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    • 1. 发明专利
    • Method for cleaning fluororesin membrane surface
    • 清洗荧光素膜表面的方法
    • JP2007330886A
    • 2007-12-27
    • JP2006165155
    • 2006-06-14
    • Takenaka Komuten Co Ltd株式会社竹中工務店
    • TSUMURA CHIKAKOMURAKAMI NOBUNAOTAKAHASHI HIROSHIOKAMOTO HAJIMEKOZUKA YUICHINIWANO SHIGEMI
    • B08B7/00B08B1/00
    • PROBLEM TO BE SOLVED: To provide a method for sufficiently cleaning the surface of a fluororesin membrane which is capable of cleaning the surface of a composite material having the irregular surface of a fluororesin membrane with a simple method, especially to provide a method for cleaning the surface of a fluororesin membrane which is capable of efficiently cleaning a composite material having the surface of a fluororesin membrane that has been used in an existing structure in situ without damaging the membrane surface.
      SOLUTION: The method for cleaning the fluororesin membrane surface comprises a step of applying and drying a tackifier composition of which the film has elasticity after application and drying on the surface of the fluororesin membrane of the composite material obtained by covering at least one face of a fiber base fabric with a fluorine-containing resin and forming the takifier layer at a predetermined area of the fluororesin membrane surface, and a step of gluing an adhesive tape having the tackifier layer on the substrate surface and peeling the tackifier layer by adhesive power of the adhesive tape.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够以简单的方法对能够清洗具有氟树脂膜的不规则表面的复合材料的表面的氟树脂膜的表面进行充分清洁的方法,特别是提供一种方法 用于清洁氟树脂膜的表面,其能够有效地清洁具有现有结构中使用的氟树脂膜的表面的复合材料,而不损坏膜表面。 解决方案:用于清洗氟树脂膜表面的方法包括在通过覆盖至少一个所述复合材料的所述复合材料的所述氟树脂膜的表面上施加和干燥所述膜在施加和干燥之后具有弹性的增粘组合物的步骤 在氟树脂膜表面的预定区域形成具有含氟树脂的纤维基底织物的表面,以及在基材表面上粘合具有增粘剂层的粘合带并用粘合剂剥离增粘剂层的步骤 胶带的力量。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Method for introducing tension to tendon and structure
    • 介绍张力和结构的方法
    • JP2008057297A
    • 2008-03-13
    • JP2006239107
    • 2006-09-04
    • Takenaka Komuten Co Ltd株式会社竹中工務店
    • UMEKUNI AKIRATAKANASHI KOICHIMOGAMI KIMIHIKOOKAMOTO TATSUOINOUE KAZUHIROKOZUKA YUICHI
    • E04G21/12
    • PROBLEM TO BE SOLVED: To obtain a method for introducing tension to a tendon reducing man-hours adjusting the tension of the tendon capable of simplifying the structure of the fixing section of the tendon and the structure.
      SOLUTION: Six-divided first pieces 12 for a support 13 are arranged on the top face of a footing beam 11. One-side ends of cables 14A and 14B as the tendons are fixed to the fixing sections 15A and 15B of the first pieces 12. Other ends of the cables 14A and 14B are fixed to the fixing sections 17A and 17B on the footing beam 11. The first pieces 12 are lifted, and second pieces 16 are arranged on lower sides of the first pieces. The support 13 is formed by repeating the construction procedures from the first pieces to sixth pieces. The cables 14A to 34B are formed in specified quantities of elongation by lifting the pieces from the first pieces 12 to the sixth pieces 32, and each cable is given the specified tension.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了获得一种将绷带引入肌腱的方法,所述肌腱减少工作时间,以调节能够简化腱的固定部分的结构和结构的腱的张力。 解决方案:用于支撑件13的六分割第一片12布置在基脚11的顶面上。作为腱的电缆14A和14B的一侧端固定到固定部分15A和15B 第一片12.电缆14A和14B的另一端固定到基脚11上的固定部分17A和17B上。第一片12被提起,第二片16布置在第一片的下侧。 支撑件13通过重复从第一件到第六件的构造程序而形成。 电缆14A至34B通过将件从第一件12提升到第六件32而以特定的伸长率形成,并且每个电缆被赋予特定的张力。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • APPARATUS FOR MEASURING TWO-DIMENSIONAL REMOTE DISPLACEMENT QUANTITY
    • JPS62157509A
    • 1987-07-13
    • JP29808085
    • 1985-12-28
    • TAKENAKA KOMUTEN COKYOWA ELECTRONIC INSTRUMENTS
    • MAGARA SHIGETAKAOKADA AKIRAKOZUKA YUICHIWATANABE TAKEO
    • G01B21/00
    • PURPOSE:To measure two-dimensional displacement quantity, by mounting a displacement converter or a first angle detector outputting the electric signal corresponding to the moving quantity of a wire rope and a second angle detector outputting the electric signal corresponding to the angle of rotation of a running block. CONSTITUTION:The moving quantity of one point 6 of a wire rope 6 at a reference position 3 is set to d1, the winding-in quantity or pay-out quantity of the wire rope 6 to a running block 2 at a measuring point position to d2 and the distance between the perpendicular V passing the center point 0 erected from the straight line AB on a plane ABC and a point C to P1. Now, when it is assumed that a measuring point 1 moved from the point C to a point C' with respect to the reference position 3, the up-and-down direction displacement quantity Dv and horizontal direction displacement quantity Dh of the measuring point 1 are calculated from formulae I, II. The electric signals corresponding to d1 and d2 outputted from a displacement meter 8 and an angle detector 9 are inputted to an operator performing addition, subtraction, multiplication, and division and square etc. and operated on the basis of the formulae I, II to obtain the vertical direction displacement quantity Dv and horizontal direction displacement Dh of the measuring point 1.