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    • 81. 发明授权
    • Liquid ejecting method with movable member
    • 具有可移动部件的液体喷射方法
    • US06293656B1
    • 2001-09-25
    • US09593692
    • 2000-06-15
    • Takeshi OkazakiMakiko KimuraToshio KashinoAya YoshihiraKiyomitsu KudoYoshie Nakata
    • Takeshi OkazakiMakiko KimuraToshio KashinoAya YoshihiraKiyomitsu KudoYoshie Nakata
    • B41J205
    • B41J2/055B41J2/14024B41J2/1404B41J2/14048B41J2002/14379B41J2202/21
    • A liquid ejecting method for ejecting a liquid includes using a liquid ejecting head having an ejection outlet portion having an ejection outlet for ejecting the liquid, a liquid flow path in fluid communication with the ejection outlet portion, a bubble generation region for generating a bubble in the liquid, and a movable member disposed to face the bubble generation region and provided with a free end closer to the ejection outlet portion than a fulcrum portion thereof, and displacing the movable member by a pressure based on generation of the bubble from a position of a reference surface to a position of a maximum displacement, thereby ejecting the liquid, wherein a relation of 2&thgr;E−7°≦&thgr;M≦2&thgr;E+7° is satisfied where, with a reference of the reference surface, &thgr;M is an angle of the movable member at the maximum displacement thereof about the fulcrum portion and &thgr;E is an angle of an axis connecting the fulcrum portion with an intersecting point of a center axis of the ejection outlet with a connecting surface of the ejection outlet portion to the liquid flow path, and wherein &thgr;M is an acute angle.
    • 用于喷射液体的液体喷射方法包括使用具有喷射出口部分的液体喷射头,喷射出口部分具有用于喷射液体的喷射出口,与喷射出口部分流体连通的液体流动通道,用于产生气泡的气泡产生区域 所述液体和可移动部件设置为面对所述气泡产生区域并且设置有比其支点部分更靠近所述喷射出口部分的自由端,并且基于从所述气泡产生位置的位置使所述可移动部件移动, 参考表面到最大位移的位置,从而喷射液体,其中满足2θE-7°<=θM<=2θE+ 7°的关系,其中,参考表面的参考θM是 围绕支点部分的最大位移的可动构件和θE是将支点部分与中心轴线o的交叉点连接的轴线的角度 f具有喷射出口部分的连接表面到液体流动通道的喷射出口,并且其中θM是锐角。
    • 82. 发明授权
    • Liquid discharge head having movable member with corrosion-resistant coating and method of manufacture therefor
    • 具有耐腐蚀涂层的可移动部件的排液头及其制造方法
    • US06273556B1
    • 2001-08-14
    • US09139400
    • 1998-08-25
    • Hiroyuki IshinagaToshio KashinoShuji Koyama
    • Hiroyuki IshinagaToshio KashinoShuji Koyama
    • B41J205
    • B41J2/1642B41J2/14048B41J2/1604B41J2/1623B41J2/1625B41J2/1626B41J2/1631B41J2/1643B41J2/1645B41J2202/03
    • A liquid discharge head comprises liquid flow paths communicated with liquid discharge port for discharging liquid, bubble generating energy means for creating bubbles in order to discharge the liquid from the liquid discharge port, and movable members facing bubble generating areas for the creation of the bubbles, having free ends on the discharge port side to guide the bubbles to the discharge port side. For this liquid discharge head, the movable members and members capable of presenting electrically conductive relations with the movable members are arranged to satisfy the structural relations of liquid contact surface which do not allow electrolytic corrosion to occur. In this way, almost no deterioration of the members may take place due to electrolytic corrosion caused by liquid to be used and the liquid supply source as well, hence implementing the enhancement of durability of the movable members and the performance of the stabilized discharges of liquid for a long time as well.
    • 液体排出头包括与用于排出液体的液体排出口连通的液体流动通道,用于产生气泡以产生气泡以产生液体的气泡生成能量装置,以及用于产生气泡的面对气泡生成区域的活动部件, 在排出口侧具有自由端,以将气泡引导到排出口侧。 对于该液体排出头,能够与可移动部件呈导电关系的可移动部件和部件被设置为满足不允许发生电解腐蚀的液体接触表面的结构关系。 以这种方式,由于使用的液体和液体供给源引起的电解腐蚀,也可能发生部件的劣化,因此实现了可动部件的耐久性的提高和稳定的液体排出的性能 很长一段时间。
    • 84. 发明授权
    • Liquid ejection head with a heat generating surface that is substantially flush and/or smoothly continuous with a surface upstream thereto
    • 液体喷射头具有与其上游的表面基本平齐和/或平滑连续的发热表面
    • US06174050B1
    • 2001-01-16
    • US09358931
    • 1999-07-23
    • Toshio KashinoMakiko KimuraTakeshi OkazakiAya YoshihiraKiyomitsu KudoYoshie Nakata
    • Toshio KashinoMakiko KimuraTakeshi OkazakiAya YoshihiraKiyomitsu KudoYoshie Nakata
    • B41J205
    • B41J2/14048
    • A liquid ejection head has a heat generating surface for generating heat for generating bubbles in liquid, the heat generating surface being substantially flush and/or smoothly continuous with an upstream surface of the heat generating surface, a portion above the upstream surface and a further upstream portion being in fluid communication with each other when the heat generating surface does not generate heat, a movable member having a free end and a fulcrum, the movable member and the heat generating surface having a space therebetween, and an ejection outlet for ejecting liquid through generation of the bubble. The ejection outlet opposes the heat generating surface with the movable member interposed therebetween, and an opposing member cooperates with the movable member to direct the bubble toward the ejection outlet. The movable member directs the growing bubble toward the ejection outlet in a direction substantially perpendicular to the heat generating surface.
    • 液体喷射头具有用于产生用于在液体中产生气泡的热量的发热表面,所述发热表面与所述发热表面的上游表面,所述上游表面上方的部分和所述上游表面的上游表面基本平齐和/或平滑连续 当发热表面不产生热量时,所述部分彼此流体连通;具有自由端和支点的可移动部件,所述可移动部件和所述发热表面之间具有空间;以及喷射出口,用于将液体喷射通过 一代泡沫。 喷射出口与可动件相对置,发热表面相互间插入,相对的构件与可动件配合,以将气泡引向喷射出口。 可移动构件在大致垂直于发热表面的方向上将生长的气泡朝向喷射出口引导。
    • 86. 发明授权
    • Liquid ejecting method with movable member
    • 具有可移动部件的液体喷射方法
    • US6102529A
    • 2000-08-15
    • US980208
    • 1997-11-28
    • Takeshi OkazakiMakiko KimuraToshio KashinoAya YoshihiraKiyomitsu KudoYoshie Nakata
    • Takeshi OkazakiMakiko KimuraToshio KashinoAya YoshihiraKiyomitsu KudoYoshie Nakata
    • B41J2/055B41J2/14B41J2/05
    • B41J2/055B41J2/14024B41J2/1404B41J2/14048B41J2002/14379B41J2202/21
    • A liquid ejecting method for ejecting a liquid comprises using a liquid ejecting head having an ejection outlet portion having an ejection outlet for ejecting the liquid, a liquid flow path in fluid communication with the ejection outlet portion, a bubble generation region for generating a bubble in the liquid, and a movable member disposed to face the bubble generation region and provided with a free end closer to the ejection outlet portion than a fulcrum portion thereof, and displacing the movable member by a pressure based on generation of the bubble from a position of a reference surface to a position of a maximum displacement, thereby ejecting the liquid, wherein a relation of 2.theta..sub.E -7.degree..ltoreq..theta..sub.M .ltoreq.2.theta..sub.E +7.degree. is satisfied where, with a reference of the reference surface, .theta..sub.M is an angle of the movable member at the maximum displacement thereof about the fulcrum portion and .theta..sub.E is an angle of an axis connecting the fulcrum portion with an intersecting point of a center axis of the ejection outlet with a connecting surface of the ejection outlet portion to the liquid flow path, and wherein .theta..sub.M is an acute angle.
    • 用于喷射液体的液体喷射方法包括使用具有喷射出口部分的液体喷射头,该喷射出口部分具有用于喷射液体的喷射出口,与喷射出口部分流体连通的液体流动通道,用于产生气泡的气泡产生区域 所述液体和可移动部件设置为面对所述气泡产生区域并且设置有比其支点部分更靠近所述喷射出口部分的自由端,并且基于从所述气泡产生位置的位置使所述可移动部件移动, 参考表面到最大位移的位置,从而喷射液体,其中满足2θE-7°θ2θE + 7°的关系,其中参考参考 表面,θM是可动构件围绕支点部分的最大位移的角度,θE是连接支点部分与相交点的轴线的角度 喷射出口的中心轴线具有喷射出口部分的液体流路的连接表面,并且其中θM是锐角。