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Saturated low frequency eddy current technique applied to microstructure phase quantification in duplex stainless steel

机译:饱和低频涡流技术在双相不锈钢组织相定量中的应用

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Duplex stainless steel (DSS) presents a good combination of mechanical properties and high corrosion resistance. Its microstructure is composed of two phases with different physical properties: delta ferrite and gamma austenite. The best properties of DSS for in service applications are achieved when these phases are in equal proportions. However, exposition to high temperatures, may entail undesired consequences impairing the mechanical and corrosion properties of the material. Eddy current testing (ECT) has already been used for DSS inspection and microstructure characterization, mainly to detect the presence of deleterious phases, such as sigma. However, conventional ECT was not able to quantify different amounts of austenite and ferrite in the absence of deleterious phases. The present study focuses on the experimental and computational problem of DSS inspection using ECT in saturated magnetic conditions in order to identify different amounts of austenite and ferrite within the DSS microstructure. Samples containing ferrite to austenite ratio equal to 50/50, 70/30 and 80/20 respectively were brought to saturation as designed in the simulations and the ECT was applied presenting a very good result. Saturated low frequency ECT condition proved to be a reliable methodology in quantifying delta ferrite and gamma austenite phases in DSS.
机译:双相不锈钢(DSS)具有良好的机械性能和高耐腐蚀性。它的微观结构由两个具有不同物理性质的相组成:δ铁素体和γ奥氏体。当这些阶段的比例相等时,将获得用于服务应用程序的DSS最佳性能。但是,暴露于高温下可能会带来不希望的后果,从而损害材料的机械和腐蚀性能。涡流测试(ECT)已用于DSS检查和微观结构表征,主要用于检测有害相的存在,例如sigma。然而,在没有有害相的情况下,常规ECT不能量化不同数量的奥氏体和铁素体。本研究着重于在饱和磁性条件下使用ECT进行DSS检查的实验和计算问题,以便识别DSS微结构内的不同量的奥氏体和铁素体。如模拟中所设计的,将分别包含等于50 / 50、70 / 30和80/20的铁素体与奥氏体比的样品达到饱和,并且应用ECT表现出非常好的结果。事实证明,饱和低频ECT条件是定量分析DSS中δ铁素体和γ奥氏体相的可靠方法。

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