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    • 22. 发明授权
    • Method and device for collecting commodities
    • 收集商品的方法和装置
    • US4744457A
    • 1988-05-17
    • US48970
    • 1987-05-04
    • Hiroaki Takimoto
    • Hiroaki Takimoto
    • B65G57/03B65B35/40B65G47/08B65G57/20B65G47/26
    • B65G47/086B65B35/40
    • A method for collecting commodities in a group, a longitudinal series of commodities being fed set by set into a tapered pusher on which stages having enough size to accommodate square commodities are continuously formed, a pusher advancing a length equal to one commodity so that the commodity group is pushed out in such a condition that the contacting surfaces of the commodities in the row disagree with the contacting surfaces of the commodities in the adjacent rows. A device for collecting commodities uses a tapered pusher on which stages having a longitudinal length shorter than a length of a square commodity and a substantially same lateral length as a width of the square commodity are continuously formed, the pusher being disposed on an operation table provided at a side of a conveyor for conveying commodities to move in a longitudinal direction parallel to the conveyor.
    • 一种用于收集一组商品的方法,将纵向一系列商品装入一锥形推动器中,在其中连续形成具有足够尺寸以容纳正方形商品的阶段,推动器推进等于一个商品的长度,使得商品 在该行中的商品的接触表面与相邻行中的商品的接触表面不同的条件下被推出。 用于收集商品的装置使用锥形推动器,其上连续地形成纵向长度短于方形商品的长度和与方形商品的宽度基本相同的横向长度的阶段,所述推动器设置在提供的操作台上 在输送机的一侧,用于输送商品沿平行于输送机的纵向移动。
    • 25. 发明申请
    • Storage container and medical sucking tool having the same
    • 具有相同的储存容器和医用吸吮工具
    • US20060276762A1
    • 2006-12-07
    • US10559700
    • 2004-06-08
    • Hajime NakazawaHiroaki Takimoto
    • Hajime NakazawaHiroaki Takimoto
    • A61M1/00
    • A61M1/0001A61M1/0017A61M1/0052A61M1/0096
    • Disclosed is a receptacle for use with a medical suction device which is equipped with a cover body and an external case for detachably holding and air-tightly surrounding the receptacle and a patient-side tube for introducing waste liquid into the receptacle, and designed to create a negative pressure in both an interior space of the cover body and the external case and an interior space of the receptacle so as to allow waste liquid to be sucked into the receptacle through the patient-side tube. The receptacle has an air-pervious/liquid-impervious element having air perviousness and liquid imperviousness. The air-pervious/liquid-impervious element at least partly constitutes a portion of the receptacle to be surrounded by the cover body and the external case.
    • 公开了一种与医用抽吸装置一起使用的容器,该容器配备有盖体和用于可拆卸地保持和气密地围绕容器的外壳,以及用于将废液引入容器的患者侧管,并且设计成产生 在盖体的内部空间和外部壳体以及容器的内部空间中的负压,以便允许废液通过患者侧管吸入到容器中。 容器具有透气/不透液体的元件,具有透气性和液体不透性。 透气/不透液体元件至少部分地构成待被盖体和外壳体包围的容器的一部分。
    • 27. 发明授权
    • Method and apparatus for producing optical fiber
    • 光纤制造方法及装置
    • US4894078A
    • 1990-01-16
    • US252107
    • 1988-10-03
    • Hiroaki TakimotoKatsuji Sakamoto
    • Hiroaki TakimotoKatsuji Sakamoto
    • C03B37/027C03C25/12
    • C03B37/02718C03C25/12Y02P40/57
    • In a method for producing an optical fiber having a resin coating, an optical fiber which is drawn from a preform for an optical fiber heated and melt by a heating source can be effectively cooled before it is coated with a resin by cooling the drawn fiber by cooling gas in such a manner that, in a first plane which is perpendicular to an axis of the drawn fiber or a first conical surface which has a cone point on the axis of the drawn fiber, the cooling gas is blown against the fiber from one direction on said first plane or said first cone surface, and in a second plane which is perpendicular to the axis of the drawn fiber and apart from said first plane or a second conical surface which has a cone point on the axis of the drawn fiber and is apart from said first conical surface, the cooling gas is blown against the fiber from other direction on said second plane or said second conical surface so that a sum of components of all vectors of the cooling gas in x and y dimensions in the three-dimensional space with a z dimension in the drawn fiber direction is substantially zero (0) where a length and a direction of the vector are represented by a flow rate and a direction of the cooling gas, respectively.