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Environment Induced Cracking of Turbine Disc Steel: Effect of Organic Acids on Corrosion Fatigue of 3.5NiCrMoV Steels in High Temperature Water

机译:涡轮盘钢在环境中的开裂:有机酸对3.5NiCrMoV钢在高温水中的腐蚀疲劳的影响

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摘要

Organic acids (acetic and formic acid) are produced by the decomposition of ETA (Ethanol Amine, C_2H_7NO) used as pH controller of secondary water in nuclear power plants. Corrosion Fatigue (CF) tests (R = 0.2, 0.1Hz) were conducted to evaluate the effect of acetic acid on the CF crack growth rate in high temperature water at 150℃. Acetic acid significantly influenced the environmental cracking behavior of turbine disc steels in high temperature water. The CF crack growth rates of turbine disc steels increase as the organic acid concentration increase to a critical saturation pH value (~pH 4). Beyond the saturation value of pH, the CF crack growth rates decrease significantly. The higher CF crack growth rate of the higher pH solution in water of intermediate content range (pH 4~pH 5) of acetic acid is due to the higher content of H~+ enhancing the reduction reactions. Crack tip blunting prevents the CF cracks from growing with increasing rate in the solution of organic acid concentrations beyond the critical value.
机译:有机酸(乙酸和甲酸)是通过ETA(乙醇胺,C_2H_7NO)的分解而产生的,ETA被用作核电站二次水的pH调节剂。进行了腐蚀疲劳(CF)试验(R = 0.2,0.1Hz),以评估乙酸对150℃高温水中CF裂纹扩展速率的影响。乙酸显着影响涡轮盘钢在高温水中的环境开裂行为。涡轮盘钢的CF裂纹扩展速率随着有机酸浓度增加到临界饱和pH值(〜pH 4)而增加。超过pH的饱和值,CF裂纹的增长速度将大大降低。 pH值较高的溶液在乙酸的中间含量范围(pH 4〜pH 5)中的CF裂纹扩展速率较高,这是由于H +含量较高,从而促进了还原反应。裂纹尖端钝化可防止CF裂纹在有机酸浓度超过临界值的溶液中随着速率的增加而增长。

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