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    • 3. 发明授权
    • Method for accurate exposure of small dots on a heat-sensitive positive-working lithographic printing plate material
    • 在热敏正性平版印刷版材料上精确曝光小点的方法
    • US07467587B2
    • 2008-12-23
    • US11114210
    • 2005-04-21
    • Joan VermeerschWim SapMarc Van Damme
    • Joan VermeerschWim SapMarc Van Damme
    • B41C1/10B41M1/06G03F7/00
    • B41C1/1008B41C2210/02B41C2210/06B41C2210/22B41C2210/24B41C2210/262
    • A method is disclosed for accurate reproduction of high-quality halftone images comprising microdots by means of lithographic plate materials which comprise a heat-sensitive positive-working coating that requires wet processing. Such microdots have a dot size ≦25 μm and may be obtained by stochastic screening or by amplitude-modulated screening at a ruling of not less than 150 lpi. It has been established that the “physical right exposure energy density” (physical REED) lies in the range from CP to 1.5*CP, wherein the physical REED is defined as the energy density at which the physical area on the plate, occupied by a microdot corresponding to a 50% halftone in the image data, coincides with the 50% target value; and wherein CP is the clearing point of the plate which is defined as the minimum energy density that is required to obtain, after processing, a dissolution of 95% of the coating. An accurate reproduction of microdots can therefore be achieved by exposing the material with light having an energy density in the range from CP to 1.5*CP. Loss of microdots by overexposure is thereby avoided.
    • 公开了一种用于通过平版印刷材料精确再现包含微点的高质量半色调图像的方法,该平版印刷材料包括需要湿法处理的热敏正性涂层。 这样的微点具有<25μm的点大小,并且可以通过随机筛选或通过幅度调制筛选获得,尺寸不小于150lpi。 已经确定的是,“身体右曝光能量密度”(物理REED)在CP到1.5 * CP的范围内,其中物理REED被定义为板上的物理区域的能量密度,由 在图像数据中对应于50%半色调的微点符合50%的目标值; 并且其中CP是板的清除点,其被定义为在加工后95%的涂层的溶解所需的最小能量密度。 因此,通过用能量密度在CP至1.5×CP范围内的光使材料曝光,可以实现微点的精确再现。 从而避免由于过度曝光导致的微点损失。
    • 6. 发明申请
    • Method for making a lithographic printing plate
    • 平版印刷版的制造方法
    • US20060014103A1
    • 2006-01-19
    • US11173466
    • 2005-06-30
    • Joan VermeerschPascal MeeusDirk Kokkelenberg
    • Joan VermeerschPascal MeeusDirk Kokkelenberg
    • G03F7/00
    • B41C1/1025B41C2201/02B41C2201/14B41C2210/04B41C2210/06B41C2210/22B41C2210/24Y10S430/145
    • A method for making a lithographic printing plate is disclosed which comprises the steps of: (i) providing a negative-working, heat-sensitive lithographic printing plate precursor comprising a support having a hydrophilic surface or which is provided with a hydrophilic layer and a coating provided thereon, the coating comprising an image-recording layer which comprises hydrophobic thermoplastic polymer particles and a hydrophilic binder, wherein the hydrophobic thermoplastic polymer particles have an average particle size in the range from 45 nm to 63 nm and wherein the amount of the hydrophobic thermoplastic polymer particles in the image-recording layer is at least 70% by weight relative to the image-recording layer; (ii) exposing the coating to heat or infrared light, thereby inducing coalescence of the thermoplastic polymer particles at exposed areas of the coating; (iii) developing the precursor by applying an aqueous, alkaline solution, thereby removing non-exposed areas of the coating from the support, wherein the aqueous alkaline solution has a pH≧11 and comprises a phosphate buffer or a silicate buffer.
    • 公开了一种制备平版印刷版的方法,其包括以下步骤:(i)提供负性工作的热敏平版印刷版原版,其包含具有亲水性表面的支持体或设有亲水层和涂层 提供在其上的涂层包括包含疏水性热塑性聚合物颗粒和亲水性粘合剂的图像记录层,其中所述疏水性热塑性聚合物颗粒的平均粒度在45nm至63nm的范围内,并且其中所述疏水性热塑性聚合物的量 图像记录层中的聚合物颗粒相对于图像记录层为至少70重量% (ii)将涂层暴露于热或红外光,从而在涂层的暴露区域引起热塑性聚合物颗粒的聚结; (iii)通过施加水性碱性溶液来显影前体,从而从载体除去涂层的未曝光区域,其中碱性水溶液的pH> = 11且包含磷酸盐缓冲液或硅酸盐缓冲液。
    • 8. 发明申请
    • Method for accurate exposure of small dots on a heat-sensitive positive-working lithographic plate material
    • 在热敏正性平版印刷版材料上精确曝光小点的方法
    • US20050235854A1
    • 2005-10-27
    • US11114210
    • 2005-04-21
    • Joan VermeerschWim SapMarc Damme
    • Joan VermeerschWim SapMarc Damme
    • B41C1/10
    • B41C1/1008B41C2210/02B41C2210/06B41C2210/22B41C2210/24B41C2210/262
    • A method is disclosed for accurate reproduction of high-quality halftone images comprising microdots by means of lithographic plate materials which comprise a heat-sensitive positive-working coating that requires wet processing. Such microdots have a dot size ≦25 μm and may be obtained by stochastic screening or by amplitude-modulated screening at a ruling of not less than 150 lpi. It has been established that the “physical right exposure energy density” (physical REED) lies in the range from CP to 1.5*CP, wherein the physical REED is defined as the energy density at which the physical area on the plate, occupied by a microdot corresponding to a 50% halftone in the image data, coincides with the 50% target value; and wherein CP is the clearing point of the plate which is defined as the minimum energy density that is required to obtain, after processing, a dissolution of 95% of the coating. An accurate reproduction of microdots can therefore be achieved by exposing the material with light having an energy density in the range from CP to 1.5*CP. Loss of microdots by overexposure is thereby avoided.
    • 公开了一种用于通过平版印刷材料精确再现包含微点的高质量半色调图像的方法,该平版印刷材料包括需要湿法处理的热敏正性涂层。 这样的微点具有<25μm的点大小,并且可以通过随机筛选或通过幅度调制筛选获得,尺寸不小于150lpi。 已经确定的是,“身体右曝光能量密度”(物理REED)在CP到1.5 * CP的范围内,其中物理REED被定义为板上物理区域由能量密度 在图像数据中对应于50%半色调的微点符合50%的目标值; 并且其中CP是板的清除点,其被定义为在加工后95%的涂层的溶解所需的最小能量密度。 因此,通过用能量密度在CP至1.5×CP范围内的光使材料曝光,可以实现微点的精确再现。 从而避免由于过度曝光导致的微点损失。
    • 10. 发明授权
    • On-press exposure and on-press processing of a lithographic material
    • 压制曝光和平版印刷材料的印刷加工
    • US06789480B2
    • 2004-09-14
    • US10068017
    • 2002-02-05
    • Joseph Vander AaJoan Vermeersch
    • Joseph Vander AaJoan Vermeersch
    • B41C110
    • B41C1/1075B41C1/1008B41C1/1016B41C2201/02B41C2201/14B41C2210/02B41C2210/04B41C2210/08B41C2210/16B41C2210/22B41C2210/24
    • A method of lithographic printing is disclosed which comprises the steps of unwinding a web of an imaging material from a supply spool, the imaging material comprising (1) a flexible lithographic base having a hydrophilic surface and (2) an image-recording layer which is removable in a single-fluid ink or can be rendered removable in a single-fluid ink by exposure to heat or light, wrapping the imaging material around a cylinder of a printing press, image-wise exposing the image-recording layer to heat or light, processing the image-recording layer by supplying single-fluid ink, thereby obtaining a printing master, printing by supplying single-fluid ink to the printing master which is mounted on a plate cylinder of the printing press, removing the printing master from the plate cylinder, preferably by winding up on an uptake spool. Since the image-recording layer can be processed by single-fluid ink, the imaging material is suitable for on-press processing in printing presses wherein no fountain solution is supplied to the plate. The method allows a rapid, fully automatic plate change with reduced press down time.
    • 公开了一种平版印刷方法,其包括以下步骤:从供应卷轴开卷成像材料的卷材,所述成像材料包括(1)具有亲水表面的柔性平版印刷基底和(2)图像记录层, 可以在单流体墨水中移除,或者可以通过暴露于热或光而在单流体墨水中可移除,将成像材料包裹在印刷机的圆筒上,以图像方式将图像记录层暴露于热或光 通过供应单流体油墨来处理图像记录层,从而获得印刷母版,通过向安装在印刷机的印版滚筒上的印刷母版提供单一流体油墨进行印刷,从印版移除印刷母版 圆柱体,优选通过卷绕在摄影卷轴上。 由于图像记录层可以通过单流体油墨进行处理,所以成像材料适用于印刷机中的印刷加工,其中没有向板提供润版液。 该方法允许快速,全自动的板更换,减少压下时间。