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考虑温度和湿度随机性的氯离子侵蚀下钢筋混凝土梁的腐蚀概率与抗弯强度

The Corrosion Probability and Flexural Strength of an RC Beam under Chloride Ingress Considering the Randomness of Temperature and Humidity.

作者信息

Pang Sen, Yu Ming-Kai, Zhu Hong-Guang, Yi Cheng

机构信息

School of Mechanics and Civil Engineering, China University of Mining and Technology-Beijing, Beijing 100083, China.

出版信息

Materials (Basel). 2020 May 14;13(10):2260. doi: 10.3390/ma13102260.

Abstract

The load capacity of reinforced concrete structure will decrease by chloride ingress in coastal region. In this paper, the corrosion probability and flexural strength of a typical reinforced concrete beam design under the influence of temperature and humidity was obtained by the Monte Carlo method. The relationship between flexural strength, temperature, relative humidity, and geometric parameters was established. The annual average temperature and relative humidity were treated as random variables together with the geometric size and concrete compressive strength. The corrosion probability and flexural strength in a wave splashing zone, coastal atmospheric zone, and offshore atmospheric zone were calculated. The results show that the corrosion probabilities of the three regions are obviously different. When the standard deviation of temperature is less than 1.5 °C, the temperature can be treated as a constant in the calculation of the concrete cracking probability in the wave splashing zone. A binary logistic regression formula was given to predict whether the randomness of temperature and humidity should be considered in the offshore atmospheric zone. When the standard deviation of the temperature is less than 1 °C, the temperature randomness has no significant effect on the flexural strength of beams in the wave splashing zone. The flexural strength distribution conforms to the normal distribution in the early stage of service and the Weibull distribution after concrete cracking.

摘要

在沿海地区,氯化物侵入会导致钢筋混凝土结构的承载能力下降。本文采用蒙特卡罗方法,得到了典型钢筋混凝土梁在温度和湿度影响下的腐蚀概率及抗弯强度。建立了抗弯强度与温度、相对湿度及几何参数之间的关系。将年平均温度和相对湿度与几何尺寸、混凝土抗压强度一同视为随机变量。计算了浪溅区、沿海大气区和近海大气区的腐蚀概率及抗弯强度。结果表明,这三个区域的腐蚀概率明显不同。当温度标准差小于1.5℃时,在计算浪溅区混凝土开裂概率时,温度可视为常数。给出了一个二元逻辑回归公式,用于预测近海大气区是否应考虑温度和湿度的随机性。当温度标准差小于1℃时,温度随机性对浪溅区梁的抗弯强度无显著影响。抗弯强度分布在服役初期符合正态分布,混凝土开裂后符合威布尔分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4692/7288091/21cd6d7fa16d/materials-13-02260-g001.jpg

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