Lithographic imaging and printing without defects of electrostatic origin
Embodiments of the present invention involve three-layer printing members having a central layer that is non-conductive yet abalatable at commercially realistic fluence levels. In various embodiments, the central layer is polymeric with a dispersion of nonconductive carbon black particles therein at a loading level sufficient to provide at least partial layer ablatability and water compatibility of the resulting ablation debris.
1. A method of imaging a lithographic printing member, the method comprising the steps of:
(a) providing a lithographic printing member comprising (i) a first layer presenting a hydrophilic or oleophobic lithographic affinity, (ii) a second layer comprising a polymeric matrix and, dispersed therein, nonconductive carbon black particles at a loading level sufficient to provide at least partial layer ablatability, and (iii) a third layer presenting an oleophilic lithographic affinity, the second layer being disposed between the first and third layers;
(b) exposing the printing member to imaging radiation in an imagewise pattern so as to at least partially ablate the second layer where exposed and thereby de-anchor the first layer therefrom; and
(c) subjecting the printing member to an aqueous liquid to remove imaged portions of the second layer, thereby creating an imagewise lithographic pattern on the printing member.
2. The method of claim 1 wherein the aqueous liquid consists essentially of water.
3. The method of claim 2 wherein the aqueous liquid is plain tap water.
4. The method of claim 1 wherein the aqueous liquid comprises water and not more than 20% by weight of an organic solvent.
5. The method of claim 4 wherein the aqueous liquid comprises not more than 15% by weight of an organic solvent.
6. The method of claim 4 wherein the solvent is an alcohol.
7. The method of claim 6 wherein the alcohol is a glycol.
8. The method of claim 6 wherein the alcohol is at least one of propylene glycol, benzyl alcohol or phenoxyethanol.
9. The method of claim 1 wherein the aqueous liquid comprises a surfactant.
10. The method of claim 1 wherein the aqueous liquid is heated to a temperature greater than about 80° F.
11. A method of lithographic printing, the method comprising the steps of:
(a) providing a lithographic printing member comprising (i) a first layer presenting an oleophobic lithographic affinity, (ii) a second layer comprising a polymeric matrix and, dispersed therein, nonconductive carbon black particles at a loading level sufficient to provide at least partial layer ablatability, and (iii) a third layer presenting an oleophilic lithographic affinity, the second layer being disposed between the first and third layers;
(b) exposing the printing member to imaging radiation in an imagewise pattern so as to at least partially ablate the second layer where exposed and thereby de-anchor the first layer therefrom;
(c) subjecting the printing member to an aqueous liquid to remove imaged portions of the second layer, thereby creating an imagewise lithographic pattern on the printing member;
(d) following the removal step, applying ink to the printing member, the ink adhering only to imaged portions of the printing member; and
(e) transferring the applied ink from the printing member to a recording medium, wherein the applying and transferring step occur without deleterious buildup of triboelectric charge.