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    • 96. 发明专利
    • INSPECTING METHOD FOR PHOTOCATALYST FILM
    • JPH10206334A
    • 1998-08-07
    • JP884797
    • 1997-01-21
    • TAKENAKA KOMUTEN CO
    • SAITO TOSHIO
    • G01N21/84C01G23/04
    • PROBLEM TO BE SOLVED: To provide an inspecting method for a photocatalyst film by which the existence of a photocatalyst thin film can be easily inspected in real time on the whole of a floor surface and a wall surface. SOLUTION: The light having a wave length not more than 400nm is irradiated to a photocatalyst thin film 14 of a photocatalyst tile 10 from a light source 20. This photocatalyst tile 10 is photgraphed by a video camera 16 sensitive to the light having a wave length not more than 400nm, and is observed by a monitor. A tile 12 having no photocatalyst thin film 14 is prepared, and the light is also irradiated to this tile 12 from the light source 20, and this is photographed by the video camera 16. The light is abundabtly absorbed as the photocatalyst thin film 14 becomes thick, and an image becomes dark. When the photocatalyst thin film 14 is thin, the light is not absorbed, and the image becomes bright. In the tile 12, the light is hardly absorbed, and since the image becomes brightest, the existence and a thickness of the photocatalyst thin film 14 can be inspected by comparing brightness of the image of the photocatalyst tile 10 by using this brightness as a reference.
    • 98. 发明专利
    • ELECTROMAGNETIC WAVE DIFFUSION ABSORBING BODY AND METHOD
    • JPH09307267A
    • 1997-11-28
    • JP12055896
    • 1996-05-15
    • TAKENAKA KOMUTEN CO
    • HARAKAWA KENICHISAITO TOSHIOUNNO KENICHIIWASA YOSHITERUMURAI NOBUYOSHIOKADA KATSUYA
    • H05K9/00
    • PROBLEM TO BE SOLVED: To make feasible of arranging an electromagnetic wave diffusion absorbing an electronic wave diffusion absorbing body capable of reducing various damages and inconveniences due to the electromagnetic waves in a simple structure, while securing the phototransmissivity in the arrangement position. SOLUTION: A magnetic wave diffusion absorbing glass 10 is composed of multiple elements 14 provided in a glass sheet 12. In each element 14. Categories, compounding ratio, manufacturing method, sectional area, etc., are specified so as for the electric resistance value per unit length to correspond to the specific value maximizing the electromagnetic wave absorbing capacity (higher than that of a conductor but lower than that of an insulator). Besides, in respective elements, respective part in the intermediate part are bent so as to make the long direction run almost along the z axial direction while running zigzag in the x axial and y axial direction to the z axial direction to make a plurality of elements 14 juxtapose along the y axial direction at a specified interval to be sealed in the glass sheet 12 while the parts in parallel with the z axial direction and non-parallel with the z axial direction are existent in respective elements 14.