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首页> 外文期刊>International Journal of Reliability, Quality and Safety Engineering >CORROSION INITIATION TIME FOR REINFORCEDCONCRETE MEMBERS ALONG INDIAN COASTS: EFFECTS OF TEMPERATURE AND RELATIVE HUMIDITY - A PROBABILISTIC APPROACH
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CORROSION INITIATION TIME FOR REINFORCEDCONCRETE MEMBERS ALONG INDIAN COASTS: EFFECTS OF TEMPERATURE AND RELATIVE HUMIDITY - A PROBABILISTIC APPROACH

机译:沿印度洋的钢筋混凝土构件的腐蚀开始时间:温度和相对湿度的影响-一种可能的方法

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Corrosion initiation time of steel reinforcement for partially saturated concrete members subjected to chloride ingress is investigated at five places along Indian coasts using simplified probabilistic analysis and sensitivity of the parameters to reinforcement corrosion is studied. Previously proposed diffusion based chloride ingress model for constant surface chloride concentration and variable diffusion coefficient is used. Corrosion is initiated when the chloride concentration on steel reinforcement exceeds a threshold value. The various input parameters considered in the model are surface chloride concentration (C_s), chloride threshold value (C_(th)), Concrete cover (X), reference diffusion coefficient (D_(ref)), age (t), reference age (t_(ref)), diffusion decay index (m) and monthly temperature and relative humidity correction factors f(T) and f(h) respectively; to reference diffusion coefficient. For prediction of corrosion initiation time temperature and relative humidity data collected by India metrological Department is used and all other parameters are assumed same. A large variation in corrosion initiation time is found and therefore it becomes necessary to consider the temperature and relative humidity data in a region. Life-365 considers fully saturated condition of concrete and thus underestimates the corrosion initiation time of a reinforced concrete member. The deterministic approach uses mean values of the parameters and provides a 50% probability of corrosion initiation but the probabilistic approach provides expected time of first corrosion for chosen risk of corrosion and also gives sensitivity of parameters to probability of corrosion. Corrosion initiation time in ascending order is found at Colaba, Kanyakumari, Santacruz, Chennai and Vishakhapatnam. Corrosion initiation time is useful for owner, designer, or to an organization to take decision in time of priority of repairs, repair strategy, corrosion protection in order to optimize maintenance planning and budgeting. Planned maintenance at the optimum time is the safest and most cost effective approach.
机译:利用简化的概率分析方法,研究了印度沿海沿5个地方的部分饱和混凝土构件的钢筋腐蚀开始发生氯化物的时间,并研究了其对钢筋腐蚀的敏感性。使用先前提出的基于扩散的氯化物进入模型,用于恒定的表面氯化物浓度和可变的扩散系数。当钢筋上的氯化物浓度超过阈值时,就会开始腐蚀。模型中考虑的各种输入参数是表面氯化物浓度(C_s),氯化物阈值(C_(th)),混凝土覆盖层(X),参考扩散系数(D_(ref)),年龄(t),参考年龄( t_(ref)),扩散衰减指数(m)以及月度温度和相对湿度校正因子f(T)和f(h);参考扩散系数。为了预测腐蚀开始时间,使用了印度计量部门收集的温度和相对湿度数据,并假设所有其他参数相同。发现腐蚀起始时间有很大的变化,因此有必要考虑一个区域的温度和相对湿度数据。 Life-365考虑了混凝土的完全饱和状态,因此低估了钢筋混凝土构件的腐蚀开始时间。确定性方法使用参数的平均值,并提供50%的腐蚀开始概率,但是概率性方法为选定的腐蚀风险提供了预期的首次腐蚀时间,并且还提供了参数对腐蚀概率的敏感性。在Colaba,Kanyakumari,Santacruz,Chennai和Vishakhapatnam中发现了腐蚀上升时间的升序。腐蚀开始时间对于所有者,设计者或组织而言是非常有用的,以便他们可以在维修,维修策略,腐蚀防护的优先级时做出决定,从而优化维护计划和预算。在最佳时间进行有计划的维护是最安全,最具成本效益的方法。

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