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    • 32. 发明授权
    • Inkjet printing system
    • 喷墨打印系统
    • US08398226B2
    • 2013-03-19
    • US12477310
    • 2009-06-03
    • John M. HigginsDanuta GibsonAndrew M. HoweAndrew ClarkeStephanie V. DesrousseauxTrevor J. Wear
    • John M. HigginsDanuta GibsonAndrew M. HoweAndrew ClarkeStephanie V. DesrousseauxTrevor J. Wear
    • B41J2/01
    • B41J2/155C09D11/30
    • An inkjet printing system comprising a plurality of static inkjet printing units each comprising at least one inkjet printing head; an ink-receiving element comprising a poorly-absorbing or impermeable substrate; an aqueous inkjet composition which comprises a polymeric compound comprising discrete particles responsive to an external stimulus, and a functional material, which may be incorporated as part of the polymeric particles, the composition having a first rheological state and a different second rheological state in response to a stimulated change in conditions, the first state being associated with a first lower viscosity of the composition, wherein the particles have a first lower volume, and the second state being associated with a second higher viscosity of the composition, wherein the particles have a second higher volume, and of drying the aqueous ink composition only positioned downstream of the plurality of the printing units.
    • 一种喷墨打印系统,包括多个静电喷墨打印单元,每个静电喷墨打印单元包括至少一个喷墨打印头; 墨水接收元件,其包含吸收不良或不可渗透的基底; 一种水性喷墨组合物,其包含包含响应于外部刺激的离散颗粒的聚合化合物和可作为聚合物颗粒的一部分掺入的功能材料,该组合物具有第一流变状态和不同的第二流变状态以响应于 条件的刺激变化,第一状态与组合物的第一较低粘度相关,其中所述颗粒具有第一较低体积,并且所述第二状态与所述组合物的第二较高粘度相关联,其中所述颗粒具有第二 更高的体积,并且仅干燥位于多个印刷单元下游的水性油墨组合物。
    • 33. 发明申请
    • CONTINUOUS INKJET DROP GENERATION DEVICE
    • 连续喷墨发生装置
    • US20100188466A1
    • 2010-07-29
    • US12664937
    • 2008-06-27
    • Andrew Clarke
    • Andrew Clarke
    • B41J2/02
    • B41J2/03B01F13/0062B01F13/0079B05B7/0408B05B7/0433B05B7/061B05B7/065B05B17/04
    • A droplet generating device for use as part of a continuous inkjet printer comprises a set of channels for FLUID providing a composite flow of a first fluid (11) surrounded by a second fluid (12) and an expansion cavity (3) having an entry orifice (2) and an exit orifice (4). The cross sectional area of the cavity is larger than the cross sectional area of either orifice such that the composite flow breaks up to form droplets of the first fluid within the second-fluid within the cavity, the exit orifice also forming a nozzle of an inkjet device, the passage of the droplets of the first fluid through the exit orifice causing the composite jet to break into composite droplets.
    • 用作连续喷墨打印机的一部分的液滴产生装置包括一组用于流体的通道,用于提供由第二流体(12)和膨胀腔(3)围绕的第一流体(11)的复合流,所述膨胀腔具有入口孔 (2)和出口孔(4)。 空腔的横截面面积大于任一孔口的横截面面积,使得复合流体分解形成腔内第二流体内的第一流体的液滴,出口孔还形成喷墨嘴的喷嘴 装置中,第一流体的液滴通过出口孔导致复合射流破裂成复合液滴。
    • 39. 发明授权
    • Method of creating and coating a material
    • 创建和涂覆材料的方法
    • US06780455B2
    • 2004-08-24
    • US10178724
    • 2002-06-24
    • Andrew ClarkeChristopher L. BowerKim E. Goppert
    • Andrew ClarkeChristopher L. BowerKim E. Goppert
    • B05D130
    • G03C1/74B05C5/005B05D1/305G03C2001/7433G03C2001/7481
    • The invention provides a method of creating a material for use as a material to be coated by curtain coating, comprising the step of: creating a surface texture of said material such that when said material is coated with a freely falling curtain formed of a composite layer of one or more coating compositions that impinges at a point of impingement against a continuously moving receiving surface of said material using roughness assisted wetting, the height of the composite layer at a distance &lgr; from the point of impingement, in which &lgr; is the average periodicity of the surface texture, is less than or equal to Rz. The invention also provides a method of identifying a material suitable for coating with Roughness Assisted coating.
    • 本发明提供了一种制造用作通过帘式涂布涂覆的材料的材料的方法,包括以下步骤:产生所述材料的表面纹理,使得当所述材料涂覆有由复合层形成的自由落下的窗帘 一种或多种涂料组合物,其使用粗糙度辅助的润湿将冲击点抵靠所述材料的连续移动的接收表面,所述复合材料层距离冲击点的距离为λ,其中λ是平均周期 的表面纹理,小于或等于Rz。 本发明还提供了一种鉴定适用于粗糙度辅助涂层涂层的材料的方法。
    • 40. 发明授权
    • Method of curtain coating a moving support wherein the maximum practical
coating speed is increased
    • 幕涂式移动支架的方法,其中最大实际涂层速度增加
    • US5609923A
    • 1997-03-11
    • US600709
    • 1996-02-13
    • Andrew Clarke
    • Andrew Clarke
    • B05C5/00B05D1/00B05D1/30G03C1/74
    • G03C1/74B05D1/305B05C5/007B05D1/007
    • Curtain coating processes arc well known wherein a composition is coated on to a moving support. However, the maximum coating speeds in such processes are severely limited at high curtain flow rates by the formation of a region metastable to air-entrainment. Described herein is a method which enhances the maximum coating speed at high flow tales by the application of small levels of voltages, typically below 400 V, to the moving support. Progressive suppression of the metastable region is obtained as the, voltage level is increased. All levels of voltage up to 400 V give a degree of removal of the metastable region, and therefore will enhance the maximum practical coating speed. Lower levels of voltage may also be used in conjunction with forward application angles to selectively enhance the maximum practical coating speed for a given laydown.
    • 帘式涂布方法是众所周知的,其中组合物涂覆在移动的支撑体上。 然而,这种方法中的最大涂布速度通过形成可夹带于空气中的区域在高帘幕流速下受到严格的限制。 本文描述的是通过将小量的电压(通常低于400V)施加到移动支撑件来增强高流动故事时的最大涂层速度的方法。 获得亚稳态区域的逐行抑制,电压电平增加。 所有电压高达400V的电压都能够达到亚稳态区域的去除程度,从而提高最大的实际涂层速度。 较低的电压也可以与正向施加角度一起使用,以选择性地增强给定沉积物的最大实际涂覆速度。