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    • 3. 发明专利
    • Filling detection apparatus for detecting filling of filling hardener, and method for checking filling
    • 用于检测填充硬化剂填充物的填充检测装置和检查填充物的方法
    • JP2014021009A
    • 2014-02-03
    • JP2012161868
    • 2012-07-20
    • Ohbayashi Corp株式会社大林組
    • SUZUKI SATOSHINUMAZAKI TAKAYOSHIMORIOKA TORUKATO TAKEOFUJIO NAOTO
    • G01N27/04E04G21/02
    • PROBLEM TO BE SOLVED: To accurately detect a filling state even if a filling hardener has variations in electric resistance values, when filling a filling space with the filling hardener.SOLUTION: A filling detection apparatus 10 according to the present invention for detecting that grout in a fresh state has been filled in a filling space comprises: a power source 121 for outputting a specified voltage; an electrode pair 111b disposed in a filling space; a detection resistance 122 determined to have a detection resistance value that is larger by a predetermined level or more than a conduction resistance value of when the grout has the electrode pair conducted; a wiring member 112 for connecting the power source 121, the electrode pair 111b, and the detection resistance 122 in series; and an LED 123 that operates corresponding to an electric potential of a positive side terminal in the detection resistance 122.
    • 要解决的问题:即使在填充固化剂具有电阻值变化的情况下,也能够精确地检测填充状态,当填充填充空间与填充用固化剂填充时,可以精确地检测填充状态。本发明的填充检测装置10, 在填充空间中填充了新鲜状态,包括:用于输出指定电压的电源121; 布置在填充空间中的电极对111b; 检测电阻122被确定为具有大于预定水平或大于当所述灌浆具有所述电极对的导电电阻值时的导电电阻值的检测电阻值; 用于将电源121,电极对111b和检测电阻122串联连接的布线构件112; 以及与检测电阻122中的正侧端子的电位相对应地操作的LED 123。
    • 4. 发明专利
    • Management system, device, method, and program for equipment for use at construction site
    • 用于施工现场的设备的管理系统,设备,方法和程序
    • JP2013054682A
    • 2013-03-21
    • JP2011194148
    • 2011-09-06
    • Ohbayashi Corp株式会社大林組
    • NUMAZAKI TAKAYOSHISHIINA SHOICHIYADA KAZUYA
    • G06Q50/08G06Q10/00
    • PROBLEM TO BE SOLVED: To check an operation state of equipment for use at a construction site.SOLUTION: An equipment management system 10 manages equipment such as a vehicle 1 for work at height and a mobile crane 2 for use at a construction site. A slave station device 20 that includes: an acceleration sensor for measuring an acceleration generated in equipment and outputting measurement information; and a radio module for transmitting the measurement information that has been output from the acceleration sensor, and identification information of the equipment is installed in the equipment. A master station device 40 that receives the measurement information and the identification information that has been transmitted from the radio module 22, and a personal computer 30 are installed in an office or the like. The personal computer 30 includes an operation state determination part that determines the operation state of the equipment identified by the identification information on the basis of the measurement information and the identification information that has been received by the master station device 40, and outputs the determination information.
    • 要解决的问题:检查施工现场使用的设备的运行状态。

      解决方案:设备管理系统10管理诸如高处工作的车辆1和在施工现场使用的移动式起重机2的设备。 一个从站设备20,包括:加速度传感器,用于测量在设备中产生的加速度并输出测量信息; 以及用于发送从加速度传感器输出的测量信息和设备的识别信息的无线电模块。 接收从无线电模块22发送的测量信息和识别信息的主站设备40以及个人计算机30安装在办公室等中。 个人计算机30包括操作状态确定部,其基于由主站装置40接收的测量信息和识别信息,确定由识别信息识别的设备的操作状态,并输出确定信息 。 版权所有(C)2013,JPO&INPIT

    • 5. 发明专利
    • 建設機械用のGPSアンテナの取付具
    • 建筑机械用GPS天线的装置
    • JP2014205534A
    • 2014-10-30
    • JP2013083215
    • 2013-04-11
    • 株式会社大林組Ohbayashi Corp
    • SHIINA SHOICHITOYODA NORITOSHINUMAZAKI TAKAYOSHI
    • B66C23/88B66C15/00
    • 【課題】クレーン等の建設機械に設置するGPSアンテナの受信感度を安定させる。【解決手段】クレーンの起伏動作をするラフィングジブ3にGPSアンテナ1を取り付けるための取付具10であって、ラフィングジブ3の起伏角度が変化しても常にGPSアンテナ1が上向きになるようにGPSアンテナ1の姿勢を維持する姿勢維持機構を備える。この姿勢維持機構は、軸方向の一端側にGPSアンテナ1の取付部が設けられ、軸方向の中間を支点としてラフィングジブ3に対して相対回転可能にラフィングジブ3に支持されたロッド20、22と、ロッド20、22の軸方向の他端側に取り付けられたウエイト26とを備える。【選択図】図1
    • 要解决的问题:实现安装在诸如起重机的建筑机器上的GPS天线的接收机灵敏度的稳定性。解决方案:固定装置10,其将GPS天线1固定到起重臂3用于执行起伏运动 起重机配备有用于维持GPS天线1的姿态的姿态维护机构,使得即使改变起重臂3的起伏角度,GPS天线1总是向上。 姿态维护机构在其一个轴向端侧设置有GPS天线1的嵌合部,并且配备有杆20,22,杆20,22由相对于相对于第一支撑臂3相对旋转的支撑臂3支撑 具有作为支点的轴向中点的起重臂3和固定在杆20,22的另一轴向端侧的配重26。
    • 6. 发明专利
    • Apparatus and method for slewing hoisted object
    • 装置对象的装置和方法
    • JP2014131941A
    • 2014-07-17
    • JP2013000630
    • 2013-01-07
    • Ohbayashi Corp株式会社大林組
    • SHIINA SHOICHINUMAZAKI TAKAYOSHIYADA KAZUYA
    • B66C13/08
    • PROBLEM TO BE SOLVED: To increase the moment of inertia of a flywheel without weight increase of the flywheel and the whole body of an apparatus or output increase of a motor and reduce windage loss of the flywheel.SOLUTION: A hoisted object slewing apparatus 10 includes a flywheel 20, a rotation motor for 50 rotating the flywheel 20 and a tilting motor 64 for tilting the flywheel 20, slews a hoisted object hoisted with a hanging material by utilizing a gyro effect produced when the flywheel 20 rotated by the rotation motor is tilted by the tilting motor 64 and is provided with a flywheel cover 30 housing the flywheel 20. Both sides of the flywheel 20 have a concavoconvex shape in which the inner peripheral part 22 is dented to the outer peripheral part 21, and both sides of the flywheel cover 30 has a concavoconvex shape along the irregularity of the flywheel 20.
    • 要解决的问题:为了增加飞轮的惯性矩而不增加飞轮和设备的整体的体积,或者输出马达的输出增加,并减少飞轮的风挡损失。解决方案:提升对象回转装置10包括 飞轮20,用于使飞轮20旋转的旋转马达20和用于使飞轮20倾斜的倾斜马达64通过利用由旋转马达旋转的飞轮20倾斜时产生的陀螺效应来旋转悬吊物体提升的提升物体 通过倾斜电动机64并且设置有容纳飞轮20的飞轮盖30.飞轮20的两侧具有凹凸形状,其中内周部22凹入到外周部21,飞轮的两侧 盖30沿着飞轮20的不规则形状具有凹凸形状。
    • 7. 发明专利
    • Apparatus and method for slewing hoisted object
    • 装置对象的装置和方法
    • JP2014131940A
    • 2014-07-17
    • JP2013000629
    • 2013-01-07
    • Ohbayashi Corp株式会社大林組
    • SHIINA SHOICHINUMAZAKI TAKAYOSHIYADA KAZUYA
    • B66C13/08B60K6/10
    • Y02T10/6204
    • PROBLEM TO BE SOLVED: To lighten a tilting part and the whole body of a hoisted object slewing apparatus.SOLUTION: A hoisted load slewing apparatus 10 includes a flywheel 20, a rotation motor 50 rotating the flywheel 20 and a tilting motor 64 tilting the flywheel 20, slews a hoisted load hoisted with a hanging material by utilizing a gyro effect produced when the flywheel 20 rotated by the rotation motor 50 is tilted by the tilting motor 64 and is provided with a flywheel cover 30 which houses the flywheel 20 and supports the flywheel 20 in a rotatable way, supports the rotation motor 50 and is integrated with support shafts 34 and 35 for supporting the flywheel 20 in a tiltable way.
    • 要解决的问题:减轻提升对象的倾斜部分和整个体的旋转装置。解决方案:提升载荷回转装置10包括飞轮20,旋转飞轮20的旋转马达50和使飞轮倾斜的倾斜马达64 如图20所示,当通过旋转马达50旋转的飞轮20被倾斜马达64倾斜时,利用由旋转效果产生的陀螺效应来旋转悬吊物吊装的悬挂载荷,并且设置有飞轮盖30,飞轮盖30容纳飞轮20并支撑飞轮20 飞轮20以可旋转的方式支撑旋转马达50并且与支撑轴34和35成一体,用于以可倾斜的方式支撑飞轮20。
    • 9. 发明专利
    • System and method for utilizing regenerative electric power of cargo handling device
    • 使用货物处理装置的再生电力的系统和方法
    • JP2012121675A
    • 2012-06-28
    • JP2010273670
    • 2010-12-08
    • Ohbayashi Corp株式会社大林組
    • YADA KAZUYANUMAZAKI TAKAYOSHI
    • B66C13/12
    • PROBLEM TO BE SOLVED: To attain a remarkable energy-saving effect, by utilizing regenerative electric power generated in an electric motor of a motor-driven cargo handling device.SOLUTION: This system 100 utilizing the regenerative electric power of an overhead crane 10 utilizes the regenerative electric power generated in the electric motor 24 of the overhead crane 10, at the time of an unloading operation in the overhead crane 10, and the overhead crane 10 is used for cargo handling work of unloading, to a bottom part of a vertical shaft, a material such as a segment for constructing a shield tunnel in the bottom part of the vertical shaft, and includes a utilizing means for supplying the regenerative electric power generated in the electric motor 24, to an electric power consumption line within a construction field such as a water supply pump 32 or the like.
    • 要解决的问题:通过利用在电动货物处理装置的电动机中产生的再生电力来获得显着的节能效果。 解决方案:利用桥式起重机10的再生电力的该系统100利用在桥式起重机10的卸载作业时在桥式起重机10的电动机24中产生的再生电力, 桥式起重机10用于卸载货物处理工作,垂直轴的底部,用于在垂直轴的底部构造盾构通道的段的材料,并且包括用于提供再生的利用装置 在电动马达24中产生的电力到建筑领域诸如供水泵32之类的电力消耗线。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • 揚水井戸の管理システム。
    • 泵送管理系统
    • JP2014211065A
    • 2014-11-13
    • JP2013089234
    • 2013-04-22
    • 株式会社大林組Ohbayashi Corp
    • MORIO YOSHIHIKOYAMADA YUKINUMAZAKI TAKAYOSHI
    • E02D3/10C02F1/00H02J13/00
    • C02F1/00E02D3/10H02J13/00
    • 【課題】掘削工事の現場に作業員が不在のときに、停電等により揚水ポンプが停止した場合でも、盤ぶくれ対策を十分に実施できるようにする。【解決手段】揚水井戸DW1〜4において地下水を揚水する揚水ポンプ20と、商用電源の停電時に作動して揚水ポンプ20の電源となる予備電源14とを備える揚水管理システム10であって、商用電源の停電時に予備電源14を電源として揚水ポンプ20が作動しているか否かを判定し、揚水ポンプ20が作動していないと判定した場合に、該判定情報を携帯端末56に送信するメール送信システム50を備える。【選択図】図1
    • 要解决的问题:即使在起重泵由于停电等停止的情况下,即使在挖掘工作的场所没有工人存在的情况下也能够充分地进行起重对策。解决方案:起重管理系统10包括:起重泵 20通过抽水井DW1-4提升地下水; 以及在商用电源的停电时工作的待机电源14作为用于提升泵20的电源。提供邮件传输系统50,其确定提升泵20是否以备用电源运行 源14作为商用电源的停电时的电源,并且如果确定提升泵20不工作,则将确定信息发送到移动终端56。