Claims
- 1. An image receiving element, for use in non-impact printing, comprising a support and an image receiving layer thereon containing an hydrophilic binder, TiO.sub.2 particles with average particle size between 0.1 .mu.m and 1 .mu.m, a matting agent and wherein said layer is cross-linked with an element selected from the group of hydrolyzed tetramethyl silicate and hydrolyzed tetraethylsilicate, wherein said TiO.sub.2 particles and said hydrophilic binder are present in a ratio TiO.sub.2 /binder between 2.0 and 20, and wherein said image receiving layer has an average surface roughness R.sub.a and a maximum roughness R.sub.t such that R.sub.a /R.sub.t .gtoreq.0.080.
- 2. A image receiving element according to claim 1, wherein said image receiving layer has an average surface roughness R.sub.a such that R.sub.a .gtoreq.1 .mu.m and a maximum roughness R.sub.t such that R.sub.a /R.sub.t .gtoreq.0.10.
- 3. A image receiving element according to claim 1, wherein said image receiving layer further has a kinetic friction coefficient .mu..sub.k against rubber with Shore Hardness 70, such that .mu..sub.k .gtoreq.0.85.
- 4. An image receiving element according to claim 2, wherein said image receiving layer further has a kinetic friction coefficient .mu..sub.k against rubber with Shore Hardness 70, such that .mu..sub.k .gtoreq.0.85.
- 5. An image receiving element according to claim 1, wherein said matting agent is present in an amount between 0.1 g/m.sup.2 and 0.35 g/m.sup.2, both limits included.
- 6. An image receiving element according to claim 1, wherein said matting agent is an amorphous SiO.sub.2.
- 7. An image receiving element according to claim 6, wherein said amorphous SiO.sub.2 has an average particle size d.sub.v50 such that 7 .mu.m.ltoreq.d.sub.v50 .ltoreq.14 .mu.m.
- 8.
- 8. A method for producing lithographic printing plates by non-contact printing means comprising the steps of:
- i) creating an electrostatic latent image on a latent image bearing element and developing it with dry toner particles thus creating a toner image,
- ii) transferring said toner image to an image receiving element comprising a support and an image receiving layer thereon containing an hydrophilic binder, TiO.sub.2 particles with average particle size between 0.1 .mu.m and 1 .mu.m, a matting agent and wherein said layer is cross-linked with an element selected from the group of hydrolysed tetramethyl silicate and hydrolysed tetraethylsilicate and wherein said TiO.sub.2 particles and said hydrophilic binder are present in a ratio TiO.sub.2 /binder between 2.0 and 20, and
- iii) fixing said toner image on said image receiving layer, thus creating an image on a background, said image and said background having a different affinity for lithographic printing ink.
- 9. A method according to claim 8, wherein said image receiving layer has an average surface roughness R.sub.a such that R.sub.a .gtoreq.1 .mu.m and a maximum roughness R.sub.t such that R.sub.a /R.sub.t .gtoreq.0.10.
- 10. A method for producing lithographic printing plates by non-contact printing means comprising the steps of:
- i) creating a flow of toner particles from a means for delivering toner particles to an image receiving element comprising a support and an image receiving layer thereon containing an hydrophilic binder, TiO.sub.2 particles with average particle size between 0.1 .mu.m and 1 .mu.m, a matting agent and wherein said layer is cross-linked with an element selected from the group of hydrolysed tetramethyl silicate and hydrolysed tetraethylsilicate and wherein said TiO.sub.2 particles and said hydrophilic binder are present in a ratio TiO.sub.2 /binder between 2.0 and 20,
- ii) forming a toner image by image-wise depositing toner particles to said image receiving element through operation of a printhead structure that is coupled to means for image-wise modulating said flow of toner particles and that is interposed between said means for delivering toner particles and said image receiving element, and
- iii) fixing said toner image on said image receiving layer, thus creating an image on a background, said image and said background having a different affinity for lithographic printing ink.
- 11. A method according to claim 10, wherein said image receiving layer has an average surface roughness R.sub.a such that R.sub.a .gtoreq.1 .mu.m and a maximum roughness R.sub.t such that R.sub.a /R.sub.t .gtoreq.0.10.
Priority Claims (1)
Number |
Date |
Country |
Kind |
97200854 |
Mar 1997 |
EPX |
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Parent Case Info
This application claims the benefit of U.S. Provisional Application Serial No. 60/045,090 filed Apr. 29, 1997.
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