Academic Journal

An Investigation of the Influence of Paste's Rheological Characteristics on the Tensile Creep of HVFAC at Early Ages.

التفاصيل البيبلوغرافية
العنوان: An Investigation of the Influence of Paste's Rheological Characteristics on the Tensile Creep of HVFAC at Early Ages.
المؤلفون: Ni, Tongyuan1,2 (AUTHOR) 211122060011@zjut.edu.cn, Chen, Kang1 (AUTHOR) 211123060045@zjut.edu.cn, Gao, Fangshi1 (AUTHOR) 211124060034@zjut.edu.cn, Li, Xingrui1 (AUTHOR) kongdeyu@zjut.edu.cn, Yang, Yang1,2 (AUTHOR) hznity@zjut.edu.cn, Kong, Deyu1,2 (AUTHOR), Yao, Shuifeng1 (AUTHOR)
المصدر: Materials (1996-1944). Jan2025, Vol. 18 Issue 2, p305. 20p.
مصطلحات موضوعية: *FLY ash, *CREEP (Materials), *RHEOLOGY, *CHINESE language, *CONCRETE
مستخلص: The rheological properties of concrete paste significantly influence its tensile creep behavior. In this study, the tensile creep behavior of high-volume fly ash concrete (HVFAC) employing the same cementitious pastes was experimentally investigated, and the rheological properties of the paste containing a high volume of fly ash using the nanoindentation (NI) technique was investigated in order to explore the influence of the paste's rheological properties (such as micro-mechanical properties and microscopic creep) on the early-age tensile creep of HVFAC. The results demonstrated that the micro-strain of paste containing a high volume of fly ash (HVFA) showed a larger value than that without fly ash. As the test age extends, a decreasing trend in microscopic creep was observed which could be attributed to the growth of the content of HD C–S–H (high density C–S–H) gel. Moreover, within the same age period, the experimental data revealed that the incorporation of fly ash resulted in the reduction of the values of the creep modulus C and characteristic time τ. The effects of fly ash dosages and loading age on the creep properties of concrete was consistent with the micro-creep properties of the cementitious paste. The tensile specific creep values derived from the ZC ("ZC" are initials for the word "self-developed" in Chinese) model based on nanoindentation data closely match those obtained from experiments. [ABSTRACT FROM AUTHOR]
قاعدة البيانات: Academic Search Index
الوصف
تدمد:19961944
DOI:10.3390/ma18020305