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    • 3. 发明授权
    • Thermally imageable elements and processes for their use
    • 可热成像元件及其使用过程
    • US06759368B2
    • 2004-07-06
    • US10610415
    • 2003-06-30
    • Mark LelentalHenry J. GyslingDavid F. Jennings
    • Mark LelentalHenry J. GyslingDavid F. Jennings
    • B41M520
    • B41M5/32B41M5/30
    • A thermally imageable element can be imaged using heat alone without the need for photosensitivity or post-imaging processing. The element contains image-forming chemistry that comprises i) image precursor chemistry and ii) a catalyst or a catalyst precursor that upon imagewise heating is capable of promoting thermally induced image formation with the image precursor chemistry. The image-forming chemistry i) and ii) components are in reactive association and uniformly dispersed or dissolved within a binder in one or more layers of the element. Thus, the element is capable of being thermally addressed to provide a visible image as a result of thermally induced catalytic transformation of the image-forming chemistry.
    • 可热成像元件可以使用加热单独成像,而不需要光敏性或后成像处理。 该元件包含图像形成化学,其包括i)图像前体化学和ii)在图像加热时能够促进图像前体化学物质的热诱导图像形成的催化剂或催化剂前体。 图像形成化学i)和ii)组分是反应性缔合的,并且均匀分散或溶解在该元素的一个或多个层中的粘合剂中。 因此,作为图像形成化学品的热诱导催化转化的结果,该元件能够被热寻址以提供可视图像。
    • 9. 发明授权
    • Contact film for use in graphic arts with two overcoat layers
    • 接触膜用于具有两个外罩层的图形艺术
    • US5061595A
    • 1991-10-29
    • US590707
    • 1990-09-24
    • Anthony D. GingelloDavid F. JenningsRichard D. LucitteHermano P. Rocha
    • Anthony D. GingelloDavid F. JenningsRichard D. LucitteHermano P. Rocha
    • G03C1/95G03F1/54
    • G03F1/54G03C1/95Y10S430/151Y10S430/162
    • A high-contrast room-light-handleable black-and-white silver halide photographic film especially adapted for use as a dry-dot-etchable contact film in the graphic arts is comprised of a support having in order on one side thereof (1) a radiation-sensitive layer comprising silver halide grains, a hydrophilic colloid and a polymer latex, (2) an interlayer comprising a hydrophilic colloid and a polymer latex, and (3) an overcoat layer comprising a hydrophilic colloid, a matting agent and a light-scattering agent, wherein the interlayer has a refracive index in the range of from about 1.4 to about 1.7 and a thickness which is in the range of from about 0.5 to about 5 microns and is at least twice that of the overcoat layer. The combination of the light-scattering agent in the overcoat layer and the thick interlayer facilitates optical spreading of the image during contact exposure, and thereby enhances the performance of the contact film in use with multi-layer originals and in processes of dry dot etching.
    • 特别适合用作图形领域中的干点蚀刻接触膜的高对比度室内光可处理的黑白卤化银摄影胶片由在其一侧依次具有的支撑件(1) 包含卤化银颗粒的辐射敏感层,亲水胶体和聚合物胶乳,(2)包含亲水胶体和聚合物胶乳的中间层,和(3)包含亲水胶体,消光剂和光的外涂层 - 其中所述中间层的折射率在约1.4至约1.7的范围内,厚度在约0.5至约5微米的范围内,且至少为外涂层的两倍。 外涂层和厚中间层之间的光散射剂的组合促进了接触曝光期间的图像的光散射,从而提高了使用多层原稿的接触膜的性能和干点蚀刻的工艺。
    • 10. 发明授权
    • Thermographic imaging elements and processes for their use
    • 热成像元件及其使用方法
    • US06635601B2
    • 2003-10-21
    • US10210762
    • 2002-08-01
    • Mark LelentalHenry J. GyslingDavid F. Jennings
    • Mark LelentalHenry J. GyslingDavid F. Jennings
    • B41M530
    • B41M5/32B41M5/30
    • A thermally imageable element can be imaged using heat alone without the need for photosensitivity or post-imaging processing. The element contains image-forming chemistry that comprises i) image precursor chemistry and ii) a catalyst or a catalyst precursor that upon imagewise heating is capable of promoting thermally induced image formation with the image precursor chemistry. The image-forming chemistry i) and ii) components are in reactive association and uniformly dispersed or dissolved within a binder in one or more layers of the element. Thus, the element is capable of being thermally addressed to provide a visible image as a result of thermally induced catalytic transformation of the image-forming chemistry.
    • 可热成像元件可以使用加热单独成像,而不需要光敏性或后成像处理。 该元件包含图像形成化学,其包括i)图像前体化学和ii)在图像加热时能够促进图像前体化学物质的热诱导图像形成的催化剂或催化剂前体。 图像形成化学i)和ii)组分是反应性缔合的,并且均匀分散或溶解在该元素的一个或多个层中的粘合剂中。 因此,作为图像形成化学品的热诱导催化转化的结果,该元件能够被热寻址以提供可视图像。