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    • 1. 发明授权
    • 차수로봇을 이용한 하수관거의 물 돌리기 방식 건식 보수 보강 공법
    • 使用水分离机器人的水轮式干燥维护和加固工程方法
    • KR100895342B1
    • 2009-05-07
    • KR1020080100634
    • 2008-10-14
    • 배석동(주) 선암기술연구소
    • 배석동배형진
    • E03F3/06F16L55/10F16L55/162F16L55/18F16L55/26F16L101/10
    • E03F3/06B25J5/007E03F2003/065
    • 본 발명은 매설된 하수관거를 차수 기능을 갖는 로봇에 의하여 차수시킨 후 가배수관에 의하여 하수의 흐름이 정상적으로 유지되게 함과 동시에 건식 상태에서 보수할 수 있도록 한 차수로봇을 이용한 하수관거의 물 돌리기 방식 건식 보수 보강 공법에 관한 것이다.
      본 발명은 하수관거를 관통하는 가배수관의 직경을 최소화하여 하수관거 내부의 작업 공간을 충분히 확보할 수 있으면서도 지하구조물의 보수, 보강면의 철근이 앵커에 의하여 기존 구조물과 일체로 견고하게 고정되어 지하구조물의 내구연한을 연장시킬 수 있게 된다.
      이를 위하여 본 발명은 보수 보강을 실시하기 위한 하수관거의 양측에 차수로봇을 배치하고, 배치된 차수로봇의 수밀패널 중앙을 관통하는 가배수관을 설치하도록 한 차수로봇을 이용한 하수관거의 물 돌리기 방식 건식 보수 보강 공법에 있어서, 가배수관에 압송팬을 설치하고,
      하수관거의 보수 보강 대상이 되는 손상된 면에 밀착하여 철근을 가로, 세로로 고정시킬 수 있는 철근 직접 고정 구조를 구비한 앵커를 보수 보강 대상 부위 둘레에 타설하고, 이를 이용하여 철근을 가로와 세로로 배근, 고정한 후 고정한 후 몰탈을 주입 또는 뿜칠(쇼트)하고 양생되도록 함으로써 해당 부위를 최소(슬림)화된 두께로 보수 보강할 수 있게 한 것이다.
      차수, 물 돌리기, 보수, 보강, 하수관거
    • 3. 发明公开
    • 교각 보강구조물 및 이의 시공방법
    • 桥梁加固结构及其施工方法
    • KR1020110123453A
    • 2011-11-15
    • KR1020100042948
    • 2010-05-07
    • (주) 선암기술연구소배형진
    • 배석동배형진
    • E01D22/00E01D19/02E02D19/02E01D101/24
    • E01D22/00E01D19/02E01D2101/24E02D19/02
    • PURPOSE: A structure for reinforcing pier and a method of constructing the same are provided to reduce a construction period and costs when pier is repaired and reinforced, since the circumferential surface of pier is covered with a steel pile. CONSTITUTION: A structure(100) for reinforcing pier comprises a steel pile(120), a horizontal reinforcing member(130), a back-filling member(140), a fixing unit(150), a blocking form(160), and cap concrete. The steel pile covers pier by being driven to an underwater bearing layer so that at least one short column pile is horizontally connected between the water surface around pier(P) and bridge by a connecting unit(110). The horizontal reinforcing member is horizontally fixed to the inner surface of the steel pile. The back-filling member is filled between the steel pile fixed by the horizontal reinforcing member and pier.
    • 目的:提供一种用于加固码头的结构及其构造方法,以减少码头修复和加固时的施工周期和成本,因为码头的圆周表面被钢桩覆盖。 构成:用于加固码头的结构(100)包括钢桩(120),水平加强构件(130),后填充构件(140),固定单元(150),阻挡构件(160)和 盖混凝土 钢桩通过被驱动到水下轴承层而覆盖墩,使得至少一个短柱桩通过连接单元(110)水平连接在码头(P)周围的水面和桥之间。 水平加固件水平固定在钢桩的内表面上。 后填充部件填充在由水平加强构件固定的钢桩和码头之间。
    • 4. 发明授权
    • 골판형 합성상판
    • 腐蚀板类型组合板
    • KR100859312B1
    • 2008-09-19
    • KR1020070020084
    • 2007-02-28
    • (주) 선암기술연구소배형진
    • 배형진
    • E04B5/40E01D19/12
    • A corrugated composition deck plate is provided to resist external force applied to the deck plate with compression stress of a corrugate reinforcement and integrated concrete and tension stress of the corrugated reinforcement and plane plate. A corrugated composition deck plate comprises a plurality of corrugated reinforcements(12) and connection members(17), a space(16), through-holes(15), a plane plate(18), a steel bar fixing unit(19). The corrugated reinforcement are connected each other by the connection members. The space is located beneath the corrugated reinforcement. The through-holes formed at the corrugated reinforcement at regular intervals. The plane plate is located at the bottom of the corrugated reinforcement. The steel bar fixing unit includes protrusions(20) and fastening holes(21). The protrusions are formed on the connection member along the corrugated reinforcement. The fastening hole is formed at the protrusion. Steel bars mounted on the corrugated reinforcement are fastened by tying steel wires to the protrusion.
    • 提供了一种波纹组合板,以抵抗施加到甲板上的外力,其具有波纹加固件的压缩应力和波纹加固件和平板的一体化混凝土和拉伸应力。 瓦楞纸组合板包括多个波纹增强件(12)和连接构件(17),空间(16),通孔(15),平板(18),钢筋固定单元(19)。 波纹状加固件通过连接构件相互连接。 该空间位于瓦楞钢筋下方。 在波纹钢筋上形成的通孔以规则的间隔。 平板位于瓦楞钢筋的底部。 钢棒固定单元包括突起(20)和紧固孔(21)。 突起沿着波纹状加强件形成在连接构件上。 紧固孔形成在突起处。 安装在瓦楞钢筋上的钢筋通过将钢丝绑在突起上来固定。
    • 7. 发明公开
    • 조립식 케이슨 및 이를 이용한 구조물 시공방법
    • 使用它的水下结构的CAISSON和构造方法
    • KR1020110072197A
    • 2011-06-29
    • KR1020090129036
    • 2009-12-22
    • (주) 선암기술연구소배형진
    • 배석동배형진
    • E02D23/00E02D27/18E02D5/34E02D19/02E01D19/02
    • E02D23/00E01D19/02E02D5/34E02D19/02E02D27/18
    • PURPOSE: A prefabricated caisson and structure construction method using the same are provided to maintain water tightness without the location change or deformation by external shock. CONSTITUTION: A prefabricated caisson comprises a watertight caisson(100), a deformation caisson(200), a fixing part(300) and a sarcosome. One side of the watertight caisson is opened. The deformation caisson is fixed to an existing wall(10) to rotate. The fixing part is combined in the watertight caisson and deformation caisson and presses the watertight caisson and deformation caisson to a watertight concrete(2). The sarcosome is fixed to the outside of bottom part of the watertight caisson and supports the weight of the watertight caisson. The deformation caisson comprises a body(210), a hinge, a watertight material, a connection part and a fixing anchor(250).
    • 目的:提供一种使用其的预制沉箱和结构施工方法,以保持水密性,而不会由于外部冲击而导致位置变化或变形。 构成:预制沉箱包括水密沉箱(100),变形沉箱(200),固定部分(300)和arc体。 水密沉箱的一侧开放。 变形沉箱固定在现有的墙壁(10)上以旋转。 将固定部分组合在水密沉箱和变形沉箱中,将水密沉箱和变形沉箱压入水密混凝土(2)。 唾液体固定在水密沉箱底部的外侧,并支撑水密沉箱的重量。 变形沉箱包括主体(210),铰链,水密材料,连接部分和固定锚固件(250)。
    • 8. 发明公开
    • 연약 지반층을 위한 건식 가물막이 수밀 구조 및 수중 구조물 시공 방법
    • 卡森管水结构和软结构水下结构方法
    • KR1020140058951A
    • 2014-05-15
    • KR1020120125449
    • 2012-11-07
    • (주) 선암기술연구소배형진
    • 배형진
    • E02D19/02E02D7/02E02D29/09E02D5/14E02D5/34
    • E02D19/02E02D5/14E02D5/34E02D7/02E02D29/06E02D2300/0076
    • A dry cofferdam water-tightening structure for a poor ground and a method for constructing an underwater structure, which constructs the underground structure such as a bridge pier on the poor ground, are disclosed. The dry cofferdam water-tightening structure for a poor ground makes the lower end of the cofferdam supported from not the poor ground but support piles by driving the supporting piles into the riverbed of the poor ground, thereby preventing the cofferdam from sinking even though the lower end of the cofferdam is placed on the riverbed of the poor ground, and has a tip shaped lower end, thereby facilitating construction and demolition for water-tightening. The dry cofferdam water-tightening structure for a poor ground structure is quickly and easily constructed on the poor ground, thereby reducing a construction period and construction costs since an underwater structure is constructed in a dry state.
    • 公开了一种用于较差地面的干燥围堰水收紧结构和构造水下结构的方法,其构造了诸如在贫瘠地面上的桥墩的地下结构。 干涸的围堰采水结构使得围堰的下端不是从贫困地面支撑,而是通过将支撑桩驱动到贫瘠地面的河床中来支撑桩,从而防止围堰下沉,即使下层 围堰的末端位于贫困地带的河床上,具有尖端形状的下端,便于施工和拆除水紧。 由于在干燥的状态下建造了一个水下结构,因此,在糟糕的地面上,可以快速,简便地在糟糕的地面上建造干燥的围堰采水结构,从而缩短施工周期和施工成本。
    • 9. 发明公开
    • 내장 강보를 구비한 합성 상판 및 이를 이용한 소하천교 시공 방법
    • 具有内置钢内胆的小型水泥桥梁构造方法
    • KR1020130112242A
    • 2013-10-14
    • KR1020120034475
    • 2012-04-03
    • (주) 선암기술연구소배형진
    • 배형진
    • E01D19/12E01D21/00E04C5/16E04C3/02E04C3/04
    • E01D19/125E01D21/00E04C3/02E04C5/16E04C2003/0452E04C2003/046
    • PURPOSE: A composite deck plate with a built-in steel beam and a small river bridge construction method are provided to smoothly pass rainwater through by providing high tensile strength and compressive strength, increasing the height of a suspension, and securing a wide lower space, thereby minimizing the flood damage. CONSTITUTION: A composite deck plate with a built-in steel beam comprises a side plate, a steel beam (300), a connection member (200), multiple vertical steel reinforcements (400), multiple longitudinal steel reinforcements (500), and an interconnection steel reinforcement (550). The side plate is provided on both sides of a bottom plate (100). The steel beam is fixed by being erected in the length direction of the bottom plate, and has a web whose lower side is provided with a through hole. The connection member connects the upper sides of the steel beams. The multiple vertical steel reinforcements are fixed by being inserted in the through-holes which are formed on the web of the steel beam. The multiple longitudinal steel reinforcements connect and fix the multiple vertical steel reinforcements. The interconnection steel reinforcement connects and fixes the multiple longitudinal steel reinforcements.
    • 目的:提供具有内置钢梁和小河桥施工方法的复合甲板板,通过提供高抗拉强度和抗压强度,提高悬挂高度,确保较宽的空间,使雨水顺利通过, 从而最大限度地减少洪水破坏。 构成:具有内置钢梁的复合甲板包括侧板,钢梁(300),连接构件(200),多个垂直钢筋(400),多纵向钢筋(500)和 互连钢筋(550)。 侧板设置在底板(100)的两侧。 钢梁通过在底板的长度方向上竖立而固定,并且具有其下侧设有通孔的腹板。 连接构件连接钢梁的上侧。 多个垂直钢筋通过插入形成在钢梁的腹板上的通孔中而被固定。 多个纵向钢筋加固件连接并固定多个垂直钢筋。 互连钢筋连接并固定多根纵向钢筋。
    • 10. 发明公开
    • 빗물의 지하수화 처리 시스템 및 이의 시공방법
    • 雨水地下水处理系统及其施工方法
    • KR1020130071379A
    • 2013-06-28
    • KR1020120148149
    • 2012-12-18
    • (주) 선암기술연구소배형진
    • 배형진
    • E03F1/00E03F5/14E03F5/02E03F5/04C02F1/52C02F1/00B01D35/00F16K15/03F16K1/20
    • E03F1/005B01D35/02E03F5/02E03F5/14E03F2005/0417
    • PURPOSE: An underground water processing system of rainwater and a construction method thereof are provided to reduce contamination of a river due to non-point contaminant and to reuse rainwater flowing after initial rainwater by penetrating the rainwater to the underground. CONSTITUTION: An underground water processing system(100) of rainwater comprises a manhole(110), a sewage pipe(120), a buoyancy gate(130), a filtration unit(140), and a rainwater pipe(150). A sewage installation hole, a filtration installation hole, a rainwater installation hole are separately formed on the manhole. The sewage pipe is installed on the sewage installation hole and drains the initial rainwater including a non-point contaminant to a sewage treatment plant. The buoyancy gate opens the sewage pipe according to a water level of the rainwater. The rainwater pipe flows in the manhole and discharges the rainwater to the upper part of the filtration unit.
    • 目的:提供雨水的地下水处理系统及其施工方法,以减少由于非点污染物引起的河流污染,并通过将雨水渗透到地下,重新利用初始雨水后流出的雨水。 构成:雨水的地下水处理系统(100)包括人孔(110),污水管(120),浮力闸门(130),过滤单元(140)和雨水管(150)。 在人孔上分别形成污水安装孔,过滤安装孔,雨水安装孔。 排污管安装在污水处理井上,将含有非点污染物的初始雨水排入污水处理厂。 浮力闸根据雨水的水位打开排污管。 雨水管在人孔中流动,将雨水排放到过滤单元的上部。