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    • 1. 发明申请
    • POLISHING MACHINE
    • 抛光机
    • WO2003080289A2
    • 2003-10-02
    • PCT/KR2003/000577
    • 2003-03-24
    • FINEACETECHNOLOGY CO., LTDYOON, Sang-dae
    • YOON, Sang-dae
    • B24B
    • B24B41/02B24B19/26B24B27/0046
    • The polishing machine processes a workpiece put on table of body by four-directional control and is provided with a pair of columns. It comprises: first carrying unit having both ends fixed to pair of columns and having carrying part mounted on upper side; a second carrying unit being fixed to the carrying part in the direction orthogonal to the first carrying unit; third carrying unit being fixed to one end of the second carrying unit in the direction orthogonal to the second carrying unit; a tool head unit being mounted to lower side of the third carrying unit to be inclinable at predetermined angle by a tilting unit rotating at a constant angle and having driving means for rotating a polishing tool mounted at one side; and automatic constant pressure regulating means providing a predetermined virtual pressure with respect to the polishing tool mounted on the tool head unit.
    • 抛光机通过四方向控制来处理放在工作台上的工件,并配有一对柱。 它包括:第一承载单元,其两端固定成一对柱,并具有安装在上侧的承载部分; 第二承载单元,在与第一承载单元正交的方向上固定在承载部上; 第三承载单元在与第二承载单元正交的方向上固定到第二承载单元的一端; 工具头单元,其安装在所述第三搬运单元的下侧,通过以一定角度旋转的倾斜单元以预定角度倾斜,并具有用于旋转安装在一侧的抛光工具的驱动装置; 和自动恒压调节装置相对于安装在工具头单元上的抛光工具提供预定的虚拟压力。
    • 3. 发明授权
    • A STRUCTURE OF TOOL POT FOR AN AUTO TOOL CHANGER
    • 自动工具更换工具的结构
    • KR100738949B1
    • 2007-07-06
    • KR20060031787
    • 2006-04-07
    • FINEACETECHNOLOGY CO LTD
    • YOON SANG DAE
    • B23Q3/155
    • A tool port structure of an automatic tool exchanger is provided to simplify the operation process of the automatic tool exchanger and to stably fix a tool by having a spring structure. A tool port includes a plate(101), a key(102), a fixing spring(103), and a ring(104). The plate forms an accommodation space for accommodating a base and a tool. The key is fixed to a base and protruded in the accommodation space of the plate. The fixing spring has a pair of blades. The middle portion of each blade makes contact with an outer corner of the accommodation space of the plate. The ring is installed at the middle portion of the blade of the fixing spring to fix the fixing spring to a tool magazine. A tool is fixed by the resilient forces of the blades and the key.
    • 提供了一种自动换刀装置的工具端口结构,简化了自动换刀器的操作过程,并通过弹簧结构稳定地固定工具。 工具端口包括板(101),键(102),固定弹簧(103)和环(104)。 板形成用于容纳基座和工具的容纳空间。 钥匙被固定在基座上并突出在盘子的容纳空间中。 固定弹簧具有一对叶片。 每个叶片的中间部分与板的容纳空间的外角接触。 环安装在固定弹簧的叶片的中间部分,以将固定弹簧固定到刀库上。 工具由刀片和钥匙的弹性力固定。
    • 4. 发明授权
    • A METHOD FOR FIXING DIRECTION OF OBSERVING DEVICE
    • 用于固定观察装置方向的方法
    • KR100738951B1
    • 2007-07-06
    • KR20060016073
    • 2006-02-20
    • FINEACETECHNOLOGY CO LTD
    • YOON SANG DAE
    • F41G3/00F41G1/00
    • A method for aligning an aiming point of observation equipment is provided to enable aligning of the aiming point of at least two optical devices and use a small concave lens regardless of the distance between the optical devices. A method for aligning an aiming point of observation equipment including an electro-optical device(83) by using a laser unit(90) includes the steps of: regulating the horizontality of a reference antenna(85) and a direction antenna(86); determining an azimuth angle by using a line formed by the reference antenna and the direction antenna; installing a concave mirror at a predetermined position in the determined azimuth angle direction; determining the focus position by irradiating laser beam to the concave mirror; positioning the laser unit at the determined focus position; inputting the laser beam to the electronic optical device by introducing the laser beam from the laser unit to the concave mirror; and confirming and adjusting the focus of the electro-optical device.
    • 提供了一种用于对准观察设备的瞄准点的方法,以便能够对准至少两个光学装置的瞄准点并使用小的凹透镜,而与光学装置之间的距离无关。 通过使用激光单元(90)对准包括电光装置(83)的观察设备的瞄准点的方法包括以下步骤:调节参考天线(85)和方向天线(86)的水平度; 通过使用由参考天线和方向天线形成的线来确定方位角; 在确定的方位角方向上的预定位置安装凹面镜; 通过将激光束照射到凹面镜来确定聚焦位置; 将激光单元定位在所确定的对焦位置; 通过将激光单元的激光束引入凹面镜,将激光束输入到电子光学装置; 并确认和调整电光装置的焦点。