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不同膨胀剂对经历恶劣温度历程的钢管核心混凝土变形性能的影响

Effect of Different Expansive Agents on the Deformation Properties of Core Concrete in a Steel Tube with a Harsh Temperature History.

作者信息

Lu Anqun, Xu Wen, Wang Qianqian, Wang Rui, Ye Zhiyuan

机构信息

State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Research Institute of Building Science, Nanjing 210008, China.

Research Institute of Jiangsu Sobute New Materials Co., Ltd., Nanjing 211103, China.

出版信息

Materials (Basel). 2023 Feb 21;16(5):1780. doi: 10.3390/ma16051780.

Abstract

The shrinkage of core concrete during construction is the key reason for the separation of steel pipes and core concrete. Utilizing expansive agents during cement hydration is one of the main techniques to prevent voids between steel pipes and core concrete and increase the structural stability of concrete-filled steel tubes. The expansion and hydration properties of CaO, MgO, and CaO + MgO composite expansive agents in C60 concrete under variable temperature conditions were investigated. The effects of the calcium-magnesium ratio and magnesium oxide activity on deformation are the main parameters to consider when designing composite expansive agents. The results showed that the expansion effect of CaO expansive agents was predominant in the heating stage (from 20.0 °C to 72.0 °C at 3 °C/h), while there was no expansion in the cooling stage (from 72.0 °C to 30.0 °C at 3 °C/d, and then to 20.0 °C at 0.7 °C/h); the expansion deformation in the cooling stage was mainly caused by the MgO expansive agent. With the increase in the active reaction time of MgO, the hydration of MgO in the heating stage of concrete decreased, and the expansion of MgO in the cooling stage increased. During the cooling stage, 120 s MgO and 220 s MgO resulted in continuous expansion, and the expansion curve did not converge, while 65 s MgO reacted with water to form brucite in large amounts, leading to its lower expansion deformation during the later cooling process. In summary, the CaO and 220 s MgO composite expansive agent in the appropriate dosage is suitable for compensating for the shrinkage of concrete in the case of a fast high-temperature rise and slow cooling rate. This work will guide the application of different types of CaO-MgO composite expansive agents in concrete-filled steel tube structures under harsh environmental conditions.

摘要

施工过程中核心混凝土的收缩是导致钢管与核心混凝土分离的关键原因。在水泥水化过程中使用膨胀剂是防止钢管与核心混凝土之间出现空隙并提高钢管混凝土结构稳定性的主要技术之一。研究了CaO、MgO以及CaO + MgO复合膨胀剂在变温条件下于C60混凝土中的膨胀及水化性能。钙镁比和氧化镁活性对变形的影响是设计复合膨胀剂时需要考虑的主要参数。结果表明,CaO膨胀剂在升温阶段(以3℃/h从20.0℃升至72.0℃)膨胀效果显著,而在降温阶段(以3℃/d从72.0℃降至30.0℃,然后以0.7℃/h降至20.0℃)无膨胀现象;降温阶段的膨胀变形主要由MgO膨胀剂引起。随着MgO活性反应时间的增加,混凝土升温阶段MgO的水化作用减弱,降温阶段MgO的膨胀作用增强。在降温阶段,120s MgO和220s MgO产生持续膨胀,膨胀曲线不收敛,而65s MgO与水大量反应生成水镁石,导致其在后续降温过程中膨胀变形较小。综上所述,适当用量的CaO与220s MgO复合膨胀剂适用于高温快速上升且降温速率缓慢情况下混凝土收缩的补偿。本研究将指导不同类型的CaO - MgO复合膨胀剂在恶劣环境条件下钢管混凝土结构中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca1d/10004253/fbb5c27ebff0/materials-16-01780-g001.jpg

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