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    • 1. 发明专利
    • Powdery re-alkalizing agent for neutralized concrete formed body, and method for re-alkalizing neutralized concrete formed body
    • 用于中和混凝土成型体的粉末再碱化剂,以及重新碱化中性混凝土成型体的方法
    • JP2012006768A
    • 2012-01-12
    • JP2010141398
    • 2010-06-22
    • Takemoto Oil & Fat Co LtdTakenaka Doro:KkTakenaka Komuten Co Ltd株式会社竹中工務店株式会社竹中道路竹本油脂株式会社
    • INOUE KAZUMASAMITSUI TATEOYUINAWA YASUHIROKINOSHITA MITSUOSAITO KAZUHIDEKURODA MOEOZEKI HIDEYA
    • C04B41/62C04B41/65E04G23/02
    • PROBLEM TO BE SOLVED: To provide a powdery re-alkalizing agent which, when applied to and infiltrated through the surface of a neutralized concrete formed body under a safe work, can re-alkalize even to the deep part of the body, and to provide a method for re-alkalizing a neutralized concrete formed body using the same.SOLUTION: As the powdery re-alkalizing agent for the neutralized concrete formed body, one prepared by allowing a fine porous silica powder to support 50-70 mass%, based on the entire, following component A is used. Component A is a liquid mixture composed of a compound represented by chemical formula 1, potassium carbonate, potassium hydroxide, and water, and containing 0.1-20 mass% compound represented by the chemical formula 1, 5-49.8 mass% potassium carbonate, 0.1-25 mass% potassium hydroxide, and 50-94.8 mass% (100 mass% in total) water. In the chemical formula 1, X is a carbonyl group or a methylene group; n and m are integers of 1 or greater provided that n+m is in the range of 4-20; and R is a 7-17C aliphatic hydrocarbon group.
    • 要解决的问题:提供一种粉末状再碱化剂,当其在安全作业下施用并渗透通过中和的混凝土成形体的表面时,可以甚至重新碱化至身体的深部, 并提供一种使用其使中和的混凝土成形体再碱化的方法。 解决方案:作为用于中和的混凝土成型体的粉末状再碱化剂,使用通过使细小的多孔二氧化硅粉末基于整个后续组分A支持50-70质量%而制备的粉末状再碱化剂。 成分A是由化学式1表示的化合物,碳酸钾,氢氧化钾和水构成的液体混合物,含有0.1〜20质量%的由化学式1表示的化合物,5-49.8质量%的碳酸钾,0.1- 25质量%氢氧化钾和50-94.8质量%(总共100质量%)水。 在化学式1中,X是羰基或亚甲基; n和m是1或更大的整数,只要n + m在4-20的范围内; R为7-17C脂族烃基。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Hydraulic blast furnace slag composition and concrete cured body
    • 液压烤炉渣组合物和混凝土固化体
    • JP2014125370A
    • 2014-07-07
    • JP2012282339
    • 2012-12-26
    • Takenaka Komuten Co Ltd株式会社竹中工務店Kajima Corp鹿島建設株式会社Takemoto Oil & Fat Co Ltd竹本油脂株式会社
    • YONEZAWA TOSHIOMITSUI TATEOINOUE KAZUMASAKOJIMA MASAOTSUJI DAIJIROMATSUSHITA TETSUROKANDA TETSUSHISAKATA NOBORUYODA KAZUHISAHASHIMOTO MANABUKINOSHITA MITSUOTAMAKI SHINJISAITO KAZUHIDEKURODA MOE
    • C04B28/08C04B14/28C04B24/38
    • PROBLEM TO BE SOLVED: To provide a hydraulic blast furnace slag composition and a concrete cured body obtained by curing the same that simultaneously and sufficiently solve the plurality of problems that a concrete composition prepared by using blast furnace slag highly containing binding material produces a concrete cured body of low compressive strength, and a hydraulic blast furnace slag composition produces a concrete cured body of lowered compressive strength when undergoes thermal history of temperature rising due to heat evolution during curing by hydration reaction, and also a hydraulic blast furnace slag composition has high S-value.SOLUTION: A hydraulic blast furnace slag composition containing the following admixture by an amount of 0.01 to 0.50 pts.mass per 100 pts.mass of the following binding material. Binding material: containing blast furnace slag fine powder having a fineness of 3000 to 8000 cm/g by an amount of 40 to 80 mass%, Portland cement by an amount of 15 to 55 mass%, and sulfate by an amount of 1.0 to 5.0 mass% in terms of SO(the sum of blast furnace slag fine powder, Portland cement and sulfate is 100 mass%). Admixture: composed of two components of the following A component and the following B component, and containing A component by an amount of 50 to 99 mass% and B component by an amount of 1 to 50 mass% (total 100 mass%). A component: a water soluble dextrin compound having a weight average molecular weight of 1000 to 20000 and a solubility into water at 21°C of 90% or more. B component: a water soluble dextrin compound having a weight average molecular weight of 20001 to 50000 and a solubility into water at 21°C of 90% or more.
    • 要解决的问题:提供一种液压高炉矿渣组合物和通过固化而获得的混凝土固化体,其同时充分地解决了通过使用高含有粘结材料的高炉渣制备的混凝土组合物产生混凝土固化的多个问题 液压高炉渣组合物在通过水化反应固化期间由于放热而经历由于升温引起的温度升高的热历史时产生具有降低的抗压强度的混凝土固化体,并且液压高炉渣组合物具有高S 价值。解决方案:一种液压高炉矿渣组合物,其含有以下混合物,其量为0.01至0.50磅/微升/ 100磅的以下粘结材料。 结合材料:含有40〜80质量%的细度为3000〜8000cm / g的高炉矿渣微粉,15〜55质量%的硅酸盐水泥,1.0〜5.0的硫酸盐 质量%以SO(高炉矿渣粉末,波特兰水泥和硫酸盐的总和为100质量%)。 外加剂:由以下A成分和以下B成分的两种成分组成,A成分为50〜99质量%,B成分为1〜50质量%(总计100质量%)。 A成分:重均分子量为1000〜20000的水溶性糊精化合物和在21℃下的水溶性为90%以上。 B成分:重均分子量为20001〜50000的水溶性糊精化合物和在21℃下在水中的溶解度为90%以上。
    • 7. 发明专利
    • Concrete composition using blast furnace slag composition
    • 使用BLAST FURNACE SLAG COMPOSITION的混凝土组合物
    • JP2010285289A
    • 2010-12-24
    • JP2009137959
    • 2009-06-09
    • Takemoto Oil & Fat Co LtdTakenaka Komuten Co Ltd株式会社竹中工務店竹本油脂株式会社
    • YONEZAWA TOSHIOMITSUI TATEOINOUE KAZUMASAIKEO YOSAKUWACHI MASAHIROHASUMI TAKASHIKINOSHITA MITSUOSAITO KAZUHIDEKURODA MOETAMAKI SHINJI
    • C04B28/14C04B18/16C04B22/06C04B22/14C04B24/26C04B24/32
    • C04B28/14C04B2111/34Y02W30/94Y02W30/95C04B14/02C04B18/141C04B18/167C04B20/0076C04B20/0096
    • PROBLEM TO BE SOLVED: To provide a concrete composition, while suppressing the exhaust amount of carbon dioxide, which can secure satisfactory applicability in a state where the reduction in the fluidity and the reduction in an air amount with the lapse of time in the prepared concrete composition are suppressed, further can suppress the drying shrinkage of the obtained hardened body, and can make the required strength appear in the obtained hardened body as well.
      SOLUTION: The concrete composition at least comprises a binder, water, fine aggregate, coarse aggregate and an admixture. As the binder, the following blast furnace slag composition is used, and also, the mass ratio of water/the blast furnace slag composition is regulated to 30 to 60%. The blast furnace slag composition is obtained, per 100 pts.mass of a mixture comprising blast furnace slag fine powder having fineness of 3,000 to 13,000 cm
      2 /g in a ratio of 80 to 95 pts.mass and gypsum in a ratio of 5 to 20 pts.mass (total 100 mass%), by adding regenerated concrete fine powder with a calcium hydroxide content of 3 to 15 pts.mass separated from dismantled concrete in a ratio of 3 to 15 pts.mass.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供一种混合物组合物,同时抑制二氧化碳的排出量,其可以在流动性的降低和空气量随时间流逝的状态下确保满意的适用性 所制备的混凝土组合物被抑制,进一步抑制所得硬化体的干燥收缩,并且也可以在所得的硬化体中出现所需的强度。 解决方案:混凝土组合物至少包含粘合剂,水,细骨料,粗骨料和混合物。 作为粘合剂,使用以下的高炉渣组成,水/高炉渣组成的质量比也调节为30〜60%。 获得高炉炉渣组合物,每100个小块的混合物,其混合物包含80至95重量份的细度为3,000至13,000厘米SP / 2 / g的高炉矿渣细粉,和 比例为5〜20质量百分比(总计100质量%)的石膏,加入氢氧化钙含量为3〜15重量%的再生混凝土细粉,与3〜15重量比的混凝土分离 。 版权所有(C)2011,JPO&INPIT