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    • 3. 发明授权
    • Manufacturing method for print head
    • 打印头制造方法
    • US06794208B2
    • 2004-09-21
    • US09951941
    • 2001-09-12
    • Atsushi NakamuraShinji KayabaMakoto AndoHiroshi TokunagaShinichi Horii
    • Atsushi NakamuraShinji KayabaMakoto AndoHiroshi TokunagaShinichi Horii
    • H01L2100
    • B41J2/1623B41J2/16B41J2/1625B41J2/1631B41J2202/20
    • A manufacturing method for a print head, in which a substrate member provided with heating elements is laminated to a nozzle-formed member in which ink-ejection nozzles are formed, includes the step of laminating a correcting member having approximately the same coefficient of linear expansion as the substrate member to the nozzle-formed member. A nozzle interval L1 of a nozzle-formed member which doesn't laminate a correcting member at an operating temperature T0 is determined as =L2(1+&agr;2&Dgr;T)/(1+&agr;1&Dgr;T), wherein L2 is the nozzle interval and a heater interval at the operating temperature after the print head is completed; &agr;1 and is the coefficient of linear expansion of the nozzle-formed member; &agr;2 is the coefficient of linear expansion of the correcting member; T1 is the laminating temperature of the nozzle-formed member and the correcting member; and &Dgr;T is the difference between the laminating temperature T1 and the operating temperature T0.
    • 一种打印头的制造方法,其中将具有加热元件的基板部件层压到其上形成有喷墨嘴的喷嘴形成部件,包括层叠具有大致相同的线膨胀系数的校正部件的步骤 作为到喷嘴形成部件的基板部件。 在操作温度T0下不校正校正部件的喷嘴形成部件的喷嘴间隔L1被确定为= L2(1 +α2DeltaT)/(1 +α1DeltaT),其中L2是喷嘴间隔和加热器间隔 在打印头完成后的工作温度下; α1是喷嘴形成部件的线膨胀系数; α2是校正构件的线性膨胀系数; T1是喷嘴形成部件和校正部件的层压温度; 而DeltaT是层压温度T1与工作温度T0之差。
    • 9. 发明授权
    • Liquid ejector and liquid ejecting method
    • 液体喷射器和液体喷射方法
    • US07125099B2
    • 2006-10-24
    • US10560334
    • 2004-06-10
    • Takaaki MurakamiYuji YakuraShinji KayabaAtsushi Nakamura
    • Takaaki MurakamiYuji YakuraShinji KayabaAtsushi Nakamura
    • B41J2/14
    • B41J2/04526B41J2/04533B41J2/04541B41J2/0458B41J2/04581B41J2/1404B41J2/14056B41J2202/20
    • A liquid ejecting apparatus can array dots in line even when nozzles are arranged in line and ink droplets are ejected from a plurality of liquid ejecting parts with a time difference. The liquid ejecting apparatus includes a head in which the liquid ejecting parts are arranged in line in the X-direction, and in which a plurality of heating resistors are juxtaposed in the direction perpendicular to the Y-direction in each of the liquid ejecting parts. The liquid ejecting apparatus further includes an ejecting-direction changing means that can change the droplet ejecting direction to a plurality of directions along the Y-direction by applying energy to the juxtaposed heating resistors in different manners, a time-difference ejection means that forms a dot (D2) by a second liquid ejecting part when a predetermined time elapses after a dot (D1) is formed by a first liquid ejecting part, and an ejecting-direction control means that makes the ejecting direction of the droplet from the first liquid ejecting part different from the ejecting direction of the droplet from the second liquid ejecting part so that the distance between the landing position of the dot (D1) in the first liquid ejecting part and the landing position of the dot (D2) in the second liquid ejecting part in the Y-direction is shorter than the relative moving distance between the head and printing paper.
    • 液体喷射装置即使当喷嘴排列成一列并且墨滴从多个液体喷射部分以时间差喷射时,也能够排列成一列。 液体喷射装置包括其中液体喷射部在X方向上排成一列的头部,并且其中多个加热电阻器在每个液体喷射部分中在与Y方向垂直的方向上并置。 液体喷射装置还包括喷射方向改变装置,其能够以不同的方式向并列的加热电阻器施加能量,沿着Y方向将墨滴喷射方向改变为多个方向;时间喷射装置形成 在由第一液体喷射部形成点(D 1)之后经过预定时间时,通过第二液体喷射部分产生点(D 2),以及喷射方向控制装置,其使得液滴从第一喷射方向 与第二液体喷射部分的液滴喷射方向不同的液体喷射部分,使得第一液体喷射部分中的点(D 1)的着陆位置与点(D 2)的着陆位置之间的距离在 第二液体喷射部分在Y方向上比头部和打印纸之间的相对移动距离短。
    • 10. 发明申请
    • LIQUID EJECTOR AND LIQUID EJECTING METHOD
    • 液体喷射器和液体喷射方法
    • US20060209103A1
    • 2006-09-21
    • US10560334
    • 2004-06-10
    • Takaaki MurakamiYuji YakuraShinji KayabaAtsushi Nakamura
    • Takaaki MurakamiYuji YakuraShinji KayabaAtsushi Nakamura
    • B41J29/38
    • B41J2/04526B41J2/04533B41J2/04541B41J2/0458B41J2/04581B41J2/1404B41J2/14056B41J2202/20
    • A liquid ejecting apparatus can array dots in line even when nozzles are arranged in line and ink droplets are ejected from a plurality of liquid ejecting parts with a time difference. The liquid ejecting apparatus includes a head in which the liquid ejecting parts are arranged in line in the X-direction, and in which a plurality of heating resistors are juxtaposed in the direction perpendicular to the Y-direction in each of the liquid ejecting parts. The liquid ejecting apparatus further includes an ejecting-direction changing means that can change the droplet ejecting direction to a plurality of directions along the Y-direction by applying energy to the juxtaposed heating resistors in different manners, a time-difference ejection means that forms a dot (D2) by a second liquid ejecting part when a predetermined time elapses after a dot (D1) is formed by a first liquid ejecting part, and an ejecting-direction control means that makes the ejecting direction of the droplet from the first liquid ejecting part different from the ejecting direction of the droplet from the second liquid ejecting part so that the distance between the landing position of the dot (D1) in the first liquid ejecting part and the landing position of the dot (D2) in the second liquid ejecting part in the Y-direction is shorter than the relative moving distance between the head and printing paper.
    • 液体喷射装置即使当喷嘴排列成一列并且墨滴从多个液体喷射部分以时间差喷射时,也能够排列成一列。 液体喷射装置包括其中液体喷射部在X方向上排成一列的头部,并且其中多个加热电阻器在每个液体喷射部分中在与Y方向垂直的方向上并置。 液体喷射装置还包括喷射方向改变装置,其能够以不同的方式向并列的加热电阻器施加能量,沿着Y方向将墨滴喷射方向改变为多个方向;时间喷射装置形成 在由第一液体喷射部形成点(D 1)之后经过预定时间时,通过第二液体喷射部分产生点(D 2),以及喷射方向控制装置,其使得液滴从第一喷射方向 与第二液体喷射部分的液滴喷射方向不同的液体喷射部分,使得第一液体喷射部分中的点(D 1)的着陆位置与点(D 2)的着陆位置之间的距离在 第二液体喷射部分在Y方向上比头部和打印纸之间的相对移动距离短。