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首页> 外文期刊>Journal of spectroscopy >Evaluation of Temper Embrittlement of 30Cr2MoV Rotor Steels Using Electrochemical Impedance Spectroscopy Technique
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Evaluation of Temper Embrittlement of 30Cr2MoV Rotor Steels Using Electrochemical Impedance Spectroscopy Technique

机译:电化学阻抗谱技术评估30Cr2MoV转子钢的回火脆化

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Temper embrittlement tends to occur in the turbine rotor after long running, which refers to the decrease in notch toughness of alloy steels in a certain temperature range (e.g., 400°C to 600°C). The severity of temper embrittlement must be monitored timely to avoid further damagement, and the fracture appearance transition temperature (FATT50) is commonly used as an indicator parameter to characterize the temper embrittlement. Compared with conventional destructive methods (e.g., small punch test), nondestructive approaches have drawn significant attention in predicting the material degradation in turbine rotor steels without impairing the integrity of the components. In this paper, laboratory experiments were carried out based on a nondestructive method, electrochemical impedance spectroscopy (EIS), with groups of lab-charged specimens for predicting the temper embrittlement (FATT50) of turbine rotor steel. The results show that there was a linear relationship of interfacial impedance of the specimens and their FATT50values. The predictive error based on the experiment study is within the range of ±15°C, indicating the predicting model is precise, effective, and reasonable.
机译:长时间运转后,涡轮转子容易发生回火脆化,这是指合金钢在一定温度范围(例如400℃至600℃)下的缺口韧性降低。必须及时监测回火脆化的严重程度,以避免进一步的损坏,并且通常使用断口形貌转变温度(FATT50)作为表征回火脆化的指标参数。与传统的破坏性方法(例如小冲孔试验)相比,非破坏性方法在预测涡轮转子钢的材料降解而不损害组件完整性的过程中引起了极大的关注。在本文中,基于无损方法电化学阻抗谱(EIS)进行了实验室实验,并使用多组实验室荷电样品来预测涡轮转子钢的回火脆化(FATT50)。结果表明,样品的界面阻抗与其FATT50值呈线性关系。基于实验研究的预测误差在±15°C范围内,表明该预测模型准确,有效,合理。

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