MATHEMATICAL MODELING OF PITTING RESISTANCE IN 06XH28МДТ ALLO-HEAT EXCHANGERS EXPOSED TO CIRCULATING WATERS

A. Dzhus, O. Narivskyi, S. Byelikov, S. Subbotin, T. Pulina, S. Leoshchenko
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Abstract

Purpose. The aim of the study is to develop mathematical models that describe the dependences of critical pitting temperatures of 06ХН28МДТ alloy (analogous to AISI904L steel) in model circulating waters with pH 4...8 and chloride concentration from 350 to 600 mg/L. Research methods. The developed mathematical models are based on multivariate linear regressions of the first order and multivariate quadratic regressions with a combination of features. Results. It has been established that the critical pitting temperatures of the 06ХН28МДТ alloy increase with increasing pH of model circulating waters, Ni, Mo content, volume of titanium nitrides, and decreasing chloride concentration in the medium, Cr content within the standard, and average austenite grain diameter. Scientific novelty. Based on the established dependencies between the critical pitting temperatures of the 06ХН28МДТ alloy and its chemical composition within the standard and structural heterogeneity, the mechanisms of their influence on the pitting resistance of this structural material in recycled industrial waters were developed. It was found that the size of inclusions of titanium nitrides and oxysulfides in the alloy does not affect the probability of the formation and growth of stable pitting in their vicinity in chloride-containing media. Practical value. To apply the developed mathematical models to the selection of the most resistant to pitting in recycled industrial waters of 06ХН28МДТ alloy melts and to predict their pitting during the use of heat exchangers have been offered.
暴露于循环水中的06xh28МДТ allow -热交换器点蚀电阻的数学建模
目的。该研究的目的是建立数学模型,描述06ХН28МДТ合金(类似于AISI904L钢)在pH为4的模型循环水中的临界点蚀温度的依赖性。8、氯化物浓度350 ~ 600mg /L。 研究方法。所建立的数学模型是基于一阶多元线性回归和多元二次回归的特征组合。 结果。结果表明:06ХН28МДТ合金的临界点蚀温度随着模型循环水pH值、Ni、Mo含量、氮化钛体积、介质中氯离子浓度、Cr含量在标准范围内、平均奥氏体晶粒直径的降低而升高;科学的新奇。基于已建立的06ХН28МДТ合金的临界点蚀温度与其在标准范围内的化学成分和结构非均质性之间的依赖关系,研究了它们对该结构材料在再生工业水中抗点蚀性能的影响机制。结果表明,在含氯介质中,合金中氮化钛和氧化硫化物夹杂物的大小不影响其附近稳定点蚀形成和生长的概率。 实用价值。将所建立的数学模型应用于06ХН28МДТ合金熔体在循环工业水中抗点蚀的选择,并对其在换热器使用过程中的点蚀进行预测。
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