MICRO-LENS ENHANCED ELEMENT
    1.
    发明申请
    MICRO-LENS ENHANCED ELEMENT 有权
    微透镜增强元件

    公开(公告)号:US20100246019A1

    公开(公告)日:2010-09-30

    申请号:US12414738

    申请日:2009-03-31

    IPC分类号: G02B27/10

    摘要: A micro-lens enhanced element comprises a substrate bearing sequences of printed image elements, each sequence containing image elements front more than one image. A transparent spacer layer is coated over the interlaced image strips. Lenticular lenses are fashioned over each sequence of image elements by deposition of a transparent layer of low surface energy polydimethyl siloxane based material and ablation of the same to create strips of material abhesive to a polymeric lens forming material between consecutive sequences of printed image elements. During deposition of a liquid lens forming material, the liquid withdraws from the liquid abhesive low surface energy strips to form a meniscus, thereby providing lenticular lenses. The transparent low surface energy material comprises a near infrared dye with low absorption in the visible range of the spectrum to render the material both transparent and ablateable by infrared laser.

    摘要翻译: 微透镜增强元件包括承载印刷图像元素序列的基底,每个序列包含前面多于一个图像的图像元素。 透明间隔层涂覆在隔行图像条上。 通过沉积低表面能聚二甲基硅氧烷基材料的透明层并消除其形成了在每个图像元件序列上的透镜,以在连续的印刷图像元件序列之间形成与形成聚合物透镜的材料粘合的条带。 在液体透镜形成材料的沉积期间,液体从液体粘合的低表面能量带中退出以形成弯月面,由此提供双凸透镜。 透明的低表面能材料包括在光谱的可见范围内具有低吸收的近红外染料,以使材料透明和可被红外激光烧蚀。

    Micro-lens enhanced element
    2.
    发明授权
    Micro-lens enhanced element 有权
    微透镜增强元件

    公开(公告)号:US08203790B2

    公开(公告)日:2012-06-19

    申请号:US12416180

    申请日:2009-04-01

    IPC分类号: G02B27/10 G03B21/60

    摘要: A micro-lens enhanced element comprises a substrate bearing sequences of printed image elements, each sequence containing image elements from more than one image. A transparent spacer layer is coated over the interlaced image strips. Lenticular lenses are fashioned over each sequence of image elements by deposition of a transparent layer of low surface energy polydimethyl siloxane based material and ablation of the same to create strips of material abhesive to a polymeric lens forming material between consecutive sequences of printed image elements. During deposition of a liquid lens forming material, the liquid withdraws from the liquid abhesive low surface energy strips to form a meniscus, thereby providing lenticular lenses. The transparent low surface energy material comprises a near infrared dye with low absorption in the visible range of the spectrum to render the material both transparent and ablateable by infrared laser.

    摘要翻译: 微透镜增强元件包括承载印刷图像元素序列的基底,每个序列包含来自多于一个图像的图像元素。 透明间隔层涂覆在隔行图像条上。 通过沉积低表面能聚二甲基硅氧烷基材料的透明层并消除其形成了在每个图像元件序列上的透镜,以在连续的印刷图像元件序列之间形成与形成聚合物透镜的材料粘合的条带。 在液体透镜形成材料的沉积期间,液体从液体粘合的低表面能量带中退出以形成弯月面,由此提供双凸透镜。 透明的低表面能材料包括在光谱的可见范围内具有低吸收的近红外染料,以使材料透明和可被红外激光烧蚀。

    Micro-lens enhanced element
    3.
    发明授权
    Micro-lens enhanced element 有权
    微透镜增强元件

    公开(公告)号:US07813044B1

    公开(公告)日:2010-10-12

    申请号:US12414738

    申请日:2009-03-31

    IPC分类号: G02B27/10

    摘要: A micro-lens enhanced element comprises a substrate bearing sequences of printed image elements, each sequence containing image elements from more than one image. A transparent spacer layer is coated over the interlaced image strips. Lenticular lenses are fashioned over each sequence of image elements by deposition of a transparent layer of low surface energy polydimethyl siloxane based material and ablation of the same to create strips of material adhesive to a polymeric lens forming material between consecutive sequences of printed image elements. During deposition of a liquid lens forming material, the liquid withdraws from the liquid adhesive low surface energy strips to form a meniscus, thereby providing lenticular lenses. The transparent low surface energy material comprises a near infrared dye with low absorption in the visible range of the spectrum to render the material both transparent and ablateable by infrared laser.

    摘要翻译: 微透镜增强元件包括承载印刷图像元素序列的基底,每个序列包含来自多于一个图像的图像元素。 透明间隔层涂覆在隔行图像条上。 通过沉积低表面能聚二甲基硅氧烷基材料的透明层和其消融来在每个图像元件序列上形成透镜,以在连续的印刷图像元件序列之间形成材料粘合剂到形成材料的聚合物透镜。 在液体透镜形成材料的沉积期间,液体从液体粘合剂低表面能带中退出以形成弯液面,由此提供双凸透镜。 透明的低表面能材料包括在光谱的可见范围内具有低吸收的近红外染料,以使材料透明和可被红外激光烧蚀。

    MICRO-LENS ENHANCED ELEMENT
    4.
    发明申请
    MICRO-LENS ENHANCED ELEMENT 审中-公开
    微透镜增强元件

    公开(公告)号:US20100255214A1

    公开(公告)日:2010-10-07

    申请号:US12416177

    申请日:2009-04-01

    IPC分类号: B05D3/06 B05C9/08

    摘要: A micro-lens enhanced element comprises a substrate bearing sequences of printed image elements, each sequence containing image elements from more than one image. A transparent spacer layer is coated over the interlaced image strips. Lenticular lenses are fashioned over each sequence of image elements by deposition of a transparent layer of low surface energy polydimethyl siloxane based material and ablation of the same to create strips of material adhesive to a polymeric lens forming material between consecutive sequences of printed image elements. During deposition of a liquid lens forming material, the liquid withdraws from the liquid adhesive low surface energy strips to form a meniscus, thereby providing lenticular lenses. The transparent low surface energy material comprises a near infrared dye with low absorption in the visible range of the spectrum to render the material both transparent and ablateable by infrared laser.

    摘要翻译: 微透镜增强元件包括承载印刷图像元素序列的基底,每个序列包含来自多于一个图像的图像元素。 透明间隔层涂覆在隔行图像条上。 通过沉积低表面能聚二甲基硅氧烷基材料的透明层和其消融来在每个图像元件序列上形成透镜,以在连续的印刷图像元件序列之间形成材料粘合剂到形成材料的聚合物透镜。 在液体透镜形成材料的沉积期间,液体从液体粘合剂低表面能带中退出以形成弯液面,由此提供双凸透镜。 透明的低表面能材料包括在光谱的可见范围内具有低吸收的近红外染料,以使材料透明和可被红外激光烧蚀。

    MICRO-LENS ENHANCED ELEMENT
    5.
    发明申请
    MICRO-LENS ENHANCED ELEMENT 有权
    微透镜增强元件

    公开(公告)号:US20100254015A1

    公开(公告)日:2010-10-07

    申请号:US12416180

    申请日:2009-04-01

    IPC分类号: G02B27/10 B41J2/01

    摘要: A micro-lens enhanced element comprises a substrate bearing sequences of printed image elements, each sequence containing image elements from more than one image. A transparent spacer layer is coated over the interlaced image strips. Lenticular lenses are fashioned over each sequence of image elements by deposition of a transparent layer of low surface energy polydimethyl siloxane based material and ablation of the same to create strips of material abhesive to a polymeric lens forming material between consecutive sequences of printed image elements. During deposition of a liquid lens forming material, the liquid withdraws from the liquid abhesive low surface energy strips to form a meniscus, thereby providing lenticular lenses. The transparent low surface energy material comprises a near infrared dye with low absorption in the visible range of the spectrum to render the material both transparent and ablateable by infrared laser.

    摘要翻译: 微透镜增强元件包括承载印刷图像元素序列的基底,每个序列包含来自多于一个图像的图像元素。 透明间隔层涂覆在隔行图像条上。 通过沉积低表面能聚二甲基硅氧烷基材料的透明层并消除其形成了在每个图像元件序列上的透镜,以在连续的印刷图像元件序列之间形成与形成聚合物透镜的材料粘合的条带。 在液体透镜形成材料的沉积期间,液体从液体粘合的低表面能量带中退出以形成弯月面,由此提供双凸透镜。 透明的低表面能材料包括在光谱的可见范围内具有低吸收的近红外染料,以使材料透明和可被红外激光烧蚀。

    Micro-lens enhanced element
    6.
    发明授权
    Micro-lens enhanced element 有权
    微透镜增强元件

    公开(公告)号:US07782534B1

    公开(公告)日:2010-08-24

    申请号:US12414732

    申请日:2009-03-31

    IPC分类号: G02B27/10

    摘要: A micro-lens enhanced element comprises a substrate bearing sequences of printed image elements, each sequence containing image elements from more than one image. A transparent spacer layer is coated over the interlaced image strips. Lenticular lenses are fashioned over each sequence of image elements by deposition of a transparent layer of low surface energy polydimethyl siloxane based material and imagewise conversion of the same to create strips of material abhesive to a polymeric lens forming material between consecutive sequences of printed image elements. During deposition of a liquid lens forming material, the liquid withdraws from the liquid abhesive low surface energy strips to form a meniscus, thereby providing lenticular lenses. The transparent low surface energy material comprises a near infrared dye with low absorption in the visible range of the spectrum to render the material both transparent and convertible by infrared laser.

    摘要翻译: 微透镜增强元件包括承载印刷图像元素序列的基底,每个序列包含来自多于一个图像的图像元素。 透明间隔层涂覆在隔行图像条上。 通过沉积低表面能聚二甲基硅氧烷基材料的透明层并对其形成图像转换,在每个图像元件序列上形成透镜,以在连续的印刷图像元件序列之间形成与形成聚合物透镜的材料的条带。 在液体透镜形成材料的沉积期间,液体从液体粘合的低表面能量带中退出以形成弯月面,由此提供双凸透镜。 透明的低表面能材料包括在光谱的可见范围内具有低吸收的近红外染料,以使材料透明并且可由红外激光器转换。

    Photopolymerization initiator system comprising a spectral sensitizer
and a polycarboxylic acid co-initiator
    10.
    发明授权
    Photopolymerization initiator system comprising a spectral sensitizer and a polycarboxylic acid co-initiator 失效
    包含光谱增感剂和多元羧酸共引发剂的光聚合引发剂体系

    公开(公告)号:US5629354A

    公开(公告)日:1997-05-13

    申请号:US395352

    申请日:1995-02-28

    摘要: Improved photopolymerization initiator systems are comprised of a spectral sensitizer that sensitizes in the ultraviolet or visible regions of the spectrum and an N-aryl, O-aryl or S-aryl polycarboxylic acid co-initiator. The improved initiator systems are incorporated in photo-polymerizable compositions containing one or more addition-polymerizable ethylenically-unsaturated compounds to form compositions suitable for the preparation of radiation-sensitive layers in lithographic printing plates adapted to be imagewise-exposed with ultraviolet- or visible-light-emitting lasers such as argon-ion lasers and frequency doubled Nd:YAG lasers. Such plates are able to effectively meet the dual requirements of very high photospeed and very good shelf-life required in computer-to-plate systems.

    摘要翻译: 改进的光聚合引发剂体系包括在光谱的紫外或可见光区中敏化的光谱增感剂和N-芳基,O-芳基或S-芳基多元羧酸共引发剂。 改进的引发剂体系结合在含有一种或多种可加成聚合的烯键式不饱和化合物的光聚合组合物中,以形成适于在平版印刷版中制备辐射敏感层的组合物,其适于用紫外或可见光形式曝光, 发光激光器如氩离子激光器和倍频Nd:YAG激光器。 这样的板能够有效地满足计算机对板系统所需的非常高的速度和非常好的保质期的双重要求。