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    • 1. 发明授权
    • Inkjet recording method and recorded article
    • 喷墨记录方法和记录文章
    • US08342678B2
    • 2013-01-01
    • US12701621
    • 2010-02-08
    • Hiroshi KawakamiNaoki KusunokiHideki Kaimoto
    • Hiroshi KawakamiNaoki KusunokiHideki Kaimoto
    • B41J2/01
    • B41M5/52B41J11/0005B41J29/393B41M5/5218B41M5/5245
    • An image is recorded by ejecting two or more ink compositions on a porous layer that contains inorganic microparticles and a water-soluble resin and has a porosity [%] of 50% or more with a maximum total ejection amount (mL/m2) set at less than 90% of an absorption capacity (mL/m2) of diethylene glycol in the porous layer. The porosity=(absorption capacity of diethylene glycol (mL/m2))/(thickness of porous layer (μm))×100. The maximum total ejection amount=(maximum ejection amount of one dot (mL/m2))×(total amount of ink (%)). An inkjet recording method capable of inhibiting color change from occurring to cause color irregularities when papers are stacked on an image portion within a relatively short time after recording in high-speed processing or processing of a large number of sheets, and capable of stably obtaining images recorded with desired color tone.
    • 通过在包含无机微粒和水溶性树脂的多孔层上喷射两种或更多种油墨组合物并且具有50%以上的孔隙率[%],最大总喷射量(mL / m 2)设定在 在多孔层中小于90%的二甘醇的吸收能力(mL / m 2)。 孔隙率=(二甘醇的吸收容量(mL / m 2))/(多孔层的厚度(μm))×100。 最大总喷射量=(一个点的最大喷射量(mL / m 2))×(油墨总量(%))。 能够在记录高速处理或处理大量纸张之后的相对短的时间内将纸堆积在图像部分上时能够抑制发生颜色变化的颜色变化的喷墨记录方法,并且能够稳定地获得图像 用所需的色调录制。
    • 2. 发明授权
    • Image forming method
    • 图像形成方法
    • US08182080B2
    • 2012-05-22
    • US12630867
    • 2009-12-04
    • Hiroshi KawakamiNaoki KusunokiYasuhiko Kachi
    • Hiroshi KawakamiNaoki KusunokiYasuhiko Kachi
    • B41J2/01
    • B41J11/0085B41J11/0015B41J11/06B41J11/485B41M5/0011
    • An image forming method includes: moisture-controlling one surface of an inkjet recording medium having an air permeability of 300 seconds or more; feeding the moisture-controlled inkjet recording medium onto a conveyance path in a state where the moisture-controlled inkjet recording medium is curled such that a surface of the moisture-controlled inkjet recording medium that is curved inwards faces the conveyance path for conveying the inkjet recording medium; conveying the fed inkjet recording medium while adhering the inkjet recording medium by suction onto the conveyance path; and forming an image by applying ink by an inkjet method on the inkjet recording medium adhered by suction to the conveyance path.
    • 图像形成方法包括:对具有300秒以上的透气度的喷墨记录介质的一个表面进行湿度控制; 在湿度控制喷墨记录介质卷曲的状态下将湿度控制喷墨记录介质供给到输送路径上,使得向内弯曲的水分控制喷墨记录介质的表面面向用于输送喷墨记录的输送路径 中; 在将所述喷墨记录介质通过吸附粘附到所述输送路径上的同时输送所述进给的喷墨记录介质; 以及通过喷墨法将油墨通过吸附粘附在所述输送路径上的喷墨记录介质上形成图像。
    • 3. 发明授权
    • Ink jet recording apparatus and method of ink jet recording
    • 喷墨记录装置和喷墨记录方法
    • US08070245B2
    • 2011-12-06
    • US12410939
    • 2009-03-25
    • Naoki Kusunoki
    • Naoki Kusunoki
    • B41J29/38
    • B41J29/38B41J2/17566B41J3/60
    • A first image to be recorded on a first surface is divided into front and rear half regions. Obtained thereafter is front-side ink volume and rear-side ink volume necessary for recording these half regions on the first surface. Among these half regions, the one having more ink volume is recorded in the first place. In the event of recording the rear half region in the first place, the first image is turned upside down and recorded on the first surface of the recording paper being fed in a forward direction. Alternatively, the first image is recorded on the first surface of the recording paper being fed in a backward direction. After the ink has dried on the first surface, the recording paper is reversed back to front and fed in the forward direction, and a second image is recorded on a second surface.
    • 要记录在第一表面上的第一图像被划分为前半区域和后半区域。 此后获得的是在第一表面上记录这些半个区域所需的前侧墨水量和后侧墨水量。 在这半个区域中,首先记录具有更多墨水量的区域。 在首先记录后半区域的情况下,将第一图像上下颠倒并记录在正向进给的记录纸的第一表面上。 或者,第一图像被记录在沿向后方向馈送的记录纸的第一表面上。 在墨水在第一表面上干燥之后,记录纸被反向回到前面并且向前方向进给,并且第二图像被记录在第二表面上。
    • 6. 发明授权
    • Liquid ejection head and image forming apparatus including liquid ejection head
    • 液体喷射头和包括液体喷射头的成像设备
    • US07416273B2
    • 2008-08-26
    • US11709229
    • 2007-02-22
    • Naoki Kusunoki
    • Naoki Kusunoki
    • B41J2/145B41J2/15
    • B41J2/1404B41J2/14056B41J2/2125B41J2002/14475B41J2202/21
    • The liquid ejection head includes: a large nozzle which ejects a large droplet of liquid; a small nozzle which has a smaller nozzle diameter than the large nozzle and ejects a small droplet of the liquid which has a smaller volume than the large droplet; a first heat generating element and a second heat generating element which are provided opposite to the large nozzle and the small nozzle respectively, and apply thermal energy to the liquid in at least one individual flow channel that supplies the liquid to the large nozzle and the small nozzle in such a manner that a bubble causing the large droplet of the liquid to be ejected from the large nozzle and a bubble causing the small droplet of the liquid to be ejected from the small nozzle respectively; a first liquid chamber which is provided between the large nozzle and the at least one individual flow channel and between the large nozzle and the first heat generating element corresponding to the large nozzle.
    • 液体喷射头包括:喷射大液滴的大喷嘴; 具有比大喷嘴小的喷嘴直径的小喷嘴,并且喷射具有比大液滴体积小的液体的小液滴; 分别与大喷嘴和小喷嘴相对设置的第一发热元件和第二发热元件,并且在至少一个单独的流动通道中向液体施加热能,所述至少一个单独的流动通道将液体供应到大喷嘴和小喷嘴 喷嘴,使得使大液滴从大喷嘴喷出的气泡和导致小液滴的气泡分别从小喷嘴喷出; 第一液体室,设置在大喷嘴和至少一个单独的流动通道之间,并且在大喷嘴和对应于大喷嘴的第一发热元件之间。
    • 7. 发明申请
    • Liquid ejection head and image forming apparatus including liquid ejection head
    • 液体喷射头和包括液体喷射头的成像设备
    • US20070195126A1
    • 2007-08-23
    • US11709229
    • 2007-02-22
    • Naoki Kusunoki
    • Naoki Kusunoki
    • B41J2/04
    • B41J2/1404B41J2/14056B41J2/2125B41J2002/14475B41J2202/21
    • The liquid ejection head includes: a large nozzle which ejects a large droplet of liquid; a small nozzle which has a smaller nozzle diameter than the large nozzle and ejects a small droplet of the liquid which has a smaller volume than the large droplet; a first heat generating element and a second heat generating element which are provided opposite to the large nozzle and the small nozzle respectively, and apply thermal energy to the liquid in at least one individual flow channel that supplies the liquid to the large nozzle and the small nozzle in such a manner that a bubble causing the large droplet of the liquid to be ejected from the large nozzle and a bubble causing the small droplet of the liquid to be ejected from the small nozzle respectively; a first liquid chamber which is provided between the large nozzle and the at least one individual flow channel and between the large nozzle and the first heat generating element corresponding to the large nozzle.
    • 液体喷射头包括:喷射大液滴的大喷嘴; 具有比大喷嘴小的喷嘴直径的小喷嘴,并且喷射具有比大液滴体积小的液体的小液滴; 分别与大喷嘴和小喷嘴相对设置的第一发热元件和第二发热元件,并且在至少一个单独的流动通道中向液体施加热能,所述至少一个单独的流动通道将液体供应到大喷嘴和小喷嘴 喷嘴,使得使大液滴从大喷嘴喷出的气泡和导致小液滴的气泡分别从小喷嘴喷出; 第一液体室,设置在大喷嘴和至少一个单独的流动通道之间,并且在大喷嘴和对应于大喷嘴的第一发热元件之间。
    • 9. 发明申请
    • Image forming apparatus and droplet ejection control method
    • 图像形成装置和液滴喷射控制方法
    • US20070013745A1
    • 2007-01-18
    • US11484720
    • 2006-07-12
    • Naoki Kusunoki
    • Naoki Kusunoki
    • B41J2/06
    • B41J2/04581B41J2/04526B41J2/0458B41J2/14233B41J2202/21
    • The image forming apparatus comprises: a liquid ejection head having at least one ejection hole from which liquid droplets are ejected onto a recording medium; a recording medium conveyance device which causes the liquid ejection head and the recording medium to move relatively to each other, in one direction; a flight direction deflection device which is capable of deflecting directions of flight of the liquid droplets ejected from the ejection hole, in a direction including at least a component of a direction substantially parallel to a relative conveyance direction of the recording medium; and a deflection angle setting device which sets, with respect to the ejection hole, two or more angles of deflection with reference to a normal direction to a surface in which the ejection hole are formed and which is on an ejection side, in such a manner that when dots that are mutually adjacent in the direction substantially parallel to the relative conveyance direction of the recording medium are formed in an overlapping fashion, directions of flight of liquid droplets ejected consecutively from the ejection hole are deflected so that the directions of flight of the liquid droplets ejected consecutively from the ejection hole become different from each other, and a droplet landing time differential between a first liquid droplet and a second liquid droplet which form the dots that are mutually adjacent in the direction substantially parallel to the relative conveyance direction of the recording medium becomes equal to or greater than a quasi fixing time period from a landing time of the first liquid droplet until a time at which the first liquid droplet achieves a quasi fixed state.
    • 图像形成装置包括:液体喷射头,其具有至少一个喷射孔,液滴从喷射孔喷射到记录介质上; 记录介质输送装置,其使液体喷射头和记录介质在一个方向上彼此相对移动; 飞行方向偏转装置,其能够沿着至少包括基本上平行于记录介质的相对输送方向的方向的分量的方向偏转从喷射孔喷出的液滴的飞行方向; 以及偏转角设定装置,其相对于喷射孔相对于形成喷射孔的表面的法线方向相对于喷射孔以这样的方式设定 当以与记录介质的相对传送方向基本平行的方向相互相邻的点以重叠的方式形成时,从喷射孔连续喷射的液滴的飞行方向偏转,使得 从喷射孔连续排出的液滴变得彼此不同,并且在与第一液滴和第二液滴的相对输送方向大致平行的方向上形成相互相邻的点的第一液滴和第二液滴之间的液滴着落时间差 记录介质等于或大于从着陆时间o的准固定时间段 f是第一液滴直到第一液滴达到准固定状态的时间。
    • 10. 发明申请
    • Liquid droplet ejection head and image forming apparatus
    • 液滴喷射头和图像形成装置
    • US20060012622A1
    • 2006-01-19
    • US11180704
    • 2005-07-14
    • Naoki Kusunoki
    • Naoki Kusunoki
    • B41J29/38
    • B41J2/145B41J2002/14241B41J2202/20
    • The liquid droplet ejection head comprises: first nozzles which eject droplets of a first liquid to an ejection receiving medium; second nozzles which eject droplets of a second liquid to the ejection receiving medium; first pressure chambers which are connected to the first nozzles and filled with the first liquid to be ejected from the first nozzles; first pressure generating devices which cause the first liquid to be ejected from the first nozzles by applying pressure to the first liquid inside the first pressure chambers; second pressure chambers which are connected to the second nozzles and filled with the second liquid to be ejected from the second nozzles; and second pressure generating devices which cause the second liquid to be ejected from the second nozzles by applying pressure to the second liquid inside the second pressure chambers, wherein the first nozzles and the second nozzles are arranged in a two-dimensional array and disposed adjacently in mutual proximity so as to be aligned in a sub-scanning direction which is parallel to a relative direction of movement of the ejection receiving medium and the liquid droplet ejection head, in such a manner that the first liquid and the second liquid ejected respectively from the first nozzle and the second nozzle that are arranged in mutual proximity are deposited at substantially same position on the ejection receiving medium.
    • 液滴喷射头包括:将第一液体的液滴喷射到喷射接收介质的第一喷嘴; 将第二液体的液滴喷射到喷射接收介质的第二喷嘴; 第一压力室,其连接到第一喷嘴并且填充有要从第一喷嘴喷射的第一液体; 第一压力产生装置,其通过对第一压力室内的第一液体施加压力而使第一液体从第一喷嘴喷射; 第二压力室,其连接到第二喷嘴并且填充有要从第二喷嘴喷射的第二液体; 以及第二压力产生装置,其通过向第二压力室内的第二液体施加压力而使第二液体从第二喷嘴喷射,其中第一喷嘴和第二喷嘴被布置成二维阵列并且相邻设置 相互接近,以便在与喷射接收介质和液滴喷射头的相对运动方向平行的副扫描方向上对准,使得第一液体和第二液体分别从 第一喷嘴和第二喷嘴相互邻近地布置在喷射接收介质上的基本相同的位置。