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    • 45. 发明授权
    • Structure of pile head joint portion and pile head fitting tubular body
    • 桩头接头部分和桩头接头管体的结构
    • US06854934B2
    • 2005-02-15
    • US10746474
    • 2003-12-24
    • Takashi YamaneYoshikazu InatomiTsutomu Ogata
    • Takashi YamaneYoshikazu InatomiTsutomu Ogata
    • E02D5/30E02D27/12E02D27/14E02D5/12
    • E02D27/14
    • The invention provides a structure of a pile head joint portion and a pile had fitting tubular body which can absorb an execution error for constructing a pile leading to a problem in the case of precasting a board for supporting an upper structure in order to intend to shorten a process, and can improve a strength of the pile head joint portion. A precast board (5) is manufactured by embedding a pile head fitting tubular body (2) which is constituted by a side plate (23) forming a pile head fitting tubular body (2) and a closing plate (22) closing open one end of a tube body, and forms an opening portion (26) in another end open so as to freely fit a pile head. The pile and the board are integrally formed by fitting the pile head portion to the pile head fitting tubular body (2) after constructing the pile, and charging an injection material (4) into the pile head fitting tubular body (2).
    • 本发明提供了一种桩头接头部分的结构,并且桩具有装配的管状体,其可以吸收用于构造堆垛的执行错误,从而在预制用于支撑上部结构的板的情况下导致问题,以便缩短 并且可以提高绒头头部接合部的强度。 通过嵌入由形成桩头配件管状体(2)的侧板(23)和封闭板(22)构成的桩头嵌合管状体(2)来制造预制板(5),封闭板 并且形成另一端敞开的开口部分(26),以便自由地装配桩头。 桩和板通过在构造桩之后将桩头部分装配到桩头装配管状体(2)而一体地形成,并将注射材料(4)装入桩头配件管状体(2)中。
    • 46. 发明授权
    • Artificial heart pump
    • 人造心脏泵
    • US6015434A
    • 2000-01-18
    • US899337
    • 1997-07-23
    • Takashi Yamane
    • Takashi Yamane
    • A61M1/10
    • A61M1/101A61M1/1015A61M1/1036Y10S415/90
    • An artificial heart pump includes a casing having a pump chamber inside the casing and a partition that closes, in a fluid-tight manner, the bottom portion of the pump chamber, an impeller disposed inside the pump chamber so that it is rotatable about the axis of rotation and including an impeller shaft portion having a shaft hollow part and an impeller portion having an impeller hollow part extending radially and communicating with the shaft hollow part, the shaft hollow part and the impeller hollow part constituting a blood flow channel, a magnetic supporter for rotatably supporting the impeller within the casing in a direction normal to the axis of rotation, a pivot bearing for rotatably supporting the impeller within the casing in a direction of the axis of rotation, a rotating device accommodated within the casing below the pump chamber for rotating the impeller, and a magnetic coupler for transmitting the rotating force of the rotating device to the impeller.
    • 人造心脏泵包括在壳体内具有泵室的壳体和以流体密封的方式封闭泵室的底部的隔板,设置在泵室内部的叶轮,使得其能够围绕轴线旋转 包括具有轴中空部的叶轮轴部和具有径向延伸并与轴中空部连通的叶轮中空部的叶轮部,轴中空部和构成血流通道的叶轮中空部,磁性支撑体 用于沿垂直于旋转轴线的方向可旋转地支撑所述壳体内的所述叶轮;枢转轴承,用于沿所述旋转轴线的方向可旋转地支撑所述壳体内的所述叶轮;旋转装置,其容纳在所述泵室内的所述壳体内,用于 旋转叶轮和用于将旋转装置的旋转力传递到叶轮的磁耦合器。
    • 48. 发明授权
    • Method of manufacturing an optical waveguide device
    • 制造光波导器件的方法
    • US5612086A
    • 1997-03-18
    • US256179
    • 1994-06-28
    • Hironao HakogiTakashi YamaneJunko Watanabe
    • Hironao HakogiTakashi YamaneJunko Watanabe
    • G02B6/122B05D5/06
    • G02B6/122
    • Electric discharge breakdown in an optical waveguide pattern formed on a crystal substrate having pyroelectric effect is substantially extinguished or reduced, so that the yield of optical waveguide devices in the manufacturing process can be increased. A plurality of optical waveguide patterns 5 are formed, in parallel, by means of heat treatment on a substrate 2 of lithium niobate having pyroelectric effect, and the formed waveguide patterns are cut into a predetermined chip-shape. In the manufacturing method of this optical waveguide device, patterns are formed so that both ends of the optical waveguide pattern 5 are respectively communicated at a position where both ends of the optical waveguide pattern 5 are out of an effective chip range. Further, a dummy pattern 26 is formed at a position close to a waveguide pattern 25.
    • PCT No.PCT / JP93 / 01565 Sec。 371日期:1994年6月28日 102(e)日期1994年6月28日PCT提交1993年10月28日PCT公布。 公开号WO94 / 10592 日期1994年5月11日在具有热电效应的晶体基板上形成的光波导图案中的电击放电基本上熄灭或减少,从而可以提高制造工艺中的光波导器件的产量。 通过在具有热电效应的铌酸锂的基板2上进行热处理,平行地形成多个光波导图案5,并且将形成的波导图案切割成预定的芯片形状。 在该光波导装置的制造方法中,形成图案,使得光波导图案5的两端分别在光波导图案5的两端处于有效芯片范围之外的位置连通。 此外,在靠近波导图案25的位置处形成虚设图案26。