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    • 2. 发明专利
    • Side-ditch and side-ditch construction method using the side-ditch
    • 使用侧面的侧面和侧面结构方法
    • JP2008106442A
    • 2008-05-08
    • JP2006287526
    • 2006-10-23
    • Fujimura Fume Kan Kk藤村ヒューム管株式会社
    • SHINDO KAZUOIGARASHI SUGURUTAKAYAMA HIROYUKI
    • E03F5/04
    • PROBLEM TO BE SOLVED: To provide a side-ditch and a side-ditch construction method using the side-ditch eliminating a clearance and level difference between a ditch body and a cover and the noise of vehicles going in and out on the side ditch cover, and reducing maintenance/repair cost without wear/damage caused by in-and-out of the vehicles.
      SOLUTION: The portal side-ditch is opened downward, integrally formed with beams 8 at both longitudinal ends of the upper faces of both sidewalls, and has a first cover 4a of the same width as the side-ditch, disposed between both beams. One lateral end of each of the beams 8 and the first cover 4a is provided with a drain part 5a of predetermined height having a drain ditch 5. The drain ditch is provided with a plurality of water collecting through-holes 6 communicating with a passage 9 of the side-ditch, and the first cover 4a is disposed on the upper faces of both sidewalls 1a between both beams.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种侧沟和侧沟施工方法,其使用侧沟消除沟渠体和盖之间的间隙和水平差,以及车辆进出的车辆噪声 并且减少维护/维修成本,而不会因车辆进出而造成磨损/损坏。

      解决方案:门侧面沟槽向下打开,与两侧壁的上表面的两个纵向端处的梁8整体形成,并且具有设置在两侧之间的与侧沟相同宽度的第一盖4a 梁。 每个梁8和第一盖4a的一个横向端部设置有具有排水沟5的预定高度的排水部5a。排水沟设置有多个与通道9连通的集水通孔6 并且第一盖4a设置在两个横梁之间的两个侧壁1a的上表面上。 版权所有(C)2008,JPO&INPIT

    • 7. 发明专利
    • HUME PIPE FOR JACKING METHOD
    • JP2000045687A
    • 2000-02-15
    • JP20982098
    • 1998-07-24
    • FUJIMURA FUME KAN KK
    • NAKAMURA KATSUNORI
    • E21D9/06
    • PROBLEM TO BE SOLVED: To uniformly discharge lubricant to be supplied on the outer periphery of a driving Hume pipe, reducing friction resistance between a ground and the Hume pipe to prevent the increase of driving force and accelerate a driving speed and give the least influence of ground subsidence, lopsided soil pressure and meandering drive. SOLUTION: A pipe passage mounting groove 11 is provided on the outer periphery of a driving Hume pipe 1. In the pipe passage mounting groove 11, a pipe passage body 2 is arranged which comprises a plurality of pipe passages, including a first pipe passage 21 with a discharge port (a) at the top of the outer periphery, an almost semicircular second pipe passage 22 with a discharge port (b) at an intermediate height, and a third pipe passage 23 with a discharge port (c) in symmetry at the lower part, arranged in parallel in a pipe axial direction and connected with one another. Guide holes are provided in the pipe passage 21, 22, 23 at the same positions, one filling port 3 for lubricant in communication with the guide holes is provided and a discharge port 5 is formed on the outer periphery of the Hume pipe at the positions of the discharge ports (a), (b), (c). The upper face of the pipe passage body 2 is covered with a cover 6 in a pent-roof fashion.
    • 9. 发明专利
    • PLANTING METHOD AND PLANTING CYLINDRICAL BODY
    • JPH1060899A
    • 1998-03-03
    • JP22196796
    • 1996-08-23
    • FUJIMURA FUME KAN KK
    • NISHIYAMA SEIJI
    • A01G9/02E02D17/20E02D29/02
    • PROBLEM TO BE SOLVED: To grow a healthy plant by laying out a porous cylindrical body whose inside diameter is formed larger than the outside diameter at the root of a plant to be planted and making a culture soil fill up the cylindrical body and stuffing a surplus soil outside the cylindrical body. SOLUTION: A porous cylindrical body 10, whose inside diameter is formed in larger size than the outside diameter at the root of a plant to be planted, is laid out in a plating block 1. A cultured soil 6 fills up the cylindrical body 10 where a plant 5 is planted and then a surplus soil 7 fills up outside the cylindrical body 10. the nourishment of the cultured soil 6 is supplied to the plant 5 planted in the cultured soil 6 in the cylindrical body 10 which an enough amount of air in the atmosphere is supplied near the outer peripheral area at the root of the plant by way of the porous cylindrical body 10. Furthermore, oxygen is also supplied by water flowing through the porous body so that water retentivity may be secured. It is, therefore, possible to further activate the root of a plant without corroding the root of the plant and grow up a healthier plant.