System for thermal development of flexographic printing plates
Abstract
The present invention is directed to a method and a system for forming a relief image on a photosensitive printing element. The system comprises an enclosure housing a conveyor and a heatable roller. The photosensitive printing element is positioned on a continuous loop of the conveyor and the heatable roller is urged towards the photosensitive printing element on the conveyor. An absorbent material is conducted over the heatable roller and is used to absorb at least a portion of the liquefied or softened material from the photosensitive printing element when the heatable roller is heated. The system also comprises ventilation means operatively connected to the enclosure for treating and recycling air containing contaminants that are released into the enclosure as the portion of the photosensitive material is heated and then softens. The ventilation means typically include a particulate filter and a bed of adsorbent material. The treated air may then be returned to the enclosure.
Claims
exact text as granted — not AI-modified1 - 25 . (canceled)
26 - 43 . (canceled)
44 . A system for forming a relief image on a photosensitive printing element, wherein the photosensitive printing element comprises a flexible substrate and at least one layer of photosensitive material on the flexible substrate, the system comprising:
an enclosure; a means of supporting the photosensitive printing element; a heatable element capable of being urged towards the photosensitive printing element, wherein an absorbent material is conducted over at least a portion of an outer surface of the heatable element, and wherein the absorbent material is capable of absorbing material that is liquefied or softened from the photosensitive printing element when the heatable element is heated and the absorbent material contacts at least a portion of the photosensitive printing element; means for causing the at least one layer of photosensitive material and the absorbent material to come into contact such that at least a portion of the liquefied or softened material is absorbed by the absorbent material and such that volatile organic compounds are released into the enclosure; and ventilation means operatively connected to the enclosure for removing air containing volatile organic compounds from the enclosure and passing said air through a treatment means. Wherein the treatment means comprises a particulate filter and a means for adsorbing volatile organic compounds.
45 . The system according to claim 44 further comprising delivery means for supplying the absorbent material to at least the portion of the outer surface of the heatable element.
46 . The system according to claim 44 , further comprising heating means for applying heat to the at least one layer of photosensitive material, wherein said heating means are positioned adjacent to a point where the absorbent material contacts the at least one layer of photosensitive material.
47 . The system according to claim 44 , further comprising means for controlling the temperature of the flow of air containing the volatile organic compounds introduced into the ventilation means from the enclosure.
48 . The system according to claim 44 , wherein the means for adsorbing volatile organic compounds comprises a bed of adsorbent material and the flow of air containing the volatile organic compounds is passed over the bed of adsorbent material.
49 . The system according to claim 48 , wherein the adsorbent material is selected from the group consisting of activated carbon, charcoal, alumina, zeolites, and combinations of the foregoing.
50 . The system according to claim 44 , wherein the particulate filter is high efficiency particulate air filter.
51 . The system according to claim 47 , wherein the means for controlling the temperature of the flow of air in the ventilation means comprises a heat exchanger or a heat pump.
52 . The system according to claim 44 , further comprising heating means for applying heat to the at least one layer of photosensitive material, wherein said heating means are positioned adjacent to a point where the adsorbent material contacts the at least one layer of photosensitive material.
53 . A method of forming a relief image on a photosensitive printing element, wherein the photosensitive printing element comprises a flexible substrate and at least one layer of photosensitive material on the flexible substrate, the method comprising the steps of:
providing an enclosure; positioning a photosensitive printing element on a support; supplying an adsorbent material to at least a portion of an outer surface of a heatable element, said heatable element being mounted in the enclosure, wherein the adsorbent material absorbs material that is liquefied or softened from the photosensitive printing element when the heatable element is heated and the adsorbent material contacts at least a portion of the photosensitive printing element; causing the surface of the at least one layer of photosensitive material and the absorbent material to come into contact such that at least a portion of the liquefied or softened material is absorbed by the absorbent material and volatile organic compounds are released into the air in the enclosure; and removing air from the enclosure, and pumping said air through a treatment means comprising a particulate filter and a means for adsorbing volatile organic compounds.
54 . The method according to claim 53 , further comprising the step of applying heat to the at least one layer of photosensitive material by positioning a heater adjacent to a point where the absorbent material contacts the at least one layer of photosensitive material.
55 . The method according to claim 53 , further comprising the step of controlling the temperature of the air being pumped through the treatment means.
56 . The method according to claim 53 , wherein the volatile organic compounds are removed from air being pumped through the treatment means by passing the air containing the volatile organic compound over a bed of adsorbent material.
57 . The method according to claim 56 , wherein the adsorbent material is selected from the group consisting of activated carbon, alumina, zeolites, and combinations of the foregoing.
58 . The method according to claim 53 , wherein the particulate filter comprises a high efficiency particulate air filter.
59 . The method according to claim 53 , further comprising the step of applying heat to the at least one layer of photosensitive material by positioning a heater adjacent to a point where the absorbent material contacts the at least one layer of photosensitive material.Join the waitlist — get patent alerts
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