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    • 1. 发明专利
    • Splash prevention device for turbid fluid containing exfoliated material, and adapter
    • 包含异物的涡轮流体防溅装置和适配器
    • JP2014180583A
    • 2014-09-29
    • JP2013054469
    • 2013-03-17
    • East Japan Railway Co東日本旅客鉄道株式会社Kensetsu Toso Kogyo Kk建設塗装工業株式会社Tokyo Gas Engineering Co Ltd東京ガス・エンジニアリング株式会社
    • NAITO TAKAKAZUSUZUKI SHUICHIABE TAKESHITORII IWANETAKEDA MISAO
    • B08B3/02B08B15/02E04G23/02E04G23/08
    • PROBLEM TO BE SOLVED: To prevent a turbid fluid containing exfoliated material from leaking to the outside in a scraping work in which a worker is required to work manually, and also to secure safety of the worker while working and to reduce a work load.SOLUTION: A splash prevention device is used in a coating film exfoliation work for exfoliating a coating film applied on a surface of a component by spraying a jet fluid ejected at high pressure, and prevents splashing of a turbid fluid containing exfoliated material generated in the coating film exfoliation work. The splash prevention device includes: a structure having a three-dimensional form, on which one or a plurality of opened surfaces are formed from among a plurality of surfaces constituting the three-dimensional structure and an introduction port for introducing the jet fluid and a discharge port for discharging the turbid fluid are respectively formed on the surfaces other than the opened surface; and pressing means for pressing the structure against the component. In the coating film exfoliation work, the structure is abutted on the component so as to block the opened surface, covering a working space for the coating film exfoliation work by the structure and thereby preventing the turbid fluid from splashing.
    • 要解决的问题:为了防止在需要工作人员手动进行的刮削作业中含有剥离材料的混浊液体泄漏到外部,并且还可以确保工作人员在工作时的安全,并降低工作负荷。解决方案 :防溅装置用于通过喷射在高压下喷射的喷射流体来剥离施加在部件表面上的涂膜的涂膜剥离工作,并且防止在涂膜中产生的含有剥离材料的混浊流体飞溅 去角质工作。 防溅装置包括:具有三维形状的结构,在构成三维结构的多个表面中形成有一个或多个开放表面和用于引入喷射流体的引入口和排出口 用于排出混浊流体的端口分别形成在除了打开的表面之外的表面上; 以及用于将结构压靠在部件上的按压装置。 在涂膜剥离作业中,结构抵接在部件上以阻挡开口表面,覆盖由该结构进行的涂膜剥离作业的工作空间,从而防止混浊液体飞溅。
    • 2. 发明专利
    • Liquid inspection device
    • 液体检测装置
    • JP2008157685A
    • 2008-07-10
    • JP2006344801
    • 2006-12-21
    • Tokyo Gas Engineering Co LtdTokyo Rigaku Kensa Kk東京ガス・エンジニアリング株式会社東京理学検査株式会社
    • ABE TAKESHI
    • G01N27/22G01N5/00
    • G01G17/04G01N27/221
    • PROBLEM TO BE SOLVED: To discriminate whether a hazardous liquid, such as gasoline is housed in a container, even with respect to a thick-walled container, and to accurately discriminate, even for a liquid explosive substance or acidic and alkaline liquids. SOLUTION: This liquid inspection device 10 is equipped with a weight sensor 14 and a dielectric constant sensor 15, both of which measure the weight and dielectric constant of the container 12 in which the liquid 13 is housed; a data base 18 on which the determine standard weight and determine the standard dielectric constant for each kind of the container 12 are recorded; and a liquid determining part 24, to which the determination standard weight, the determine standard dielectric constant, the measured weight and the measured dielectric constant are inputted. The liquid determining part 24 is constituted so as to evaluate whether the measured weight and the measured dielectric constant satisfy the determination standard weight and the determination standard dielectric constant; and if the result is unsatisfactory, the liquid 13 is determined as being a hazardous substance, and an alarm 16 is actuated. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:即使对于厚壁容器,即使对于液体爆炸性物质或酸性和碱性液体也可以区分诸如汽油之类的危险液体是否被容纳在容器中 。 该液体检查装置10配备有重量传感器14和介电常数传感器15,两者都测量容纳液体13的容器12的重量和介电常数; 记录确定标准重量并确定每种容器12的标准介电常数的数据库18; 以及输入了确定标准重量,确定标准介电常数,测量重量和测量的介电常数的液体确定部分24。 液体判定部24构成为,评价测定重量和测定的介电常数是否满足判定标准重量和测定标准介电常数; 并且如果结果不令人满意,则将液体13确定为有害物质,并且致动报警器16。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • ガス検知器
    • 气体检测器
    • JP2015025734A
    • 2015-02-05
    • JP2013155478
    • 2013-07-26
    • 東京都下水道サービス株式会社Tokyo Metropolitan Sewerage Service Corp東京ガス・エンジニアリング株式会社Tokyo Gas Engineering Co Ltdアンリツ株式会社Anritsu Corp
    • SONE KEIICHITAMAMOTO HIROYUKIABE TAKESHISUZUKI TOSHIYUKIHARA TAKESHIYAMAZAKI NORIAKI
    • G01N21/39
    • 【課題】硫化水素等の被検出ガスの検出において障害になり得る二酸化炭素が高濃度に存在する環境においても、被検出ガスを高感度に検出する。【解決手段】周波数変調されたレーザ光を検出光として放射する光源部と、検出光が物体に照射された場合に物体からの反射光を受光し、反射光に応じた受光信号を出力する受光部と、受光信号から、検出光の変調周波数に等しい周波数の基本波信号、および、変調周波数の2倍に等しい周波数の2倍波信号を検出する信号検出部と、基本波信号と2倍波信号の比に基づいて、背景ガスが存在する雰囲気における被検出ガスの濃度を計算する濃度計算部と、を有し、検出光の周波数変調における中心波長が、被検出ガスの複数の吸収線のうち「|選択吸収線の波長(λs)−背景ガスの吸収線波長(λb)|≧2.72?選択吸収線の半値全幅(&Dgr;λs)」の条件を満足する選択吸収線に合致するよう調整されたガス検知器を提供する。【選択図】図1
    • 要解决的问题:即使在检测到诸如硫化氢等的检测气体中可能成为障碍物的二氧化碳的环境中,以高灵敏度检测待检测的气体, 浓度。解决方案:提供一种气体检测器,包括:用于照射调频激光束作为检测光的光源单元; 光接收单元,用于当检测光被照射到物体时接收来自物体的反射光并输出与​​反射光相对应的光接收信号; 信号检测单元,用于从光接收信号中检测具有等于检测光的调制频率的频率的基波信号和具有调制频率两倍的频率的双波信号; 以及浓度计算单元,用于基于所述基波信号与所述双波信号的比率,计算在背景气体存在的气氛中要检测的气体的浓度,所述气体检测器被调整为 检测光频率调制中的中心波长符合选择吸收线,在满足条件“|选择吸收线的波长(λs) - 背景气体的吸收线波长的条件”的待检测气体的多条吸收线中 (λb)|≥2.72×选择吸收线半峰全宽(&Dgr;λs)“。
    • 4. 发明专利
    • Tempura fire prevention device for gas table
    • 用于气表的TEMPURA防火装置
    • JP2010014372A
    • 2010-01-21
    • JP2008176391
    • 2008-07-05
    • Tokyo Gas Engineering Co Ltd東京ガス・エンジニアリング株式会社
    • OGUCHI KIICHIROABE TAKESHI
    • F24C3/12F23N5/00F23N5/24
    • PROBLEM TO BE SOLVED: To effectively prevent fire during Tempura cooking and successfully secure convenience during cooking by a gas table.
      SOLUTION: A human sensing sensor 3 is installed on the gas table 2, and the human sensing sensor 3 is connected to the controller 4. The human sensing sensor 3 detects that a person is separated from the gas table 2, and based on a command of the controller 4, the gas of the gas table 2 is shut off via a timer 10. In the case that the human sensing sensor 3 detects that a person is separated from the gas table 2 and brought into a human absence monitoring mode, when the person is returned before the gas is shut off by turning on of the timer 10 and the person is returned for a short time, the human absence monitoring mode by the human sensing sensor 3 is continued.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了有效地防止天妇罗烹饪过程中的火灾,并通过气台进行烹饪时成功地确保了方便。 解决方案:人感测传感器3安装在气台2上,人感测传感器3连接到控制器4.人感测传感器3检测到人与气表2分离,并基于 在控制器4的指令下,气台2的气体经由定时器10被切断。在人感测传感器3检测到人与气体台2分离并进入人体不监测的情况下 模式,当通过打开定时器10关闭气体而返回人员,并且人员在短时间内返回时,人感测传感器3的人员不在监视模式继续。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Security system and security check method
    • 安全系统和安全检查方法
    • JP2009251828A
    • 2009-10-29
    • JP2008097541
    • 2008-04-03
    • Tokyo Gas Engineering Co Ltd東京ガス・エンジニアリング株式会社
    • GENMA TAKAYUKIABE TAKESHI
    • G08B25/04B65C9/46G01N25/18G07G1/06G08B21/00G08B23/00
    • PROBLEM TO BE SOLVED: To quickly and easily determine that a fluid container in which fluid is stored is not any dangerous object.
      SOLUTION: The security system includes a container information output device installed in a store with a mass measurement part for measuring the mass of a fluid container in which fluid is stored and an information output part for printing container information including information showing mass measured by the mass measurement part on a label for output; and a container information inspection device installed in a luggage inspection place and equipped with a mass measurement part for measuring the mass of the fluid container, an information reading part for reading container information from a label attached to the fluid container and a container information determination part for determining whether or not the mass of the fluid container measured by the mass measurement part is matched with the mass shown by the container information read by the information reading part.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了快速,容易地确定储存流体的流体容器不是任何危险的物体。 解决方案:安全系统包括安装在存储器中的容器信息输出装置,该容器信息输出装置具有用于测量其中存储流体的流体容器的质量的质量测量部分和用于打印容器信息的信息输出部分,包括显示质量的信息 由标签上的质量测量部分输出; 以及容器信息检查装置,其安装在行李检查场所中,并配备有用于测量流体容器的质量的质量测量部件,用于从附接到流体容器的标签读取容器信息的信息读取部件和容器信息确定部件 用于确定由质量测量部件测量的流体容器的质量是否与由信息读取部件读取的容器信息所示的质量相匹配。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • Gas sampling device
    • 气体采样装置
    • JP2011033524A
    • 2011-02-17
    • JP2009181427
    • 2009-08-04
    • Sakaguchi Giken:KkTokyo Gas Engineering Co LtdTokyo Metropolitan Sewerage Service Corp東京ガス・エンジニアリング株式会社東京都下水道サービス株式会社株式会社坂口技研
    • TAMAMOTO HIROYUKIABE TAKESHITAKEDA MISAONAKAMURA ATSUSHIYAMAGUCHI NOBUKAZU
    • G01N1/22
    • PROBLEM TO BE SOLVED: To configure a gas sampling device by using a simple mechanism, capable of always moving a gas sampling section which samples a gas, to an area close to a water surface, according to the fluctuation in the water level of a sewage system. SOLUTION: The gas sampling section 5 is disposed near the upper portion of a float 2, from which a spindle 1 is suspended, and the float 2 and the gas sampling section 5 are suspended by a wire 8 via a hook 5 located at the upper portion of a support 4. The gravitational attraction on the spindle 1 and the rewinding force of a wire-rewinding mechanism 9 are balanced, thereby applying an appropriate tension to the wire 8. Moreover, a gas-sampling tube 6 is drawn from the gas-sampling section 5, and appropriate tension is applied by a tube rewinding mechanism 11. The gas passing through the gas sampling tube 6 is sent out to a gas meter 12, so that its gas concentration is measured. In the configuration, even if the water level Ga of the sewage system G fluctuates, the gas-sampling section 5 always samples the gas near the surface of the water level Ga. Furthermore, the wire 8 and the gas sampling tube 6 are configured such that there is no risk of slacking to the water level Ga. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过使用简单的机构来配置气体采样装置,能够根据水位的波动总是将取样气体的气体取样部移动到靠近水面的区域 的污水系统。

      解决方案:气体取样部5设置在浮子2的上部附近,主轴1悬挂在该上部,浮子2和气体取样部5经由位于 在支撑件4的上部。主轴1上的重力吸引力和绕线机构9的重绕力被平衡,从而对线8施加适当的张力。此外,抽取气体采样管6 并且通过管重绕机构11施加适当的张力。通过气体取样管6的气体被送出到气量计12,从而测量其气体浓度。 在该结构中,即使污水处理系统G的水位Ga波动,气体取样部5总是对水位Ga的表面附近的气体进行取样,而且,将线8和气体取样管6 没有对水位of no的风险。版权所有(C)2011,JPO&INPIT