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    • 22. 发明申请
    • POLISHING TOOL AND POLISHING DEVICE
    • 抛光工具和抛光装置
    • US20100087125A1
    • 2010-04-08
    • US12530041
    • 2008-03-07
    • Kazumasa Ohnishi
    • Kazumasa Ohnishi
    • B24B1/04B24D3/00B24D7/00
    • B24B1/04B24B7/228B24D5/16B24D7/16
    • A grinding machine (10) composed of a support table (12) for supporting an object (11) to be ground, a rotating shaft (13a) vertically arranged above the support table, and a grinding tool (40) connected to a lower end of the rotating shaft in parallel with the support table, in which the grinding tool is composed of a grind stone-holding member (32) on which a circular ultrasonic vibrators (31a, 31b) electrically connectable to an electric source are fixed and a circular grind stone (33) attached to a lower end of a periphery of the grind stone-holding member, in which the grind stone-holding member of the grinding tool has a continuous or discontinuous circular air space area (36) composed of multiple circular air space regions which are composed of circularly formed or arranged discontinuous air spaces between a position of the circular ultrasonic vibrator and a position at which the grind stone-holding member is connected to the rotating shaft, whereby the multiple circular air space area keeps an ultrasonic wave generated from the circular ultrasonic vibrator from linearly propagating to an area on an opposite side where the rotating shaft is connected, can grind an object to be ground with high precision because the ultrasonic wave generated in the ultrasonic vibrator is efficiently applied to the grind stone.
    • 一种由用于支撑待研磨物体(11)的支撑台(12),垂直设置在所述支撑台上方的旋转轴(13a)构成的研磨机(10)和连接到所述下端 所述旋转轴与所述支撑台平行,其中所述研磨工具由研磨石保持构件(32)组成,所述研磨工具保持构件(32)固定有与电源可电连接的圆形超声波振动器(31a,31b)和圆形 研磨用具(33),其安装在磨石保持构件的周围的下端,研磨工具的磨石保持构件具有由多个圆形空气构成的连续或不连续的圆形空气区域(36) 在圆形超声波振动器的位置与磨石保持构件连接到旋转轴的位置之间由圆形或布置的不连续空气空间组成的空间区域,由此多个圆形空气温泉 ce区域使得从圆形超声波振动器产生的超声波线性地传播到连接有旋转轴的相反侧的区域,可以高精度地研磨被研磨物体,因为超声波振动器中产生的超声波是有效的 应用于磨石。
    • 24. 发明授权
    • Method for measuring flow of fluid moving in pipe or groove-like flow passage
    • 测量流体在管道或槽状流道中移动的流量的方法
    • US06907792B2
    • 2005-06-21
    • US10466068
    • 2002-11-13
    • Kazumasa Ohnishi
    • Kazumasa Ohnishi
    • G01F1/66G01F1/84
    • G01F1/66G01F1/662G01F1/8422G01F1/8427G01F1/849
    • A flow rate of fluid moving within a tube having a small diameter can be measured by the steps of: preparing a structure that has first and second oscillation wave generating-detecting means on a surface of a wall along the conduit; moving the fluid in the conduit; generating an oscillation wave in the first oscillation wave generating-detecting means, applying the wave onto the wall, and measuring a period of time required for transmitting the generated oscillation wave to the second oscillation wave generating-detecting means within the wall; generating an oscillation wave in the second oscillation wave generating-detecting means, applying the wave onto the wall, and measuring a period of time required for transmitting the generated oscillation wave to the first oscillation wave generating-detecting means in the wall; and comparing a difference of the periods of time of transmission and separately prepared calibration data.
    • 可以通过以下步骤来测量在具有小直径的管内移动的流体的流速:在沿管道的壁的表面上制备具有第一和第二振荡波发生检测装置的结构; 移动导管中的流体; 在所述第一振荡波产生检测装置中产生振荡波,将所述波施加到所述壁上,并且测量将产生的振荡波发送到所述壁内的所述第二振荡波产生检测装置所需的时间段; 在所述第二振荡波产生检测装置中产生振荡波,将所述波施加到所述壁上,并且测量将产生的振荡波发送到所述壁中的所述第一振荡波发生检测装置所需的时间; 以及比较传输时间段与单独准备的校准数据的差异。
    • 25. 发明授权
    • Clamp-on ultrasonic flowmeter
    • 夹紧式超声波流量计
    • US06715366B2
    • 2004-04-06
    • US10041502
    • 2002-01-10
    • Kazumasa Ohnishi
    • Kazumasa Ohnishi
    • G01F166
    • G01F1/662
    • A clamp-on ultrasonic flowmeter has a pair of ultrasonic transmitting-receiving devices. Each device is composed of a ultrasonic propagating element in the form of wedge having a bottom surface and a slanting surface extending from one edge of the bottom surface at an acute angle, and a ultrasonic transducer attached on the slanting surface. The ultrasonic propagating element is composed of a first ultrasonic propagating member having on its bottom surface a number of planes aligned in parallel with the slanting surface on which the ultrasonic transducer is attached and a second ultrasonic propagating member of elastic or plastic material, so as to propagate ultrasonic wave emitted by the ultrasonic transducer onto the bottom surface of the ultrasonic propagating element at an angle perpendicular to the slanting surface.
    • 钳式超声波流量计具有一对超声波发射接收装置。 每个装置由楔形形式的超声波传播元件组成,该超声波传播元件具有底面和从底面的一个边缘以锐角延伸的倾斜表面,以及安装在倾斜表面上的超声换能器。 超声波传播元件由第一超声波传播元件组成,其第一超声波传播元件在其底表面上具有与安装有超声换能器的倾斜表面平行排列的多个平面,以及弹性或塑料材料的第二超声波传播元件,以便 将超声波换能器发射的超声波以与倾斜面垂直的角度传播到超声波传播元件的底面上。
    • 26. 发明授权
    • Vibratory gyroscope
    • 振动陀螺仪
    • US6053044A
    • 2000-04-25
    • US14002
    • 1998-01-27
    • Kazumasa OhnishiMasayuki TanakaKatsutoshi SakuraiFumihito Shikanai
    • Kazumasa OhnishiMasayuki TanakaKatsutoshi SakuraiFumihito Shikanai
    • G01C19/56G01C19/5614G01P9/04
    • G01C19/5607
    • Described herein is a vibratory gyroscope. In the present vibratory gyroscope, two detection output portions are provided on a vibrator. The detection output portions are constructed such that an output (corresponding to a null output F0) obtained when no angular velocity is given, can be produced in phase and Coriolis output components F.omega.C and F.omega.D can be outputted in phase opposite to each other. Outputs C and D produced from both detection output portions result in the sum of vectors represented as F0 and F.omega.C and the sum of vectors represented as F0 and F.omega.D respectively. However, the sensitivity of detection of Coriolis force components can be increased by determining the difference .phi. in phase between the detected outputs C and D.
    • 这里描述的是振动陀螺仪。 在本振动陀螺仪中,在振动器上设置两个检测输出部。 检测输出部分被构造成使得当没有给出角速度时获得的输出(对应于空输出F0)可以在相位上产生,并且科里奥利输出分量FωC和FωD可以与每个相位相反地输出 其他。 从两个检测输出部分产生的输出C和D分别产生表示为F0和FωC的向量和分别表示为F0和FωD的向量之和。 然而,通过确定检测到的输出C和D之间的相位差phi可以增加检测科里奥利力分量的灵敏度。
    • 27. 发明授权
    • Ultrasonic linear motor
    • 超声波线性电机
    • US5036245A
    • 1991-07-30
    • US435321
    • 1989-11-13
    • Kazumasa OhnishiToru NakazawaYukimitsu Manabe
    • Kazumasa OhnishiToru NakazawaYukimitsu Manabe
    • H02N2/00H01L41/09H01L41/08
    • H02N2/0055H02N2/003H02N2/026
    • An ultrasonic linear motor including a traveling member having a columnar leg portion abutting at its one end against a traveling surface, and a piezoelectric element mounted on the traveling member for vibrating the leg portion in a direction intersecting an axis of the leg portion. A cover is provided around the traveling member for covering the traveling member and a protecting member is filled inside the cover in such a manner as to fully cover the piezoelectric element for protecting the piezoelectric element from an external environment, whereby the piezoelectric element can be protected from the external environment, and the separation of the piezoelectric element from the traveling member can be prevented. In another aspect, a protector cover is mounted on the traveling member in such a manner as to extend forwardly beyond the piezoelectric element in a direction of movement of the traveling member, whereby even when the protector cover collides with an external member, the damage of the piezoelectric element can be prevented.
    • 一种超声波线性电动机,其具有行星部件,所述行走部件具有在其一端抵接行进面的柱状腿部,以及安装在所述行进部件上的压电元件,用于使所述腿部沿与所述腿部的轴线交叉的方向振动。 在行进部件周围设置有用于覆盖行进部件的盖,并且保护部件以覆盖用于将压电元件从外部环境保护的压电元件完全覆盖的方式填充到盖内部,从而可以保护压电元件 可以防止压电元件与行进部件分离的外部环境。 在另一方面,保护器盖以行进构件的移动方向向前延伸超​​过压电元件的方式安装在行进构件上,由此即使当保护盖与外部构件碰撞时,损坏 可以防止压电元件。
    • 28. 发明授权
    • Automotive motor-driven device controlling and driving system
    • 汽车电机驱动装置控制和驱动系统
    • US4990835A
    • 1991-02-05
    • US514905
    • 1990-04-26
    • Kazumasa OhnishiTadao Noguchi
    • Kazumasa OhnishiTadao Noguchi
    • E05F15/60H01L41/04H02N2/00
    • H02N2/003H02N2/0055H02N2/026H02N2/06
    • An automotive motor-driven device controlling and driving system for controlling and driving the respective ultrasonic linear motors of a plurality of automotive motor-driven devices, such as power seats, power windows and power antenna. The automotive motor-driven device controlling and driving system comprises a power circuit connected to the battery of an automobile, a single ultrasonic oscillator, a plurality of power amplifiers having input terminals connected to the power circuit and the ultrasonic oscillator, and output terminals connected through motor control switches to the ultrasonic linear motors, respectively, and a control unit for controlling the power circuit, the ultrasonic oscillator and the power amplifiers.
    • 一种用于控制和驱动诸如电动座椅,动力窗和动力天线的多个汽车电动机构的各个超声波线性电动机的汽车电动机驱动装置控制和驱动系统。 汽车电动装置控制驱动系统包括连接到汽车电池的电源电路,单个超声波振荡器,具有连接到电源电路和超声波振荡器的输入端子的多个功率放大器以及通过 电机控制分别切换到超声波线性电动机,以及用于控制电源电路,超声波振荡器和功率放大器的控制单元。
    • 29. 发明授权
    • Manufacture of lapping board
    • 研磨板的制造
    • US07303599B2
    • 2007-12-04
    • US10852145
    • 2004-05-25
    • Kazumasa Ohnishi
    • Kazumasa Ohnishi
    • B24D18/00
    • B24B37/245B24D18/00Y10S451/91
    • A method for manufacturing a lapping board having abrasive grains fixed on its surface, which is performed by the steps of: preparing a rotatable metal board having a surface of soft metal, an abrasive slurry-supplying tool arranged over the surface of the metal board, an abrasive-pressing tool which is placed on the metal board and has a hard surface, and a ultrasonic oscillation-generating tool attached to either or both of the abrasive-pressing tool and the metal board; rotating the metal board while supplying an abrasive slurry onto the surface of the metal board and while supplying electric power to the ultrasonic oscillation-generating tool to generate and apply ultrasonic oscillation to either or both of the abrasive-pressing tool and the metal board, whereby introducing the supplied abrasive slurry between the metal board and the abrasive-pressing tool and partly embedding some abrasive grains onto the metal board; and removing unfixed abrasive grains from the metal board.
    • 一种用于制造具有固定在其表面上的磨粒的研磨板的方法,其通过以下步骤进行:制备具有软金属表面的可旋转金属板,设置在金属板表面上的研磨浆料供给工具, 一个放置在金属板上并具有硬表面的研磨压制工具,以及一个安装在研磨压制工具和金属板之一或两者上的超声振荡发生工具; 在金属板的表面上提供磨料浆料的同时旋转金属板,同时向超声波振荡发生工具供电并产生超声波振荡,并将其施加到研磨压制工具和金属板之一或两者,由此 在金属板和研磨压制工具之间引入供应的磨料浆料,并将一些磨料颗粒部分地嵌入到金属板上; 以及从所述金属板上去除未固定的磨粒。