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Comparative effects of CO$$_2$$-curing condition on phase assemblage and mechanical response of C$$_{3}$$S pastes; Insights from atomic, crystallographic, and macroscopic deformations

CO$$_2$$硬化条件がC$$_{3}$$Sペーストの相構成および力学的挙動に及ぼす影響の比較; 原子・結晶学的および巨視的な変形からの知見

Cho, S.*; Im, S.*; 冨永 亜希; 菖蒲 敬久  ; Bae, S.*; 他5名*

Cho, S.*; Im, S.*; Tominaga, Aki; Shobu, Takahisa; Bae, S.*; 5 of others*

This study investigates the microstructural characteristics of C$$_{3}$$S pastes subjected to various CO$$_{2}$$- curing regimes and their deformation mechanics at atomic, crystallographic, and macroscopic scales. Specifically, the effects of CO$$_{2}$$ delivery methods and curing pressure are compared. In this studies conditions resulted in severe oscillation in the crystal and atomic scale stress-strain curves due to significant inhomogeneity in the matrix, as evaluated based on the radial distribution of pores. Enclosed CO$$_{2}$$ with atmospheric pressure induced the formation of homogeneous and interlocked structures imparting constant strain propagation. This multiscale stress-strain analyses suggest that a uniform phase distribution facilitates load transfer between reaction products, thereby possibly improving mechanical performance. Additionally, these findings provide advanced insights into the relationships between CO$$_{2}$$-curing conditions, phase assemblage, and mechanical response.

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分野:Construction & Building Technology

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