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    • 1. 发明专利
    • Separation/recovery apparatus
    • 分离/恢复装置
    • JP2007136301A
    • 2007-06-07
    • JP2005331734
    • 2005-11-16
    • Oak Setsubi Kogyo KkOhbayashi Corpオーク設備工業株式会社株式会社大林組
    • UCHIDA SHIGERUKANEKO TOMOYAHAMADA YASUSHIKONDO SATORUUEMIYA AKIOOKURA MASAHIROOKAMOTO TAKASHIMETSUGI KENICHI
    • B03B5/00
    • PROBLEM TO BE SOLVED: To enable separation processing of a solid and a liquid while continuously performing suction of a fluid containing the solid.
      SOLUTION: The separation/recovery apparatus 100 comprises: a suction pipe 101 installed toward the fluid 5, and receiving the predetermined vacuum pressure from a suction machine 50 to draw-in the fluid 5; a first separation part 200 having a pipe diameter larger than that of the suction pipe at a predetermined portion of the suction pipe 101, and reducing the flow rate of the fluid 5 having flowed through the suction pipe 101 to separate a gas 2 contained in the fluid 5 from the other fluid matter 3 containing the solid 10; a counterflow prevention part 250 including a pipe body 210 connected perpendicularly at the lower end 201 of the first separation part 200, and a plurality of check valves 220 installed inside the pipe body and movable with airtightness with respect to the flow of the fluid matter 3 from the first separation part 200; and a second separation part 280 including a sieve member 104 allowing the liquid to pass at the lower end of the counterflow prevention part to recover the solid 10, and a recovery path 270 connected to the sieve member 104 to guide the solid 10.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了使固体和液体分离处理,同时连续地进行含有固体的流体的抽吸。 解决方案:分离/回收装置100包括:朝向流体5安装的吸入管101,并且从吸引机50接收预定的真空压力以吸入流体5; 在抽吸管101的预定部分处具有比吸入管的直径大的管直径的第一分离部200,并且减少流过吸入管101的流体5的流量,以分离包含在吸入管101中的气体2。 含有固体10的其它流体物质3的流体5; 包括垂直于第一分离部200的下端201连接的管体210的逆流防止部250和安装在管体内部并相对于流体物质3的流动气密地移动的多个止回阀220 从第一分离部200; 以及第二分离部280,其包括允许液体在逆流防止部的下端通过以回收固体10的筛部件104,以及连接到筛部件104以引导固体10的回收路径270。 >版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Solid separating device
    • 固体分离装置
    • JP2007111587A
    • 2007-05-10
    • JP2005303196
    • 2005-10-18
    • Oak Setsubi Kogyo KkOhbayashi Corpオーク設備工業株式会社株式会社大林組
    • UCHIDA SHIGERUKANEKO TOMOYAHAMADA YASUSHIKONDO SATORUUEMIYA AKIOOKURA MASAHIROOKAMOTO TAKASHIMETSUGI KENICHI
    • B01D21/26B07B1/00
    • PROBLEM TO BE SOLVED: To enable separating a solid material from a liquid while the fluid containing the solid material is continuously sucked. SOLUTION: A solid separation device 100 is constituted of a sucking pipe 101 installed to a fluid 5 and sucking the fluid 5 by receiving negative pressure from a predetermined sucking machine 50, a branching pipe 103 branching the flow passage 30 of the fluid 5 sucked toward the sucking machine 50 in the sucking pipe 101 to a centrifugal direction 31 at the predetermined branching position 102 of the sucking pipe 101, a screen member 104 installed at the circular arc shaped centrifugal side 33 in the sucking pipe 101 and the branching pipe 103 corresponding to the circular arc shape of a flow passage 32 from the sucking pipe 101 to the branching pipe 103 and screening the solid material 10 of the predetermined diameter or larger, and a recovery container 106 air-tightly connected to the rear end 105 of the branching pipe 103 and housing the solid material 10 introduced to the branching pipe 103 through the screen member 104 from the sucking pipe 101. COPYRIGHT: (C)2007,JPO&INPIT
    • 待解决的问题:为了在含有固体材料的流体被连续吸入的同时使固体材料与液体分离。 解决方案:固体分离装置100由安装在流体5上的吸引管101构成,并且通过从预定的吸引机50接受负压来吸入流体5;分支管103,其将流体的流路30分支 5被吸引到吸引管101中的吸引机50到吸引管101的预定分支位置102处的离心方向31,安装在吸引管101中的圆弧形离心侧33的丝网构件104和分支 管103对应于从吸管101到分支管103的流动通道32的圆弧形状,并且筛选预定直径或更大直径的固体材料10以及气密地连接到后端105的回收容器106 并且从吸管101容纳通过筛部件104导入分支管103的固体材料10.(C)2007,JPO&INPIT
    • 3. 发明专利
    • Position monitoring system, and position monitoring method
    • 位置监测系统和位置监测方法
    • JP2008256617A
    • 2008-10-23
    • JP2007101003
    • 2007-04-06
    • Ohbayashi Corp株式会社大林組
    • IKEDA YUICHIUCHIDA SHIGERU
    • G01B11/00E04G21/16G01B11/14
    • PROBLEM TO BE SOLVED: To provide a position monitoring system capable of accurately measuring the position of a lift-up structure.
      SOLUTION: This position monitoring system comprises a scale 115 for height measuring and a camera 113 that displace relatively vertically in response to lifting of the lift-up structure 1 along a guide column 11. The scale 115 for height measuring has a template image showing a vertical direction position and extends in the vertical direction. The camera 113 photographs the scale 115 for height measuring. The position monitoring system has a computer for calculating the vertical direction position of the lift-up structure 1 based on the position of the template image in the image photographed by the camera 113.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够精确地测量提升结构的位置的位置监视系统。 解决方案:该位置监测系统包括用于高度测量的刻度115和相对于沿着导柱11提升提升结构1而相对垂直移位的照相机113.用于高度测量的刻度115具有模板 图像显示垂直方向位置并在垂直方向上延伸。 相机113拍摄刻度115以进行高度测量。 位置监视系统具有计算机,用于基于由照相机113拍摄的图像中的模板图像的位置来计算提升结构1的垂直方向位置。(C)2009年,JPO和INPIT
    • 4. 发明专利
    • Member rotating method and member rotating tool
    • 会员转动方法和会员转动工具
    • JP2011093704A
    • 2011-05-12
    • JP2009252338
    • 2009-11-02
    • Ohbayashi Corp株式会社大林組
    • UCHIDA SHIGERUONO HIDEOFUJIO NAOTOYAMADA YUICHIRO
    • B66C13/08B66C1/10
    • PROBLEM TO BE SOLVED: To reduce a weight of a rotating tool for rotating an attitude of a hoisted member.
      SOLUTION: When hoisting a PC column member 410 via a pair of wires 102A and 102B extending from a crane 100, the rotating tool 10 for rotating the attitude of the PC column member 410 used by being interposed in one wire 102A of the pair of wires 102A and 102B extending from the crane 100, has a means which is composed of a pair of hydraulic jacks 11A and 11B communicating with a chamber in a cylinder, is used by connecting the one wire 102A to the cylinder of the one hydraulic jack 11B and a piston 12B, and restrains a forward and backward movements of the piston 12B. The PC column member 410 is rotated by advancing the piston 12B in the state of hoisting the PC column member 410.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:减小用于旋转升降构件的姿态的旋转工具的重量。 解决方案:当通过从起重机100延伸的一对电线102A和102B提升PC柱构件410时,旋转工具10用于旋转通过插入在PC柱构件410的一个电线102A中的PC柱构件410的姿态 从起重机100延伸的一对电线102A和102B具有由一个液压千斤顶11A和11B组成的装置,该液压千斤顶11A和11B与气缸中的腔室连通,通过将一个电线102A连接到一个液压缸 顶杆11B和活塞12B,并且抑制活塞12B的向前和向后运动。 PC柱构件410通过在提升PC柱构件410的状态下使活塞12B前进而旋转。版权所有:(C)2011,JPO&INPIT
    • 6. 发明专利
    • Removal method
    • 拆卸方法
    • JP2010216160A
    • 2010-09-30
    • JP2009064909
    • 2009-03-17
    • Ohbayashi Corp株式会社大林組
    • INOUE FUMIHIRODOI AKIRAUCHIDA SHIGERU
    • E04G23/02E04G23/08
    • PROBLEM TO BE SOLVED: To provide a removal method which enables the sure removal of an object portion alone. SOLUTION: In this method for removing the surface layer 4 of a concrete structure 1 having the surface layer 4 superposed on an upper portion of a base layer 3 of a building frame 2, a groove 7 is formed in such a shape as to surround the object portion of the surface layer 4; a load application hole 15, the leading end of which reaches the base layer 3, is formed in the at least one location of the object portion enclosed with the groove 7; and a load acting in the direction of stripping off the object portion from the upper portion of the base layer 3 is applied to the object portion using the load application hole 15, so that the object portion can be removed from the upper portion of the base layer 3. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供能够单独确保去除物体部分的去除方法。 解决方案:在用于去除具有叠置在建筑物框架2的基底层3的上部上的表面层4的混凝土结构1的表面层4的方法中,形成凹槽7, 围绕表层4的物体部分; 形成在前端到达基底层3的载荷施加孔15在被凹槽7包围的物体部分的至少一个位置上; 并且使用负载施加孔15将从基底层3的上部剥离物体部分的方向作用的负荷施加到物体部分,使得物体部分可以从基部的上部去除 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Construction method of steel pipe concrete pole
    • 钢管混凝土结构施工方法
    • JP2010150831A
    • 2010-07-08
    • JP2008330947
    • 2008-12-25
    • Ohbayashi Corp株式会社大林組
    • KAMISHIRO TAIDOKANEKO TOMOYAUCHIDA SHIGERUKOJIMA KENJIONO KOTARO
    • E04C3/293E04B1/30E04G21/02
    • PROBLEM TO BE SOLVED: To make possible the indication of the graph of the relationship between the press-fitting pressure and a filling height of concrete 4 in fine-time splitting even when the filling height of the concrete 4 cannot be measured in real time in fine-time splitting during the press fitting of the concrete 4 into a steel pipe pole 2 from the bottom. SOLUTION: In the construction method of the steel pipe concrete pole, when the steel pipe concrete pole is constructed by press fitting the concrete pole 4 from the bottom of the steel pipe pole 2, the press-fitting pressure of the concrete 4 and the filling height of the concrete 4 in the steel pipe pole 2 are measured. Then the press fitting of the concrete 4 is performed while plotting and displaying the relationship between the measurement value of the press-fitting pressure and the measurement value of the filling height on the display means 35. The value of the filling height of the concrete with respect to the measurement time Tn of the measurement value Pn of the press-fitting pressure is determined by an interpolation method or an extrapolation method by using the measurement values Ha, Hb of the filling height of the concrete which have been measured at the time Ta and the time Tb respectively. Then the value of the filling height of the concrete determined is plotted as the measurement value Hn of the filling height at the time Tn. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了使得即使在混凝土4的填充高度不能测量的情况下,也能够精细地分解混凝土4的压配合压力和填充高度之间的关系的图表 在将混凝土4从底部压入钢管柱2的过程中,实时分割。

      解决方案:在钢管混凝土柱的施工方法中,当钢管混凝土杆由钢管杆2的底部压装混凝土柱4构成时,混凝土4的压配压力 并且测量钢管柱2中的混凝土4的填充高度。 然后,在绘制并显示压配压力的测量值和显示装置35上的填充高度的测量值之间的关系的同时进行混凝土4的压配合。混凝土的填充高度的值 相对于压配压力的测量值Pn的测量时间Tn,通过使用在时间Ta测量的混凝土的填充高度的测量值Ha,Hb的内插法或外推法来确定 和时间Tb。 然后将确定的混凝土的填充高度的值绘制为时间Tn处的填充高度的测量值Hn。 版权所有(C)2010,JPO&INPIT

    • 8. 发明专利
    • Article position management system and method in construction site
    • 施工现场管理系统及方法
    • JP2005314886A
    • 2005-11-10
    • JP2004130837
    • 2004-04-27
    • Ohbayashi Corp株式会社大林組
    • KANEKO TOMOYAHAMADA YASUSHIUCHIDA SHIGERUKONDO SATORU
    • E04G21/00G06K17/00G06Q50/00G06Q50/08G06F17/60
    • PROBLEM TO BE SOLVED: To manage a position of respective articles at a construction site by using IC tags. SOLUTION: The IC tag (a fixed tag) 12 is respectively installed in a plurality of fixing positions of the construction site, and the IC tag (a movable tag) 14 is installed on the respective articles carried in the construction site. A worker carries an IC tag reader terminal 16 having the function of reading tag ID when approaching the IC tag. The tag ID of the respective IC tags, a tag classification flag for indication whether a tag is the fixed tag or the movable tag, position data for expressing a position of the IC tags, and article data for indicating the installed article when the tag is the movable tag, are associatively stored in a position information database 20. A movable tag position calculating part 58 calculates position data on the movable tag on the basis of the position data and time data on a plurality of fixed tags. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过使用IC标签来管理施工现场的各个物品的位置。 解决方案:IC标签(固定标签)12分别安装在施工现场的多个固定位置,IC标签(可移动标签)14安装在施工现场所携带的各个物品上。 工作人员携带具有在接近IC标签时读取标签ID的功能的IC标签读取器终端16。 各个IC标签的标签ID,用于指示标签是固定标签还是可移动标签的标签分类标志,用于表示IC标签的位置的位置数据,以及当标签为 可移动标签相关联地存储在位置信息数据库20中。可移动标签位置计算部58基于多个固定标签上的位置数据和时间数据来计算可移动标签上的位置数据。 版权所有(C)2006,JPO&NCIPI