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    • 1. 发明专利
    • Exterior wall repairing method, and sheet laying structure over scaffold in the exterior wall repairing
    • 外墙修复方法和外墙修复中的层状结构
    • JP2010203183A
    • 2010-09-16
    • JP2009051971
    • 2009-03-05
    • Toru Yabe徹 矢部
    • YABE TORU
    • E04G5/00
    • PROBLEM TO BE SOLVED: To cope with a fact that, in a conventional exterior wall repairing method, a temporary scaffold is provided around the circumference of side-faces of a building and the circumference of the side faces are covered with sheets spread around the temporary scaffold during the repairing. SOLUTION: The scaffold 2a, on which workers get on, is assembled with a plurality of single pipes only around one side face 1a of the building 1 having a veranda and a large window. The exterior-wall repairing is executed concentratedly only to the one side face 1a of the building 1 while preventing the scattering of external wall coating or the like by surrounding the circumference of the assembled scaffold 2a with the sheet. When the external-wall repairing on the one side face 1a of the building 1 is finished, the sheet covering the circumference of the one side face 1a is removed, and the assembled scaffold 2a is disassembled. Then, the scaffold 2b to 2d is assembled around the circumference of the remaining three side faces 1b to 1d of the building 1 to execute the exterior-wall repairing while surrounding the assembled scaffold 2b to 2d with the sheet. When the exterior-wall repairing of the remaining side faces 1b to 1d is finished, the sheet surrounding the side faces 1b to 1d are removed, and the assembled scaffold 2b to 2d is disassembled. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:为了解决在传统的外墙修复方法中,在建筑物的侧面的周围设置临时脚手架,并且侧面的圆周被覆盖有纸张 在修理期间临时脚手架周围。 解决方案:工作人员穿上的脚手架2a仅在建筑物1的具有阳台和大窗口的一个侧面1a周围的多个单个管道上组装。 外墙修复仅集中在建筑物1的一个侧面1a上,同时通过围绕组装的支架2a的圆周与片材防止外墙涂层等的散射。 当建筑物1的一个侧面1a上的外墙修复完成时,覆盖一个侧面1a的周边的薄片被去除,组装的支架2a被拆开。 然后,将脚手架2b〜2d组装在建筑物1的其余三个侧面1b〜1d的周围,进行外墙修复,同时用片材围绕组装的脚手架2b〜2d。 当剩余侧面1b至1d的外壁修复完成时,围绕侧面1b至1d的片材被去除,并且组装的脚手架2b至2d被拆卸。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Asbestos-removal construction method
    • ASBESTOS拆卸施工方法
    • JP2008082061A
    • 2008-04-10
    • JP2006264692
    • 2006-09-28
    • Toru YabeShiyouichi Yoshino笙一 吉野徹 矢部
    • YOSHINO SHIYOUICHIYABE TORU
    • E04G23/02
    • PROBLEM TO BE SOLVED: To solve a problem that a conventional asbestos-removal construction method has a possibility that even if internal pressure in a closed space where sprayed asbestos is removed becomes higher than external pressure, asbestos-removal work is continued without noticing this situation.
      SOLUTION: The interior of the closed space surrounded by a vinyl sheet 3 is ventilated by a ventilation system 10, and the internal pressure in the closed space where the removal work of sprayed asbestos is performed is set at a higher level than the external pressure. The asbestos sprayed on the surface of a construction material such as a ceiling material 1 and a wall material 2 is removed by a worker 13b after being moistened by a worker 13a with a wetting agent into which water-soluble high polymer resin is compounded. The surface of the construction material from which the asbestos have been removed is hardened by a hardening agent with which an acrylic alkyl ester copolymer has been mixed. During the work, when differential pressure between the inside and the outside of the closed space which is measured by a differential-pressure measuring device 5 falls below a predetermined set value, a warning buzzer 7 and a revolving light 8 automatically give an alarm.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:为了解决现有的石棉去除施工方法具有即使被去除喷射石棉的封闭空间中的内部压力高于外部压力的可能性,也可以继续除石棉工作而不进行 注意到这种情况。 解决方案:由乙烯基片3包围的封闭空间的内部通风通风系统10,并且执行喷涂石棉去除工作的封闭空间中的内部压力设定在比 外部压力。 喷洒在诸如天花板材料1和墙壁材料2的建筑材料的表面上的石棉在被工作人员13a用被湿润剂湿润的水溶性高分子树脂复合之后被工人13b除去。 去除了石棉的建筑材料的表面被混合有丙烯酸烷基酯共聚物的硬化剂硬化。 在工作中,当由差压测量装置5测量的封闭空间的内外压差降到预定设定值以下时,警告蜂鸣器7和回转灯8自动报警。 版权所有(C)2008,JPO&INPIT
    • 5. 发明授权
    • Vibrating gyroscope and adjusting method therefor
    • 振动陀螺仪及其调整方法
    • US6023973A
    • 2000-02-15
    • US146795
    • 1998-09-03
    • Toru YabeKatsuhiko MoritaTetsuo TatsumiNobuyuki IshitokoMichihiko Takenaka
    • Toru YabeKatsuhiko MoritaTetsuo TatsumiNobuyuki IshitokoMichihiko Takenaka
    • G01C19/56G01C19/5663G01P9/00H01L41/08
    • G01C19/5663
    • A vibrating gyroscope includes a columnar vibrator, a driver and a detector. The columnar vibrator includes first and second piezoelectric substrates polarized in mutually opposite directions along the thickness directions thereof and stacked with each other. Two divided electrodes are formed on one main surface of the first piezoelectric substrate and spaced in the direction perpendicular to the longitudinal direction of the first piezoelectric substrate, and a common electrode is formed on one main surface of the second piezoelectric substrate. The driver drives the vibrator in the thickness direction of the first and second piezoelectric substrates and is connected between the divided electrodes and the common electrode. The detector detects a displacement caused by bending vibration of the vibrator, and is connected to the divided electrodes. The vibrator has substantially the same resonant frequency in the two diagonal directions which diagonally connect four edges elongating in the longitudinal direction of the vibrator.
    • 振动陀螺仪包括柱状振动器,驱动器和检测器。 柱状振动器包括沿其厚度方向彼此相反方向偏振并且彼此堆叠的第一和第二压电基板。 在第一压电基板的一个主表面上形成有两个分开的电极,并且在与第一压电基板的纵向方向垂直的方向上隔开,并且在第二压电基板的一个主表面上形成公共电极。 驱动器沿着第一和第二压电基板的厚度方向驱动振动器,并且连接在分割电极和公共电极之间。 检测器检测由振动器的弯曲振动引起的位移,并连接到分割电极。 振动器在两个对角线方向上具有基本上相同的共振频率,其对角地连接在振动器的纵向方向上延伸的四个边缘。
    • 7. 发明授权
    • Data link control system for monitoring control
    • 数据链路控制系统用于监控
    • US5594662A
    • 1997-01-14
    • US296490
    • 1994-08-25
    • Toru Yabe
    • Toru Yabe
    • H04B17/00H04L12/26G06F13/00
    • H04L43/00H04L12/2602
    • A control system includes data links for monitoring control of a transmission device from a maintenance device by polling, to make it easier to change the setting of the data link connection. The system has a plurality of transmission devices constituting a network and one maintenance device, for monitoring each of transmission devices from the maintenance device with a polling system. The system has a data link connecting section, a maintenance device interface section located between the maintenance device and the data link connecting section, a transmission device monitoring control section and a common processing section. The connection in the data link connecting section is set according to each item of the basic connecting information table.
    • 控制系统包括用于通过轮询监视来自维护设备的传输设备的控制的数据链路,以使得更容易改变数据链路连接的设置。 该系统具有构成网络的多个传输设备和一个维护设备,用于通过轮询系统监视来自维护设备的传输设备中的每一个。 该系统具有数据链路连接部,位于维护装置与数据链路连接部之间的维护装置接口部,发送装置监视控制部和公共处理部。 数据链接连接部分的连接根据基本连接信息表的各项设定。
    • 8. 发明申请
    • IN-LIQUID-SUBSTANCE DETECTION SENSOR
    • 液体物质检测传感器
    • US20090320574A1
    • 2009-12-31
    • US12555894
    • 2009-09-09
    • Hajime YAMADANaoko AIZAWAYoshihiro KOSHIDOKoji FUJIMOTOToru YABEMichio KADOTA
    • Hajime YAMADANaoko AIZAWAYoshihiro KOSHIDOKoji FUJIMOTOToru YABEMichio KADOTA
    • G01N29/02
    • G01N29/022G01N29/222G01N2291/022G01N2291/0423
    • An in-liquid-substance detection sensor that achieves size reduction and detection accuracy improvement includes a piezoelectric substrate, at least two SAW devices provided on one major surface of the piezoelectric substrate and each having at least one IDT electrode defining a sensing portion, outer electrodes provided on the other major surface of the piezoelectric substrate and electrically connected to the SAW devices through vias extending through the piezoelectric substrate, a channel-defining member provided on the one major surface of the piezoelectric substrate so as to surround the SAW devices and a region connecting the SAW devices to each other, thereby defining sidewalls of a channel, and a protective member bonded to the one major surface of the piezoelectric substrate with the channel-defining member interposed therebetween, thereby sealing the channel, the protective member having at least two through holes communicating with the channel.
    • 实现尺寸减小和检测精度提高的液体内物质检测传感器包括压电基板,设置在压电基板的一个主表面上的至少两个SAW器件,每个具有限定感测部分的至少一个IDT电极,外部电极 设置在压电基板的另一个主表面上,并且通过延伸穿过压电基板的通孔电连接到SAW器件,设置在压电基板的一个主表面上以便包围SAW器件的通道限定元件和区域 将所述SAW器件彼此连接,由此限定通道的侧壁,以及保护构件,其与所述压电基板的所述一个主表面接合,并且所述通道限定构件插入其间,从而密封所述通道,所述保护构件具有至少两个 通道与通道相通。
    • 10. 发明授权
    • In-liquid-substance detection sensor
    • 液体物质检测传感器
    • US08256275B2
    • 2012-09-04
    • US12555894
    • 2009-09-09
    • Hajime YamadaNaoko AizawaYoshihiro KoshidoKoji FujimotoToru YabeMichio Kadota
    • Hajime YamadaNaoko AizawaYoshihiro KoshidoKoji FujimotoToru YabeMichio Kadota
    • G01N29/00
    • G01N29/022G01N29/222G01N2291/022G01N2291/0423
    • An in-liquid-substance detection sensor that achieves size reduction and detection accuracy improvement includes a piezoelectric substrate, at least two SAW devices provided on one major surface of the piezoelectric substrate and each having at least one IDT electrode defining a sensing portion, outer electrodes provided on the other major surface of the piezoelectric substrate and electrically connected to the SAW devices through vias extending through the piezoelectric substrate, a channel-defining member provided on the one major surface of the piezoelectric substrate so as to surround the SAW devices and a region connecting the SAW devices to each other, thereby defining sidewalls of a channel, and a protective member bonded to the one major surface of the piezoelectric substrate with the channel-defining member interposed therebetween, thereby sealing the channel, the protective member having at least two through holes communicating with the channel.
    • 实现尺寸减小和检测精度提高的液体内物质检测传感器包括压电基板,设置在压电基板的一个主表面上的至少两个SAW器件,每个具有限定感测部分的至少一个IDT电极,外部电极 设置在压电基板的另一个主表面上,并且通过延伸穿过压电基板的通孔电连接到SAW器件,设置在压电基板的一个主表面上以便包围SAW器件的通道限定元件和区域 将所述SAW器件彼此连接,由此限定通道的侧壁,以及保护构件,其与所述压电基板的所述一个主表面接合,并且所述通道限定构件插入其间,从而密封所述通道,所述保护构件具有至少两个 通道与通道相通。