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Distribution Map of Frost Resistance for Cement-Based Materials Based on Pore Structure Change

机译:基于孔隙结构变化的水泥基材料抗冻性分布图

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摘要

This paper presents a prediction method and mathematical model based on experimental results for the change in pore structure of cement-based materials due to environmental conditions. It focuses on frost damage risk to cement-based materials such as mortar. Mortar specimens are prepared using water, ordinary Portland cement, and sand and the pore structure is evaluated using mercury intrusion porosimetry. New formulas are proposed to describe the relationship between the pore structure change and the modified maturity and to predict the durability factor. A quantitative prediction model is established from a modified maturity function considering the influences of environmental factors like temperature and relative humidity. With this model, the frost resistance of cement-based materials can be predicted based on weather data. Using the prediction model and climate data, a new distribution map of frost damage risk is created. It is found that summer weather significantly affects frost resistance, owing to the change in pore structure of cement-based mortar. The model provides a valuable tool for predicting frost damage risk based on weather data and is significant for further research.
机译:本文基于实验结果,提出了基于环境条件的水泥基材料孔隙结构变化的预测方法和数学模型。它着重于对水泥基材料(如砂浆)的霜冻破坏风险。用水,普通硅酸盐水泥和沙子制备砂浆标本,并使用压汞法评估孔隙结构。提出了新的公式来描述孔结构变化与改性成熟度之间的关系并预测耐久性因子。考虑到环境因素(例如温度和相对湿度)的影响,从修正的成熟度函数建立定量预测模型。使用此模型,可以基于天气数据预测水泥基材料的抗冻性。使用预测模型和气候数据,创建了新的霜冻破坏风险分布图。发现夏季天气由于水泥基砂浆孔结构的变化而显着影响抗冻性。该模型为基于天气数据预测霜冻灾害风险提供了有价值的工具,对于进一步研究具有重要意义。

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