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    • 2. 发明授权
    • Liquid jetting apparatus and electrostatic latent image developing apparatus
    • 液体喷射装置和静电潜像显影装置
    • US06269232B1
    • 2001-07-31
    • US09516365
    • 2000-03-01
    • Hiroshi FukumotoJyunichi AizawaYasuhiko Ozaki
    • Hiroshi FukumotoJyunichi AizawaYasuhiko Ozaki
    • G03G1510
    • G03G15/101B41J2/14008B41J2002/14322
    • A longitudinal wave propagates in ink toward an opening. The surface of the ink is positioned at the opening and is curved. A surface wave is excited from an end of the liquid surface owing to a restoring force caused by surface tension of the ink. Assuming that the wavelength of the surface wave is &lgr;c, the diameter of the opening is established to be not smaller than 2m &lgr;c. The surface wave is generated from an edge of the opening and rapidly decreases due to the longitudinal wave. The surface waves caused by the longitudinal wave do not interfere with each other at the opening provided that certain conditions are established. Therefore, no complicated interference wave occurs on the surface of the ink, and the surface of the ink vibrates with a large amplitude in the vicinity of the edge of the opening.
    • 纵向波在墨水中向开口传播。 墨水的表面位于开口处并弯曲。 由于由油墨的表面张力引起的恢复力,表面波从液面的端部被激发。 假设表面波的波长是lambdc,则开口的直径被确定为不小于2m lambdc。 表面波从开口的边缘产生,并且由于纵波而迅速减小。 如果建立某些条件,则由纵波引起的表面波在开口处不会相互干扰。 因此,在墨的表面上不会发生复杂的干涉波,并且墨的表面在开口边缘附近以大幅度振动。
    • 4. 发明授权
    • Droplet ejector and liquid supply tube
    • 滴液喷射器和液体供应管
    • US06692106B2
    • 2004-02-17
    • US09756774
    • 2001-01-10
    • Jyunichi AizawaHiroshi FukumotoMunehisa Takeda
    • Jyunichi AizawaHiroshi FukumotoMunehisa Takeda
    • B41J304
    • B41J2/14008
    • A reflector has an inlet opening toward a piezoelectric element, an outlet opening toward a nozzle plate and a reflecting wall connecting the same with each other. The nozzle plate has a nozzle located in the vicinity of the outlet. The piezoelectric element is provided with a through hole on a position opposed to the outlet, and applies ultrasonic waves to a liquid supplied into the reflector from the through hole. The ultrasonic waves are reflected by the reflecting wall and converged in the vicinity of the outlet for improving acoustic energy on this position so that the nozzle ejects droplets. Thus, the dimension in a direction perpendicular to that for ejecting the droplets is suppressed for providing a droplet ejector having a compact structure.
    • 反射器具有朝向压电元件的入口开口,朝向喷嘴板的出口和连接其的反射壁。 喷嘴板具有位于出口附近的喷嘴。 压电元件在与出口相对的位置处设置有通孔,并且对从通孔提供给反射器的液体施加超声波。 超声波被反射壁反射并会聚在出口附近,以改善该位置上的声能,使得喷嘴喷射液滴。 因此,抑制与垂直于喷射液滴的方向垂直的方向的尺寸,以提供具有紧凑结构的液滴喷射器。
    • 9. 发明授权
    • Supporting mechanism of reflector and projection apparatus
    • 反射器和投影仪的支撑机构
    • US07686458B2
    • 2010-03-30
    • US11659822
    • 2005-08-10
    • Jyunichi AizawaAkihisa Miyata
    • Jyunichi AizawaAkihisa Miyata
    • G03B21/28
    • G03B21/28G02B7/181G02B7/182G03B21/10
    • A reflection surface (1a) of a mirror (1) has a rotationally-symmetrical shape about an optical axis (110). The mirror (1) is rotatably supported by a pivot supporting portion (41) on the position of the optical axis (110) of the reflection surface (1a) or in the vicinity of the optical axis (110). Furthermore, the mirror (1) is slidably supported by slide supporting portions (42) at two positions on the upper part thereof. With such a configuration, the mirror (1) is supported at three points. Further, even when the mirror (1) expands and contracts due to the change in temperature or the like, the deformation of the reflection surface (1a) of the mirror (1) is prevented by the action of the slide supporting portions (42). As a result, it is possible to prevent the generation of distortion of an image projected on a screen (300).
    • 反射镜(1)的反射面(1a)围绕光轴(110)具有旋转对称的形状。 反射镜(1)由反射面(1a)的光轴(110)的位置或光轴(110)附近的枢轴支撑部(41)可旋转地支撑。 此外,反射镜(1)在其上部的两个位置由滑动支撑部分(42)可滑动地支撑。 通过这样的结构,将镜子(1)支撑在三点上。 此外,即使由于温度变化等反射镜(1)的膨胀和收缩,也可以通过滑动支承部(42)的作用来防止反射镜(1)的反射面(1a)的变形, 。 结果,可以防止投影在屏幕(300)上的图像的变形的产生。