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    • 1. 发明专利
    • Curing apparatus of sprinkler piping unit and method of constructing sprinkler piping unit
    • 喷雾器管道单元的固化装置和构造搅拌器管道单元的方法
    • JP2010227139A
    • 2010-10-14
    • JP2009074986
    • 2009-03-25
    • Ohbayashi Corp株式会社大林組
    • YOSHIDA MAYUMIKIKUI KOJIUEMIYA AKIOHASHIMOTO MASAAKIOMURA TETSUSHIIGUCHI HIFUMIKAWAMOTO TAKUYA
    • A62C35/68
    • PROBLEM TO BE SOLVED: To provide a curing apparatus of a sprinkler piping unit, whose a sprinkler head is not damaged by external force during transportation or fitting work.
      SOLUTION: This curing apparatus 1 for the sprinkler piping unit 20 where the sprinkler head 28 is fitted to the distal end of a resin pipe 21 through a washer faced elbow 22 is provided with a substantially L-shaped storing chamber 5, which is formed of a material having heat insulating property and cushioning property, and stores the washer faced elbow 22 and the sprinkler head 28 of the sprinkler piping unit 20 inside. The apparatus also includes a curing member 2 two-split along the longitudinal direction of the sprinkler piping unit 20, a connecting means for connecting the curing member 2 to be freely opened and closed, and a fixing means for fixing the curing member 2 in the closed state.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种洒水管道单元的固化装置,其喷洒头在运输或装配作业期间不受外力损坏。 解决方案:喷洒头管路单元20的固化装置1,其中喷洒头28通过垫圈面弯头22装配到树脂管21的末端,设有大致L形的储存室5, 由具有绝热性和缓冲性的材料形成,并且将洗衣机面弯头22和喷洒管道单元20的喷洒头28内部进行存储。 该设备还包括沿着喷洒管道单元20的纵向方向两分割的固化构件2,用于连接固化构件2以自由打开和关闭的连接装置,以及用于将固化构件2固定在固定构件2中的固定装置 关闭状态。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • 天井構造
    • 天花板结构
    • JP2015004236A
    • 2015-01-08
    • JP2013130871
    • 2013-06-21
    • 株式会社大林組Ohbayashi Corp
    • INOKAI TOMIOYAMANAKA MASAYUKIUEMIYA AKIOOTSU HARUKI
    • E04B9/18
    • 【課題】耐震性が向上した天井構造を提供すること。【解決手段】設備機器と、天井部材と、前記設備機器を構造躯体から吊り下げて支持する第1の吊り下げ部材と、前記第1の吊り下げ部材よりも長く、前記天井部材を前記構造躯体から吊り下げて支持する第2の吊り下げ部材と、一端が前記設備機器の側部において前記設備機器に接続され、他端が前記天井部材に接続される連結部材と、前記連結部材の途中に設けられ、水平方向の振動を吸収する減衰装置と、を有することを特徴とする天井構造である。【選択図】図1
    • 要解决的问题:提供具有改善抗震性能的天花板结构。解决方案:天花板结构包括:设备设备; 天花板成员; 第一悬挂构件,其从结构框架悬挂并支撑设备设备; 第二悬挂构件,其比所述第一悬挂构件长,并且从所述结构框架悬挂并支撑所述顶板构件; 连接构件,其一端连接到设备设备侧的设备设备,另一端连接到顶棚构件; 以及设置在连接部件的中间并用于吸收水平振动的衰减装置。
    • 4. 发明专利
    • Parking facility
    • 停车场
    • JP2012188863A
    • 2012-10-04
    • JP2011053269
    • 2011-03-10
    • Ohbayashi Corp株式会社大林組
    • UEMIYA AKIOSUGAWARA MINAKOFUNAGUCHI KAZUHISAMARUWAKA MASAOKIKUI KOJI
    • E04H6/14
    • PROBLEM TO BE SOLVED: To provide a parking facility which includes a multistory parking part and a standby space, and attains smooth entrance/exit of a vehicle by differentiating a vehicle traffic line and a user traffic line.SOLUTION: A parking facility of the present invention includes: multistory parking parts 10, 20; a vehicle standby part 30; a vehicle transporting part 40; and a user corridor 35. The multistory parking parts store vehicles sitting at loading/unloading parts 12, 22 to vacant parking spaces 11, 21 and transport vehicles stored in the parking spaces to the loading/unloading parts. The vehicle standby part includes a plurality of standby spaces 31, 32 for vehicles on standby. The vehicle transporting part transports the vehicles on standby at the standby spaces to the loading/unloading parts when loading vehicles, and transports the vehicles at the loading/unloading parts to the vacant parking spaces when unloading vehicles. The user corridor is configured as a passage where users walk when getting on/off the vehicles at the standby spaces, and is provided to a location where is adjacent to the vehicle standby part and does not overlap with a traffic line of the vehicles to be loaded/unloaded.
    • 要解决的问题:提供一种包括多个停车部分和备用空间的停车设施,通过区分车辆行车线和用户交通线路来平稳地进出车辆。 解决方案:本发明的停车设施包括:多层停车部件10,20; 车辆待机部件30; 车辆运送部40; 以及用户走廊35.多层停车部件将坐在装载/卸载部件12,22处的车辆存储到空闲的停车位11,21并将存放在停车位中的车辆运送到装载/卸载部件。 车辆备用部件包括用于备用的车辆的多个备用空间31,32。 车辆运输部件在装载车辆时将备用空间的车辆运送到装载/卸载部件,并且在卸载车辆时将装载/卸载部件上的车辆运送到空闲的停车位。 用户走廊被配置为用户在备用空间上车/下车时行走的通道,并且被提供到与车辆备用部件相邻并且不与车辆的交通线路重叠的位置 加载/卸载。 版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • Parking facility
    • 停车场
    • JP2011226241A
    • 2011-11-10
    • JP2010208162
    • 2010-09-16
    • Ohbayashi Corp株式会社大林組
    • UEMIYA AKIOSUGAWARA MINAKOFUNAGUCHI KAZUHISAMARUWAKA MASAOKIKUI KOJI
    • E04H6/18
    • PROBLEM TO BE SOLVED: To save wait time while loading and unloading vehicles at a parking facility having multistory parking.SOLUTION: The parking facility comprises multistory parking 10 and 20, a vehicle wait area 30, and a vehicle transfer area 40. The multistory parking 10 and 20 contains parking spaces 11 and 21 on multiple floors, where a vehicle is, at the time of loading, transferred between loading and unloading areas 12 and 22 and the parking spaces 11 and 21. The vehicle wait area 30, provided on the same floor as the loading and unloading areas 12 and 22, includes plural wait spaces 31 and 32 to keep a vehicle waiting. The vehicle transfer area 40 is for transferring a vehicle between the discretionary wait spaces 31 and 32 and the loading and unloading areas 12 and 22. In the area 40, at the time of vehicle loading, a vehicle waiting in the loading wait space 31 is transferred to the loading and unloading areas 12 and 22. At the time of vehicle unloading, the vehicle returned to the loading and unloading areas 12 and 22 is transferred to the vacant unloading wait space 32.
    • 要解决的问题:在具有多层停车场的停车设施上装载和卸载车辆时节省等待时间。 解决方案:停车设施包括多层停车场10和20,车辆等待区域30和车辆传送区域40.多层停车场10和20包括在多个楼层上的车位11和21,车辆在 装载时间,在装卸区域12和22以及停车位11和21之间传送。车辆等待区域30设置在与装卸区域12和22相同的楼层上,包括多个等待空间31和32 保持车辆等待。 车辆传送区域40用于在自由等待空间31和32与装载和卸载区域12和22之间传送车辆。在区域40中,在车辆装载时,在装载等待空间31中等待的车辆是 转移到装卸区域12和22.在车辆卸载时,返回到装卸区域12和22的车辆被转移到空的卸载等待空间32.版权所有(C)2012年, JPO&INPIT
    • 6. 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
    • 7. 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
    • 8. 发明专利
    • Water flow checking data processing system, processing method and processing program
    • 水流检查数据处理系统,处理方法和处理程序
    • JP2006299709A
    • 2006-11-02
    • JP2005125245
    • 2005-04-22
    • Ohbayashi Corp株式会社大林組
    • KANEKO TOMOYAKONDO SATORUUEMIYA AKIO
    • E21B47/12E03F1/00G01P5/20G06K17/00
    • PROBLEM TO BE SOLVED: To carry out soundness judgement of a flow path and output processing of the judgement result efficiently and securely. SOLUTION: The system configuration comprises a information obtaining part 110 on the feeding side for obtaining system information and arrangement information from a first portable terminal 200 writing the system information indicating attribute of a downstream end 40 of the flow path and the arrangement information set under a predetermined regulation per a test object 10 in flowing sequence at a system 50 to a data carrier 20 at an upperstream 35 of the flow path, a information obtaining part 111 on the recovery side for obtaining the storage information from a second portable terminal 300 carrying out reading by a reader/writer 150 to the test object 10 with the data carrier 20 flowing down the flow path 30 at the downstream end 40 of the flow path, a soundness judging part 112 for judging soundness of the system 50 by collecting respective information obtained from the first portable terminal 200 and the second portable terminal 300 for each system information and detecting whether or not the difference between the arrangement information of the test object group to flow down the same system and the predetermined regulation is caused, and an output processing part 113 for outputting the judgement result of soundness to an output interface. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:有效且可靠地进行流路的健全判断和判断结果的输出处理。 解决方案:系统配置包括在馈送侧的信息获取部分110,用于从第一便携式终端200获取系统信息和布置信息,该第一便携式终端200写入指示流路的下游端40的属性的系统信息和布置信息 在系统50处以流程顺序将每个测试对象10的预定规定设置在流路的上游35处的数据载体20,在恢复侧的信息获取部分111用于从第二便携式终端获得存储信息 300,其中数据载体20在流路的下游端40处流下流动路径30,读取器/写入器150读取到测试对象10;声音判断部分112,用于通过收集来判断系统50的健全性 针对每个系统信息从第一便携式终端200和第二便携式终端300获得的相应信息和检测轮 是否导致测试对象组的排列信息与同一系统流下的预定规定之间的差异,以及输出处理部113,用于将输出界面的声音判断结果输出。 版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Flow test method, flow test system, and flow test program
    • 流量测试方法,流量测试系统和流量测试程序
    • JP2006257745A
    • 2006-09-28
    • JP2005076693
    • 2005-03-17
    • Ohbayashi Corp株式会社大林組
    • KANEKO TOMOYAKONDO SATORUUEMIYA AKIO
    • E03C1/122G06K17/00
    • PROBLEM TO BE SOLVED: To efficiently and securely verify the soundness of a flow passage. SOLUTION: This flow test method comprises a step for flowing down, from the upstream side 35 of the flow passage, a tested body 10 having a data carrier 20 in which system information indicating the attribute of a flow passage downstream side end 40 and arrangement information set under prescribed rules for each tested body 10 in the order of flow down in the system information are stored, a step for acquiring storage information on the data carrier 20 by performing, at the downstream end 40 of the flow passage, a readout treatment by a reader/writer 150 for the data carrier 20 installed in the tested body 10, and a step for determining the soundness of the system by detecting as to whether the arrangement information on a tested body group which must flow in the same system is different from the prescribed rules or not based on the storage information acquired from the data carrier 20 of each tested body 10. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:有效和安全地验证流路的健全性。 该流程测试方法包括从流路的上游侧35向下流动具有数据载体20的测试体10的步骤,其中指示流路下游侧端40的属性的系统信息 存储按照规定的规则对按照规定的规则对按照系统信息流下的顺序设定的配置信息,通过在流路的下游端40进行数据载体20的存储信息的获取的步骤, 用于安装在测试体10中的数据载体20的读取器/写入器150的读出处理,以及通过检测在同一系统中必须流动的被测试身体组的布置信息来确定系统的健全性的步骤 根据从每个测试机构10的数据载体20获取的存储信息,不同于规定的规则。版权所有:(C)2006,JPO&NCIPI