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    • 22. 发明申请
    • Ultrasonic trimming apparatus and ultrasonic trimming method
    • 超声波修整装置和超声波修整方法
    • US20100043610A1
    • 2010-02-25
    • US11664554
    • 2006-07-26
    • Norio Tanaka
    • Norio Tanaka
    • B26D7/08B26D1/45B26D7/12B26D7/02
    • B26D7/086B26D3/10B26D7/12B26D7/2614B26D2007/2678B26F1/3806Y10T83/04Y10T83/0443Y10T83/263Y10T83/303Y10T83/313Y10T83/7493Y10T83/8798
    • An ultrasonic trimming apparatus is composed of an articulated robot, a cutting apparatus, and a grindstone. The cutting apparatus is composed of an ultrasonic oscillator which is supported by the end portion of the articulated robot, a cutter blade which is supported by the ultrasonic oscillator, and a workpiece securing portion which secures a workpiece. The grindstone serving as a grinding member is disposed within the movable range of the cutter blade driven by the robot and is placed in a position at which the cutter blade can pressure contact the cutter blade. The cutter blade is ultrasonically vibrated by the ultrasonic oscillator and is ground while being pressed against the grindstone by means of the articulated robot. The ultrasonic trimming apparatus efficiently cuts a sheet material composed of soft material such as plastic, fabric, or rubber, a composite material, or a material containing glass fiber by means of an environmentally conscious method even when the material has a three-dimensional shape.
    • 超声波修整装置由铰接机器人,切割装置和磨石构成。 切割装置由被铰接的机器人的端部支撑的超声波振荡器,由超声波振荡器支撑的切割刀片和固定工件的工件固定部分组成。 作为研磨部件的磨石配置在由机器人驱动的切割刀片的可动范围内,并且被放置在切割刀片能够与切割刀片压力接触的位置。 刀片由超声波振荡器超声震动,并通过铰接机器人被压在磨石上进行研磨。 超声波修整装置即使当材料具有三维形状时,也可以通过环保意识的方法有效地切割由诸如塑料,织物或橡胶的软质材料,复合材料或含玻璃纤维的材料构成的片材。
    • 24. 发明申请
    • On-board antenna device
    • 车载天线装置
    • US20070279306A1
    • 2007-12-06
    • US11805370
    • 2007-05-23
    • Hideaki OshimaHiroshi IijimaTomoki IkedaNorio Tanaka
    • Hideaki OshimaHiroshi IijimaTomoki IkedaNorio Tanaka
    • H01Q1/32
    • H01Q1/526H01Q1/1271H01Q1/3275H01Q1/3291
    • An on-board antenna device, comprises a radiation element (22) formed on an inner-surface of a window glass (51) for a vehicle (50), a base plate (405) having an opening, the base plate (405) being fixed on the inner-surface of the window glass (51) so as to surround the radiation element (22), and a housing (27) assembled onto the base plate (405), the housing (27) having an opening surrounding the radiation element, wherein the base plate has four leakage prevention walls (405b, 405c, 405d and 405e) and each of four leakage prevention walls (405b, 405c, 405d and 405e) has a surface substantially parallel to each of four sidewalls (430b, 430c, 430d and 430e) of the housing (27).
    • 一种车载天线装置,包括形成在用于车辆(50)的窗玻璃(51)的内表面上的辐射元件(22),具有开口的基板(405),所述基板(405) 被固定在所述窗玻璃(51)的内表面上以围绕所述辐射元件(22),以及壳体(27)组装到所述基板(405)上,所述壳体(27)具有围绕所述辐射元件 辐射元件,其中所述基板具有四个防漏壁(405b,405c,405d和405e),并且四个防漏壁(405b,405c,405d和405e)中的每一个具有基本平行的表面 到壳体(27)的四个侧壁(430b,430c,430d和430e)中的每一个。
    • 30. 发明申请
    • Optical path switching device and method
    • 光路切换装置及方法
    • US20050248844A1
    • 2005-11-10
    • US10525031
    • 2003-09-11
    • Ichiro UenoTakashi HiragaToshiko MizokuroNoritaka YamamotoHiroyuki MochizukiNorio Tanaka
    • Ichiro UenoTakashi HiragaToshiko MizokuroNoritaka YamamotoHiroyuki MochizukiNorio Tanaka
    • G02F1/01G02F1/31G02F3/00G02B5/30
    • G02F1/293G02F1/0126G02F1/0147G02F3/00G02F2001/311
    • An optical path switching method according to the present invention comprises converging and irradiating, on a light absorption layer film provided in a thermal lens forming element (1, 2, 3) including at least the light absorption layer film, each of a control light (121, 122, 123) having a wavelength selected from a wavelength band which is absorbed by the light absorption layer film and a signal light (110, 111, 112) having a wavelength selected from a wavelength band which is not absorbed by the light absorption layer film. Arrangement of the light absorption layer film is adjusted such that at least the control light focuses within the light absorption layer film. A thermal lens is reversibly formed according to a distribution of refraction index created by a temperature increase generated in and around an area of the light absorption layer film in which the control light is absorbed, such that, according to whether or not the control light is irradiated, the converged signal light is output either as is in its converged form or after its spread angle is changed and a mirror (61, 62, 63) including a hole and reflecting means, the signal light output from the thermal lens forming element is either passed through the hole or reflected by the reflecting means to change the optical path.
    • 根据本发明的光路切换方法包括在设置在至少包括光吸收层膜的热透镜形成元件(1,2,3)中的光吸收层膜上会聚和照射每个控制光( 具有选自由光吸收层膜吸收的波长带的波长的波长的信号光(110,111,112)和具有选自不受光吸收的波长带的波长的信号光(110,111,112) 层膜。 调整光吸收层膜的配置,使得至少控制光聚焦在光吸收层膜内。 根据由控制光被吸收的光吸收层膜的区域内及周围产生的温度升高引起的折射率的分布,可逆地形成热透镜,使得根据控制光是否为 会聚信号光以其会聚形式或其扩展角度改变后输出,并且包括孔和反射装置的反射镜(61,62,63),从热透镜形成元件输出的信号光是 或者通过孔或被反射装置反射以改变光路。