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Assessment of martensite content in austenitic stainless steel specimens by eddy current testing

机译:用涡流试验评估奥氏体不锈钢试样中的马氏体含量

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Martensitic transformation is frequently observed in some manufacturing processes of austenitic stainless steel components, such as embedding, drawing, grinding or burnishing. The presence of martensite in an austenitic stainless steel implies a decrease in the tensile strain rate, which affects its manufacturing and, especially, its resistance to stress corrosion cracking and hydrogen embrittlement. On the other hand, the increase of the mechanical properties due to the presence of martensite, is useful for some applications, such as spring manufacturing. Hence, to know the amount of martensite present in an austenitic stainless steel is very important, especially if the martensite is quantified through a nondestructive technique. Eddy current testing (ECT) is an applicable method, the signals displaying information about the properties of the material. In this work a technique was developed to extract that information from ECT signals obtained with a conventional equipment. This martensite content could be estimated from the impedance modelling (Z) of probes coupled to lightly magnetic materials, and through adequate calibration. For the development of this method, AISI 304, 316 and 347 austenitic stainless steel specimens were used with different contents of α' martensite, which were tested with an ECT MAD8D equipment. Voltages measured during testing were mathematically transformed into the impedance plane and were compared with Z theoretical curves, showing a good correspondence. A linear relationship between the Z experimental components and the α' content of the specimens was verified, which makes this procedure suitable for the assessment of the martensite content in this type of stainless steels if adequate calibration pieces are available.
机译:马氏体相变在奥氏体不锈钢零件的某些制造过程中经常被观察到,例如包埋,拉拔,研磨或抛光。奥氏体不锈钢中存在马氏体意味着拉伸应变率降低,这会影响其制造,尤其是其抗应力腐蚀开裂和氢脆性的能力。另一方面,由于马氏体的存在,机械性能的提高对于某些应用是有用的,例如弹簧制造。因此,了解奥氏体不锈钢中存在的马氏体的量非常重要,特别是如果通过无损技术对马氏体进行定量的话。涡流测试(ECT)是一种适用的方法,信号显示有关材料特性的信息。在这项工作中,开发了一种技术,可以从使用常规设备获得的ECT信号中提取该信息。该马氏体含量可以通过与轻磁性材料耦合的探针的阻抗模型(Z)并通过适当的校准来估算。为了开发该方法,使用了AISI 304、316和347奥氏体不锈钢样品,其中含有不同含量的α'马氏体,并通过ECT MAD8D设备进行了测试。在测试过程中测得的电压在数学上转换为阻抗平面,并与Z理论曲线进行比较,显示出良好的对应关系。验证了Z实验成分与试样的α'含量之间的线性关系,这使得该程序适用于评估此类不锈钢中的马氏体含量(如果有足够的校准件的话)。

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