and

forming an outermost non-metallic printing laser-engraveable layer directly on the non-printing laser-engraveable layer, the outermost non-metallic, printing laser-engraveable layer having a dry thickness of at least 250 μm and up to and including 4,000 μm and comprising: (1) a second elastomer and (2) at least 1 weight % and up to and including 25 weight % of a second near-infrared radiation absorber, the amount based on the total dry weight of the outermost non-metallic printing laser-engraveable layer,

wherein the formed non-printing laser-engraveable layer is more sensitive to laser irradiation at a wavelength of at least 700 nm and up to and including 1300 nm than the formed outermost non-metallic printing laser-engraveable layer.

Assignments (12)
RELEASE OF SECURITY INTEREST IN INTELLECTUAL PROPERTY Recorded Jul 24, 2023
From: EASTMAN KODAK COMPANY
To: BANK OF AMERICA, N.A.
Reel/Frame 064364/0847 →
RELEASE OF SECURITY INTEREST Recorded Jan 24, 2020
From: BARCLAYS BANK PLC
To: EASTMAN KODAK COMPANY; FAR EAST DEVELOPMENT LTD.; FPC INC.; KODAK (NEAR EAST) INC.; KODAK AMERICAS LTD.; KODAK REALTY INC.; LASER PACIFIC MEDIA CORPORATION; QUALEX INC.; KODAK PHILIPPINES LTD.; NPEC INC.
Reel/Frame 052773/0001 →
RELEASE OF SECURITY INTEREST Recorded May 1, 2019
From: JPMORGAN CHASE BANK N.A.
To: EASTMAN KODAK COMPANY
Reel/Frame 049056/0265 →
RELEASE OF SECURITY INTEREST Recorded May 1, 2019
From: BANK OF AMERICA N.A., AS AGENT
To: EASTMAN KODAK COMPANY
Reel/Frame 049056/0377 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2019
From: EASTMAN KODAK COMPANY
To: MIRACLON CORPORATION
Reel/Frame 048857/0633 →
SECURITY INTEREST Recorded Jan 13, 2017
From: EASTMAN KODAK COMPANY
To: BANK OF AMERICA, N.A., AS AGENT
Reel/Frame 041042/0877 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Sep 5, 2013
From: CITICORP NORTH AMERICA, INC., AS SENIOR DIP AGENT; WILMINGTON TRUST, NATIONAL ASSOCIATION, AS JUNIOR DIP AGENT
To: EASTMAN KODAK COMPANY; PAKON, INC.
Reel/Frame 031157/0451 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT (FIRST LIEN) Recorded Sep 5, 2013
From: EASTMAN KODAK COMPANY; FAR EAST DEVELOPMENT LTD.; FPC INC.; KODAK (NEAR EAST), INC.; KODAK IMAGING NETWORK, INC.; KODAK PORTUGUESA LIMITED; KODAK REALTY, INC.; LASER-PACIFIC MEDIA CORPORATION; PAKON, INC.; QUALEX INC.; KODAK PHILIPPINES, LTD.; NPEC INC.; CREO MANUFACTURING AMERICA LLC; KODAK AVIATION LEASING LLC; KODAK AMERICAS, LTD.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE
Reel/Frame 031158/0001 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT (SECOND LIEN) Recorded Sep 5, 2013
From: EASTMAN KODAK COMPANY; FAR EAST DEVELOPMENT LTD.; FPC INC.; KODAK (NEAR EAST), INC.; KODAK AMERICAS, LTD.; KODAK IMAGING NETWORK, INC.; KODAK PORTUGUESA LIMITED; KODAK REALTY, INC.; LASER-PACIFIC MEDIA CORPORATION; PAKON, INC.; QUALEX INC.; KODAK PHILIPPINES, LTD.; NPEC INC.; CREO MANUFACTURING AMERICA LLC; KODAK AVIATION LEASING LLC
To: BARCLAYS BANK PLC, AS ADMINISTRATIVE AGENT
Reel/Frame 031159/0001 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT (ABL) Recorded Sep 5, 2013
From: EASTMAN KODAK COMPANY; FAR EAST DEVELOPMENT LTD.; FPC INC.; KODAK (NEAR EAST), INC.; KODAK AMERICAS, LTD.; KODAK IMAGING NETWORK, INC.; KODAK PORTUGUESA LIMITED; KODAK REALTY, INC.; LASER-PACIFIC MEDIA CORPORATION; PAKON, INC.; QUALEX INC.; KODAK PHILIPPINES, LTD.; NPEC INC.; CREO MANUFACTURING AMERICA LLC; KODAK AVIATION LEASING LLC
To: BANK OF AMERICA N.A., AS AGENT
Reel/Frame 031162/0117 →
PATENT SECURITY AGREEMENT Recorded Apr 1, 2013
From: EASTMAN KODAK COMPANY; PAKON, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 030122/0235 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2012
From: MELAMED, OPHIRA; MATZNER, EYNAT; BARSHISHAT, DANA
To: EASTMAN KODAK COMPANY
Reel/Frame 027677/0972 →
Continuity (1)
Related Publication 20130183502A1 · Jul 18, 2013