daohang fenxiangbox searchbox qikanlogonew daohangnew searchboxnew navrightzone footerzone paper

Effect of steam curing scheme on the early-age temperature field of a prefabricated concrete T-beam AITranslate

Zhengzhou University; Ningbo University of Technology; Ningbo University of Technology; Ningbo University; Zhengzhou University; Ningbo University of Technology; Ningbo University of Technology
AITranslate
Publisher: Elsevier
Share Citation Information Add to Favorites

    Scan to share on WeChat or Moments

Use WeChat scan.
Share with WeChat friends or Moments

Abstract AITranslate

Highlights • The temperature field caused by hydration heat in a 30 m full-scale prefabricated concrete T-beam was measured. • The finite element model and UMATHT subroutine of hydration heat were established. • The experimental data and FEA results were compared. • The effects of eight different steam curing schemes on the early temperature field were studied. • Three groups of effective steam curing schemes were identified. Steam curing can accelerate the hydration reaction rate of concrete, enhancing the production efficiency of prefabricated T-beams. Excessive temperature differences during steam curing could lead to early cracking of concrete and affect the durability of structures. This paper conducted experiments and numerical simulations to study the variation law of the early-age temperature field of T-beams concrete, and the aim was to seek effective steam curing schemes. The time-history law of early-age temperature variation of T-beam under the coupling effect of hydration heat and ambient temperature was measured. The early-age temperature field of T-beam during steam curing was simulated by ABAQUS and UMATHT subroutine. The effect of steam curing parametric on the early-age temperature field was discussed by five steam curing schemes. The conclusions indicated that under the effect of steam curing, the temperature difference between the interior and the surface of T-beam concrete decreased. The early temperature variation of T-beam was mostly influenced by the thermostatic temperature and thermostatic time. When the thermostatic time is set to 5 h and the thermostatic temperature exceeds 60 °C, there will be a temperature difference of over 25 °C between the surface of the T-beam and the ambient environment, which can cause cracking of the concrete surface. When the thermostatic temperature is set to 50 °C, it is recommended that the thermostatic time should not exceed 10 h.

KeyWords AITranslate

Heat of hydration of concrete Steam curing Secondary development platform Prefabricated concrete Tbeam Early temperature field
No data

Basic Information:

DOI:https://doi.org/10.1016/j.cscm.2023.e02787

Chinese Library Classification Number:

Citation Information:

Highlights • The temperature field caused by hydration heat in a 30 m full-scale prefabricated concrete T-beam was measured. • The finite element model and UMATHT subroutine of hydration heat were established. • The experimental data and FEA results were compared. • The effects of eight different steam curing schemes on the early temperature field were studied. • Three groups of effective steam curing schemes were identified. Steam curing can accelerate the hydration reaction rate of concrete, enhancing the production efficiency of prefabricated T-beams. Excessive temperature differences during steam curing could lead to early cracking of concrete and affect the durability of structures. This paper conducted experiments and numerical simulations to study the variation law of the early-age temperature field of T-beams concrete, and the aim was to seek effective steam curing schemes. The time-history law of early-age temperature variation of T-beam under the coupling effect of hydration heat and ambient temperature was measured. The early-age temperature field of T-beam during steam curing was simulated by ABAQUS and UMATHT subroutine. The effect of steam curing parametric on the early-age temperature field was discussed by five steam curing schemes. The conclusions indicated that under the effect of steam curing, the temperature difference between the interior and the surface of T-beam concrete decreased. The early temperature variation of T-beam was mostly influenced by the thermostatic temperature and thermostatic time. When the thermostatic time is set to 5 h and the thermostatic temperature exceeds 60 °C, there will be a temperature difference of over 25 °C between the surface of the T-beam and the ambient environment, which can cause cracking of the concrete surface. When the thermostatic temperature is set to 50 °C, it is recommended that the thermostatic time should not exceed 10 h.

quote

GB/T 7714-2015 [1] Pan Zou, HuiJuan Chang, Fei Wang, et al. Case Studies in Construction Materials, 2024(20). DOI:10.1016/j.cscm.2023.e02787.
MLA [1] Pan Zou, et al., Case Studies in Construction Materials, no. 20, 2024, https://doi.org/10.1016/j.cscm.2023.e02787.
APA [1] Pan Zou, HuiJuan Chang, Fei Wang, YuLiang Cai, Zhe Zhang, Zhou Zhao, & ZhongDa Lv. (2024). Case Studies in Construction Materials(20). https://doi.org/10.1016/j.cscm.2023.e02787
IEEE [1] Pan Zou, HuiJuan Chang, Fei Wang, YuLiang Cai, Zhe Zhang, Zhou Zhao, and ZhongDa Lv, Case Studies in Construction Materials, no. 20, 2024, doi: 10.1016/j.cscm.2023.e02787. keywords: {Heat of hydration of concrete;Steam curing;Secondary development platform;Prefabricated concrete Tbeam;Early temperature field}