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    • 1. 发明申请
    • Misregistration when printing speed is changed, cutting misregistration, or pinter in which variation of printing density can be controlled
    • 当打印速度改变时,配准失调,切割失调或可以控制打印浓度变化的凹坑
    • US20060005722A1
    • 2006-01-12
    • US10507208
    • 2003-03-24
    • Satoshi NobukawaShigeo MakinoShinichiro SenooYoshitaka Hamamoto
    • Satoshi NobukawaShigeo MakinoShinichiro SenooYoshitaka Hamamoto
    • B41F5/16B41F5/18
    • B41F13/12B41P2233/10
    • A fluctuation characteristic of registration between images printed by individual printing units (4A, 4B, 4C, 4D) while changing print speed is predicted for each of particular printing conditions that affect the registration fluctuation characteristic. Based on the predicted fluctuation characteristic of registration, a control characteristic of the phase between plate cylinders (5, 5, 5, 5) of the individual printing units (4A, 4B, 4C, 4D) is preliminarily set so as to compensate for vertical image misregistration between images printed by the individual printing units (4A, 4B, 4C, 4D), and is stored in a database (32). Then, when the print speed is being changed, from among the plural phase control characteristics thus preliminarily stored in the database (32), a phase control characteristic that corresponds to a printing condition concerning the current printing is selected, and the phase relation between the plate cylinders (5, 5, 5, 5) of the individual printing units (4A, 4B, 4C, 4D) is being modified according to the selected phase control characteristic. Thereby vertical image misregistration can be suppressed and the occurrence of brokes due to the change of print speed can be prevented.
    • 对于影响配准波动特性的每个特定打印条件,预测在改变打印速度的同时由各打印单元(4A,4B,4C,4D)打印的图像之间的配准的波动特性。 基于预测的配准波动特性,预先设定各打印单元(4A,4B,4C,4D)的印版滚筒(5,5,5,5)之间的相位的控制特性,以便 以补偿由各个打印单元(4A,4B,4C,4D)打印的图像之间的垂直图像重合,并存储在数据库(32)中。 然后,当打印速度改变时,从预先存储在数据库(32)中的多个相位控制特性中,选择与当前打印有关的打印条件相对应的相位控制特性, 各打印单元(4A,4B,4C,4D)的印版滚筒(5,5,5,5)根据选定的相位控制特性进行修改。 由此可以抑制垂直图像重合失调,并且可以防止由于打印速度的变化引起的突变的发生。
    • 4. 发明申请
    • SHEET-FED DUPLEX PRINTING PRESS
    • SHEET-FED双面印刷机
    • US20120314013A1
    • 2012-12-13
    • US13579931
    • 2011-01-17
    • Shuichi TakemotoShinichiro SenooMasahiro TaketsuguMinoru Sato
    • Shuichi TakemotoShinichiro SenooMasahiro TaketsuguMinoru Sato
    • B41J2/01
    • B41J3/543B41J2/0057B41J11/002
    • A sheet-fed duplex printing press includes a front-surface printing unit having a first impression cylinder that can carry cut paper by rotating while holding the cut paper a first blanket cylinder that contacts the first impression cylinder and can transfer heatset ink onto a front surface of the cut paper, and a first ink jet head that can supply the heatset ink to the first blanket cylinder, and a rear-surface printing unit having a second impression cylinder that can carry the cut paper by rotating while holding the cut paper, a second blanket cylinder that contacts the second impression cylinder and can transfer heatset ink onto a rear surface of the cut paper, and a second ink jet head that can supply the heatset ink to the second blanket cylinder, in which the first impression cylinder and the second impression cylinder directly contact each other.
    • 单张纸双面打印机包括前表面印刷单元,其具有第一压印滚筒,该第一压印滚筒可以通过旋转而携带切纸,同时将切割的纸张保持在与第一压印滚筒接触的第一橡皮布滚筒的同时,并将热定影油墨传送到前表面 的第一喷墨头,以及能够将热定型油墨供应到第一橡皮布滚筒的第一喷墨头,以及具有第二压印滚筒的后表面印刷单元,所述第二压印滚筒能够在保持切纸的同时转动而携带切纸 第二橡皮滚筒,其接触第二压印滚筒并且可以将热固墨水转印到切纸的后表面上;以及第二喷墨头,其可以将第一印模滚筒和第二印刷滚筒的第二印刷滚筒供应到第二橡皮布滚筒, 压印滚筒直接相互接触。
    • 5. 发明申请
    • DEVICE AND METHOD FOR MEASURING CONCENTRATION OF LIQUID TONER
    • 用于测量液体浓度浓度的装置和方法
    • US20100215386A1
    • 2010-08-26
    • US12675188
    • 2008-08-26
    • Shinichiro Senoo
    • Shinichiro Senoo
    • G03G13/10
    • G03G15/105G01N21/5907G01N2021/5992G03G15/11
    • In a device and a method for measuring the concentration of liquid toner, for accurate detection of the concentration of liquid toner, provided are a rotary roller; a toner adhesion portion along the outer circumference of the roller, the toner adhesion portion being configured to hold liquid toner T; a sensor for detecting the concentration of the liquid toner based on the amount of light that is reflected from the liquid toner T adhering at a predetermined thickness to the toner adhesion portion; and a scraping blade for scraping off the liquid toner from the toner adhesion portion after the detection by the sensor, and apply voltage of the same polarity as that of the liquid toner to the toner adhesion portion when the liquid toner is scraped off by the scraping blade.
    • 在用于测量液体调色剂浓度的装置和方法中,为了精确检测液体调色剂的浓度,提供了一种旋转辊; 调色剂附着部分,其沿着所述辊的外圆周,所述调色剂附着部被构造成保持液体调色剂T; 用于基于从预定厚度粘附到调色剂粘附部分的液体调色剂T反射的光量来检测液体调色剂的浓度的传感器; 以及用于在由传感器检测到之后从调色剂粘附部刮掉液体调色剂的刮刀,并且当液体调色剂被刮擦刮掉时,将与液体调色剂相同极性的电压施加到调色剂粘附部分 刀。
    • 6. 发明申请
    • WEB OFFSET PRESS AND OPERATION METHOD FOR THE SAME
    • WEB偏移压缩和操作方法
    • US20090193989A1
    • 2009-08-06
    • US12306276
    • 2007-07-17
    • Shinichiro Senoo
    • Shinichiro Senoo
    • B41F5/04
    • B65H23/1888B41F13/02B65H2301/10B65H2511/414B65H2801/21
    • An object of the present invention is to provide a web offset press that is capable of reducing costs and reliably preventing wrinkles that occur in a web during low-speed operation. A web offset press includes a printing section that prints on a web that is transported; an in-feed drag that is provided upstream of the printing section and that adjusts a tension of the web and transports it downstream; a cooling drag that is provided downstream of the printing section and that transports the web at a transport speed higher than that of the in-feed drag; and a tension control unit that controls a tension of the web. The tension control unit has a tension-release operating mode (TM) where a transport-speed difference between the cooling drag and the in-feed drag is smaller than a transport-speed difference between the cooling drag and the in-feed drag during printing.
    • 本发明的目的是提供一种卷筒纸胶版印刷机,其能够降低成本并可靠地防止在低速操作期间在卷筒纸中发生的褶皱。 卷筒纸胶印机包括印刷部分,其印刷在被传送的纸幅上; 馈送阻力,其设置在打印部分的上游,并且调节卷筒纸的张力并将其运送到下游; 设置在印刷部的下游并以高于进料内阻力的输送速度输送纸幅的冷却阻力; 以及张力控制单元,其控制幅材的张力。 张力控制单元具有拉伸释放操作模式(TM),其中冷却阻力和进给阻力之间的输送速度差小于打印期间冷却拖曳和进给曳力之间的输送速度差 。