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    • 42. 发明授权
    • Primed resin film
    • 引发树脂薄膜
    • US5610001A
    • 1997-03-11
    • US266157
    • 1994-06-27
    • Erik MostaertAugust Mari enMarc Van Damme
    • Erik MostaertAugust Mari enMarc Van Damme
    • G03C1/795B32B27/36C08J7/04C09D167/00G03C1/76G03C1/91G03C1/93G03C8/28
    • C08J7/047C09D167/00G03C1/93C08J2467/00
    • A web or sheet material which comprises a hydrophobic resin support having coated directly thereon a primer layer essentially consisting of a mixture of ingredients (A), (B) and (C) applied as a dispersion from aqueous medium, wherein:(A) is a copolyester containing recurring ester groups derived from ethylene glycol and an acid mixture containing terephthalic acid, isophthalic acid and 5-sulphoisophthalic acid whose sulpho group is in salt form, said acid mixture consisting essentially of from 20 to 60 mole % of isophthalic acid, 6 to 10 mole % of said sulphoisophthalic acid, 0.05 to 1 mole % of cross-linking agent being an aromatic polycarboxylic acid compound having at least three carboxylic acid groups or corresponding acid generating anhydride or ester groups, the remainder in said acid mixture being terephthalic acid,(B) is a copolymer formed from 45 to 70% by weight of a lower (C1-C4) alkyl methacrylate, 25 to 50% by weight of butadiene and from 2 to 5% by weight of an ethylenically unsaturated carboxylic acid, and(C) is colloidal silica.
    • 一种网状物或片状材料,其特征在于,包括疏水性树脂载体,其上直接涂覆有基本上由作为分散体从水性介质中应用的成分(A),(B)和(C)的混合物组成的底漆层,其中:(A) 含有衍生自乙二醇的重复酯基的共聚酯和含有对苯二甲酸,间苯二甲酸和其磺酸基的5-磺基间苯二甲酸的酸混合物,所述酸混合物基本上由20〜60摩尔%的间苯二甲酸,6 至10摩尔%的所述磺基间苯二甲酸,0.05至1摩尔%的交联剂是具有至少三个羧酸基团或相应的酸产生酸酐或酯基的芳族多元羧酸化合物,所述酸混合物中的剩余物为对苯二甲酸 ,(B)是由45〜70重量%的甲基丙烯酸低级(C 1 -C 4)烷基酯,25〜50重量%的丁二烯和2〜5重量%的乙烯 不饱和羧酸,(C)是胶体二氧化硅。
    • 43. 发明授权
    • Thermal transfer printing of a reducing agent to a silver source
contained in an image receiving layer
    • 将还原剂热转印到包含在图像接收层中的银源上
    • US5558972A
    • 1996-09-24
    • US450632
    • 1995-05-25
    • Marc Van DammeHerman UytterhoevenGeert Defieuw
    • Marc Van DammeHerman UytterhoevenGeert Defieuw
    • B41M5/26G03C1/498G03C8/00
    • G03C1/4989
    • The present invention discloses a thermal imaging process using (i) a donor element comprising on a support a donor layer containing a binder and a thermotransferable reducing agent capable of reducing a silver source to metallic silver upon heating and (ii) a receiving element comprising on a support in the order given a receiving layer and a curable layer, said receiving layer comprising a silver source capable of being reduced by means of heat in the presence of a reducing agent for said silver source and a binder, said thermal imaging process comprising the steps ofbringing said donor layer of said donor element into face to face relationship with said receiving layer of said receiving element,image-wise heating a thus obtained assemblage, thereby causing image-wise transfer of an amount of said thermotransferable reducing agent to said receiving element in accordance with the amount of heat supplied,separating said donor element from said receiving element,curing said release layer andoverall heating said receiving element.
    • 本发明公开了一种热成像方法,其使用(i)供体元件,其在载体上包含含有粘合剂的施主层和能够在加热时将银源还原成金属银的可热转移还原剂,和(ii)包含在 所述接收层包含银源,所述银源能够在所述银源的还原剂和粘合剂的存在下通过加热而被还原,所述热成像方法包括: 使所述供体元件的所述施主层与所述接收元件的所述接收层成对面关系的步骤,以图像方式加热由此获得的组合,从而使所述热转移还原剂的量成像到所述接收 元件,根据所供应的热量,将所述供体元件与所述接收元件分离,固化所述释放 层和整体加热所述接收元件。
    • 44. 发明授权
    • Method for making a lithographic printer plate precursor
    • 制作平版印刷版原版的方法
    • US08632954B2
    • 2014-01-21
    • US12594091
    • 2008-05-15
    • Peter HendrikxWilli-Kurt GriesMarc Van Damme
    • Peter HendrikxWilli-Kurt GriesMarc Van Damme
    • B41N1/00B41M5/00G03F7/00G03F7/26
    • G03F7/092B41C1/1016B41C2201/02B41C2201/04B41C2201/14B41C2210/04B41C2210/06B41C2210/08B41C2210/22B41C2210/24G03F7/3035
    • A method for making a lithographic printing plate precursor is disclosed comprising the steps of a. providing a lithographic printing plate precursor including a support having a hydrophilic surface or which is provided with a hydrophilic layer, a photopolymerizable coating comprising a photopolymerizable composition, and an overcoat layer comprising a water soluble low molecular weight acid, wherein said overcoat layer has a surface pH-value ranging between 1 to 6; b. image-wise exposing the precursor; c. optionally heating the exposed precursor; d. processing the obtained precursor by applying a gum solution and optionally brushing the precursor, and/or by mounting the precursor on a plate cylinder of a lithographic printing press and rotating the plate cylinder while feeding dampening liquid and/or ink to the coating. The printing plate obtained after imaging and processing in an off-press configuration with a gum solution or in an on-press configuration with fountain solution and ink shows an improved roll-up performance in the start-up of a printing process on a printing press.
    • 公开了一种制备平版印刷版前体的方法,包括以下步骤:a。 提供一种平版印刷版原版,其包括具有亲水性表面的支持体,或设置有亲水层,包含可光聚合组合物的光聚合涂层和包含水溶性低分子量酸的外涂层,其中所述外涂层具有表面 pH值介于1到6之间; b。 以图像方式曝光前体; C。 可选地加热暴露的前体; d。 通过施加胶溶液和任选地刷涂前体来处理所获得的前体,和/或通过将前体安装在平版印刷机的印版滚筒上并旋转印版滚筒,同时将润版液体和/或墨水供给到涂层。 通过胶溶液在印刷结构中进行成像处理后获得的印刷版或具有润版液和油墨的印刷机构造成的印刷版在印刷机上的印刷过程启动时显示出改进的卷起性能 。
    • 49. 发明申请
    • Method of Making a Lithographic Printing Plate
    • 制作平版印刷版的方法
    • US20080254390A1
    • 2008-10-16
    • US12093160
    • 2006-11-09
    • Marc Van Damme
    • Marc Van Damme
    • G03F7/20
    • B41C1/1016B41C2201/02B41C2201/14B41C2210/04B41C2210/10B41C2210/22B41C2210/24G03F7/092G03F7/32
    • A method of making a lithographic printing plate includes the steps of a) providing a lithographic printing plate precursor including (i) a support having a hydrophilic surface or which is provided with a hydrophilic layer, (ii) a coating on the support, including a photopolymerizable layer, a top layer, and optionally, an intermediate layer between the photopolymerizable layer and the support, wherein the photopolymerizable layer includes a polymerizable compound, a polymerization initiator, and a binder; b) image-wise exposing the coating in a plate setter; c) optionally, heating the precursor in a pre-heating unit; d) washing the precursor in a pre-washing station by applying water or an aqueous solution to the coating, thereby removing at least a portion of the top layer; and e) developing the precursor in a gumming station by applying a gum solution to the coating of the precursor, thereby removing the non-exposed areas of the photopolymerizable layer from the support and gumming the plate in a single step.
    • 制备平版印刷版的方法包括以下步骤:a)提供平版印刷版前体,其包括(i)具有亲水性表面的或具有亲水层的载体,(ii)载体上的涂层,包括 可光聚合层,顶层和任选的可光聚合层和载体之间的中间层,其中可光聚合层包括可聚合化合物,聚合引发剂和粘合剂; b)以平板印刷方式将涂层曝光在印版机中; c)任选地,在预热单元中加热前体; d)通过将水或水溶液施加到涂层上,在预洗涤站中洗涤前体,从而去除顶层的至少一部分; 和e)通过将胶溶液施加到前体的涂层上,在上胶台中显影前体,从而从支撑物中除去可光聚合层的未曝光区域,并在一个步骤中涂覆该板。
    • 50. 发明授权
    • Alkaline developer for radiation sensitive compositions
    • 用于辐射敏感组合物的碱性显影剂
    • US07186498B2
    • 2007-03-06
    • US10956871
    • 2004-10-01
    • Willi-Kurt GriesMarc Van DammePascal MeeusMario Boxhorn
    • Willi-Kurt GriesMarc Van DammePascal MeeusMario Boxhorn
    • G03F7/32
    • G03F7/322
    • The invention relates to an alkaline developer for irradiated radiation sensitive compositions, which developer is based on water and at least one inorganic salt having an alkaline reaction, wherein the developer has a pH of at least 11 and comprises at least three structurally different surfactants of formulae (A), (B) and (C), characterised in that the surfactant of formula (A) has one anionic group, the surfactant of formula (B) has two anionic groups, the surfactant of formula (C) is non-ionic and has at least one non-ionic hydrophilic group, and the concentration of each of the surfactants of formulae (A), (B) and (C) in the developer is at least 0.05 weight-% based on the total weight of the developer. The developer leads to less depositions and has a superior stability when used.
    • 本发明涉及一种用于辐照敏感组合物的碱性显影剂,该显色剂基于水和至少一种具有碱性反应的无机盐,其中显影剂的pH至少为11,并且包含至少三种结构不同的式 (A),(B)和(C),其特征在于式(A)的表面活性剂具有一个阴离子基团,式(B)的表面活性剂具有两个阴离子基团,式(C)的表面活性剂是非离子的 并且具有至少一个非离子亲水基团,并且显影剂中式(A),(B)和(C)的每种表面活性剂的浓度相对于显影剂的总重量为至少0.05重量% 。 开发人员的沉积少,在使用时具有优异的稳定性。