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SHRINKAGE-REDUCING AGENT FOR HYDRAULIC MATERIAL AND SHRINKAGE REDUCING AGENT COMPOSITION FOR HYDRAULIC MATERIAL
Provided are a shrinkage-reducing agent for a hydraulic material and a shrinkage-reducing agent composition for a hydraulic material each having high general-purpose property. Each of the agent and the composition does not require a combination with any other admixture, is inexpensive, suppresses a reduction in strength of a cured article, suppresses the generation of a crack in a cured concrete body by virtue of its excellent shrinkage-reducing function, and shows such good compatibility with a water-reducing agent as to impart an excellent water-reducing function. Further, each of the agent and the composition can improve the quality of entrained air with an antifoaming agent and an AE agent so easily as to be capable of imparting excellent freezing-thawing resistance to the cured concrete body to improve the durability of the cured concrete body. The shrinkage-reducing agent for a hydraulic material of the present invention includes a compound represented by the general formula (1): R 1 -[O-(A 1 O) m -R 2 ] n (1), where: R 1 represents R 1 derived from a polyhydric alcohol represented by R 1 -[OH] n ; A 1 O represents an oxyalkylene group having 2 to 18 carbon atoms; R 2 represents a hydrogen atom or a hydrocarbon group having 1 to 30 carbon atoms; m represents an average addedmole number of oxyalkylene groups A 1 O's; n represents 3 or 4; and when n equals 3, m represents 30 to 150, and when n equals 4, m represents 5 to 150.
SHRINKAGE-REDUCING AGENT FOR HYDRAULIC MATERIAL AND SHRINKAGE REDUCING AGENT COMPOSITION FOR HYDRAULIC MATERIAL
Provided are a shrinkage-reducing agent for a hydraulic material and a shrinkage-reducing agent composition for a hydraulic material each having high general-purpose property. Each of the agent and the composition does not require a combination with any other admixture, is inexpensive, suppresses a reduction in strength of a cured article, suppresses the generation of a crack in a cured concrete body by virtue of its excellent shrinkage-reducing function, and shows such good compatibility with a water-reducing agent as to impart an excellent water-reducing function. Further, each of the agent and the composition can improve the quality of entrained air with an antifoaming agent and an AE agent so easily as to be capable of imparting excellent freezing-thawing resistance to the cured concrete body to improve the durability of the cured concrete body. The shrinkage-reducing agent for a hydraulic material of the present invention includes a compound represented by the general formula (1): R 1 -[O-(A 1 O) m -R 2 ] n (1), where: R 1 represents R 1 derived from a polyhydric alcohol represented by R 1 -[OH] n ; A 1 O represents an oxyalkylene group having 2 to 18 carbon atoms; R 2 represents a hydrogen atom or a hydrocarbon group having 1 to 30 carbon atoms; m represents an average addedmole number of oxyalkylene groups A 1 O's; n represents 3 or 4; and when n equals 3, m represents 30 to 150, and when n equals 4, m represents 5 to 150.
SHRINKAGE-REDUCING AGENT FOR HYDRAULIC MATERIAL AND SHRINKAGE REDUCING AGENT COMPOSITION FOR HYDRAULIC MATERIAL
SCHRUMPFUNGSREDUZIERENDES MITTEL FÜR EIN HYDRAULISCHES MATERIAL SOWIE ZUSAMMENSETZUNG MIT DEM SCHRUMPFUNGSREDUZIERENDEN MITTEL FÜR EIN HYDRAULISCHES MATERIAL
AGENT DE RÉDUCTION DE RETRAIT POUR UN MATÉRIAU HYDRAULIQUE ET COMPOSITION D'AGENT DE RÉDUCTION DE RETRAIT POUR MATÉRIAU HYDRAULIQUE
MASANAGA MARI (Autor:in)
11.07.2018
Patent
Elektronische Ressource
Englisch
IPC:
C04B
Kalk
,
LIME
/
C08F
MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
,
Makromolekulare Verbindungen, erhalten durch Reaktionen, an denen nur ungesättigte Kohlenstoff-Kohlenstoff-Bindungen beteiligt sind
/
C08G
MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
,
Makromolekulare Verbindungen, anders erhalten als durch Reaktionen, an denen nur ungesättigte Kohlenstoff-Kohlenstoff-Bindungen beteiligt sind
Europäisches Patentamt | 2015
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