Abstract:
A photosensitive resin composition containing a high molecular compound having at least a) a fluoro aliphatic group, and b) a group represented by formula —L—P (wherein L represents a divalent organic group connected to the skeleton of the high molecular compound, and P represents an aromatic group having a carboxyl group at the ortho-position).
Abstract:
The present invention includes a support having thereon an image forming layer containing at least a water-insoluble and alkali-soluble high-molecular compound and a dissolution inhibitor. The dissolution inhibitor is a compound having a structure represented by the following general formula (1) and having an absorption maximum at a wavelength in a range of 760 nm to 1,200 nm, or an onium salt represented by the following general formula (2).XnullMnullnullnullGeneral formula (1):In the general formula (1), Xnull represents an anion containing at least one substituent having an alkali-dissociating proton; and Mnull represents a counter cation which is an atomic group having an absorption maximum at a wavelength in a range of 760 nm to 1,200 nm.XnullM1nullnullnullGeneral formula (2):In the general formula (2), Xnull represents an anion containing at least one substituent having an alkali-dissociating proton; and M1null represents a counter cation selected from solfonium, iodonium, ammonium, phosphonium, and oxonium.
Abstract:
A method of graft polymerization which includes a step of forming a polymerization initiating layer in which a polymer having, on a side chain thereof, a crosslinking group and a functional group having polymerization initiating capability is immobilized on a support by a crosslinking reaction, and a step of conatacting a compound having a polymerizable functional group with the polymerization initiating layer, and then bonding the compound to the polymerization initiating layer supplying energy thereto, as well as a hydrophilic member, a printing plate precursor, a pattern forming material, a pattern forming method, a method of producing a particle-adsorbed material, and a method of producing a metal particle-dispersed thin layer film, to which the above-mentioned method of graft polymerization can be applied.
Abstract:
An object of the present invention is to provide a method for manufacturing such a dry lithographic printing master plate that has eliminated uneven plate performance and more specifically that provides a stable adhesiveness between a heat-sensitive layer and a silicone rubber layer as well as a high aging stability of a coating solution. Provided is a method for preparing a master plate useful for making a dry lithographic printing plate comprising at least a heat-sensitive layer and a silicone rubber layer which are stacked in this order on a substrate, said method comprising the steps of: (1) dissolving a diorgano-polysiloxane and a curing catalyst in a solvent; (2) dissolving a cross-linking agent in a solvent; (3) mixing the solution obtained in the step (1) with the solution obtained in the step (2); and (4) applying the mixture obtained in the step (3) over the heat-sensitive layer to thereby form the silicone rubber layer.
Abstract:
The present invention relates to a resin composition comprising: an alkali-soluble resin (A); an infrared absorbing agent (B); and a thiol compound (C), wherein a solubility thereof in an alkaline aqueous solution is changed by exposure with a infrared laser ray, and a positive or negative-type image recording layer containing the resin composition.
Abstract:
Thermally imageable elements and methods for their preparation and use are disclosed. The elements contain, in order, a substrate; an underlayer; and an ink-repellent layer. The underlayer contains a crosslinked allyl functional polyurethane. A photothermal conversion material is present in either in the underlayer or in an absorber layer between the underlayer and the ink-repellent layer. Thermal imaging and development removes the ink-repellent layer and reveals the underlayer in the exposed regions to form an imaged element useful as a waterless lithographic printing plate.
Abstract:
A method for preparing a lithographic printing plate is provided which can well disperse insoluble matter caused by components of an image-forming layer in a plate-making process to inhibit the generation of processing scum, while maintaining good developing properties, and can further provide the plate having no gum repellency thereon and improved in the state of a gum-coated surface, the method for preparing a lithographic printing plate comprising exposing a photosensitive lithographic printing plate precursor having an image-forming layer containing an infrared absorption dye, and developing the exposed photosensitive lithographic printing plate precursor with an alkali developer containing a sulfonate group-containing anionic surfactant.
Abstract:
A image forming material has a support having thereon a recording layer which is formed of a composition whose solubility in water or in an alkali aqueous solution is altered by the effects of light or heat, and an intermediate layer which is disposed between the support and the recording layer and which has the same function as that of the recording layer and whose sensitivity to light or heat is higher than that of the recording layer.
Abstract:
A lithographic printing plate precursor comprising an aluminum substrate, an image-recording layer and a hydrophilic film, the aluminum substrate being subjected to an electrochemical surface-roughening treatment in an aqueous solution comprising hydrochloric acid and provided with the hydrophilic film having a heat conductivity of 0.05 to 0.5 W/mK and/or at least one of a density of 1,000 to 3,200 kg/m3 and a porosity of 20 to 70%; and a lithographic printing plate precursor comprising an aluminum substrate, an image-recording layer and a hydrophilic film, the aluminum substrate having a surface-roughened shape comprising a small pit wherein an average opening size of the small pit is 0.01 to 3 nullm and a ratio of an average depth of the small pit to the average opening size is 0.1 to 0.5, and being provided with the hydrophilic film having a heat conductivity of 0.05 to 0.5 W/mK and/or at least one of a density of 1,000 to 3,200 kg/m3 and a porosity of 20 to 70%.
Abstract translation:包括铝基板,图像记录层和亲水膜的平版印刷版原版,所述铝基板在包含盐酸的水溶液中进行电化学表面粗糙化处理,并提供具有导热性的亲水膜 0.05〜0.5W / mK,和/或密度为1000〜3200kg / m 3,孔隙率为20〜70%的至少一种。 以及包含铝基板,图像记录层和亲水膜的平版印刷版原版,所述铝基板具有包括小坑的表面粗糙化形状,其中小坑的平均开口尺寸为0.01〜3μm, 小坑的平均深度与平均开口尺寸的比例为0.1〜0.5,并且具有导热率为0.05〜0.5W / m·K的亲水性膜和/或密度为1000〜3,200 kg / m 3,孔隙率为20〜70%。
Abstract:
A positive working lithographic printing plate precursor comprising a lower layer containing a water-insoluble and alkali-soluble resin, and an upper heat-sensitive layer containing a water-insoluble and alkali-soluble resin and an infrared absorbing dye and increasing the solubility in an alkaline aqueous solution by heating, provided in this order on a hydrophilic support, and (a) the upper heat-sensitive layer containing at least two kinds of surface active agents, or (b) the lower layer and upper heat-sensitive layer each containing a surface active agent different from each other.