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    • 1. 发明申请
    • インクジェット記録装置
    • 喷墨记录装置
    • WO2015049918A1
    • 2015-04-09
    • PCT/JP2014/070550
    • 2014-08-05
    • 株式会社日立産機システム
    • 有馬 崇博原田 信浩
    • B41J2/17B41J2/01B41J2/025B41J2/175
    • B41J29/02B41J2/03B41J2/075B41J2/175
    •  インクジェット記録装置のインク容器において、顔料系インクでチタンなどが混合されている場合だと沈降し易いために、インク容器の下部に配置したマグネチックスターラを回転させインク容器内に磁性体の撹拌子を回転させて撹拌を行なっているが、高速回転では脱調を生じたり、装置を使用しない状態が続くと顔料が沈降し、撹拌子が動作しない場合があった。本発明は、容器内の顔料インクを良好に撹拌することができるインクジェット記録装置を提供するものであって、インク容器の撹拌装置は、インク容器内に磁性体の撹拌子を配置し、インク容器の下部にマグネチックスターラとモータを配置し、モータでマグネチックスターラの回転を制御して撹拌子の回転速度を制御することにより上記課題を解決した。
    • 在用于喷墨记录装置的墨水容器中,如果将钛等与颜料墨水混合,则容易发生沉淀,因此通过旋转设置在墨水容器底部的磁性搅拌棒进行搅拌,从而旋转磁性 在墨水容器内的搅拌器,但是存在高速旋转造成灰度降低的情况,并且不使用该装置的长时间状态已使颜料沉淀,搅拌棒不起作用。 本发明提出的问题在于提供能够有效地搅拌容器内的颜料墨的喷墨记录装置。 该问题通过以下方式解决:对于用于墨水容器的搅拌装置,磁性搅拌器设置在墨水容器内部,磁性搅拌棒和马达设置在墨水容器的底部,旋转 磁力搅拌棒由马达控制,从而控制搅拌器的转速。
    • 4. 发明申请
    • PRINTHEAD FOR INKJET PRINTING DEVICE
    • 喷墨打印设备
    • WO2013036424A1
    • 2013-03-14
    • PCT/US2012/053012
    • 2012-08-30
    • EASTMAN KODAK COMPANYSIEBER, Kurt, D.
    • SIEBER, Kurt, D.
    • B41J2/16B41J2/03B41J2/14
    • B41J2/1606B41J2/03B41J2/14129B41J2/1601B41J2/1642B41J2/1646B41J2202/22C23C16/405
    • An inkjet printhead is provided for a digitally controlled inkjet printing apparatus wherein the inkjet printhead is comprised of a material layer and a drop formation mechanism positioned in or on the material layer, that is substantially improved in chemical resistance and thermally stability. A chemically resistant and thermally stable multilayer coating is provided onto and in contact with the inkjet printhead, wherein the multilayer coating includes one or more thin film layers comprised primarily of hafnium oxide or zirconium oxide and one or more thin film layers comprised primarily of tantalum oxide, the multilayer coating being located on the material layer. The corrosion resistant film used in the invention is particularly beneficial because it can be formed on the printhead using atomic layer deposition film forming methods that produce conformal films that cover complex geometries, thereby enabling the corrosion resistant film to be formed on all surfaces of the printhead that come in contact with inks or other fluids employed in the printing system.
    • 为数字控制的喷墨打印设备提供喷墨打印头,其中喷墨打印头包括位于材料层中或材料层上的材料层和液滴形成机构,其基本上改善了耐化学性和热稳定性。 在喷墨打印头上提供耐化学性和热稳定性的多层涂层,其中多层涂层包括主要由氧化铪或氧化锆组成的一个或多个薄膜层和主要由氧化钽组成的一个或多个薄膜层 ,多层涂层位于材料层上。 本发明中使用的耐腐蚀膜是特别有益的,因为它可以使用产生覆盖复杂几何形状的保形膜的原子层沉积膜形成方法在打印头上形成,从而使耐腐蚀膜能够形成在打印头的所有表面上 其与印刷系统中使用的油墨或其它流体接触。
    • 5. 发明申请
    • PRINTHEAD STIMULATOR/FILTER DEVICE PRINTING METHOD
    • PRINTHEAD刺激器/过滤器打印方法
    • WO2011137013A1
    • 2011-11-03
    • PCT/US2011/033349
    • 2011-04-21
    • EASTMAN KODAK COMPANYXIE, YonglinBAUMER, Michael, FrankLOPEZ, Ali, Gerardo
    • XIE, YonglinBAUMER, Michael, FrankLOPEZ, Ali, Gerardo
    • B41J2/03
    • B41J2/03B41J2/155B41J2002/031B41J2002/033B41J2002/14403
    • A method for forming drops includes providing a jetting module (48) that includes a nozzle plate (49), portions of the nozzle plate defining a nozzle (50); a thermal stimulation membrane (100) including a plurality of pores (110) and one or more heating elements (150); and an enclosure extending from the nozzle towards the thermal stimulation membrane, the enclosure defining a liquid chamber (53) positioned between the nozzle and the thermal stimulation membrane, the liquid chamber being in fluid communication with each of the nozzle and the plurality of pores; providing liquid under pressure sufficient to cause the liquid to divide into a plurality of portions as the liquid flows through the thermal stimulation membrane; each portion of the liquid flowing through a pore of the plurality of pores; jetting an individual stream of the liquid through the nozzle; and causing a liquid drop to break off from the individual stream of the liquid by applying a pulse of thermal energy to each portion of the liquid as each portion of the liquid flows through a respective one of the plurality of pores.
    • 一种用于形成液滴的方法包括提供包括喷嘴板(49)的喷射模块(48),所述喷嘴板的部分限定喷嘴(50); 包括多个孔(110)和一个或多个加热元件(150)的热刺激膜(100); 以及从所述喷嘴延伸到所述热刺激膜的外壳,所述外壳限定位于所述喷嘴和所述热刺激膜之间的液体室,所述液体室与所述喷嘴和所述多个孔中的每一个流体连通; 在足以在液体流过热​​刺激膜时使液体分成多个部分的压力下提供液体; 液体的每个部分流过多个孔的孔; 通过喷嘴喷射单独的液体流; 并且当液体的每个部分流过多个孔中的相应一个孔时,通过向液体的每个部分施加热能脉冲使液滴从单独的液体流中分离。
    • 9. 发明申请
    • A METHOD OF CONTINUOUS INK JET PRINTING
    • 连续喷墨打印的方法
    • WO2009004280A1
    • 2009-01-08
    • PCT/GB2008/001975
    • 2008-06-11
    • EASTMAN KODAK COMPANYCLARKE, Andrew
    • CLARKE, Andrew
    • B41J2/02
    • B41J2/03
    • A liquid jet is ejected out of a nozzle, the liquid comprising one or more components, the flow of one or more of said components, the active components, being separated such that the liquid that flows within a boundary layer thickness δ, of the nozzle wall is substantially comprised of a liquid without the active components, the continuous phase, and the said active components flow substantially outside said boundary layer where δ is defined by formula (I): where μ is the continuous phase viscosity in Pa.s, U is the jet velocity in m/s ρ is the continuous phase density in kg/m3 and x is the length of the nozzle in m in the direction of flow.
    • 液体射流从喷嘴喷出,液体包括一种或多种组分,一种或多种所述组分的流动,活性组分被分离,使得在喷嘴的边界层厚度d内流动的液体 壁基本上由没有活性组分的液体,连续相和所述活性组分基本上流过所述边界层,其中d由式(I)定义:其中μ是以Pa.s,U为单位的连续相粘度 喷气速度是m / s? 是连续相密度,单位为kg / m3,x为喷嘴长度,m为流向。