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    • 22. 发明申请
    • STOPPER STRUCTURE AND PRODUCTION METHOD THEREFOR
    • 停止结构及其生产方法
    • US20100163586A1
    • 2010-07-01
    • US12524962
    • 2008-02-05
    • Junichi FunatoTakahiro Azuma
    • Junichi FunatoTakahiro Azuma
    • B22D41/16C04B35/64
    • B22D41/186B22D41/18
    • The present invention provides a stopper structure capable of preventing loosening of a shaft rod during use, and gas leakage which is likely to occur when the stopper structure is designed to allow gas to pass therethrough. The shaft rod 1 is adapted to be mounted in a mounting hole 2a of a refractory stopper 2, and formed to have an outer peripheral surface including a first tapered sub-surface 4a which increases in diameter toward an axially lower edge of the shaft rod. The mounting hole 2a of the refractory stopper 2 is formed to have an inner surface including a second tapered sub-surface 4b adapted to come into surface contact with the first tapered sub-surface 4a. The shaft rod 1 is adapted to be fastened to the refractory stopper so as to allow the first tapered sub-surface 4a to be brought into close surface contact with the second tapered sub-surface 4b. The distal end of the shaft rod 1 is formed in a configuration satisfying the following relation: tan θ≦D/2A, wherein: A is a length of the shaft rod 1 between a position of the shaft rod 1 corresponding to an upper edge surface 2S of the refractory stopper, and a start position of the first tapered sub-surface 4a; D is an outer diameter of the first tapered sub-surface 4a at the start position; and θ is a taper angle of the first tapered sub-surface 4a.
    • 本发明提供一种能够防止使用时的轴杆的松动的阻塞结构以及当阻挡结构被设计成允许气体通过时可能发生的气体泄漏。 轴杆1适于安装在耐火材料制止器2的安装孔2a中,并且形成为具有包括朝向轴杆的轴向下边缘直径增大的第一锥形副表面4a的外周面。 耐火物止动件2的安装孔2a形成为具有适于与第一锥形副表面4a进行表面接触的第二锥形副表面4b的内表面。 轴杆1适于紧固到耐火塞,以使第一锥形副表面4a与第二锥形副表面4b紧密接触。 轴杆1的前端形成为满足以下关系的构造:tan& t a;&nl E; D / 2A,其中:A是在杆杆1的与上部的对应的位置之间的轴杆1的长度 耐火材料止挡件的边缘表面2S和第一锥形子表面4a的起始位置; D是开始位置处的第一锥形副表面4a的外径; 和&thetas; 是第一锥形副表面4a的锥角。
    • 23. 发明申请
    • Frontal View Imaging and Control Device Installed on Movable Object
    • 正面视觉成像和控制装置安装在可移动物体上
    • US20080310680A1
    • 2008-12-18
    • US12139952
    • 2008-06-16
    • Takahiro Azuma
    • Takahiro Azuma
    • G06K9/78
    • G06K9/00791G06T7/77G06T2207/30244G06T2207/30252
    • A frontal view imaging and control device installed on a movable object, includes: an image input unit receiving an image taken by an image device that captures a region of a road surface in a predetermined direction; a projection transformation unit linking each pixel of the image onto a virtual two-dimensional plane of a road surface through coordinate transformation so as to form a virtual projection image on the two-dimensional plane; a projection likelihood calculation unit dividing the virtual projection image into a distant view section and a close view section, and calculating similarity defined between a projection of the distant view section and a projection of the close view section; and an attitude angle calculation unit determining an angle of depression and a panning angle that maximize the similarity as a measured attitude angle that indicates an image capturing direction of the imaging device.
    • 一种安装在可移动物体上的正视图成像和控制装置,包括:图像输入单元,接收由预定方向拍摄路面区域的图像装置拍摄的图像; 投影变换单元,其通过坐标变换将图像的每个像素连接到路面的虚拟二维平面,以在二维平面上形成虚拟投影图像; 投影似然度计算单元,将虚拟投影图像分割成远景部分和近视图部分,并且计算远景部分的投影与近距视图部分的投影之间的相似度; 以及姿态角计算单元,其确定将表示拍摄装置的图像拍摄方向的测量姿态角度最大化相似度的俯仰角度和摇摄角度。
    • 25. 发明授权
    • Multilayer LC composite component
    • 多层LC复合材料
    • US06803839B2
    • 2004-10-12
    • US10286150
    • 2002-11-02
    • Takahiro AzumaYoshihiro Fukuda
    • Takahiro AzumaYoshihiro Fukuda
    • H03H701
    • H03H7/0115H03H2001/0085
    • A multilayer LC composite component includes a coil unit including a stack of coil conductors, two adjacent coil conductors being separated by an insulating layer (dielectric layer) and being electrically connected to each other and a capacitor unit including a ground-side capacitor electrode and a signal-side capacitor electrode which oppose each other with an insulating layer disposed therebetween, the ground-side capacitor electrode having an electrode-free area at a central region thereof and the signal-side capacitor electrode being electrically connected to the coil unit via the electrode-free area. The ground-side capacitor electrode extends to at least two opposing sides of the insulating layer (dielectric layer) and has a cut portion (cross-shaped cut portion) which extends continuously from the electrode-free area.
    • 多层LC复合元件包括线圈单元,该线圈单元包括一叠线圈导体,两个相邻的线圈导体被绝缘层(电介质层)隔离并且彼此电连接;以及电容器单元,其包括接地侧电容器电极和 信号侧电容器电极,其间设置有绝缘层彼此相对,所述接地侧电容器电极在其中心区域具有无电极区域,并且所述信号侧电容器电极经由所述电极电连接到所述线圈单元 无区域 接地侧电容器电极延伸到绝缘层(电介质层)的至少两个相对侧,并且具有从无电极区域连续延伸的切口部分(十字形切口部分)。
    • 27. 发明授权
    • Grindstone contact sensing method and its device, and honing method and honing machine
    • 磨石接触感应方法及其装置,珩磨方法和珩磨机
    • US08162722B2
    • 2012-04-24
    • US12434672
    • 2009-05-03
    • Yasuo TomitaTakahiro Azuma
    • Yasuo TomitaTakahiro Azuma
    • B24B49/00
    • B24B33/02B24B33/06B24B47/22B24B49/10G05B2219/37405
    • A grindstone contact sensing technology capable of sensing the contact position of the honing grindstone with the inner circumference of the work at high precision. A servo motor for driving the spindle rotation, and a servo motor for driving the depth of cut are provided and used respectively as spindle rotation drive source for rotating and driving the rotary spindle having the honing tool and depth-of-cut drive source for moving the honing grindstone at a specified depth of cut, and the contact position of the honing grindstone with the inner circumference of the work is sensed from various electrical information (rotating speed, torque, current value, stagnant pulses, etc.) obtained from the operations of both the servo motors.
    • 一种磨石接触传感技术,能够高精度地检测珩磨磨石与工件内周的接触位置。 提供驱动主轴旋转的伺服电动机和用于驱动切割深度的伺服电动机,分别用作主轴旋转驱动源,用于旋转和驱动具有珩磨工具的旋转主轴和用于移动的深度切割驱动源 根据从操作获得的各种电信息(旋转速度,扭矩,电流值,停滞脉冲等),检测在指定切割深度的珩磨磨石和珩磨磨石与工件内周的接触位置 的伺服电机。