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    • 2. 发明授权
    • Ablatable elements for making flexographic printing plates
    • 用于制作柔版印版的可气泡元件
    • US08313887B2
    • 2012-11-20
    • US13325093
    • 2011-12-14
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • G03F7/028G03F7/039G03F7/09G03F7/11
    • B41C1/05B41N1/12Y10S430/145
    • Flexographic printing plates and other relief images can be formed from a laser-ablatable element having a laser-ablatable layer that is from about 300 to about 4,000 μm thickness. The laser-ablatable layer includes a film-forming material that is a laser-laser-ablatable material or the film-forming material has dispersed therein a laser-ablatable material. The laser-ablatable material is a polymeric material that when heated to 300° C. at a rate of 10° C./minute, loses at least 60% of its mass to form at least one predominant low molecular weight product. The laser-ablatable material also comprises at least 0.01 weight % of a depolymerization catalyst that is a Lewis acid or organometallic based catalyst. The element can be imaged by ablation at an energy of at least 1 J/cm2 to provide a relief image.
    • 柔版印刷版和其它浮雕图像可以由具有约300至约4,000μm厚度的激光可烧蚀层的激光可烧蚀元件形成。 激光烧蚀层包括作为激光可激光材料的成膜材料,或者成膜材料中分散有激光可烧蚀材料。 激光可烧蚀材料是一种聚合材料,当以10℃/分钟的速率加热至300℃时,其损失至少60%的质量以形成至少一种主要的低分子量产物。 激光可烧蚀材料还包含至少0.01重量%的解聚催化剂,其是路易斯酸或有机金属基催化剂。 该元件可以以至少1J / cm 2的能量消融成像,以提供浮雕图像。
    • 5. 发明授权
    • Ablatable elements for making flexographic printing plates
    • 用于制作柔版印版的可气泡元件
    • US08163465B2
    • 2012-04-24
    • US12838533
    • 2010-07-19
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • G03F7/032G03F7/26
    • B41C1/05B41N1/12Y10S430/145
    • Flexographic printing plates and other relief images can be formed from a laser-ablatable element having a laser-ablatable layer that is from about 300 to about 4,000 μm in thickness. The laser-ablatable layer includes a film-forming material that is a laser-laser-ablatable material or the film-forming material has dispersed therein a laser-ablatable material. The laser-ablatable material is a polymeric material that when heated to 300° C. at a rate of 10° C./minute, loses at least 60% of its mass to form at least one predominant low molecular weight product. The laser-ablatable material also comprises at least 0.01 weight % of a depolymerization catalyst that is a Lewis acid or organometallic based catalyst. The element can be imaged by ablation at an energy of at least 1 J/cm2 to provide a relief image.
    • 柔版印刷版和其它浮雕图像可以由具有约300至约4000μm厚度的激光可烧蚀层的激光可烧蚀元件形成。 激光烧蚀层包括作为激光可激光材料的成膜材料,或者成膜材料中分散有激光可烧蚀材料。 激光可烧蚀材料是一种聚合材料,当以10℃/分钟的速率加热至300℃时,其损失至少60%的质量以形成至少一种主要的低分子量产物。 激光可烧蚀材料还包含至少0.01重量%的解聚催化剂,其是路易斯酸或有机金属基催化剂。 该元件可以以至少1J / cm 2的能量消融成像,以提供浮雕图像。
    • 6. 发明申请
    • ABLATABLE ELEMENTS FOR MAKING FLEXOGRAPHIC PRINTING PLATES
    • 用于制作柔版印刷板的可拆卸元件
    • US20100285406A1
    • 2010-11-11
    • US12838533
    • 2010-07-19
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • G03F7/004G03F7/20
    • B41C1/05B41N1/12Y10S430/145
    • Flexographic printing plates and other relief images can be formed from a laser-ablatable element having a laser-ablatable layer that is from about 300 to about 4,000 μm in thickness. The laser-ablatable layer includes a film-forming material that is a laser-laser-ablatable material or the film-forming material has dispersed therein a laser-ablatable material. The laser-ablatable material is a polymeric material that when heated to 300° C. at a rate of 10° C./minute, loses at least 60% of its mass to form at least one predominant low molecular weight product. The laser-ablatable material also comprises at least 0.01 weight % of a depolymerization catalyst that is a Lewis acid or organometallic based catalyst. The element can be imaged by ablation at an energy of at least 1 J/cm2 to provide a relief image.
    • 柔版印刷版和其它浮雕图像可以由具有约300至约4000μm厚度的激光可烧蚀层的激光可烧蚀元件形成。 激光烧蚀层包括作为激光可激光材料的成膜材料,或者成膜材料中分散有激光可烧蚀材料。 激光可烧蚀材料是一种聚合材料,当以10℃/分钟的速率加热至300℃时,其损失至少60%的质量以形成至少一种主要的低分子量产物。 激光可烧蚀材料还包含至少0.01重量%的解聚催化剂,其是路易斯酸或有机金属基催化剂。 该元件可以以至少1J / cm 2的能量消融成像,以提供浮雕图像。
    • 8. 发明申请
    • ABLATABLE ELEMENTS FOR MAKING FLEXOGRAPHIC PRINTING PLATES
    • 用于制作柔版印刷板的可拆卸元件
    • US20120094104A1
    • 2012-04-19
    • US13325093
    • 2011-12-14
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • Michael T. ReganDavid B. BaileyChristine J. Landry-Coltrain
    • C08L69/00C08L33/18
    • B41C1/05B41N1/12Y10S430/145
    • Flexographic printing plates and other relief images can be formed from a laser-ablatable element having a laser-ablatable layer that is from about 300 to about 4,000 μm thickness. The laser-ablatable layer includes a film-forming material that is a laser-laser-ablatable material or the film-forming material has dispersed therein a laser-ablatable material. The laser-ablatable material is a polymeric material that when heated to 300° C. at a rate of 10° C./minute, loses at least 60% of its mass to form at least one predominant low molecular weight product. The laser-ablatable material also comprises at least 0.01 weight % of a depolymerization catalyst that is a Lewis acid or organometallic based catalyst. The element can be imaged by ablation at an energy of at least 1 J/cm2 to provide a relief image.
    • 柔版印刷版和其它浮雕图像可以由具有约300至约4,000μm厚度的激光可烧蚀层的激光可烧蚀元件形成。 激光烧蚀层包括作为激光可激光材料的成膜材料,或者成膜材料中分散有激光可烧蚀材料。 激光可烧蚀材料是一种聚合材料,当以10℃/分钟的速率加热至300℃时,其损失至少60%的质量以形成至少一种主要的低分子量产物。 激光可烧蚀材料还包含至少0.01重量%的解聚催化剂,其是路易斯酸或有机金属基催化剂。 该元件可以以至少1J / cm 2的能量消融成像,以提供浮雕图像。
    • 10. 发明授权
    • Simultaneous coatings of polymeric lubricant layer and transparent
magnetic recording layer for photographic element
    • 聚合物润滑剂层的同时涂层和照相元件的透明磁记录层
    • US5821027A
    • 1998-10-13
    • US858318
    • 1997-05-19
    • Christine J. Landry-ColtrainBradley K. ColtrainMichael J. CorriganDavid B. Bailey
    • Christine J. Landry-ColtrainBradley K. ColtrainMichael J. CorriganDavid B. Bailey
    • G03C1/00G03C1/74G03C1/76G03C5/14G03C1/89G03C1/85B05D5/12
    • G03C5/14G03C1/7614G03C1/74Y10S430/136Y10S430/162
    • The present invention is a method of producing an imaging support which includes providing a support, simultaneously coating on a side of the support; a transparent magnetic recording layer including magnetic particles, a polymeric binder and an organic solvent, and a lubricating overcoat layer farthest from the support, the lubricating overcoat layer including a lubricant selected form the general formulas I, II or III: wherein general formula I comprises: ##STR1## wherein X is selected from the group consisting of esters, amides, ethers, or methylene, a is from 10 to 500, and b is from 4 to 3000, and the general formula I has a molecular weight at least 800; wherein general formula II comprises: ##STR2## wherein Y is selected from the group consisting of, --C-- and --N--, Z is selected from the group consisting of esters, amides, and a carbon-carbon bond, R is selected from the group consisting of methyl, and hydrogen or may be absent if Y equals nitrogen, c is from 1 to 2, d is from 4 to 3000, e is from 10 to 30, and the general formula II has a molecular weight of from 800 to 500,000, preferably from 3000 to 100,000; wherein general formula III comprises: ##STR3## wherein R' is selected from the group consisting of methyl, phenyl, substituted aliphatic groups, unsubstituted aliphatic groups, substituted aromatic groups, and unsubstituted aromatic groups; wherein f is from 4 to 3000, and g is from 10 to 30, and the general formula III has a molecular weight of from about 800 to 500,000 and preferably are between 3000 and 100,000, and an organic solvent. The present invention also includes a photographic element produced by the method.
    • 本发明是一种制造成像支撑体的方法,其包括提供支撑件,同时在支撑体的一侧上涂覆; 包括磁性颗粒,聚合物粘合剂和有机溶剂的透明磁记录层以及离支撑体最远的润滑覆盖层,润滑外涂层包含选自通式I,II或III的润滑剂:其中通式I包括 :其中X选自酯,酰胺,醚或亚甲基,a为10〜500,b为4〜3000,通式I的分子量为800以上; 其中通式II包含:其中Y选自-C-和-N-,Z选自酯,酰胺和碳 - 碳键,R选自 由甲基和氢组成的组,如果Y等于氮,则可以不存在,c为1〜2,d为4〜3000,e为10〜30,通式II的分子量为800 至50万,优选3000至100,000; 其中通式III包括:其中R'选自甲基,苯基,取代的脂族基团,未取代的脂族基团,取代的芳族基团和未取代的芳族基团; 其中f为4至3000,g为10至30,通式III的分子量为约800至500,000,优选为3000至100,000,有机溶剂为。 本发明还包括通过该方法制造的照相元件。