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    • 6. 发明授权
    • Advanced wastewater treatment device having movable dividers
    • 先进的废水处理装置具有可移动分隔器
    • US08007665B2
    • 2011-08-30
    • US13050860
    • 2011-03-17
    • Takao Kamiyama
    • Takao Kamiyama
    • B01D17/12C02F3/30
    • C02F3/308C02F2201/007C02F2203/006
    • Disclosed herein is an advanced wastewater treatment device. The device includes a wastewater treatment bath having an anaerobic bath in which phosphorus is discharged, an anoxic bath in which denitrification of nitrate nitrogen is performed, and an aerobic bath in which decomposition and nitrification of organic matter is performed. A first movable divider separates the anaerobic bath from the anoxic bath and is movably provided in the wastewater treatment bath to change relative volume of the anaerobic and anoxic baths. A second movable divider separates the anoxic bath from the aerobic bath and is movably provided in the wastewater treatment bath to change relative volume of the anoxic and aerobic baths. A divider moving unit moves the first and second movable dividers. An air supply unit includes air nozzles, an air pump, and valves. A recycling unit recycles activated sludge of the aerobic bath to the anoxic bath.
    • 本文公开了一种先进的废水处理装置。 该装置包括具有排出磷的厌氧浴的废水处理槽,进行硝酸盐氮的脱氮的缺氧浴以及进行有机物的分解和硝化的需氧浴。 第一可移动分隔器将厌氧浴与缺氧浴分开,并且可移动地设置在废水处理浴中以改变厌氧和缺氧浴的相对体积。 第二可移动分隔器将缺氧浴与需氧浴分开,并且可移动地设置在废水处理浴中以改变缺氧和需氧浴的相对体积。 分隔器移动单元移动第一和第二可移动分隔件。 空气供应单元包括空气喷嘴,空气泵和阀。 回收单元将需氧浴的活性污泥再循环到缺氧浴中。
    • 7. 发明申请
    • Existing pipe rehabilitation method
    • 现有管道修复方法
    • US20100307624A1
    • 2010-12-09
    • US12655094
    • 2009-12-23
    • Takao KamiyamaKoji KanetaKenji FujiiKatsuyori Miura
    • Takao KamiyamaKoji KanetaKenji FujiiKatsuyori Miura
    • F16L55/162
    • F16L55/163E03F3/06E03F2003/065F16L55/1657
    • Segments are linked in the circumferential and pipe length directions to assemble a rehabilitating pipe inside an existing pipe in order to rehabilitate the existing pipe. A plurality of nuts are secured to the segments along the circumferential direction thereof. A fastening member having a screw part is provided which is screwed into the nut to fasten a first segment to a second segment to which the nut is secured, thereby linking the first and second segments in the pipe length direction thereof. The position of the nut in the first segment is offset as viewed in the circumferential direction from the nut position of the second segment. The arrangement of the fastening members and the nuts is staggered as viewed in its entirety. This allows the connection strength of the segments in the pipe length direction to be made uniform.
    • 在圆周和管道长度方向上分段是连接在一个现有管道内的一个修复管,以便恢复现有的管道。 多个螺母沿其圆周方向被固定在该段上。 提供了一种具有螺纹部分的紧固构件,其被拧入螺母中以将第一段紧固到固定有螺母的第二段,从而在第一段和第二段之间沿其管长度方向连接。 螺母在第一段中的位置从第二段的螺母位置沿圆周方向偏移。 紧固构件和螺母的布置整体上看是错开的。 这允许使管段长度方向上的段的连接强度均匀。
    • 9. 发明申请
    • In-pipe work robot
    • 管内工作机器人
    • US20090223335A1
    • 2009-09-10
    • US12381044
    • 2009-03-06
    • Takahiko TsujisamaTakao KamiyamaMasao Ueno
    • Takahiko TsujisamaTakao KamiyamaMasao Ueno
    • B23D21/14B08B9/00
    • F16L55/265Y10T83/364Y10T83/384
    • A main pipe is lined using a pipe lining material that blocks the opening of a lateral pipe branching from the main pipe. An in-pipe work robot is provided with a cutting nozzle for spraying a pressurized fluid material or pressurized granular material onto the pipe lining material of the main pipe. The cutting nozzle is moved to a predetermined position inside the main pipe and rotated about a vertical axis by a rotary mechanism to cut the lining material between the first and second pipes by the pressurized fluid material or pressurized granular material sprayed from the cutting nozzle in order to form an opening for communicating the main pipe with the lateral pipe. The cutting nozzle can be moved in desired positions to drill holes accurately without damaging the internal peripheral surface of the lateral pipe.
    • 主管内衬管道衬里材料,阻挡从主管分支的侧管的开口。 管内加工机器人设置有用于将加压流体材料或加压颗粒材料喷射到主管的管衬材料上的切割喷嘴。 切割喷嘴移动到主管内部的预定位置并且通过旋转机构绕垂直轴线旋转,以通过加压流体材料或从切割喷嘴喷射的加压颗粒材料按顺序切割第一和第二管道之间的衬里材料 以形成用于使主管与侧管连通的开口。 切割喷嘴可以移动到期望的位置以精确钻孔,而不会损坏侧管的内周面。
    • 10. 发明授权
    • Boring device
    • 镗孔装置
    • US07510357B2
    • 2009-03-31
    • US11399248
    • 2006-04-06
    • Takao KamiyamaKoji KanetaKenji Fujii
    • Takao KamiyamaKoji KanetaKenji Fujii
    • B23B41/08
    • F16L55/179Y10S408/714Y10T408/55Y10T408/557Y10T408/5665Y10T408/675Y10T409/304424
    • A boring device is inserted into a lateral pipe to bore a pipe lining material inserted into a main pipe across the lateral pipe intersecting therewith and a portion of which blocks an opening of the lateral pipe that communicates with the main pipe. The boring device has a rotatable shaft, a bearing member for rotatably bearing the rotatable shaft, and a boring blade mounted on the rotatable shaft for rotation therewith to bore through the portion of the pipe lining material that is blocking the opening of the lateral pipe. A supporting member is mounted on one side of the bearing member. An inflatable bag is mounted on the other side of the external periphery of the bearing member. The inflatable bag is inflatable in the lateral pipe so that the inflatable bag and the supporting member are pressed against an internal peripheral surface of the lateral pipe.
    • 将镗孔装置插入到侧管中以穿过插入主管中的管道衬里材料穿过与其相交的横向管,并且其一部分阻挡与主管连通的侧管的开口。 该钻孔装置具有可旋转的轴,用于可旋转地支承旋转轴的支承构件,以及安装在可旋转轴上的镗刀,用于与其一起旋转穿过阻塞侧管开口的管衬材料的部分。 支撑构件安装在轴承构件的一侧。 可充气袋安装在轴承部件外周的另一侧。 可膨胀袋在侧管中可充气,使得可膨胀袋和支撑构件压靠在侧管的内周表面上。