会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Tape winding apparatus
    • 磁带卷绕装置
    • US4628675A
    • 1986-12-16
    • US580310
    • 1984-02-15
    • Katsuji Sakamoto
    • Katsuji Sakamoto
    • B65H81/00B65H81/06H01B13/08D07B7/14B65H59/18
    • H01B13/0841
    • A tape winding apparatus including a rotatable spindle having an axial bore through which a core on which a tape is to be wound to produce a cable is advanced, and a reel carrying a roll of tape supported on the spindle for rotation about the core. A takeup roller is provided between the reel and the core for defining at least two areas therebetween so that the tension of the tape in one of those areas which is closer to the reel may be higher than in the other area. A wind barrier is provided between those areas for preventing transfer of a wind created by the rotation of the reel from the one area to the other area. A tension controller is provided between the takeup roller and the core for controlling the rotating speed of the takeup roller to maintain the tape therebetween at a satisfactorily low tension which ensures proper winding of the tape on the core.
    • 一种磁带卷绕装置,包括具有轴向孔的可旋转主轴,通过该轴可以卷绕磁带以产生电缆的磁芯,以及卷轴,其支承在主轴上以围绕磁芯旋转。 在卷轴和芯之间设置卷取辊,用于在其间限定至少两个区域,使得在更接近卷轴的那些区域之一上的带的张力可能高于其它区域中的带的张力。 在这些区域之间设有防风挡板,用于防止由卷轴的旋转产生的风从一个区域传递到另一个区域。 在卷取辊和芯之间设置有张力控制器,用于控制卷绕辊的转速,以将卷筒保持在令人满意的低张力之间,从而确保带在卷芯上的正确卷绕。
    • 4. 发明授权
    • Optical fiber characteristic measuring method and apparatus
    • 光纤特性测量方法及装置
    • US4676635A
    • 1987-06-30
    • US705837
    • 1985-02-26
    • Katsuji SakamotoAkio OhtaYuichi TodaShuzo SuzukiTakashi Ide
    • Katsuji SakamotoAkio OhtaYuichi TodaShuzo SuzukiTakashi Ide
    • G01M11/00G01M11/02G02B6/00G01N21/84G01N21/88
    • G01M11/33G01M11/31
    • An optical fiber characteristic measuring method and apparatus are disclosed whereby measurements of a plurality of different parameters of an optical fiber can be carried out automatically and successively with a minimum of operator time required. A stage is provided which is movable along a straight line, and a setting station is arranged in the direction of movement of the stage. A plurality of measurement stations are provided having first holders for holding fibers provided on the side of the measuring devices and arranged along a straight line extending parallel to the direction of movement of the stage with a predetermined distance therebetween. The stage is provided with a plurality of second holders for holding the optical fibers to be measured, with the second holders being arranged along a straight line extending parallel to the direction of arrangement of the first holders with the same distance as the predetermined distance therebetween.
    • 公开了一种光纤特性测量方法和装置,其中可以以最少的操作者时间自动且连续地执行光纤的多个不同参数的测量。 提供能够沿着直线移动的台架,并且设置台沿台架的移动方向布置。 多个测量站具有第一保持器,用于保持设置在测量装置一侧的纤维,并沿平行于平台的移动方向延伸的直线布置,其间具有预定距离。 该台设置有多个用于保持被测量的光纤的第二保持器,其中第二保持器沿与第一保持器的布置方向平行延伸的直线以与它们之间的预定距离相同的距离布置。
    • 7. 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.
    • 9. 发明授权
    • Apparatus for molding and solidifying a resinous composite structure
    • 用于模制和固化树脂复合结构的装置
    • US4828472A
    • 1989-05-09
    • US545640
    • 1983-12-16
    • Yasuhiro ItohKatsuji SakamotoHideki Miyabe
    • Yasuhiro ItohKatsuji SakamotoHideki Miyabe
    • B29C33/02B29C35/02B29C43/12B29C70/44G05D27/02
    • B29C70/44B29C33/02B29C35/0288G05D27/02B29C2037/903B29C43/12
    • An apparatus for molding and curing a resin matrix composite material under pressure and heat by a use of a bag provided in an autoclave for covering the material and applying the pressure to the material. The apparatus comprises a plurality of heater elements arranged along surfaces of the structure to heat the same, a temperature control device for controlling the heating elements, a pressurizing device for adjusting the pressure difference across the bag to thereby pressurize the material, a pressure control device for controlling the pressurized device, temperature detectors for detecting temperatures at predetermined regions on the structures and generating electric signals representing temperatures at respective regions, pressure detectors for detecting pressures within the autoclave and the bag and generating electric signals representing the detected pressures, a regulating device for controlling the temperature control device and the pressure control device to heat and pressurize the structure in accordance with a predetermined condition when the regulating device receives the electric signals from the temperature control device and the pressure control device and for controlling the temperature control device to equalize the temperature at the regions on the material in heating and cooling steps.
    • 一种用于在压力和热量下通过使用设置在高压釜中的袋来压制和固化树脂基复合材料的装置,用于覆盖材料并向材料施加压力。 该装置包括沿着结构体的表面布置以加热该加热元件的多个加热器元件,用于控制加热元件的温度控制装置,用于调节跨越袋的压力差从而对该材料加压的加压装置,压力控制装置 用于控制加压装置的温度检测器,用于检测结构上预定区域的温度并产生表示相应区域温度的电信号;压力检测器,用于检测高压釜和袋内的压力并产生表示检测到的压力的电信号;调节装置 用于控制温度控制装置和压力控制装置,以在调节装置接收到来自温度控制装置和压力控制装置的电信号并且用于控制装置时根据预定条件对结构进行加热和加压 g温度控制装置以在加热和冷却步骤中均衡材料上的区域的温度。