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    • 82. 发明申请
    • COATING AND DEVELOPING APPARATUS, METHOD OF OPERATING THE SAME AND STORAGE MEDIUM
    • 涂料和开发设备,操作方法和储存介质
    • US20150077727A1
    • 2015-03-19
    • US14488737
    • 2014-09-17
    • TOKYO ELECTRON LIMITED
    • Tomohiro KANEKO
    • G03F7/20
    • G03F7/2035G03F7/3042
    • A coating and developing apparatus includes: first and second transfer mechanisms for transferring a substrate from a first mount module to a second mount module, one of the first and second transfer mechanisms being selected each time when the substrate transfer should be performed; first and second processing modules for performing substrate processing, for which the transfer of substrates is performed by the first and second transfer mechanisms, respectively; and a control unit. The control unit controls the transfer mechanisms for the substrate transfer by determining a delay time, representing a delay caused by the transfer of the substrate to the second mount module to the timing of transfer of a substrate from the first/second processing module, in regard to each of the first and second transfer mechanisms and selecting one of the first and second transfer mechanisms whose delay time is the shortest.
    • 涂覆和显影设备包括:第一和第二传送机构,用于将基板从第一安装模块传送到第二安装模块,每当要执行基板传送时,选择第一和第二传送机构中的一个; 用于执行基板处理的第一和第二处理模块,其中基板的传送分别由第一和第二传送机构执行; 和控制单元。 控制单元通过确定延迟时间来控制基板传送的传送机构,该延迟时间表示由基板传送到第二安装模块所引起的延迟至基板从第一/第二处理模块传送的时刻 到第一和第二传送机制中的每一个,并且选择延迟时间最短的第一和第二传送机制之一。
    • 85. 发明授权
    • Method of making a lithographic printing plate
    • 制作平版印刷版的方法
    • US08119330B2
    • 2012-02-21
    • US12093376
    • 2006-11-09
    • Marc Van Damme
    • Marc Van Damme
    • G03F7/00
    • G03F7/32G03F7/2055G03F7/3042G03F7/3057
    • 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 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) heating the precursor in a pre-heating unit within a time period of less than 10 minutes after step (b), d) treating the precursor in a gumming station, including at least one gumming unit, whereby a gum solution is applied to the precursor, thereby removing 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 可光聚合层和可选择地在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)在平版印刷机中成像曝光涂层,c) 在步骤(b)之后的10分钟内的预热单元内预处理前体,d)在上胶台中处理前体,包括至少一个上胶单元,由此将胶溶液施加到前体上,由此 从支撑体上除去可光聚合层的未曝光区域,并在一个步骤中涂覆板。
    • 87. 发明申请
    • Heated water spray processor
    • 加热喷水处理器
    • US20080318164A1
    • 2008-12-25
    • US12215124
    • 2008-06-25
    • Howard A. Fromson
    • Howard A. Fromson
    • G03F7/004G03D5/00
    • G03D5/00G03F7/3042G03F7/305
    • Excellent development of planographic printing plates can be achieved by exposing an imaged, negative working, photopolymerizable coating to a high pressure stream of essentially heated but otherwise untreated tap water, whereby the water completely removes only the less cohesive and adhesive (e.g., partially polymerized) regions to the substrate, thereby directly producing a printing plate having an image pattern of highly cohesive and adhesive, oleophilic regions of the coating and hydrophilic regions of the substrate. The coating removal mechanism appears to be due entirely to ablation. The process variables of spray pressure, spray volumetric flow rate, and water temperature can be traded off to achieve one or more targets for plate quality, energy conservation, production rate, and equipment availability.
    • 通过将成像的负性可光聚合涂层暴露于基本上加热但未经处理的自来水的高压流,可以实现平版印刷版的优异发展,由此水完全除去较少的内聚和粘合剂(例如,部分聚合的) 区域,从而直接制造具有高粘合性和粘合性的图像图案的印刷版,涂层的亲油性区域和基材的亲水区域。 涂层去除机制似乎完全归因于消融。 喷涂压力,喷雾体积流量和水温的过程变量可以交付,以实现板材质量,节能,生产率和设备可用性的一个或多个目标。
    • 88. 发明申请
    • Method of Making a Lithographic Printing Plate
    • 制作平版印刷版的方法
    • US20080286695A1
    • 2008-11-20
    • US12093376
    • 2006-11-09
    • Marc Van Damme
    • Marc Van Damme
    • G03F7/20
    • G03F7/32G03F7/2055G03F7/3042G03F7/3057
    • 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 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) heating the precursor in a pre-heating unit within a time period of less than 10 minutes after step (b), d) treating the precursor in a gumming station, including at least one gumming unit, whereby a gum solution is applied to the precursor, thereby removing 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 可光聚合层和可选择地在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)在平版印刷机中成像曝光涂层,c) 在步骤(b)之后的10分钟内的预热单元内预处理前体,d)在上胶台中处理前体,包括至少一个上胶单元,由此将胶溶液施加到前体上,由此 从支撑体上除去可光聚合层的未曝光区域,并在一个步骤中涂覆板。