Drying ink in digital printing using infrared radiation

    公开(公告)号:US12214588B2

    公开(公告)日:2025-02-04

    申请号:US18482918

    申请日:2023-10-09

    Abstract: A system includes (a) an image forming station including multiple print bars arranged along an axis and configured to apply to a substrate being moved along the axis, droplets of printing fluids having multiple colors, respectively, and (b) multiple dryers, which are mounted on the image forming station, and are interleaved with the multiple print bars along the axis, the multiple dryers are configured to dry the droplets applied to the substrate for forming an image on the substrate, at least a dryer among the dryers includes: (i) an illumination assembly, which is configured to dry the droplets by directing the optical radiation to impinge on the substrate, and (ii) a temperature control assembly, which is configured to control a temperature of the substrate by directing a gas to the substrate, the illumination assembly and the temperature control assembly are packaged together in a housing.

    Drying ink in digital printing using infrared radiation

    公开(公告)号:US11833813B2

    公开(公告)日:2023-12-05

    申请号:US17773609

    申请日:2020-11-10

    CPC classification number: B41J2/0057 B41J11/00216 B41M5/0256

    Abstract: A system (10, 110) includes: (i) a flexible intermediate transfer member (ITM) (44, 500, 600), including: a stack of: In (a) a first layer (602), located at an outer surface of the ITM (44, 500, 600), configured to receive ink droplets to form an ink image thereon, and to transfer the ink image to a target substrate (50, 51), and (b) a second layer (603) including a matrix holding particles (622), configured to receive optical radiation (99) passing through the first layer (602), and to heat the ITM (44, 500, 600) by absorbing the optical radiation (99); (ii) an illumination assembly (113), configured to dry the ink droplets by directing the optical radiation (99) to impinge on the particles (622); and (iii) a temperature control assembly (121), configured to control a temperature of the ITM (44, 500, 600) by directing a gas (101) to the ITM (44, 500, 600).

    Drying ink in digital printing using infrared radiation

    公开(公告)号:US20240083164A1

    公开(公告)日:2024-03-14

    申请号:US18482918

    申请日:2023-10-09

    CPC classification number: B41J2/0057 B41J11/00216 B41M5/0256

    Abstract: A system includes (a) an image forming station including multiple print bars arranged along an axis and configured to apply to a substrate being moved along the axis, droplets of printing fluids having multiple colors, respectively, and (b) multiple dryers, which are mounted on the image forming station, and are interleaved with the multiple print bars along the axis, the multiple dryers are configured to dry the droplets applied to the substrate for forming an image on the substrate, at least a dryer among the dryers includes: (i) an illumination assembly, which is configured to dry the droplets by directing the optical radiation to impinge on the substrate, and (ii) a temperature control assembly, which is configured to control a temperature of the substrate by directing a gas to the substrate, the illumination assembly and the temperature control assembly are packaged together in a housing.

    Drying ink in digital printing using infrared radiation

    公开(公告)号:US20220379598A1

    公开(公告)日:2022-12-01

    申请号:US17773609

    申请日:2020-11-10

    Abstract: A system (10, 110) includes: (i) a flexible intermediate transfer member (ITM) (44, 500, 600), including: a stack of: In (a) a first layer (602), located at an outer surface of the ITM (44, 500, 600), configured to receive ink droplets to form an ink image thereon, and to transfer the ink image to a target substrate (50, 51), and (b) a second layer (603) including a matrix holding particles (622), configured to receive optical radiation (99) passing through the first layer (602), and to heat the ITM (44, 500, 600) by absorbing the optical radiation (99); (ii) an illumination assembly (113), configured to dry the ink droplets by directing the optical radiation (99) to impinge on the particles (622); and (iii) a temperature control assembly (121), configured to control a temperature of the ITM (44, 500, 600) by directing a gas (101) to the ITM (44, 500, 600).

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