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    • 12. 发明授权
    • Synchronizer device
    • 同步装置
    • US08020682B2
    • 2011-09-20
    • US11979271
    • 2007-10-31
    • Daisuke SaitoYukio UedaYuji Gatade
    • Daisuke SaitoYukio UedaYuji Gatade
    • F16D23/06
    • F16D23/06Y10T74/19284
    • A synchronizer device includes a first rotating member provided at a shaft, a second rotating member rotatably provided at the shaft and including a conical body on which an outer conical surface is formed, a synchronizer ring having an inner conical surface contacting the outer conical surface, and arranged between the first and the second rotating members, the synchronizer ring being movable in an axial direction of the first rotating member and integrally rotated with the first rotating member, a sleeve provided at an outer circumference of the first rotating member, and the sleeve being slidable in the axial direction of the first rotating member, a lever provided at an inner circumference of the sleeve and arranged between the first rotating member and the synchronizer ring, and a retracting member including an outwardly biasing portion and a retracting biasing portion for biasing the lever away from the synchronizer ring.
    • 一种同步器装置包括设置在轴上的第一旋转构件,可旋转地设置在所述轴上的第二旋转构件,所述第二旋转构件包括形成有外圆锥面的锥形体,具有与所述外圆锥面接触的内锥面的同步器环, 并且布置在第一和第二旋转构件之间,同步器环可在第一旋转构件的轴向方向上移动并与第一旋转构件一体地旋转,套筒设置在第一旋转构件的外周,套筒 能够沿第一旋转构件的轴向滑动,设置在套筒的内周并设置在第一旋转构件和同步环之间的杆,以及包括向外偏置部分和用于偏置的缩回偏置部分的缩回构件 杠杆远离同步环。
    • 14. 发明授权
    • Method and apparatus for measuring scattering property and absorption
property in scattering medium
    • 用于测量散射介质中散射特性和吸收性能的方法和装置
    • US5676142A
    • 1997-10-14
    • US551746
    • 1995-11-07
    • Mitsuharu MiwaYutaka TsuchiyaYukio Ueda
    • Mitsuharu MiwaYutaka TsuchiyaYukio Ueda
    • G01N21/27A61B5/00A61B5/145A61B5/1455A61B10/00G01N21/49
    • A61B5/14553A61B5/0091A61B5/4312G01N21/49A61B2562/0242
    • Measuring scattering and absorption properties of a scattering medium according to the following: (a) causing pulsed measuring light having a predetermined wavelength to enter the scattering medium; (b) performing time-resolved measurement of the measuring light having diffusively propagated in the scattering medium at light detection positions corresponding to a plurality of combinations, each comprising a light incidence position on the scattering medium in the first step and a light detection position on the scattering medium where the measuring light entered the scattering medium in the first step and a light detection position on the scattering medium where the measuring light is detected, having different incidence-detection distances between the light incidence position and the light detection position; (c) calculating a plurality of mean optical pathlengths of the measuring light corresponding to the plurality of incidence-detection distances, based on results of the time-resolved measurement measured in the second step; and (d) calculating a scattering coefficient and an absorption coefficient in the scattering medium, based on a plurality of simultaneous relations consisting of calculation values of the plurality of mean optical pathlengths corresponding to the incidence-detection distances, calculated in the third step, and a theoretical equation of the mean optical pathlengths derived in correspondence to light diffusion properties comprising a scattering property and an absorption property in diffusive propagation paths in the scattering medium.
    • 测量散射介质的散射和吸收性能:(a)使具有预定波长的脉冲测量光进入散射介质; (b)在对应于多个组合的光检测位置对散射介质进行扩散传播的测量光进行时间分辨测量,每个组合包括在第一步骤中的散射介质上的光入射位置和 在第一步骤中测量光进入散射介质的散射介质和在检测光的散射介质上的光检测位置,其具有在入射位置和光检测位置之间不同的入射检测距离; (c)基于在第二步骤中测量的时间分辨测量结果,计算与多个入射检测距离对应的测量光的多个平均光程长度; 和(d)基于由第三步计算的与入射检测距离对应的多个平均光程长度的计算值构成的多个同时关系,计算散射介质中的散射系数和吸收系数,以及 与散射介质中漫射传播路径中散射特性和吸收特性相对应的光散射特性导出的平均光程长度的理论方程。
    • 16. 发明申请
    • BIOINSTRUMENTATION APPARATUS
    • 生物仪器设备
    • US20110063624A1
    • 2011-03-17
    • US12672203
    • 2008-10-10
    • Yukio UedaYutaka Yamashita
    • Yukio UedaYutaka Yamashita
    • G01N21/17
    • G01N21/4795A61B5/0091A61B5/4312G01N2201/0846
    • A bioinstrumentation apparatus irradiates light onto a measured region of a subject, detects diffused light to acquire internal information on the measured region, and includes: a container holding a light transmitting medium; a light irradiation unit including a plurality of light emitting ends fixed to the container and irradiating a first light and a second light that mutually differ in wavelength onto the measured region that is immersed in the medium; a light detection unit including a plurality of light detecting ends fixed to the container and detecting the diffused light from the measured region; and a computing unit computing the internal information based on an output signal from the light detection unit; the wavelength of the first light being a wavelength at which an absorption coefficient of the measured region and a mean value of absorption coefficient of the medium are substantially equal, the wavelength of the second light being a wavelength at which the absorption coefficient of the measured region is greater than the mean value of the absorption coefficient of the medium, and the computing unit computing the internal information based on an output signal related to diffused light of the first light and computing boundary information between the measured region and the medium based on an output signal related to diffused light of the second light.
    • 生物测定装置将光照射到被检测体的测定区域,检测漫射光以获取测量区域的内部信息,并且包括:保持透光介质的容器; 光照射单元,其包括固定到所述容器的多个发光端,并且将相对不同波长的第一光和第二光照射到浸没在所述介质中的所述测量区域上; 光检测单元,其包括多个光检测端,固定到所述容器并检测来自所述测量区域的漫射光; 以及计算单元,基于来自所述光检测单元的输出信号来计算所述内部信息; 所述第一光的波长是所述测定区域的吸收系数和所述介质的吸收系数的平均值基本相等的波长,所述第二光的波长为所述测定区域的吸收系数的波长 大于所述介质的吸收系数的平均值,并且所述计算单元基于与所述第一光的漫射光相关的输出信号和基于所述测量区域与所述介质之间的计算边界信息的输出来计算所述内部信息 与第二光的漫射光有关的信号。
    • 17. 发明授权
    • Method for manufacturing sheet molded body and insert molded body
    • 片状成型体和嵌入成型体的制造方法
    • US07625516B2
    • 2009-12-01
    • US11849149
    • 2007-08-31
    • Takahiro AidaTakeo KobayashiYukio UedaHiroshi Fujita
    • Takahiro AidaTakeo KobayashiYukio UedaHiroshi Fujita
    • B29C51/06
    • B29C45/14221B29C45/14016B29C45/1418B29C2045/14286
    • A manufacturing method for a sheet molded body having a desired three dimensional shape and an excellent quality of the design, which has no crease, by uniformly expanding a decorated sheet prior to molding, and closely contacting the decorate sheet to the surface of a male die. In the manufacturing method, the pressure at the front side of the decorated sheet is lowered relative to that at the back side. An arm means is then moved towards the decorated sheet from the back side of the decorated sheet so that the decorated sheet is inverted by increasing the pressure at the front side relative to that at the back side. The decorated sheet is then three dimensionally formed along the surface of the male die by, while pressing the male die from the back side and moving the arm means backwards, increasing the pressure at the front side.
    • 一种成型体的制造方法,其具有期望的三维形状和优异的设计质量,其没有折痕,通过在成型之前均匀地膨胀装饰的片材,并且使装饰的片材与阳模的表面紧密接触 。 在制造方法中,装饰片材的前侧的压力相对于后侧的压力降低。 然后,手臂装置从装饰片材的背面向装饰片材移动,使得装饰片材通过相对于背面侧的压力增加而反转。 然后,通过从后侧按压阳模并向后移动臂装置,沿着阳模的表面三维地形成装饰的片材,增加前侧的压力。
    • 18. 发明申请
    • Optical recording medium, light-transmitting protective sheet used for same, and method for manufacturing them
    • 光记录介质,用于其的透光保护片及其制造方法
    • US20060165941A1
    • 2006-07-27
    • US10520448
    • 2003-07-10
    • Yoshikatsu MasudaYukio UedaEiji HishinumaNaoki Shimada
    • Yoshikatsu MasudaYukio UedaEiji HishinumaNaoki Shimada
    • B32B3/02
    • G11B7/266G11B7/24024G11B7/24056G11B7/256
    • The optically transparent protective sheet is made of cured product of a radiation curable paint in the form of a sheet. The optical recording medium includes an optical recording layer formed on at least one surface of a substrate, an adhesive layer formed on the optical recording layer, and an optically transparent protective layer formed on the adhesive layer, wherein the optically transparent protective layer is formed by adhering the optically transparent protective sheet to the optical recording medium, with intervening the adhesive layer therebetween. Such an optically transparent protective sheet is superior optical characteristics, such as thickness accuracy, a birefringence, and light transmittance, and does not have a residual solvent. The optical recording medium using such an optically transparent protective sheet is superior in the optical characteristics, and is capable of increased capacity. The optical recording medium can be produced with a good productivity at low cost by using the optically transparent protective sheet.
    • 光学透明保护片由片状可辐射固化涂料的固化产物制成。 光记录介质包括形成在基板的至少一个表面上的光学记录层,形成在光学记录层上的粘合剂层和形成在粘合剂层上的光学透明保护层,其中光学透明保护层由 将光学透明保护片粘附到光学记录介质上,并将粘合剂层插入其间。 这种光学透明保护片具有优异的光学特性,例如厚度精度,双折射和透光率,并且不具有残留溶剂。 使用这种光学透明保护片的光记录介质的光学特性优异,能够提高容量。 通过使用光学透明保护片,可以低成本地生产光记录介质。
    • 19. 发明授权
    • Method and apparatus for measuring internal property distribution
    • 测量内部财产分配的方法和装置
    • US6075610A
    • 2000-06-13
    • US853879
    • 1997-05-09
    • Yukio UedaYutaka TsuchiyaKazuyoshi Ohta
    • Yukio UedaYutaka TsuchiyaKazuyoshi Ohta
    • G01B11/00A61B10/00G01J1/00G01N21/17G01N21/49
    • G01N21/49
    • A method for measuring an internal property distribution which includes making measurement light incident from a plurality of light incidence positions on a surface of a measured object, detecting the measurement light that has passed through the object, successively or simultaneously, at at least one light detection position out of a plurality of light detection positions on the surface of the object. A plurality of measurement values obtained by a plurality of combinations of the light incidence position and said light detection position are extracted. A mean value of the measured values are calculated to obtain a reference value and a change amount of a predetermined internal property in each of the plurality of regions of the object are calculated using the plurality of measured values obtained. The reference value thereby establishing an internal property change amount distribution in the object.
    • 一种内部性质分布的测定方法,其特征在于,包括:从测量对象的表面上的多个入射位置入射的测量光,连续或同时地以至少一个光检测方式检测已经通过所述物体的测量光 位于物体表面上的多个光检测位置之外。 提取通过光入射位置和所述光检测位置的多个组合获得的多个测量值。 计算测量值的平均值以获得参考值,并且使用获得的多个测量值来计算物体的多个区域中的每一个中的预定内部特性的变化量。 参考值由此建立对象内部属性变化量分布。
    • 20. 发明申请
    • Device and method for measuring scattering absorber
    • 测量散射吸收器的装置和方法
    • US20070038116A1
    • 2007-02-15
    • US10565833
    • 2004-07-23
    • Takeshi YamanakaYukio UedaYutaka Yamashita
    • Takeshi YamanakaYukio UedaYutaka Yamashita
    • A61B6/00
    • G01N21/4795A61B5/14553A61B2562/0233A61B2562/046G01N21/49
    • A scattering medium measuring apparatus is composed of: a measuring module 1 having an irradiation probe 11 and detection probes 61 and 71; and a measuring module 2 having an irradiation probe 21 and detection probes 81 and 91. There is also provided an optical delay device 22 between a pulse light source 30 as a common light source for the irradiation probes 11 and 21 and the irradiation probe 21 so that pulse light is irradiated successively from the irradiation probes 11 and 21. A trigger circuit 50 is adapted to instruct the light source 30 on the irradiation timing of pulse light and signal processing circuits 62 to 92 corresponding to the detection timing of the corresponding light synchronized with the irradiation timing. This can achieve a scattering medium measuring apparatus and measuring method capable of suppressing crosstalk between channels without a spatial restriction.
    • 散射介质测量装置包括:具有照射探针11和检测探头61和71的测量模块1; 以及具有照射探针21和检测用探针81,91的测定模块2.另外,在作为照射探测器11,21的共用光源的脉冲光源30和照射探测器21之间,还设有光学延迟装置22 从照射探头11和21依次照射脉冲光。触发电路50适于根据对应的光的同步的检测定时对脉冲光的照射定时和信号处理电路62至92指示光源30 具有照射时间。 这可以实现能够抑制通道之间的串扰而没有空间限制的散射介质测量装置和测量方法。