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    • 2. 发明专利
    • Calculation method of carbonation degree of light-weight air bubble concrete panel
    • 轻质空气泡沫混凝土面板碳化度计算方法
    • JP2014190903A
    • 2014-10-06
    • JP2013068017
    • 2013-03-28
    • Clion Co Ltdクリオン株式会社
    • GOTO KAZUSHIGE
    • G01N17/00
    • PROBLEM TO BE SOLVED: To provide a method capable of calculating carbonation degree without considering the existence of unspecified substances other than tobermorite even though it is a simple method.SOLUTION: In a calculation method of carbonation degree of a light-weight air bubble concrete panel: the carbon dioxide gas content in an environment of 600°C-900°C is measured by using a thermogravimetry-differential thermal analyzer, about an absolute dry treatment sample obtained by absolutely drying a collection sample collected from the light-weight air bubble concrete panel and a forcibly carbonated sample obtained by absolutely drying a collection sample and then carbonation-treating it until whole tobermorite reacts with carbon dioxide gas to change into calcium carbonate; and the carbonation degree of the light-weight air bubble concrete panel is calculated by (carbon dioxide gas content of the absolute dry treatment sample V/carbon dioxide gas content of the forcibly carbonated sample V)×100(%).
    • 要解决的问题:提供一种能够计算碳酸化度而不考虑除雪白土以外的未指定物质的存在的方法,即使是简单的方法。解决方案:在轻质气泡混凝土板的碳酸化度的计算方法中 :使用热重差分热分析仪测量在600℃-900℃的环境中的二氧化碳气体含量,绝对干燥处理样品通过绝对干燥从轻质气泡混凝土收集的采集样品 通过绝对干燥收集样品然后进行碳酸化处理,直到全部雪白土与二氧化碳气体反应形成碳酸钙,得到强制碳酸化样品。 通过(绝对干法处理样品V的二氧化碳气体含量V /强制碳酸化试样V的二氧化碳气体含量)×100(%)计算轻质气泡混凝土面板的碳酸化度。
    • 3. 发明专利
    • Method of manufacturing alc panel
    • 制造ALC面板的方法
    • JP2010235418A
    • 2010-10-21
    • JP2009087675
    • 2009-03-31
    • Clion Co Ltdクリオン株式会社
    • HASEI MASATOHAMAKOJI AKIHITOGOTO KAZUSHIGE
    • C04B38/00B28B1/50C04B24/20C04B24/32C04B28/18C04B111/40
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing an ALC panel by which the subsidence crack or lower part crack occurring in a semi-hardened body is prevented with the adjustment of the component composition of raw material slurry and thereby the occurrence of crack or breaking in the vicinity of a reinforcement bar of a panel base material is prevented.
      SOLUTION: In the manufacture of the ALC panel by arranging the reinforcement bar in a formwork, placing the raw material slurry in the formwork, demolding the semi-hardened body obtained by the raw material slurry from the formwork and curing with high temperature high pressure steam, the component composition of the raw material slurry is adjusted so that the difference between the maximum height position H
      H when the height position of the reinforcement bar changed in the formwork with the progress of foaming reaction and hydration reaction of the raw material slurry reaches the maximum and a stable height position H
      S when the reinforcing bar is held in the raw material slurry with progress of the hydration reaction and the height position of the reinforcement bar becomes unchangeable is settled in a fixed range.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种制造ALC面板的方法,其中通过调节原料浆料的组分组成,从而防止在半硬化体中发生的沉降裂纹或下部裂纹,从而发生 防止在面板基材的加强筋附近的裂纹或断裂。 解决方案:在ALC面板的制造中,通过在模板中设置钢筋,将原料浆料放置在模板中,将由原料浆料获得的半硬化体从模板中脱模,并用高温固化 高压蒸汽,调整原料浆料的成分组成,使得当模板的高度位置随发泡反应的进行而变化时,最大高度位置H H 之间的差异 当钢水杆保持在原料浆料中时,原料浆料的水合反应达到最大值,稳定的高度位置H S ,随着水化反应的进行和钢筋的高度位置 变得不变,定在一个固定的范围内。 版权所有(C)2011,JPO&INPIT