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    • 3. 发明授权
    • Nozzle plate and method for surface treatment of same
    • 喷嘴板及其表面处理方法
    • US06390599B1
    • 2002-05-21
    • US08201023
    • 1994-02-24
    • Kiyohiko TakemotoShuichi YamaguchiAkio YamamoriYukiyoshi Icyu
    • Kiyohiko TakemotoShuichi YamaguchiAkio YamamoriYukiyoshi Icyu
    • B41J2135
    • B41J2/162B41J2/1606B41J2/1631B41J2/1643B41J2002/14387
    • A photosensitive resin film 6 is pressed onto the surface 2 of nozzle plate 1, with one portion entering the inside of nozzle 4. Then, by ultraviolet radiation directed from the rear surface 3 of nozzle plate 1, the inside the nozzle portion hardened as to form a plug 6a, and at the same time the portion of photosensitive resin film directly above nozzle 4 is hardened by the ultraviolet radiation to form an extensive portion 6b, of a size at least that of nozzle diameter d, but no larger than 1.4 times that of nozzle diameter d. Finally, using the shape of extensive portion 6b, an ink-repellent eutectoid plating coating layer 8 is applied to the whole surface 2 of nozzle plate 1 with the exception of the edge of nozzle 4 covered by the extensive portion, forming on that surface 2 a water-repellent surface that does not cause deviation in the flight of ink droplets, while restricting the lining of the inside of nozzle 4 with the coating layer.
    • 感光性树脂膜6被压在喷嘴板1的表面2上,其一部分进入喷嘴4的内部。然后,通过从喷嘴板1的后表面3引导的紫外线照射,喷嘴部分的内部硬化为 形成插头6a,并且同时通过紫外线辐射使直接在喷嘴4上方的感光性树脂膜的部分硬化,以形成至少大小为喷嘴直径d但不大于1.4倍的尺寸的大部分6b 喷嘴直径d。 最后,使用广泛部分6b的形状,除了由广泛部分覆盖的喷嘴4的边缘以外,在喷嘴板1的整个表面2上施加拒油共析电镀涂层8,在该表面2上形成 在喷墨头4的内部用涂层限制的同时,不会引起墨滴的飞行偏差的防水表面。
    • 9. 发明授权
    • Liquid ejecting head unit
    • 液体喷头单元
    • US09056467B2
    • 2015-06-16
    • US13271506
    • 2011-10-12
    • Akio YamamoriHaruhisa Uezawa
    • Akio YamamoriHaruhisa Uezawa
    • B41J29/38B41J2/045B41J2/14
    • B41J2/14274B41J2/04528B41J2/04531B41J2/04563B41J2/04581B41J2202/08B41J2202/12
    • A liquid ejecting head unit includes: a liquid ejecting head that ejects a liquid through nozzles by driving a pressure generation element to cause the pressure within a pressure chamber to fluctuate; a flow channel member in which is formed a flow channel that supplies the liquid to a head flow channel of the liquid ejecting head; a substrate, mounted to a side surface of the flow channel member, on which is mounted an electrical component for supplying power to the pressure generation element; and a temperature measurement device provided on the surface of the substrate that faces the flow channel member. Here, the flow channel member includes an opening that passes therethrough toward the flow channel; and the temperature of the liquid within the flow channel is measured by the temperature measurement device that is provided facing the opening.
    • 液体喷射头单元包括:液体喷射头,其通过驱动压力产生元件使压力室内的压力波动而喷射液体; 流路构件,其形成有将液体供给到液体喷射头的头部流路的流路; 安装在所述流路构件的侧面上的基板,在所述基板上安装有用于向所述压力产生元件供电的电气部件; 以及设置在所述基板的面向所述流路部件的表面上的温度测量装置。 这里,流路构件包括朝向流动通道穿过的开口; 并且通过面向开口设置的温度测量装置测量流动通道内的液体的温度。