IP Library Granted Patent US 12,619,153
Granted Patent B2
US 12,619,153 · App. 18/739,411 · Granted May 5, 2026

Thermal processor and method for using the same

Inventor: Tyler Hatmaker (Dallas, GA)
Assignee: MacDermid Graphics Solutions, LLC
G03F7/36B41C1/18
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Quick Facts
Patent No.
US 12,619,153
App. No.
18/739,411
Granted
May 5, 2026
Kind
B2
Abstract

A thermal development apparatus for forming a relief structure on a photosensitive printing element. The apparatus comprises conveying means upon which the photosensitive printing element is securable, (b) a heatable roller mounted in the enclosure, wherein the heatable roller is heated to and maintained at an operating temperature at which the uncured portions of photosensitive material begins to liquefy or soften; (c) an absorbent material covering at least a portion of the heatable roller that is capable of absorbing liquefied or softened uncured portions of photosensitive material from the photosensitive printing element when the photosensitive printing element comes into contact with the absorbent material on the portion of the heatable roller; and (d) an auxiliary heating zone arranged relative to the conveying means that is configured to heat the photosensitive printing element from a first temperature at a location at which the photosensitive printing element enters or re-enters the thermal development apparatus to the operating temperature of the heatable roller.

Claims (38)

1 . A thermal development apparatus for forming a relief structure on a photosensitive printing element, wherein the photosensitive printing element comprises a flexible substrate and at least one layer of photosensitive material comprising cured portions of photosensitive material and uncured portions of photosensitive material on the flexible substrate, the apparatus comprising:

a) an enclosure;

b) conveying means upon which the photosensitive printing element is securable, wherein the conveying means comprises a conveyor supported by at least a first roller and a second roller, wherein the first roller is arranged adjacent to a position at which the photosensitive printing element is brought into contact with a web of absorbent material and the second roller is positioned at a distance from the first roller;

c) a heatable roller mounted in the enclosure, wherein the heatable roller is heated to and maintained at an operating temperature at which the uncured portions of photosensitive material begins to liquefy or soften;

d) an absorbent material covering at least a portion of the heatable roller, wherein the absorbent material is capable of absorbing liquefied or softened uncured portions of photosensitive material from the photosensitive printing element when the photosensitive printing element comes into contact with the absorbent material on the portion of the heatable roller;

e) an auxiliary heating zone arranged relative to the conveying means, wherein the auxiliary heating zone is configured to heat the photosensitive printing element from a first temperature at a location at which the photosensitive printing element enters or re-enters the thermal development apparatus to the operating temperature of the heatable roller; and

f) an external heating means for applying heat to the photosensitive printing element on the conveying means.

2 . The thermal development apparatus according to claim 1 , wherein the auxiliary heating zone comprises one or more plate heaters and or blowers mounted relative to the conveying means.

3 . The apparatus according to claim 2 , wherein the one or more plate heaters are infrared heaters.

4 . The apparatus according to claim 2 , wherein the one or more plate heaters are positioned at a distance from a top surface of the photosensitive printing element.

5 . The apparatus according to claim 4 , wherein the distance from the top surface of the photosensitive printing element is adjustable, whereby the intensity of the one or more plate heaters is controlled.

6 . The apparatus according to claim 2 , wherein the one or more plate heaters are arranged in a rail system that permits vertical movement and/or horizontal movement, wherein the one or more plate heaters traverse across the width of the photosensitive printing element and/or to adjust the distance or location of the one or more plate heaters relative to the surface of the photosensitive printing element.

7 . The apparatus according to claim 3 , wherein the one or more plate heaters comprise at least two plate heaters, wherein the at least two plate heaters are used in series.

8 . The apparatus according to claim 7 , wherein the at least two plate heaters comprise infrared plate heaters that operate at different wavelength outputs.

9 . The apparatus according to claim 1 , comprising a control system coupled to the thermal development apparatus, wherein the control system comprises one or more temperature sensors.

10 . The apparatus according to claim 9 , wherein at least one of the one or more temperature sensors measure a temperature of the photosensitive printing element.

11 . The apparatus according to claim 1 , comprising a cooling system positioned below the continuous loop of the conveying means, wherein the cooling system controls a temperature of the flexible substrate.

12 . The apparatus according to claim 11 , wherein the cooling system comprises a thermoelectric cooler, wherein the thermoelectric cooler is connected to the control system.

13 . The apparatus according to claim 1 , further comprising blowers, wherein the blowers directed heated air towards a surface of the photosensitive printing element.

14 . The apparatus according to claim 1 , wherein said heating means are positioned adjacent to a point where the absorbent material contacts the photosensitive printing element on the conveying means.

15 . A method of thermally developing a photopolymer relief image printing element, wherein the photosensitive printing element comprises a flexible substrate and at least one layer of photosensitive material comprising cured portions of photosensitive material and uncured portions of photosensitive material on the flexible substrate, the method comprising the steps of:

a. securing a photosensitive printing element to a conveying means, wherein the conveying means comprises a conveyor supported by at least a first roller and a second roller, wherein the first roller is adjacent to a position at which the photosensitive printing element is brought into contact with a web of absorbent material and the second roller is positioned at a distance from the first roller;

b. heating the photosensitive printing element from a first temperature to an operating temperature of a heatable roller in an auxiliary heating zone, where the auxiliary heating zone is configured to heat the photosensitive printing element from a first temperature to the operating temperature of the heatable roller, and wherein the operating temperature of the heatable roller is a temperature sufficient to cause at least a portion of the photosensitive printing element to soften or liquefy when an absorbent material is brought into contact with the at least one layer of photosensitive material;

c. applying heat to the photosensitive printing element on the conveyor from an external heater positioned adjacent to a point where the absorbent material contacts the photosensitive printing element on the conveyor;

d. supplying an absorbent material to at least a portion of an outer surface of the heatable roller, said heatable roller being mounted for rotation in the frame, wherein the absorbent material is capable of absorbing material that is liquefied or softened from the photosensitive printing element when the heatable roller is heated and the absorbent material contacts at least a portion of the photosensitive printing element; and

e. causing the photosensitive material and the absorbent printing element to come into contact at a point between the conveyor and the heatable roller such that at least a portion of the liquefied or softened material is absorbed by the absorbent material.

16 . The method according to claim 15 , wherein the first temperature is less than about 50° C. and the operating temperature is greater than about 100° C.

17 . The method according to claim 15 , wherein the auxiliary heating zone comprises one or more plate heaters and/or one or more blowers.

18 . The method according to claim 17 , wherein the one or more plate heaters and/or blowers are arranged in a rail system that permits vertical movement and/or horizontal movement, the method further comprising the step of traversing the one or more plate heaters and/or blowers across the width of the relief image printing element and/or adjusting a distance or a location of the one or more plate heaters and/or blowers relative to the surface of the photosensitive printing element.

19 . The method according to claim 15 , further comprising a step of controlling a temperature of the flexible substrate, wherein a cooling system is positioned below the continuous loop of the conveying means to cool the backside of the photosensitive printing element.

20 . The method according to claim 19 , wherein the cooling system comprises a thermoelectric cooler, wherein the thermoelectric cooler is connected to the control system.

21 . A thermal development apparatus for forming a relief structure on a photosensitive printing element, wherein the photosensitive printing element comprises a flexible substrate and at least one layer of photosensitive material comprising cured portions of photosensitive material and uncured portions of photosensitive material on the flexible substrate, the apparatus comprising:

a. an enclosure;

b. conveying means upon which the photosensitive printing element is securable, wherein the conveying means comprises a conveyor supported by at least a first roller and a second roller, wherein the first roller is arranged adjacent to a position at which the photosensitive printing element is brought into contact with a web of absorbent material and the second roller is positioned at a distance from the first roller;

c. a heatable roller mounted in the enclosure, wherein the heatable roller is heated to and maintained at an operating temperature at which the uncured portions of photosensitive material begins to liquefy or soften;

d. an absorbent material covering at least a portion of the heatable roller, wherein the absorbent material is capable of absorbing liquefied or softened uncured portions of photosensitive material from the photosensitive printing element when the photosensitive printing element comes into contact with the absorbent material on the portion of the heatable roller;

e. an auxiliary heating zone arranged relative to the conveying means, wherein the auxiliary heating zone is configured to heat the photosensitive printing element from a first temperature at a location at which the photosensitive printing element enters or re-enters the thermal development apparatus to the operating temperature of the heatable roller; and

f. a cooling system positioned below the continuous loop of the conveying means, wherein the cooling system controls a temperature of the flexible substrate.

Assignments (3)
CHANGE OF NAME Recorded Apr 3, 2026
From: MACDERMID GRAPHICS SOLUTIONS, LLC
To: XSYS FLEXO US LLC
Reel/Frame 075338/0889 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2025
From: HATMAKER, TYLER
To: MACDERMID GRAPHICS SOLUTIONS, LLC
Reel/Frame 071420/0374 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2024
From: HATMAKER, TYLER
To: MACDERMID GRAPHICS SOLUTIONS, LLC
Reel/Frame 067683/0361 →
Continuity (1)
Related Publication 20250377599A1 · Dec 11, 2025
References Cited (37)
US 3264103A · Bernard et al. · 1966 [cited by applicant]
US 5175072A · Martens · 1992 [cited by applicant]
US 5262275A · Fan · 1993 [cited by applicant]
US 5279697A · Peterson et al. · 1994 [cited by applicant]
US 5925500A · Yang et al. · 1999 [cited by applicant]
US 6238837B1 · Fan · 2001 [cited by applicant]
US 6605410B2 · Yang et al. · 2003 [cited by applicant]
US 7044055B2 · Gotsick et al. · 2006 [cited by applicant]
US 7358026B2 · Dudek et al. · 2008 [cited by applicant]
US 7422840B2 · Dudek et al. · 2008 [cited by applicant]
US 7491003B2 · Hackler et al. · 2009 [cited by applicant]
US 7503258B2 · McMillen et al. · 2009 [cited by applicant]
US 8198012B2 · Zwadlo et al. · 2012 [cited by applicant]
US 8359975B2 · McMillen et al. · 2013 [cited by applicant]
US 8464637B2 · Hackler et al. · 2013 [cited by applicant]
US 8492073B2 · Armstrong et al. · 2013 [cited by applicant]
US 8573120B1 · Hackler et al. · 2013 [cited by applicant]
US 8800446B2 · Luetke et al. · 2014 [cited by applicant]
US 8895228B2 · Arnold et al. · 2014 [cited by applicant]
US 8899148B2 · Rudolph · 2014 [cited by applicant]
US 8920692B2 · Landry-Coltrain et al. · 2014 [cited by applicant]
US 8985020B2 · Arnold et al. · 2015 [cited by applicant]
US 9032877B2 · Arnold · 2015 [cited by applicant]
US 9057958B2 · Armstrong et al. · 2015 [cited by applicant]
US 9069252B2 · Schieffer, Jr. et al. · 2015 [cited by applicant]
US 9069255B2 · Hennessy et al. · 2015 [cited by applicant]
US 9291906B2 · Arnold · 2016 [cited by applicant]
US 9671695B2 · Fronczkiewicz et al. · 2017 [cited by applicant]
US 9889640B2 · Boyksen · 2018 [cited by applicant]
US 10112381B2 · Schadebrodt et al. · 2018 [cited by applicant]
US 10175580B2 · Fronczkiewicz et al. · 2019 [cited by applicant]
US 11718085B2 · Fronczkiewicz et al. · 2023 [cited by applicant]
US 20030180655A1 · Fan et al. · 2003 [cited by applicant]
US 20030211423A1 · Mengel et al. · 2003 [cited by applicant]
US 20070084368A1 · Vest · 2007 [cited by examiner]
EP 4506761A2 · 2025 [cited by examiner]
WO 2001018604A2 · 2001 [cited by applicant]