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Probabilistic Analysis of Corrosion-Induced Resistance Degradation of Reinforced Concrete Bridge Beam under Incomplete Information

机译:不完全信息下钢筋混凝土桥梁腐蚀抗性降解的概率分析

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The influencing information of structural resistance cannot be exactly inspected due to limitation of the experimental means, time and space. The study must be conducted by incomplete information and the uncertainty is enhanced. The uncertainty consists of fuzziness, randomness, and faultiness of knowledge. The faultiness of knowledge is the weak uncertainty, and can be incorporated into fuzziness and randomness. A novel probabilistic analysis method of corrosion-induced resistance degradation subject to fuzziness and randomness is developed in this paper. The reinforcing bar corrosion is induced by chloride ion attack in reinforced concrete (RC) bridge. The relationship between steel area corrosion rate and yield strength is presented based on the experimental investigation on mechanical property of corroded reinforcement. The fuzzy time-variant probabilistic analysis of resistance degradation is illustrated by an example problem of RC bridge beam. The result can be used to time-variant reliability-based evaluation for reinforced concrete.
机译:由于实验手段,时间和空间的限制,不能精确地检查结构阻力的影响信息。必须通过不完整的信息进行该研究,并提高不确定性。不确定性由知识的模糊,随机性和故障组成。知识的故障是弱的不确定性,并且可以掺入模糊和随机性。本文开发了一种新的腐蚀抗性降解腐蚀性抗性降解的概率分析方法。通过钢筋混凝土(RC)桥中的氯离子攻击诱导加强杆腐蚀。基于腐蚀加固力学性能的实验研究,提出了钢结构腐蚀速率和产量强度的关系。通过RC桥梁光束的示例问题说明了电阻劣化的模糊时变概率分析。该结果可用于钢筋混凝土的基于变体的可靠性评估。

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