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    • 22. 发明授权
    • Hollow-fiber permeability apparatus
    • 中空纤维透气装置
    • US4125468A
    • 1978-11-14
    • US803064
    • 1977-06-03
    • Yasushi JohMasahiro Yamazaki
    • Yasushi JohMasahiro Yamazaki
    • D01D5/24A61M1/18B01D63/02B01D63/04B01D31/00
    • B01D63/02B01D63/046
    • In a hollow-fiber permeability apparatus, a permeating region of a housing contains a bundle of hollow fibers, and materials can selectively permeate through the membranes formed by the permeable walls of the hollow fibers, between a first fluid flowing along the exteriors of the hollow fibers, and another fluid flowing the interiors of the hollow fibers. The apparatus includes at least one first opening and at least one second opening for passing the first fluid, formed in both end portions of the housing; an enlarged cross-section portion formed between the first and second openings and surrounding substantially the whole circumferential surface of the bundle of hollow fibers in the housing; and at least one third opening for passing the first fluid, connected to the enlarged cross section portion, said first and second openings being used as a fluid inlet opening, and the third opening being used as a fluid outlet opening, or the first and second openings being used as the fluid outlet opening, and the third opening being used as the fluid inlet opening.
    • 在中空纤维渗透性装置中,壳体的渗透区域包含一束中空纤维,并且材料可以选择地渗透通过中空纤维的可渗透壁形成的膜,在沿着中空纤维的外部流动的第一流体之间 纤维和流过中空纤维内部的另一流体。 该装置包括形成在壳体的两个端部中的至少一个第一开口和用于使第一流体通过的至少一个第二开口; 形成在所述第一和第二开口之间并围绕所述壳体中的中空纤维束的大致整个圆周表面的扩大横截面部分; 和用于使第一流体通过的至少一个第三开口,连接到扩大的横截面部分,所述第一和第二开口用作流体入口,第三开口用作流体出口,或第一和第二开口 开口用作流体出口,第三开口用作流体入口。
    • 26. 发明申请
    • OIL DRILLING AUXILIARY DISPERSION
    • 油钻辅助分散
    • US20130252854A1
    • 2013-09-26
    • US13878606
    • 2011-10-14
    • Shunsuke AbeNanako SaigusaMasahiro YamazakiHiroyuki Sato
    • Shunsuke AbeNanako SaigusaMasahiro YamazakiHiroyuki Sato
    • C09K8/12
    • C09K8/588C09K8/12C09K8/5086C09K8/512C09K8/70C09K8/885C09K2208/08C09K2208/18
    • A dispersion liquid for supporting oil drilling, including: an aqueous medium and a particulate solid polyglycolic acid resin dispersed in the aqueous medium; wherein the particulate polyglycolic acid resin has a weight-average molecular weight of at least 70,000 and at most 500,000, and exhibits weight retentivities in water at 80° C. of at least 85% after 12 hours, at most 80% after 72 hours, and at most 45% after 168 hours. The particulate solid polyglycolic acid resin included in the above-mentioned dispersion liquid for supporting oil drilling, functions as a fluidity control material exhibiting ideal degradation characteristics in the drilling operation for expansion of oil production capacity, demanded for suppressing the liquid permeability in the early stage and recovery of the liquid permeability after completion of the operation of the formation around the oil well.
    • 一种用于支撑石油钻井的分散液,包括:水性介质和分散在水性介质中的颗粒状固体聚乙醇酸树脂; 其特征在于,所述粒状聚乙醇酸树脂的重均分子量为70,000以上且500,000以下,12小时后,80℃下的水分重量保持率为85%以上,72小时后为80%以上, 168小时后最多45%。 上述用于支撑油钻井的分散液中包含的颗粒状固体聚乙醇酸树脂用作在用于膨胀油生产能力的钻井操作中表现出理想的降解特性的流动性控制材料,需要在早期抑制液体渗透性 并且在油井周围操作完成后恢复液体渗透性。
    • 28. 发明申请
    • INFORMATION PROCESSING APPARATUS, INFORMATION PROCESSING METHOD AND RECORDING MEDIUM
    • 信息处理装置,信息处理方法和记录介质
    • US20110273387A1
    • 2011-11-10
    • US13101607
    • 2011-05-05
    • Koji URAWAKIMasahiro YAMAZAKI
    • Koji URAWAKIMasahiro YAMAZAKI
    • G06F3/041
    • G06F3/0416G06F1/1615G06F1/1643G06F1/1647G06F3/1446G06F2203/0382
    • When a user makes a touch input, a touch detector receives touch inputs from two touch panels and measures the coordinates of the touch inputs. The touch detector discriminates a detection mode. When the mode is an individual detection mode, the touch detector converts the coordinates of the touch input in the coordinate system of each display panel to coordinates in the coordinate system of the corresponding display panel, and stores touch history data in a storage unit. When the mode is a combined detection mode, the touch detector converts the coordinates of the touch input in the coordinate system of one display panel to coordinates in the coordinate system of the display panel, and to coordinates in the coordinate system of the other display panel to integrate the coordinate systems into the coordinate system of a single display panel, and stores touch history data in the storage unit.
    • 当用户进行触摸输入时,触摸检测器从两个触摸面板接收触摸输入并测量触摸输入的坐标。 触摸检测器识别检测模式。 当该模式是单独检测模式时,触摸检测器将每个显示面板的坐标系中的触摸输入的坐标转换为相应显示面板的坐标系中的坐标,并将触摸历史数据存储在存储单元中。 当模式是组合检测模式时,触摸检测器将一个显示面板的坐标系中的触摸输入的坐标转换为在显示面板的坐标系中的坐标,并且在另一个显示面板的坐标系中进行坐标 将坐标系统集成到单个显示面板的坐标系中,并将触摸历史数据存储在存储单元中。
    • 30. 发明授权
    • Optical apparatus and method for adjusting amount of light of the same
    • 用于调节其光量的光学装置和方法
    • US07116494B2
    • 2006-10-03
    • US10996733
    • 2004-11-24
    • Masahiro Yamazaki
    • Masahiro Yamazaki
    • G02B13/18G02B3/02G02B7/02
    • G02B27/144G02B7/023
    • An optical apparatus provided in an optical pickup includes first and second light sources, a light splitting element, a condensing lens, a mounting base, a light receiving element, and a protruding piece formed on the condensing lens. The condensing lens guides transmission light from the first light source or reflection light from the second light source that are split by the light splitting element to the light receiving element. By grasping the protruding piece to protrude in a direction perpendicular to a lens axis of the condensing lens, and adjusting a mounting position of the condensing lens on the mounting base, a sufficient amount of light for stable control of a light output is applied to the light receiving element for light output monitor.
    • 设置在光学拾取器中的光学装置包括第一和第二光源,分光元件,聚光透镜,安装基座,光接收元件和形成在聚光透镜上的突出片。 聚光透镜将来自第一光源的透射光或来自第二光源的反射光引导到由光分离元件分离的光接收元件。 通过将突出部件沿着与会聚透镜的透镜轴线垂直的方向突出并且将聚光透镜的安装位置调整在安装基座上,将足够量的用于稳定控制光输出的光施加到 光输出监视器用光接收元件。