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首页> 外文期刊>American Journal of Applied Scientific Research >Development of a Corrosion Model for Prediction of Atmospheric Corrosion of Mild Steel
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Development of a Corrosion Model for Prediction of Atmospheric Corrosion of Mild Steel

机译:预测低碳钢大气腐蚀的腐蚀模型的建立

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Corrosion is a naturally occurring phenomenon commonly defined as the deterioration or loss of functions of materials (usually metals) due to the effect of the environmental factors. According to the nature of environment, corrosion can be broadly categorized as corrosion in atmosphere, corrosion in water, corrosion in sea, corrosion in soil etc. Among these types, corrosion of steel in atmosphere is a problem of great interest. Since steel is the most extensively used structural material in industry, and it is well accepted fact that the cost of material deterioration in an atmospheric environment is enormous. Corrosion of metal in atmosphere is inevitable but is controllable with the aid of proper corrosion management systems. For the implementation of a proper corrosion management system it is necessary to study the corrosive nature (corroivity) of the operation environment of a material. Development of a relationship between corrosivity and environmental variables such as relative humidity, temperature, salinity etc. which is known as Corrosion modeling is widely used method use for the evaluation of corrosivity of atmosphere. This paper describes the work carried out to formulate a model for the prediction of corrosion of mild steel under Sri Lankan atmospheric conditions. For this purpose, a model was proposed which is based on published literature on corrosion modeling. The proposed model was calibrated by the data obtained from field exposure tests which were conducted in four different locations in Sri Lanka. The chi-square goodness of fit test has been used to find out the performance of model. The model showed good performance with goodness of fit at 95% significance level. Finally, the model was validated with different set of data and the prediction performance of this model shows a good capability on forecasting of the rate of corrosion of mild steel in different atmospheric conditions in Sri Lanka.
机译:腐蚀是一种自然发生的现象,通常被定义为由于环境因素的影响,材料(通常是金属)的功能退化或丧失。根据环境的性质,腐蚀可大致分为大气腐蚀,水腐蚀,海腐蚀,土壤腐蚀等。在这些类型中,大气腐蚀是引起人们极大关注的问题。由于钢是工业上使用最广泛的结构材料,并且众所周知的事实是,大气环境中材料劣化的代价是巨大的。金属在大气中的腐蚀是不可避免的,但借助适当的腐蚀管理系统可以控制。为了实施适当的腐蚀管理系统,有必要研究材料工作环境的腐蚀性质(腐蚀性)。腐蚀与环境变量(例如相对湿度,温度,盐度等)之间关系的发展被称为腐蚀建模,被广泛用于评估大气腐蚀的方法。本文描述了为建立低碳钢在斯里兰卡大气条件下的腐蚀预测模型而进行的工作。为此,提出了一个模型,该模型基于已发表的有关腐蚀建模的文献。通过在斯里兰卡四个不同地点进行的野外暴露测试获得的数据对提出的模型进行了校准。拟合检验的卡方优度已用于找出模型的性能。该模型在95%的显着性水平下显示出良好的性能和拟合优度。最后,该模型用不同的数据集进行了验证,该模型的预测性能显示出对斯里兰卡不同大气条件下低碳钢腐蚀速率的预测能力。

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