硫酸盐离子在混凝土中在压缩负荷和干湿循环的结合作用下扩散
Jian Cao1, Tao Liu1, Ziyang Han1
1School of Civil and Architecture Engineering, Nanchang Institute of Technology, Nanchang 330099, China.
Mathematical biosciences and engineering : MBE
|June 16, 2023
概括
这项研究开发了一种多参数细胞自动机 (MPCA) 模型,以在各种条件下模拟混凝土中的硫酸盐离子扩散. 该模型准确地预测了硫酸盐扩散,这对于混凝土的耐用性至关重要.
科学领域:
- 土木工程 土木工程是指土木工程.
- 材料科学 材料科学 材料科学
- 化学工程是化学工程的重要组成部分.
背景情况:
- 硫酸盐离子扩散显著影响混凝土的性能和耐用性.
- 了解合环境和机械负荷下的依赖时间的硫酸盐离子分布至关重要.
- 现有的模型可能无法完全捕捉影响硫酸盐扩散的复杂相互作用.
研究的目的:
- 开发和验证一个多参数细胞自动机 (MPCA) 模型,用于模拟混凝土中的硫酸盐离子扩散.
- 为了研究压力应力,沉浸条件和硫酸盐度对扩散的影响.
- 评估细胞自动机理论对于模拟复杂的混凝土降解过程的适用性.
主要方法:
- 在压力负载,干湿周期和硫酸盐攻击下对硫酸盐离子分布的实验测试.
- 开发一个多参数蜂自动机 (MPCA) 模型,包括负载,浸泡和度变量.
- 将MPCA模型模拟与实验数据进行比较,包括压力和硫酸盐溶液度.
主要成果:
- MPCA模型成功模拟了混凝土中的硫酸盐离子扩散.
- 数字模拟显示了与各种参数的实验数据的良好一致.
- 该模型的有效性与现实世界的测试结果进行了验证.
结论:
- 已建立的MPCA模型是模拟混凝土中硫酸盐离子扩散的可行工具.
- 该模型准确地捕捉了负载,沉浸和硫酸盐度的影响.
- 细胞自动机理论为预测混凝土硫酸盐攻击提供了一个强大的框架.
更多相关视频
06:27Expression of Cementitious Pore Solution and the Analysis of Its Chemical Composition and Resistivity Using X-ray Fluorescence
Published on: September 23, 2018
9.3K
10:00Experimental Protocol to Determine the Chloride Threshold Value for Corrosion in Samples Taken from Reinforced Concrete Structures
Published on: August 31, 2017
15.5K
相关概念视频
Sulfate Attack on Concrete
199
Sulfate attack on concrete is a deterioration process characterized by a whitish discoloration beginning at the edges and corners, accompanied by cracking and spalling. This phenomenon occurs when sulfates react with the components of hardened concrete, forming compounds like calcium sulfate and calcium sulfoaluminate which occupy more space than the substances they replace, causing the concrete to expand and disrupt.
Sulfates from sources like soil, groundwater, or industrial effluents...
Sulfates from sources like soil, groundwater, or industrial effluents...
199
Effect of Sea Water on Concrete
301
Concrete exposed to seawater can undergo degradation like the dissolution of ettringite and gypsum, increasing the material's porosity and decreasing its strength. In contrast, the crystallization of salts within the concrete's pores can cause expansion, particularly above the waterline where evaporation occurs. Nonetheless, this expansion only happens when seawater, enabled by the concrete's permeability, manages to infiltrate the structure.
Concrete in areas between tide marks,...
Concrete in areas between tide marks,...
301
Corrosion of Reinforcement
218
The corrosion of steel reinforcement within concrete is a process influenced by the material's inherent properties and external factors. The high pH level of around 13, provided by calcium hydroxide present in concrete, initially protects the steel reinforcement by promoting the formation of a passive iron oxide layer on its surface.
However, over time and under certain conditions like carbonation, chloride ingress, and cracking this protective state can be compromised. Steel has areas with...
However, over time and under certain conditions like carbonation, chloride ingress, and cracking this protective state can be compromised. Steel has areas with...
218
Drying Shrinkage
108
When hardened concrete is exposed to air with a relative humidity of less than 100 percent, it begins to lose the free water within its capillaries. As this water evaporates, the water initially adsorbed onto the calcium silicate hydrates migrates towards these now empty spaces and eventually evaporates as well. Over time, as more water leaves, the volume of the concrete decreases, a phenomenon known as drying shrinkage.
A portion of this drying shrinkage can be reversed; if the concrete is...
A portion of this drying shrinkage can be reversed; if the concrete is...
108
Alkali Aggregate Reaction in Concrete
141
The alkali-aggregate reaction in concrete involves natural siliceous minerals in aggregates reacting with alkaline hydroxides derived from cement alkalis. This reaction forms an alkali-silica gel that absorbs water, swells, and increases in volume, which is confined by the surrounding cement paste, creating internal pressures that crack and disrupt the concrete. The extent of expansion and damage can be partly attributed to the alkali-silica reaction's osmotic hydraulic pressure and the...
141
Testing Water Quality
144
When the quality of water for concrete preparation is uncertain, its impact on the setting time of cement and compressive strength of mortar is assessed by comparison with de-ionized or distilled water benchmarks. American Society for Testing and Materials (ASTM) C1602 requires the setting times to be within 90 minutes of the control, British Standard (BS) 3146:1980 allows a 30-minute variance in the initial setting, while British Standards European Norm (BS EN) 1008 specifies initial setting...
144
