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    • 11. 发明授权
    • Polygon scanner and production process thereof
    • 多边形扫描仪及其生产工艺
    • US5606448A
    • 1997-02-25
    • US035791
    • 1993-03-23
    • Mitsuo SuzukiYukio ItamiYoshio HashimotoKoji TsukaharaYoshihiro TakahashiTakao Abe
    • Mitsuo SuzukiYukio ItamiYoshio HashimotoKoji TsukaharaYoshihiro TakahashiTakao Abe
    • F16C17/02F16C33/10G02B7/182G02B26/12H02K5/16H02K7/09H02K21/24H02K29/06G02B26/08
    • F16C33/107F16C17/026G02B26/121G02B7/1821H02K21/24H02K29/06H02K5/1677H02K7/09Y10S359/90
    • A polygon scanner has a lighter rotating shaft on which a polygon mirror is mounted, to prevent a positional deviation of the polygon mirror from the rotating shaft in high speed rotation, in which the rotating shaft is supported through a dynamic pressure air bearing on a fixed shaft, in which the polygon mirror and motor constituent members are mounted on the rotating shaft, and in which the rotating shaft and the polygon mirror are made of respective light weight materials matched with each other in coefficient of thermal expansion, for example of aluminum or an aluminum alloy. Further, an anodic oxide film is formed at least on a portion where the rotating shaft could contact with the fixed shaft, and floating means is provided for constantly floating the rotating shaft relative to the fixed shaft upward in an axial direction thereof. A process for producing the polygon scanner comprises making a predetermined masking on a portion where the rotating shaft could contact with the fixed shaft, prior to an anodic oxidation treatment to form an anodic oxide film on the portion, and then performing the anodic oxidation treatment, whereby, during the treatment, forming an anodic oxide film and a pattern of recesses and protrusions for dynamic pressure generation corresponding to a pattern of the masking, which are constituent elements of a dynamic pressure air bearing.
    • 多边形扫描器具有安装有多面镜的较轻的旋转轴,以防止多角镜从高速旋转中的旋转轴的位置偏离,其中旋转轴通过动态压力空气轴承支撑在固定的 轴,其中多面镜和电动机构成部件安装在旋转轴上,并且其中旋转轴和多面镜由相对于热膨胀系数彼此匹配的各种重量轻的材料制成,例如铝或 铝合金。 此外,至少在旋转轴可以与固定轴接触的部分上形成阳极氧化膜,并且设置有浮动装置,用于使旋转轴相对于固定轴在轴向上向上上升。 多边形扫描仪的制造方法,在阳极氧化处理之前,在旋转轴与固定轴接触的部分上进行规定的掩模,在该部分上形成阳极氧化膜,然后进行阳极氧化处理, 由此,在处理过程中,形成阳极氧化膜和用于动压产生的凹凸图案,其对应于作为动压空气轴承的组成元件的掩模图案。
    • 14. 发明授权
    • Drilling machine tool
    • 钻孔机床
    • US4656726A
    • 1987-04-14
    • US682212
    • 1984-12-17
    • Mitsuo SuzukiHitoshi HashimotoNobuyasu IchikawaIchiho YamadaAkira OzawaTaizo Matsuyama
    • Mitsuo SuzukiHitoshi HashimotoNobuyasu IchikawaIchiho YamadaAkira OzawaTaizo Matsuyama
    • B23B39/20B23Q1/48B23Q3/155B23Q3/157G05B19/416
    • B23B39/205B23Q1/48B23Q3/15526B23Q3/157G05B19/4166Y10T29/5107Y10T29/5155Y10T408/37Y10T409/300896Y10T409/303808Y10T483/179
    • A drilling machine tool is disclosed having a machine tool body with a movable frame which is movable in the three axial directions X, Y and Z, of a rectangular coordinate system. The tool includes a working head provided on said movable frame, said head having at least one drilling spindle thereon, wherein said X direction is the direction in which said movable frame advances to and retreats from a workpiece at the general level of the workpiece, said Y direction is perpendicular to the X direction and said Z direction is generally up and down and is perpendicular to both said X and Y directions; X, Y and Z shafts corresponding to X, Y and Z directions, respectively, each shaft operatively connected with said movable frame for moving said frame in the X, Y and Z directions; a plurality of driving sources, one each corresponding with each of said shafts and operatively connected thereto for driving said shafts; and wherein said frame is movable such that said spindle is operable when inclined with respect to the X axis as well as when said spindle is parallel to the X axis, and said frame is driven along the axial centerline of said spindle in response to said driving sources.
    • 公开了一种具有机床工具主体的钻机,该机床主体具有可沿矩形坐标系的三个轴向X,Y和Z可移动的可移动框架。 所述工具包括设置在所述可动框架上的工作头,所述头部上具有至少一个钻孔主轴,其中所述X方向是所述可移动框架在所述工件的一般水平位置上前进和退出工件的方向,所述 Y方向垂直于X方向,所述Z方向一般上下,与X方向和Y方向垂直; 分别与X,Y,Z方向对应的X,Y,Z轴,每个轴可操作地与所述可动框架连接,用于在X,Y和Z方向上移动所述框架; 多个驱动源,每个驱动源各自对应于每个所述轴并且可操作地连接到其上用于驱动所述轴; 并且其中所述框架是可移动的,使得当所述主轴相对于X轴倾斜时以及当所述主轴平行于X轴时所述主轴可操作,并且所述框架响应于所述驱动而沿着所述主轴的轴向中心线被驱动 来源。
    • 19. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08451308B2
    • 2013-05-28
    • US12845421
    • 2010-07-28
    • Mitsuo SuzukiHaruyuki Suzuki
    • Mitsuo SuzukiHaruyuki Suzuki
    • B41J27/00B41J2/435G02B26/12
    • B41J2/473G02B26/105G02B26/123G02B26/127G03G15/041G03G15/326
    • An image forming apparatus includes an optical scanning unit, a measurement unit, a first adjustment unit and a second adjustment unit. The optical scanning unit includes a plurality of light sources to emit laser beams, a single oscillating mirror deflector to deflect the laser beams used for scan processing in a main scanning direction, and a scan-focusing member to focus the deflected laser beams onto a plurality of photoconductors. The measurement unit measures a resonance frequency of the oscillating mirror deflector. The first adjustment unit adjusts a speed of the photoconductors in a sub-scanning direction. The second adjustment unit adjusts a magnification ratio of image data in the sub-scanning direction. The first adjustment unit and the second adjustment unit adjust the image magnification ratio of image data in the sub-scanning direction depending on the resonance frequency as measured by the measurement unit.
    • 图像形成装置包括光学扫描单元,测量单元,第一调整单元和第二调整单元。 光扫描单元包括发射激光束的多个光源,用于使主扫描方向上用于扫描处理的激光束偏转的单个振荡镜偏转器,以及扫描聚焦部件,用于将偏转的激光束聚焦到多个 的光电导体。 测量单元测量振动镜偏转器的共振频率。 第一调整单元在副扫描方向上调整感光体的速度。 第二调整单元调整副扫描方向上的图像数据的放大率。 第一调整单元和第二调整单元根据由测量单元测量的共振频率来调整副扫描方向上的图像数据的图像放大率。