TY - JOUR
T1 - Study on manufacturing technology of high strength concrete precast members with design standard strength of 300 N/MM2
AU - Kojima, Masaro
AU - Honma, Daisuke
AU - Koyama, Tomoyuki
N1 - Publisher Copyright:
© 2021 Architectural Institute of Japan. All rights reserved.
PY - 2021/2
Y1 - 2021/2
N2 - This study conducted practical development of 300N/mm2 precast concrete. As a result, the followings were found to be important, lengthen mixing time for fluidity and strength development, sufficiently deforming of the specimen using vibrator, deforming by pressurizing and depressurizing with squeeze-type pump before casting the member, and protecting form direct steam in AC-curing tank. In addition, strength development can be evaluated by effective-age of over 20°C, and the curing patterns that can achieve compressive strength of 300N/mm2 and small shrinkage is to shorten the 90°C steam-curing time and apply 180°C AC-curing over 4 hours or 150°C AC-curing over 12 hours.
AB - This study conducted practical development of 300N/mm2 precast concrete. As a result, the followings were found to be important, lengthen mixing time for fluidity and strength development, sufficiently deforming of the specimen using vibrator, deforming by pressurizing and depressurizing with squeeze-type pump before casting the member, and protecting form direct steam in AC-curing tank. In addition, strength development can be evaluated by effective-age of over 20°C, and the curing patterns that can achieve compressive strength of 300N/mm2 and small shrinkage is to shorten the 90°C steam-curing time and apply 180°C AC-curing over 4 hours or 150°C AC-curing over 12 hours.
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U2 - 10.3130/AIJT.27.24
DO - 10.3130/AIJT.27.24
M3 - Article
AN - SCOPUS:85102502566
SN - 1341-9463
VL - 27
SP - 24
EP - 29
JO - AIJ Journal of Technology and Design
JF - AIJ Journal of Technology and Design
IS - 65
ER -