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    • 3. 发明授权
    • Method of recycling support material for image-bearing member
    • 图像承载部件的支撑材料回收方法
    • US5607534A
    • 1997-03-04
    • US293323
    • 1994-08-22
    • Toshiyuki KawanishiMasato IgarashiEiichi KawamuraTadashi SaitohKiyoshi TanikawaKakuji Murakami
    • Toshiyuki KawanishiMasato IgarashiEiichi KawamuraTadashi SaitohKiyoshi TanikawaKakuji Murakami
    • B41M7/00D21H27/14G03G21/00
    • D21H27/14B41M7/0009G03G21/00
    • A method of recycling a support material for supporting images thereon, at least part of the support material including a paper layer which contains cellulose fibers as the main component and bears thereon hydrophobic images having a coloring agent and a heat softening or thermofusible material, includes the steps of causing the support material to hold a water-containing image peeling liquid thereon; bringing an image peeling member into contact with the hydrophobic images while the image peeling liquid is held on the support material; and peeling the hydrophobic images off the paper layer, with the image peeling liquid being held in an amount of 1.0 g or more per A4-size paper layer, or with the rate of the penetration of the image peeling liquid into the paper layer of the support material being set at 12 ml/m.sup.2 or more for a contact time of 0.4 seconds in which the image peeling liquid is in contact with the paper layer, or with the contact angle of the image peeling liquid with respect to the hydrophobic images being 100.degree. or less.
    • 一种再循环用于支撑图像的支撑材料的方法,至少部分支撑材料包括含有纤维素纤维作为主要成分的纸层并且具有着色剂和热软化或热熔性材料的疏水性图像, 使支撑材料在其上容纳含水图像剥离液的步骤; 使图像剥离部件与疏水图像接触,同时将图像剥离液体保持在支撑材料上; 并将疏水性图像从纸层剥离,图像剥离液的每个A4纸层保持为1.0g以上,或者图像剥离液渗入纸层的纸层的速度 支撑材料设定为12ml / m 2以上,接触时间为0.4秒,图像剥离液与纸层接触,或图像剥离液相对于疏水图像的接触角为100 DEG以下。
    • 6. 发明授权
    • Image holding-supporting member and regenerating method thereof
    • 图像保持支撑构件及其再生方法
    • US5474617A
    • 1995-12-12
    • US115194
    • 1993-08-31
    • Tadashi SaitoKiyoshi TanikawaToshiyuki KawanishiIwao Takahashi
    • Tadashi SaitoKiyoshi TanikawaToshiyuki KawanishiIwao Takahashi
    • B41M7/00G03G7/00G03G21/00B08B1/02
    • B41M7/0009G03G21/00G03G7/00
    • A method for regenerating an image holding-supporting member has the steps of impregnating the image holding-supporting member with a liquid including at least water molecules; the image holding-supporting member having a chartaceous material constructed by cellulose as a principal component and having a hydrophobic image formed on this chartaceous material; and separating the hydrophobic image from the chartaceous material by an image separator in an impregnating state of the liquid so that an image can be recopied and reprinted on the chartaceous material. In accordance with this reproducing method, a copy is made or a sheet of printing paper is regenerated by cleanings of a PPC copying image and a PPC printing image normally utilized in markets at present in addition to cleaning of images copied and printed on sheets of special paper such as erasable paper so that the image holding-supporting member can be reused as a paper sheet for copying or printing. Another reproducing method and another image holding-supporting member are also shown. An apparatus for reproducing the image holding-supporting member is further shown.
    • 用于再生图像保持支撑构件的方法具有以下步骤:使含有至少水分子的液体浸渍图像保持支撑构件; 所述图像保持支撑构件具有由纤维素作为主要成分构成并具有形成在该表面材料上的疏水性图像的表皮材料; 并通过液体的浸渍状态下的图像分离器将疏水性图像与表皮材料分离,使得图像可以在表皮材料上重新印刷并转印。 根据这种再现方法,除了清洁复制和打印在特殊页面上的图像之外,还通过清洁PPC复印图像和目前市场中正常使用的PPC打印图像来复制或复印一张打印纸 诸如可擦除纸的纸张,使得图像保持支撑构件可以重复用作用于复印或打印的纸张。 还示出了另一种再现方法和另一种图像保持支撑构件。 进一步示出了用于再现图像保持支撑构件的装置。
    • 8. 发明授权
    • Non-impact electrothermic recording method
    • 非冲击电热记录方法
    • US4853707A
    • 1989-08-01
    • US231205
    • 1988-08-11
    • Toshiyuki KawanishiYukio Tabata
    • Toshiyuki KawanishiYukio Tabata
    • B41J2/36B41J2/325B41J2/35B41J2/42B41M5/24B41M5/382G01D15/10H04N1/46
    • B41M5/3825B41J2/325B41J2/35
    • A non-impact electrothermic recording method using an ink sheet comprising at least an electroconductive base layer, an electroconductive thin layer and an electroconductive image transfer ink layer, with the effective resistance of the ink sheet being in the range of from 50.OMEGA. to 20 K.OMEGA., is disclosed which is carried out by superimposing the ink sheet on a recording medium and applying between an recording electrode and a return electrode situated in contact with the ink sheet (i) image-delineating voltage signals with a fixed application time, with the voltage of the image-delineating signals changed in accordance with the image density of images to be reproduced on the recording medium, or (ii) image-delineating voltage signals with a fixed voltage, with the application time changed in accordance with the image density of images to be reproduced on the recording medium, so as to generate Joule's heat in the portions in the ink sheet immediately below the recording electrode; and transferring the electroconductive thermal-transferable ink material from the ink sheet to the recording medium.
    • 一种使用至少包含导电基底层,导电薄层和导电图像转印油墨层的油墨片的非冲击电热记录方法,油墨片的有效电阻在50欧姆到20K的范围内 公开了通过将油墨纸叠加在记录介质上并施加在与油墨纸接触的记录电极和返回电极之间进行的OMEGA(i)以固定的施加时间对图像描绘电压信号, 图像描绘信号的电压根据要在记录介质上再现的图像的图像密度而变化,或者(ii)图像描绘具有固定电压的电压信号,其中应用时间根据图像密度 要在记录介质上再现的图像,以便在记录电极正下方的墨片中的部分产生焦耳热 ; 并将导电性热转印墨水材料从油墨片转印到记录介质上。