Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
基于X-CT的高温后再生保温混凝土损伤分析. / Miao, Yanchun; Zhang, Yu; Selyutina, Nina; Smirnov, Ivan; Deng, Kezhao; Li, Beibei; Du, Sizhe; Liu, Yuanzhen; Ma, Gang.
в: Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica, Том 39, № 6, 06.2022, стр. 2829-2843.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - 基于X-CT的高温后再生保温混凝土损伤分析
AU - Miao, Yanchun
AU - Zhang, Yu
AU - Selyutina, Nina
AU - Smirnov, Ivan
AU - Deng, Kezhao
AU - Li, Beibei
AU - Du, Sizhe
AU - Liu, Yuanzhen
AU - Ma, Gang
N1 - Publisher Copyright: Copyright ©2022 Acta Materiae Compositae Sinica. All rights reserved.
PY - 2022/6
Y1 - 2022/6
N2 - The occurrence of fire often leads to the damage and deterioration of the micro-meso-structure of concrete materials, which is reflected in the decomposition of hydrates, the coarsening of pore structure, thermal cracking, and the cracking induced by the increase of water vapor pressure, which in turn lead to the decline of the macroscopic mechanical properties and durability of materials. The meso-regulatory function of the lightweight, high-strength, internally porous, and highly thermally stable glazed hollow beads (GHB) can improve the high-temperature resistance of concrete. In order to study the characteristics of the internal meso-scale structure and crack evolution of recycled aggregate thermal insulation concrete (RATIC) subjected to high temperature, the cube compressive strength test and CT test were firstly carried out on RATIC after high temperature. Then the RATIC meso-scale model was established based on the real structure by the improved image segmentation algorithm based on the adaptive threshold method and the regional growth method (IISA). The process of initiation, development and coalescence of internal microcracks in RATIC with different GHB and recycled coarse aggregate (RCA) contents with temperature change were studied. Furthermore, the failure patterns of RATIC under simulated conditions and CT re-sults were analyzed by contrast, which show that GHB can significantly block the extension of cracks, provide a release channel for vapor pressure, alleviate cracks in the mortar area and pore boundaries, slow down the spread of heat in the concrete. It has a positive effect on improving the heat-induced damage resistance of concrete.
AB - The occurrence of fire often leads to the damage and deterioration of the micro-meso-structure of concrete materials, which is reflected in the decomposition of hydrates, the coarsening of pore structure, thermal cracking, and the cracking induced by the increase of water vapor pressure, which in turn lead to the decline of the macroscopic mechanical properties and durability of materials. The meso-regulatory function of the lightweight, high-strength, internally porous, and highly thermally stable glazed hollow beads (GHB) can improve the high-temperature resistance of concrete. In order to study the characteristics of the internal meso-scale structure and crack evolution of recycled aggregate thermal insulation concrete (RATIC) subjected to high temperature, the cube compressive strength test and CT test were firstly carried out on RATIC after high temperature. Then the RATIC meso-scale model was established based on the real structure by the improved image segmentation algorithm based on the adaptive threshold method and the regional growth method (IISA). The process of initiation, development and coalescence of internal microcracks in RATIC with different GHB and recycled coarse aggregate (RCA) contents with temperature change were studied. Furthermore, the failure patterns of RATIC under simulated conditions and CT re-sults were analyzed by contrast, which show that GHB can significantly block the extension of cracks, provide a release channel for vapor pressure, alleviate cracks in the mortar area and pore boundaries, slow down the spread of heat in the concrete. It has a positive effect on improving the heat-induced damage resistance of concrete.
KW - CT
KW - High temperature
KW - Image segmentation
KW - Meso-scale model
KW - Recycled aggregate thermal insulation concrete
UR - http://www.scopus.com/inward/record.url?scp=85132830562&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/cfeb467b-9ea4-35a0-b118-f4a113e5fa25/
U2 - 10.13801/j.cnki.fhclxb.20210716.007
DO - 10.13801/j.cnki.fhclxb.20210716.007
M3 - статья
AN - SCOPUS:85132830562
VL - 39
SP - 2829
EP - 2843
JO - Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica
JF - Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica
SN - 1000-3851
IS - 6
ER -
ID: 84795299