Li Yuanke, Qiao Hongxia, Yang An
School of Civil Engineering, Lanzhou University of Technology, Lanzhou 730050, China.
Gansu Advanced Civil Engineering Materials Engineering Research Center, Lanzhou 730050, China.
Materials (Basel). 2023 Mar 22;16(6):2521. doi: 10.3390/ma16062521.
The constant current accelerated corrosion test was used to study the durability of magnesium oxychloride-coated reinforced concrete (MOCRC) in order to solve the problem of MOCRC's durability. The relative dynamic elastic modulus was utilized as the failure threshold to evaluate the concrete durability, and the collected life data of concrete under different cover thickness were acquired. On the basis of the Gumbel distribution, the probability analysis can be used to study and foretell the life data. The results show that when the durability is evaluated by the relative mass and the relative dynamic modulus of elasticity, the durability of MOCRC with a larger protection layer thickness is better; the relative dynamic modulus of elasticity can better reflect the durability change in MOCRC than the relative mass. When the Gumbel distribution is used for durability analysis, the calculated value of the model and the life data have a relatively high degree of fit, which can provide a reference basis for the durability evaluation of concrete.
采用恒流加速腐蚀试验研究氯氧镁水泥涂层钢筋混凝土(MOCRC)的耐久性,以解决MOCRC耐久性问题。利用相对动弹性模量作为破坏阈值来评估混凝土耐久性,并获取不同保护层厚度下混凝土的寿命数据。基于耿贝尔分布,可进行概率分析来研究和预测寿命数据。结果表明,当通过相对质量和相对动弹性模量评估耐久性时,保护层厚度较大的MOCRC耐久性更好;相对动弹性模量比相对质量能更好地反映MOCRC耐久性变化。当采用耿贝尔分布进行耐久性分析时,模型计算值与寿命数据拟合度较高,可为混凝土耐久性评估提供参考依据。