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    • 4. 发明专利
    • Management method for concrete and embedded-type rfid module
    • 混凝土和嵌入式RFID模块的管理方法
    • JP2006071575A
    • 2006-03-16
    • JP2004258163
    • 2004-09-06
    • Oki Communication Systems Co LtdOki Electric Ind Co LtdTaiheiyo Cement Corp太平洋セメント株式会社株式会社沖電気コミュニケーションシステムズ沖電気工業株式会社
    • OGAWA SHOICHIKANEDA YOSHIHISADEGUCHI FUJIOKONUMA RYOHEIITO SABURO
    • G01N33/38
    • G01N33/383
    • PROBLEM TO BE SOLVED: To provide a management method for concrete for efficiently and effectively grasping and managing the state of cast concrete even at a job site by using an embedded-type RFID module with a sensor, and simply taking out the state or history of concrete at the job site into the future for their effective use.
      SOLUTION: With an embedded-type RFID module 2 equipped with a temperature sensor embedded in concrete, temperature measurement is performed at prescribed time intervals to grasp and manage the state of concrete by using accumulated temperature, etc. calculated from temperature data. With concrete ID stored in the RFID module 2, used concrete is determined based on the concrete ID while using a strength estimate expression etc. corresponding thereto to estimate the strength of the cast concrete at its arbitrary initial material age. Further, necessary information can be immediately obtained at a job site into the future if information of every kind on used concrete is together stored in the RFID module 2.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供混凝土的管理方法,即使在工作现场通过使用具有传感器的嵌入式RFID模块来有效地掌握和管理混凝土状态,并且简单地取出状态 或具体工作现场的具体历史,以备有效使用。 解决方案:采用埋入混凝土的温度传感器的嵌入式RFID模块2,以规定的时间间隔进行温度测量,通过使用从温度数据计算出的累计温度等来掌握和管理混凝土的状态。 使用存储在RFID模块2中的混凝土ID,使用与其对应的强度估计表达式等基于具体I​​D来确定二手混凝土,以估计其任意初始材料年龄下的浇注混凝土的强度。 此外,如果二手混凝土中的各种信息一起存储在RFID模块2中,则可以在将来的工作现场立即获得必要的信息。(C)2006年,JPO&NCIPI
    • 6. 发明专利
    • Corrosion sensor, sheath tube, sheath tube jointing member, and corrosion sensor unit
    • 腐蚀传感器,管道管,管道接头部件和腐蚀传感器单元
    • JP2006337169A
    • 2006-12-14
    • JP2005162060
    • 2005-06-01
    • Oriental Construction Co LtdTaiheiyo Cement Corpオリエンタル建設株式会社太平洋セメント株式会社
    • OGAWA SHOICHIKANEDA YOSHIHISATOYAMA MASAAKIABE HIROYUKIHARA KENGO
    • G01N27/26G01N17/02G01N27/04G01N27/22
    • PROBLEM TO BE SOLVED: To provide a corrosion sensor, a sheath tube, a sheath tube jointing member, and a corrosion sensor unit, capable of easily measuring corrosion of reinforcing bars at low cost, without causing infiltration of salinity etc into concrete or damaging aesthetic appearance.
      SOLUTION: The corrosion sensor, used for diagnosing the state of progress of corrosion of steel products buried in concrete structures, is provided with both a corrosion detection part having a member for detection underlaid in an object to be measured or in the vicinity of the object to be measured for detecting corrosion of the member for detection made of metal, by measuring the electrical characteristics of the member for detection and a radio communication part for transmitting the detected results of corrosion to a reading device by radio. It is thereby possible to detect the corrosion of the member for detection, on the basis of the changes in the electrical characteristics and predict the occurrence of corrosion in steel products, such as reinforcing bars, PC steel wires, or sheath tube made of steel.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种腐蚀传感器,护套管,护套管接头构件和腐蚀传感器单元,能够以低成本容易地测量钢筋的腐蚀,而不会使盐度等渗透到混凝土中 或破坏美学外观。 解决方案:用于诊断埋在混凝土结构中的钢制品的腐蚀进展状态的腐蚀传感器具有腐蚀检测部件,其具有被检测物体的被检测部件或被测量物体附近的腐蚀检测部件 通过测量用于检测的构件的电特性和用于通过无线电将检测到的腐蚀结果传送到读取装置的无线电通信部件来检测用于检测由金属制成的检测构件的腐蚀的被测量物体。 由此,能够根据电特性的变化来检测检测用部件的腐蚀,并且可以预测钢制品如钢筋,PC钢丝或钢管等钢制品的腐蚀发生。 版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Protection case for radio sensor
    • 无线传感器保护箱
    • JP2005078473A
    • 2005-03-24
    • JP2003309635
    • 2003-09-02
    • Taiheiyo Cement Corp太平洋セメント株式会社
    • KANEDA YOSHIHISAOGAWA SHOICHI
    • G08C17/00G01D21/00G01N27/20G01N27/26G01N29/14G01N29/24
    • PROBLEM TO BE SOLVED: To provide a protection case for a radio sensor favorably protecting the radio sensor buried in a concrete structure from heat, alkali, moisture in concrete, stress applied to the concrete, and the like and not being foreign matter in the concrete structure. SOLUTION: This protection case has 2-4 layers and favorably comprises a protection layer 2 including an outermost layer 3 made of a nonconductive inorganic material and an inner layer 4 made of a vibration absorbing material for protecting the radio sensor 7 buried in the concrete structure by the protection layer 2. When an opening 1 is formed, the opening is closed by a lid part 6 with porous structure and an object to be detected having passing through the lid part is detected by the built-in radio sensor 7. The protection case has a shape preventing stress concentration such as columnar shape, semi-capsule shape, oval shape, spherical shape, and the like. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种无线电传感器的保护壳,其有利地保护埋在混凝土结构中的无线电传感器免受混合物中的热,碱,水分,施加到混凝土等的应力,并且不是异物 在具体结构中。 解决方案:该保护壳具有2-4层,并且有利地包括保护层2,保护层2包括由非导电无机材料制成的最外层3和由用于保护埋入地下的无线电传感器7的振动吸收材料制成的内层4 通过保护层2的混凝土结构。当形成开口1时,开口由具有多孔结构的盖部6封闭,并且通过内置的无线电传感器7检测到通过盖部的被检测物体 保护壳具有防止诸如柱状,半胶囊形状,椭圆形,球形等的应力集中的形状。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Filling state detecting device of grout material, detector used therefor, sheath pipe and filling state confirming method of grout material
    • 填料状态检测装置材料,其使用的检测器,管道管和填充状态确认方法GROUT材料
    • JP2005076315A
    • 2005-03-24
    • JP2003309010
    • 2003-09-01
    • Taiheiyo Cement Corp太平洋セメント株式会社
    • OGAWA SHOICHIKANEDA YOSHIHISA
    • E04G21/12G01F23/284G01N27/04G08C17/00
    • PROBLEM TO BE SOLVED: To provide a filling state detecting device of a grout material, a detector required therefor, a sheath pipe attached with a sensor, and a filling state confirming method of the grout material by using these, for reading its sensed information by a reader by a radiocommunication means, by sensing a filling state of the grout material in grout construction of a prestressed concrete structure, by the sensor installed in the sheath pipe. SOLUTION: This device detects a filling state of the grout material filled in the sheath pipe 4 in the grout construction in the prestressed concrete structure. The device has an embedded sensor part 2 and the reader 3 for sensing the existence of filling of the grout material. Data transmission to the reader from the sensor part is performed by radiocommunication. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供灌浆材料的填充状态检测装置,需要的检测器,附接有传感器的护套管和使用这些的灌浆材料的填充状态确认方法,用于读取其 由读取器通过无线电通信装置通过安装在鞘管中的传感器感测灌浆材料在预应力混凝土结构的灌浆结构中的填充状态的感测信息。 解决方案:该装置检测在预应力混凝土结构的灌浆结构中填充在护套管4中的灌浆材料的填充状态。 该装置具有嵌入式传感器部分2和读取器3,用于感测灌浆材料的填充的存在。 从传感器部分到读取器的数据传输是通过无线电通信进行的。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Method for producing powdery cement dispersant
    • 生产粉末水泥分散剂的方法
    • JP2004299953A
    • 2004-10-28
    • JP2003093656
    • 2003-03-31
    • Taiheiyo Cement Corp太平洋セメント株式会社
    • TSUKADA KAZUHISAKANEDA YOSHIHISAISHIMORI MASAKI
    • C04B22/10C04B22/14C04B24/26C04B103/40C08F220/06C08F228/02
    • PROBLEM TO BE SOLVED: To provide a method for producing a difficultly agglomerable powdery cement dispersant.
      SOLUTION: The powdery cement dispersant is produced by synthesizing an inorganic carrier in an aqueous solution of the following cement dispersant (A) and drying the aqueous solution to form a powder. Component A is a water-soluble vinyl copolymer comprising 40 to 85 mol% at least one member (component A1) selected from an olefinmonocarboxylic acid and a salt thereof and 15 to 60 mol% at least one member (component A2) selected from an alkoxypolyethylene glycol (meth)acrylate and a (meth)allylsulfonate, and 0 to 5 mol % at least one member (component A3) selected from an alkyl (meth)acrylate and a hydroxyalkyl (meth)acrylate (the total being 100 mol%) and having a number-average molecular weight of 2,000 to 50,000.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 待解决的问题:提供一种生产难凝结的粉末状水泥分散剂的方法。 解决方案:通过在以下水泥分散剂(A)的水溶液中合成无机载体并干燥水溶液形成粉末来制备粉状水泥分散剂。 成分A是含有40〜85摩尔%的至少一种选自烯烃单羧酸及其盐的成分(成分A1)和15〜60摩尔%的选自烷氧基聚乙烯的成分(成分A2)的水溶性乙烯基共聚物 乙烯基(甲基)丙烯酸酯和(甲基)丙烯酸磺酸酯,和0〜5摩尔%的选自(甲基)丙烯酸烷基酯和(甲基)丙烯酸羟烷基酯(至少为100摩尔%)的至少一种成分(成分A3) 数均分子量为2,000〜50,000。 版权所有(C)2005,JPO&NCIPI