Flexographic printing precursors and methods of making
A mixture of an elastomer, carbon black, and inorganic fillers provides a highly useful laser-ablatable flexographic printing plate precursor formulation. This formulation is sensitive to infrared radiation. Both flexographic printing plates and printing sleeves can be made using the mixture.
1. A flexographic printing plate precursor or a flexographic printing sleeve precursor, comprising an infrared radiation ablatable layer comprising an elastomer, a carbon black in an amount of at least 1 weight % to and including 20 weight % and an inorganic filler, wherein the weight ratio of the carbon black to the inorganic filler is from 1:20 to and including 1:5, all based on the total dry weight of the infrared radiation ablatable layer,
wherein the infrared radiation ablatable layer comprises a mixture of a high molecular weight ethylene-propylene-diene terpolymer (EPDM) and a low molecular weight ethylene-propylene-diene terpolymer (EPDM), and the high molecular weight EPDM has a molecular weight of from about 250,000 to about 500,000, and the low molecular weight EPDM has a molecular weight of from about 2,000 to about 8,000.
2. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , wherein the infrared radiation ablatable layer further comprises microcapsules.
3. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , wherein the infrared radiation ablatable layer comprises the carbon black in an amount of at least 2 weight % and to and including 10 weight %, based on the total dry weight of the infrared radiation ablatable layer.
4. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , wherein the infrared radiation ablatable layer comprises an inorganic filler in an amount of at least 10 weight % to and including 35 weight %, based on the total dry weight of the infrared radiation ablatable layer.
5. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , wherein the infrared radiation ablatable layer further comprises a vulcanizer in an amount of at least 0.5 weight %, based on the total dry weight of the infrared radiation ablatable layer.
6. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , further comprising a fabric support upon which the infrared radiation ablatable layer is disposed.
7. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 6 , wherein the fabric support is disposed on a polyester support.
8. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , wherein the inorganic fillers are chosen from silica, calcium carbonate, barium sulfate, kaolin, bentonite, zinc oxide, mica, and titanium dioxide.
9. The flexographic printing plate precursor or flexographic printing sleeve precursor of claim 1 , wherein the infrared radiation ablatable layer comprises the high molecular weight EPDM in an amount of at least 15 weight % and up to and including 70 weight % based on the total dry weight of the infrared radiation ablatable layer.