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    • 1. 发明授权
    • Dotsize control fluid for radiation curable ink-jet printing process
    • 用于辐射固化喷墨印刷工艺的多孔控制流体
    • US07575314B2
    • 2009-08-18
    • US11280929
    • 2005-11-16
    • Guido DesieDirk Quintens
    • Guido DesieDirk Quintens
    • G01D11/00
    • C09D11/101
    • A radiation curable ink-jet printing process is disclosed, exhibiting consistent image quality on a wide variety of different ink-receivers. The ink-jet printing process includes the steps of: a) providing an ink-receiver; b) providing a surface layer on at least a portion of the ink-receiver with a dotsize control fluid; c) jetting at least one radiation curable ink-jet ink droplet to the surface layer on the ink-receiver; characterized in that the dotsize control fluid contains a surfactant, a film forming polymeric resin and an inorganic filler, wherein the ratio P/F is greater than 3.0, with P being the weight % of film forming polymeric resin and F being the weight % of inorganic filler, both based on the total weight of the dotsize control fluid, and the surfactant is present in the surface layer in the range of 0.1 to 20% by weight based on the total dry weight of the surface layer.
    • 公开了一种可辐射固化喷墨印刷方法,其在各种不同的墨水接收器上表现出一致的图像质量。 喷墨印刷方法包括以下步骤:a)提供墨水接收器; b)在吸墨器的至少一部分上提供带有点状控制流体的表面层; c)将至少一个辐射固化喷墨墨滴喷射到墨水接收器上的表面层上; 其特征在于,所述点化控制流体含有表面活性剂,成膜聚合树脂和无机填料,其中P / F大于3.0,P为成膜聚合物树脂的重量%,F为重量% 无机填料,均基于点化控制流体的总重量,表面活性剂以表面层的总干重为0.1〜20重量%的范围存在。
    • 2. 发明申请
    • Dotsize control fluid for radiation curable ink-jet printing process
    • 用于辐射固化喷墨印刷工艺的多孔控制流体
    • US20060132566A1
    • 2006-06-22
    • US11280929
    • 2005-11-16
    • Guido DesieDirk Quintens
    • Guido DesieDirk Quintens
    • G01D11/00B41J2/01
    • C09D11/101
    • A radiation curable ink-jet printing process is disclosed, exhibiting consistent image quality on a wide variety of different ink-receivers. The ink-jet printing process comprises the steps of: a) providing an ink-receiver; b) providing a surface layer on at least a portion of the ink-receiver with a dotsize control fluid; c) jetting at least one radiation curable ink-jet ink droplet to the surface layer on the ink-receiver; characterized in that the dotsize control fluid contains a surfactant, a film forming polymeric resin and an inorganic filler, wherein the ratio P/F is greater than 3.0, with P being the weight % of film forming polymeric resin and F being the weight % of inorganic filler, both based on the total weight of the dotsize control fluid, and the surfactant is present in the surface layer in the range of 0.1 to 20% by weight based on the total dry weight of the surface layer.
    • 公开了一种可辐射固化喷墨印刷方法,其在各种不同的墨水接收器上表现出一致的图像质量。 喷墨印刷方法包括以下步骤:a)提供墨水接收器; b)在吸墨器的至少一部分上提供带有点状控制流体的表面层; c)将至少一个辐射固化喷墨墨滴喷射到墨水接收器上的表面层上; 其特征在于,所述点化控制流体含有表面活性剂,成膜聚合树脂和无机填料,其中P / F大于3.0,P为成膜聚合物树脂的重量%,F为重量% 无机填料,均基于点化控制流体的总重量,表面活性剂以表面层的总干重为0.1〜20重量%的范围存在。
    • 5. 发明授权
    • Printable paper; process for producing printable paper; and use thereof
    • 可打印纸; 印刷纸生产工艺; 及其用途
    • US08357447B2
    • 2013-01-22
    • US12402599
    • 2009-03-12
    • Dirk QuintensDirk Kokkelenberg
    • Dirk QuintensDirk Kokkelenberg
    • B32B5/18B05D5/04
    • B41M5/52B32B27/08B32B27/36B32B27/40B41M5/506B41M5/508B41M5/5218B41M5/5254D21H17/20D21H19/36D21H19/56D21H19/72D21H19/84Y10T428/24934Y10T428/249953Y10T428/249972Y10T428/249979Y10T428/249987Y10T428/249991Y10T428/249992Y10T428/31551Y10T428/31786
    • A printable paper comprising a water-resistant support having two optionally subbed sides and a single layer on at least one of said optionally subbed sides, wherein said single layer has no substantial compositional variation, has a layer thickness of at least 3 μm, a pore volume of at least 1.2 mL/m2 and comprises at least one porous pigment; a process for producing a printable paper comprising the steps of: (i) optionally providing a water-resistant support having two sides with a subbing layer on at least one side; (ii) providing at least one side of said optionally subbed water-resistant support with a single layer having no substantial compositional variation, said single layer being applied to said optionally subbed water-resistant support as at least one wet aqueous layer in a single pass for each side of said water-resistant support, said at least one aqueous layer comprising at least one latex, at least one pigment, at least one binder and optionally at least one insolubilizing agent, wherein said latex is an anionic acrylic latex or an aliphatic polyurethane latex; and the use in printing of the above-described printable paper or that obtained by the above-described production process.
    • 一种可印刷纸,其包括具有两个任选的副床侧的防水支撑件和在所述任选的副床边中的至少一个上的单层,其中所述单层没有实质的组成变化,具有至少3μm的层厚度, 至少1.2mL / m 2的体积,并且包含至少一种多孔颜料; 一种用于生产可印刷纸的方法,包括以下步骤:(i)任选地在至少一个侧面上提供具有双面层的防水支撑体,其具有底层; (ii)用不具有实质性组成变化的单层提供所述任选的底层防水支撑体的至少一侧,所述单层作为至少一个单一湿度水层施加到所述任选的底层防水支撑体 所述至少一层水层包含至少一种胶乳,至少一种颜料,至少一种粘合剂和任选的至少一种不溶化剂,其中所述胶乳是阴离子丙烯酸胶乳或脂族 聚氨酯胶乳; 以及在上述可印刷纸的印刷中的应用或通过上述制造方法得到的用途。
    • 6. 发明申请
    • PROCESS FOR PRODUCING A NON-TRANSPARENT MICROVOIDED SELF-SUPPORTING FILM
    • 生产非透明微胶囊自支撑膜的方法
    • US20080254396A1
    • 2008-10-16
    • US11866093
    • 2007-10-02
    • Dirk Quintens
    • Dirk Quintens
    • B41C1/055B29C49/08
    • G03C1/7954B29C55/06B29C55/143B29K2033/18B29K2067/00B29K2105/0032B29K2105/0088B29K2105/04B29K2711/12B29K2995/0025B41M5/36B41M5/41B41M5/508B41M2205/02B41M2205/12C08J5/18C08J2367/02C08K3/013C08L25/12C08L67/02Y10S430/165Y10T156/10Y10T428/24802Y10T428/24893Y10T428/249953Y10T428/249978Y10T428/249992Y10T428/254Y10T428/31786Y10T428/31855C08L2666/06C08L35/00C08L25/00
    • A process for producing a non-transparent microvoided self-supporting film comprising the steps of: i) mixing at least one linear polyester having together monomer units consisting essentially of terephthalate, isophthalate and aliphatic dimethylene with the molar ratio of isophthalate monomer units to terephthalate monomer units being at least 0.02 to provide a linear polyester matrix; at least one amorphous high polymer with a higher glass transition temperature than the glass transition temperature of said linear polyester matrix and/or at least one crystalline high polymer having a higher melting point than the glass transition temperature of said linear polyester matrix; and optionally at least one ingredient from the group of ingredients consisting of inorganic opacifying pigments, whitening agents, UV-absorbers, light stabilizers, antioxidants, flame retardants and colorants in a kneader or an extruder; ii) forming the mixture produced in step i) in a thick film followed by quenching; iii) longitudinally stretching the thick film at a stretching force of >4 N/mm2 to at least twice the initial length; and iv) transversly stretching the longitudinally stretched film from step (iii) to at least twice the initial width; the use of the non-transparent microvoided axially stretched film produced according to the above-described process as a synthetic paper; and the use of the non-transparent microvoided axially stretched film produced according to the above-described process image recording elements.
    • 一种制造不透明的微孔自支撑膜的方法,包括以下步骤:i)将至少一种线性聚酯与单体单元的单体单元与对苯二甲酸酯单体的摩尔比混合在一起的基本上由对苯二甲酸酯,间苯二甲酸酯和脂肪族二亚甲基组成的单体单元 单元为至少0.02以提供线性聚酯基质; 至少一种具有比所述线性聚酯基质的玻璃化转变温度高的玻璃化转变温度和/或具有比所述线性聚酯基体的玻璃化转变温度更高的熔点的至少一种结晶高分子的至少一种无定形高分子; 和任选的至少一种成分,由捏合机或挤出机中的无机遮光颜料,增白剂,紫外线吸收剂,光稳定剂,抗氧化剂,阻燃剂和着色剂组成的成分组成; ii)在厚膜中形成步骤i)中制备的混合物,随后淬火; iii)以> 4N / mm 2的拉伸力将厚膜纵向拉伸至初始长度的至少两倍; 和iv)将从步骤(iii)的纵向拉伸膜横向拉伸至初始宽度的至少两倍; 使用根据上述方法制造的非透明微孔轴向拉伸膜作为合成纸; 以及使用根据上述处理图像记录元件制造的非透明微孔轴向拉伸膜。