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    • 5. 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
    • Corrosive environment detection sensor for concrete structure
    • 腐蚀性环境检测传感器混凝土结构
    • JP2012032394A
    • 2012-02-16
    • JP2011151213
    • 2011-07-07
    • Taiheiyo Cement Corp太平洋セメント株式会社
    • ERIGUCHI REISATO TATSUZONAKANISHI HIROSHINAGAOKA SHINJIOTAKE JUNICHIROOGAWA SHOICHI
    • G01N17/04
    • PROBLEM TO BE SOLVED: To achieve a reinforced corrosive environment detection sensor whose detecting sensitivity is high without giving any adverse influence to the strength, durability and bearing force of a concrete frame, and to achieve a corrosive environment detection sensor mounted on a position adjacent to reinforcement inside the reinforced concrete for grasping a corrosion factor eroding into the neighborhood of the reinforcement before it reaches the reinforcement.SOLUTION: This corrosion sensor is configured to detect the corrosive environment of reinforcement in a reinforced concrete structure, and provided with: a detection part for detecting the infiltration state of the factor of the corrosion of reinforcement (corrosion factor) to the concrete, and for outputting data showing the infiltration state of the corrosion factor; a sensor coating part (coating part) for preventing the infiltration of the corrosion factor coating the detection part from being hindered; and a sensor armor (armored part) having strength for preventing the bearing force of a structure as the object of embedding from being deteriorated.
    • 要解决的问题:为了实现检测灵敏度高而不会对混凝土框架的强度,耐久性和承载力产生不利影响的强化腐蚀环境检测传感器,并且实现安装在 位于钢筋混凝土附近的位置附近,用于在加固之前抓住腐蚀因素侵蚀到钢筋附近。

      解决方案:该腐蚀传感器被配置为检测钢筋混凝土结构中钢筋的腐蚀环境,并具有:检测部件,用于检测钢筋腐蚀因子(腐蚀因子)对混凝土的渗透状态 并输出表示腐蚀因子的渗透状态的数据; 传感器涂层部分(涂覆部分),用于防止涂覆所述检测部件的腐蚀因子的渗透受到阻碍; 以及具有防止作为嵌入物的结构的承受力劣化的强度的传感器装甲(铠装部)。 版权所有(C)2012,JPO&INPIT

    • 7. 发明专利
    • Corrosion environment detection sensor for concrete structure
    • 腐蚀环境检测传感器的混凝土结构
    • JP2012018018A
    • 2012-01-26
    • JP2010154364
    • 2010-07-06
    • Taiheiyo Cement Corp太平洋セメント株式会社
    • SATO TATSUZONAKANISHI HIROSHINAGAOKA SHINJIERIGUCHI REIOTAKE JUNICHIROOGAWA SHOICHI
    • G01N17/00G01N27/00G01N33/20
    • PROBLEM TO BE SOLVED: To provide a steel corrosion environment detection sensor having a high detection sensitivity without exerting harmful effects on strength, durability, and bearing force of a concrete skeleton, and to provide a corrosion environment detection sensor attached to a position adjacent to an steel bar inside a reinforced concrete, capable of capturing a corrosion factor eroding neighborhood of the steel bar before arrival to the steel bar.SOLUTION: A corrosion detection sensor for detecting corrosion environment of a steel bar in a reinforced concrete structure comprises a detection part that detects an infiltration state of a factor (hereinafter referred to as a corrosion factor) to erode the steel bar in the concrete and outputs data exhibiting the infiltration state of the corrosion factor, a sensor sheath part (hereinafter referred to as a sheath part) that sheathes the detection part without blocking the infiltration of the corrosion factor, and an sensor armor (hereinafter referred to as an armor part) having strength preventing reduction in bearing force of the structure in which the sensor is to be buried.
    • 要解决的问题:提供一种具有高检测灵敏度的钢腐蚀环境检测传感器,而不会对混凝土骨架的强度,耐久性和承载力产生有害影响,并且提供附接到位置的腐蚀环境检测传感器 邻近钢筋混凝土内的钢筋,能够在到达钢筋之前捕获钢筋侵蚀附近的腐蚀因素。 解决方案:用于检测钢筋混凝土结构中钢筋的腐蚀环境的腐蚀检测传感器包括检测部件,其检测因素(以下称为腐蚀因素)的渗透状态,以侵蚀钢筋中的钢筋 混凝土和输出表现出腐蚀因素的渗透状态的数据,在不阻挡腐蚀因素的渗透的情况下护套检测部的传感器护套部(以下称为鞘部),以及传感器装甲(以下称为 装甲部分)具有防止传感器被埋置的结构的承载力降低的强度。 版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Carbonated cement and carbonated cement hardened article
    • 碳酸钙水泥和碳酸钙硬化物品
    • JP2010235410A
    • 2010-10-21
    • JP2009086540
    • 2009-03-31
    • Taiheiyo Cement Corp太平洋セメント株式会社
    • MORI HIROAKIUCHIDA MASATAKAOGAWA SHOICHI
    • C04B28/04C04B18/14C04B40/02
    • Y02W30/94
    • PROBLEM TO BE SOLVED: To provide a carbonated cement, which is sufficiently carbonated to the inner portion, has less amount of CO 2 discharge during production, has little Cr(VI) elution that is a concerned problem caused by neutralization, and allows efficient production of an environmentally conscious concrete secondary product by a short-period curing such as about one day, and to provide a carbonated cement hardened article. SOLUTION: The carbonated cement is hardened by curing in carbonic acid gas, and contains 5 to 30 mass% of slag powder, with 40 to 65 mass% of the total of the slag powder content and a constitutional proportion of belite in the cement. The carbonated cement hardened article is obtained by using the cement. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供足够碳酸化到内部的碳酸钙水泥,在生产过程中具有较少的CO 2 排放量,几乎没有Cr(VI)洗脱是 通过中和引起的有关问题,并且通过短时间固化(例如约一天)可以有效地生产环保型混凝土次级产品,并提供碳酸化的水泥硬化制品。 解决方案:碳酸化水泥通过在碳酸气体中固化而硬化,含有5〜30质量%的炉渣粉末,炉渣粉末总量的40〜65质量%,贝氏体的构成比例 水泥。 通过使用水泥获得碳酸化水泥硬化物品。 版权所有(C)2011,JPO&INPIT