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    • 1. 发明专利
    • FIBER GRID REINFORCEMENT
    • CA2005538C
    • 1998-08-04
    • CA2005538
    • 1989-12-14
    • SHIMIZU CONSTRUCTION CO LTDASAHI GLASS MATEX CO LTD
    • SATO MASAYOSHINAKATSUJI TERUYUKISUGITA MINORUSEKINE KENICHIKAWASAKI HIROTAKAHIRAI TAKANORIODAWARA TAKURORYOKAI KIMITOSHIFURUKAWA OSAMU
    • E02D29/02E02D17/20
    • A fiber grid reinforcement is of a flat shape and has first and second directions perpendicular to each other. The fiber grid reinforcement includes a plurality of first fiber bundles, a plurality of second fiber bundles, and a resin material. The first fiber bundles are generally disposed along the first direction and generally parallel to one another. Each of the first fiber bundles includes at least one first group of fibers. The second fiber bundles are generally disposed along the second direction and generally parallel to one another. Each of the second fiber bundles includes at least one second group of fibers. The second fiber bundles intersect perpendicular to the first fiber bundles at intersecting sections so as to form a grid structure. The first group and the second group of fibers are layered alternately at the intersecting sections in such a manner that at least one outermost layer is the second group. The resin material bonds fibers in each group, and bonds the groups to one another. Each of the first group has a plurality of fibers, the fibers being generally arranged along the first direction. Each of the second group has a plurality of fibers, the fibers being generally arranged along the second direction. Each of the second fiber bundles includes a greater number of fibers than each of the first fiber bundles. Accordingly, the fiber grid reinforcement has a greater flexibility in the first direction than in the second direction.
    • 5. 发明专利
    • FIBER GRID REINFORCEMENT
    • CA2005538A1
    • 1990-06-15
    • CA2005538
    • 1989-12-14
    • SHIMIZU CONSTRUCTION CO LTDDAI NIHON GLASS IND
    • KAWASAKI HIROTAKAHIRAI TAKANORIODAWARA TAKURORYOKAI KIMITOSHIFURUKAWA OSAMUSATO MASAYOSHINAKATSUJI TERUYUKISUGITA MINORUSEKINE KENICHI
    • E02D29/02
    • A fiber grid reinforcement is of a flat shape and has first and second directions perpendicular to each other. The fiber grid reinforcement includes a plurality of first fiber bundles, a plurality of second fiber bundles, and a resin material. The first fiber bundles are generally disposed along the first direction and generally parallel to one another. Each of the first fiber bundles includes at least one first group of fibers. The second fiber bundles are generally disposed along the second direction and generally parallel to one another. Each of the second fiber bundles inbcludes at least one second group of fibers. The second fiber bundles intersect perpendicular to the first fiber bundles at intersecting sections so as to form a grid structure. The first group and the second group of fibers are layered alternately at the intersecting sections in such a manner that at least one outermost layer is the second group. The resin material bonds fibers in each group, and bonds the groups to one another. Each of the first group has a plurality of fibers, the fibers being generally arranged along the first direction. Each of the second group has a plurality of fibers, the fibers being generally arranged along the second direction. Each of the second fiber bundles includes a greater number of fibers than each of the first fiber bundles. Accordingly, the fiber grid reinforcement has a greater flexibility in the first direction than in the second direction.
    • 9. 发明专利
    • WATER FLOWING MOLD FRAME
    • JPH03100268A
    • 1991-04-25
    • JP23718289
    • 1989-09-14
    • SHIMIZU CONSTRUCTION CO LTDDAI NIHON GLASS IND
    • TAKADA HIROOIKETANI YOSHIYUKISEKINE KENICHI
    • E04G9/10
    • PURPOSE:To improve the durability of concrete by arranging a water flowing weir plate made of fiber having rigidity, onto the front surface of a water flowing panel in lattice form and installing a water permeable cloth covering the front surface. CONSTITUTION:A water flowing mold frame 1 is constituted of a water flowing panel 2, water flowing weir 3 and a water permeable cloth 4. Then, the water flowing panel 2 is formed into lattice from a glass fiber-reinforced material, and a cavity 2a is formed into a longitudinal rectangulalr form. Then, the water flowing weir 3 is formed by entwining and solidifying a continuous fiber mat made of glass fiber into lamination lyear form by an adhesive made of vinylester resin, and attached onto the panel 2 by the adhesidve, and a prescribed rigidity is set. The excessive moisture in the laid concrete is introduced into the weir plate 3 from the water permeable cloth 4 and flows downward, and gas foames are exhausted from the air gap 2a, passing through the cloth 4 and the weir plate 3. Therefore, the durability of concrete can be improved.