Abstract:
A method of processing, by use of an automatic processor, a black-and-white silver halide photographic light-sensitive material containing a hydrazine compound and a redox compound capable of releasing an inhibitor upon oxidation, wherein a developer is replenished by a developer replenisher at a rate of not more than 200 ml per m.sup.2 of the photographic material, and the developer has a pH of 9.5 to 10.8. The developer further contains a compound represented by the following formulas [1], [2] or [3]. ##STR1##
Abstract translation:通过使用自动处理器处理含有肼化合物和能够在氧化时释放抑制剂的氧化还原化合物的黑白卤化银照相感光材料的方法,其中显影剂由显影剂补充液补充 以每平方米照相材料不超过200ml的速率,并且显影剂的pH为9.5至10.8。 显影剂还含有由下式[1],[2]或[3]表示的化合物。 ZSM公式[1] Formula [2] Formula [3]
Abstract:
A time-switch circuit for use in a primary time switch (PTSW), a secondary time switch (STSW), and a space switch (SSW) of a digital time-division switching system is disclosed. The time switch comprises a plurality of memory circuits (MUC.sub.11 to MUC.sub.15, MUC.sub.21 to MUC.sub.25). Each memory circuit comprises a memory unit (MEM), an address buffer (AB) for a first address, an m-ary counter (T-CTR) for a second address, an address selector (AS) for selecting either the first or second address, an input data buffer (IB), and an output data buffer (OB). In a write cycle, input data from the input data buffer is written into the memory unit by either the first or second address signal, and in a read cycle, output data is read out of the memory unit by either the second or first address. Selection of the first and second addresses is performed by the address selector, which is controlled by an address-selection mode switch circuit (M.sub.0). Further, the write enable mode of the memory unit is controlled by a write mode switch circuit (M.sub.1).
Abstract:
A printing method in which printing is performed by including a mechanical sheet material between a printing plate material, which is provided with a hydrophilic layer and an image forming functional layer on the one surface of a plastic support and a back-coat layer on the other surface, and a plate drum of a printing machine, wherein the surface specific restance of the back coat layer side of said printing plate material is 1×109−2×1013 Ωand the surface specific resistance of the surface of said mechanical sheet material in contact with the printing plate material is 1×109−2×1015 Ω.
Abstract:
Disclosed are a planographic printing plate material comprising a plastic sheet support, and provided thereon, a hydrophilic layer, a silver halide emulsion layer, a physical developing nucleus-containing layer, and a backing layer, wherein the hydrophilic layer, the silver halide emulsion layer, and the physical developing nucleus-containing layer are provided on one side of the support, and the backing layer is provided on the other side of the sheet opposite the silver halide emulsion layer, and wherein a surface on the backing layer side has a specific resistance of from 1×1011 to 1×1013 Ω, and a coefficient of dynamic friction of from 0.15 to 0.6, the coefficient of dynamic friction being one of the surface on the backing layer side to a stainless steel surface.
Abstract:
A printing process employing a processless printing plate material is disclosed, the process comprising the steps of (a) imagewise exposing a printing plate material comprising a support with a hydrophilic surface and an image formation layer provided on the hydrophilic surface, (b) mounting the exposed printing plate material on a plate cylinder of a printing press, (c) supplying a dampening solution and printing ink to the mounted printing plate material, whereby the image formation layer at non-image portions is removed to obtain a printing plate, and (d) further supplying the dampening solution and printing ink to the resulting printing plate, wherein the dampening solution contains water, a wetting property improving agent and a phosphorous compound in an amount of not more than 0.01 mol/liter, the dampening solution having a pH of from 4.5 to 8.0.
Abstract:
Disclosed is a printing method comprising the steps of mounting an underlay sheet on a plate cylinder of a printing press, and providing, on the underlay sheet, a printing plate material comprising a plastic sheet support, and provided thereon, a hydrophilic layer, an image formation layer and a backing layer, the backing layer being provided on the side of the support opposite the image formation layer, so that the backing layer side surface of the printing plate material contacts the underlay sheet surface, wherein a coefficient of dynamic friction of the backing layer side surface of the printing plate material to the underlay sheet surface is from 0.1 to 0.5.
Abstract:
A thermally developable material comprising a support, an image forming layer containing an organic silver salt, and a component layer provided on the same side as said image forming layer provided, wherein the stiffness (ST) of said thermally developable material under conditions of 23° C. and 50% RH is 30 g≦ST≦80 g.
Abstract translation:一种可热显影的材料,其包含载体,含有有机银盐的图像形成层和设置在与所述图像形成层相同的一侧上的组分层,其中所述热显影材料在23°的条件下的刚度(ST) C.和50%RH为30g <= ST <= 80g。
Abstract:
A thermally developable material comprising a support, an image forming layer containing organic silver salts, and a component layer provided on the image forming layer side, wherein a smooster value on the surface of said image forming layer side of said thermally developable material is not more than 40 mm Hg, and said image forming layer or said component layer contains a fluorine containing surfactant.
Abstract:
The improve silver halide photographic material contains a specified hydrazide compound and a specified polyoxyethylene based compound and is capable of providing high-contrast image with high sensitivity in a rapid and consistent way.
Abstract:
A method of manufacturing silver halide photographic light-sensitive material with little habitual curling is disclosed. The material, after being coated with a silver halide emulsion layer and antistatic layer on the polyester support, is rolled around a core with its emulsion side facing outside, and then heated at the temperature not less than 30.degree. C. After the heat-treatment, the material is cut and re-rolled on a commercial size core with its emulsion side facing inside.