Method of manufacturing a polymethylmethacrylate core shell nanocomposite optical plastic article
    1.
    发明授权
    Method of manufacturing a polymethylmethacrylate core shell nanocomposite optical plastic article 有权
    聚甲基丙烯酸甲酯芯壳纳米复合光学塑料制品的制造方法

    公开(公告)号:US07081295B2

    公开(公告)日:2006-07-25

    申请号:US10642779

    申请日:2003-08-18

    IPC分类号: B32B5/16

    摘要: A nanocomposite optical plastic article has a plastic host material with a temperature sensitive optical vector (x) and a core shell nanoparticulate material dispersed into the plastic host material. The core shell nanoparticulate material is characterized by a core defined by a nanoparticulate material which has a temperature sensitive optical vector (x1) and a shell defined by a coating material layer coated onto the core. It is important to the invention that temperature sensitive vector (x1) is directionally opposed to the temperature sensitive optical vector (x) and nshell

    摘要翻译: 纳米复合光学塑料制品具有具有温度敏感光学载体(x)的塑料主体材料和分散在塑料主体材料中的芯壳纳米颗粒材料。 核壳纳米颗粒材料的特征在于由纳米颗粒材料限定的芯,其具有温度敏感的光学载体(x 1 SUB)和由涂覆在芯上的涂层材料层限定的壳。 对于本发明重要的是,温度敏感载体(x 1)定向相对于温度敏感的光学载体(x)和n壳层N塑料宿主 核心

    Core shell nanocomposite optical plastic article
    2.
    发明授权
    Core shell nanocomposite optical plastic article 有权
    核心壳纳米复合材料光学塑料制品

    公开(公告)号:US07091271B2

    公开(公告)日:2006-08-15

    申请号:US10643236

    申请日:2003-08-18

    摘要: A nanocomposite optical plastic article has a plastic host material with a temperature sensitive optical vector (x) and a core shell nanoparticulate material dispersed into the plastic host material. The core shell nanoparticulate material is characterized by a core defined by a nanoparticulate material which has a temperature sensitive optical vector (x1) and a shell defined by a coating material layer coated onto the core. It is important to the invention that temperature sensitive vector (x1) is directionally opposed to the temperature sensitive optical vector (x) and nshell

    摘要翻译: 纳米复合光学塑料制品具有具有温度敏感光学载体(x)的塑料主体材料和分散在塑料主体材料中的芯壳纳米颗粒材料。 核壳纳米颗粒材料的特征在于由纳米颗粒材料限定的芯,其具有温度敏感的光学载体(x 1 SUB)和由涂覆在芯上的涂层材料层限定的壳。 对于本发明重要的是,温度敏感载体(x 1)定向相对于温度敏感的光学载体(x)和n壳层N塑料宿主 核心

    Transparent film-forming compositions for magnetic recording
    3.
    发明授权
    Transparent film-forming compositions for magnetic recording 失效
    用于磁记录的透明成膜组合物

    公开(公告)号:US06905761B2

    公开(公告)日:2005-06-14

    申请号:US10317514

    申请日:2002-12-12

    摘要: A concentrated fine solid particle dispersion useful for forming a substantially photographically transparent magnetic recording layer is disclosed, comprising an organic solvent medium containing a dispersing agent and dispersed magnetic particles, wherein the magnetic particles are present at a concentration of at least 25% by weight and the organic solvent medium is comprised primarily of organic solvent selected from dimethyl succinate, dimethyl glutarate and dimethyl adipate. This invention provides a stable concentrated dispersion of magnetic particles useful for preparing substantially photographically transparent magnetic recording layers. A film-forming binder solution can be added to dilute the concentrated dispersion, which then can be applied to a support to form a transparent magnetic layer for a magnetic recording element. This invention also provides a photographic element which contains a magnetic recording layer which has excellent magnetic characteristics and which is substantially photographically transparent by virtue of its low granularity and optical density.

    摘要翻译: 公开了一种用于形成基本上为摄影透明的磁记录层的浓缩细小固体颗粒分散体,其包含含有分散剂和分散的磁性颗粒的有机溶剂介质,其中磁性颗粒以至少25重量%的浓度存在,以及 有机溶剂介质主要由选自琥珀酸二甲酯,戊二酸二甲酯和己二酸二甲酯的有机溶剂组成。 本发明提供用于制备基本上照相的透明磁记录层的磁性颗粒的稳定的浓缩分散体。 可以加入成膜粘合剂溶液以稀释浓缩的分散体,然后可以将其分散在载体上以形成用于磁记录元件的透明磁性层。 本发明还提供了一种照相材料,其含有磁记录层,该磁记录层具有优良的磁特性,并且由于其低颗粒度和光密度而基本上是摄影透明的。

    Photographic element having a transparent magnetic recording layer
    5.
    发明授权
    Photographic element having a transparent magnetic recording layer 失效
    具有透明磁记录层的照相元件

    公开(公告)号:US5427900A

    公开(公告)日:1995-06-27

    申请号:US193304

    申请日:1994-02-08

    摘要: A photographic element comprising a support having provided thereon a light-sensitive layer and a transparent magnetic recording layer, the magnetic recording layer comprising a transparent polymeric binder, ferro-magnetic particles and tin oxide particles, the magnetic particles having a surface area greater than 30 m.sup.2 /gm and a coverage of from about 1.times.10.sup.-11 mg/.mu.m.sup.3 to about 1.times.10.sup.-10 mg/.mu.m.sup.3, the tin oxide particles having a median diameter of less than 0.15 .mu.m and being present in the transparent magnetic layer in an amount of from 300 to 1200 percent by weight based on the weight of the binder.

    摘要翻译: 一种照相元件,包括在其上设置有感光层和透明磁记录层的支撑体,所述磁记录层包括透明聚合物粘合剂,铁磁性颗粒和氧化锡颗粒,所述磁性颗粒的表面积大于30 m2 / gm,覆盖范围为约1×10-11mg / m 3至约1×10 -10 mg / m 3,氧化锡颗粒的中值粒径小于0.15μm,并存在于透明磁性层中 量为基于粘合剂重量的300至1200重量%。

    Photographic element having a transparent magnetic recording layer
    6.
    发明授权
    Photographic element having a transparent magnetic recording layer 失效
    具有透明磁记录层的照相元件

    公开(公告)号:US5434037A

    公开(公告)日:1995-07-18

    申请号:US252500

    申请日:1994-06-01

    摘要: A photographic element comprising a support having provided thereon a light-sensitive layer, a transparent magnetic recording layer, and a transparent abrasive layer coated over the transparent magentic recording layer, the transparent magnetic recording layer comprising a transparent polymeric binder and ferro-magnetic particles having a surface area greater than 30 m.sup.2 /gm and a coverage of from about 1.times.10.sup.-11 mg/.mu.m.sup.3 to about 3.times.10.sup.-10 mg/.mu.m.sup.3, the abrasive layer comprising a transparent polymeric binder and abrasive particles having a median diameter of from about 0.2 to about 0.4 .mu.m, a specific surface area greater than 5 m.sup.2 /gm, a Mobs hardness of at least 6 and being present in an amount of at least about 5.times.10.sup.-12 mg/.mu.m.sup.3.

    摘要翻译: 一种照相元件,包括其上设置有感光层,透明磁记录层和涂覆在透明磁记录层上的透明研磨层的支撑体,透明磁记录层包括透明聚合物粘合剂和铁磁性颗粒, 表面积大于30m2 / gm,覆盖率为约1×10-11mg /μm3至约3×10-10mg / m3,研磨层包含透明聚合物粘合剂和磨料颗粒,其中心直径为约 0.2至约0.4μm,比表面积大于5m 2 / gm,Mobs硬度至少为6,并且以至少约5×10 -12mg / m 3的量存在。

    Method of making laser-ablatable elements
    9.
    发明授权
    Method of making laser-ablatable elements 有权
    激光烧蚀元件的制作方法

    公开(公告)号:US08501388B2

    公开(公告)日:2013-08-06

    申请号:US13334230

    申请日:2011-12-22

    IPC分类号: G03F7/039 G03F7/095 B41N1/06

    摘要: A method is used to make a laser-ablatable element for direct laser engraving that has a laser-ablatable, relief-forming layer that has a relief-image forming surface and a bottom surface. The relief-forming layer can be prepared by applying multiple formulations. Each formulation comprises a coating solvent, a laser-ablatable polymeric binder, and an infrared radiation absorbing compound. The infrared radiation absorbing compound concentration in the resulting sub-layers is different in each adjacent pair of sub-layers so that the concentration is always greater in each pair sub-layer that is closer to the substrate, and the concentration is progressively greater in the sub-layers as they are closer to the substrate after the coating solvent is removed, wherein the multiple sub-layers provide a relief-forming layer so that the sub-layer farthest from the substrate provides a relief-image forming surface.

    摘要翻译: 一种用于直接激光雕刻的激光可烧蚀元件的方法,其具有具有凸版图像形成表面和底表面的激光可消除的凸版形成层。 凸版形成层可以通过应用多种制剂来制备。 每种制剂包括涂覆溶剂,可激光可消融的聚合物粘合剂和红外辐射吸收化合物。 所得子层中的红外辐射吸收化合物浓度在每个相邻的子层中是不同的,使得在更接近于衬底的每对子层中的浓度总是较大,并且浓度在 在除去涂覆溶剂之后它们更靠近基板的子层,其中多个子层提供凸版形成层,使得离基板最远的子层提供凸版图像形成表面。

    METHOD OF MAKING LASER-ABLATABLE ELEMENTS
    10.
    发明申请
    METHOD OF MAKING LASER-ABLATABLE ELEMENTS 有权
    制造可激光元件的方法

    公开(公告)号:US20120094018A1

    公开(公告)日:2012-04-19

    申请号:US13334230

    申请日:2011-12-22

    IPC分类号: B05D5/06 B05D1/36

    摘要: A method is used to make a laser-ablatable element for direct laser engraving that has a laser-ablatable, relief-forming layer that has a relief-image forming surface and a bottom surface. The relief-forming layer can be prepared by applying multiple formulations. Each formulation comprises a coating solvent, a laser-ablatable polymeric binder, and an infrared radiation absorbing compound. The infrared radiation absorbing compound concentration in the resulting sub-layers is different in each adjacent pair of sub-layers so that the concentration is always greater in each pair sub-layer that is closer to the substrate, and the concentration is progressively greater in the sub-layers as they are closer to the substrate after the coating solvent is removed, wherein the multiple sub-layers provide a relief-forming layer so that the sub-layer farthest from the substrate provides a relief-image forming surface.

    摘要翻译: 一种用于直接激光雕刻的激光可烧蚀元件的方法,其具有具有凸版图像形成表面和底表面的激光可消除的凸版形成层。 凸版形成层可以通过应用多种制剂来制备。 每种制剂包括涂覆溶剂,可激光可消融的聚合物粘合剂和红外辐射吸收化合物。 所得子层中的红外辐射吸收化合物浓度在每个相邻的子层中是不同的,使得在更接近于衬底的每对子层中的浓度总是较大,并且浓度在 在除去涂覆溶剂之后它们更靠近基板的子层,其中多个子层提供凸版形成层,使得离基板最远的子层提供凸版图像形成表面。