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Anomalous cyclic oxidation behaviour of an Fe-Mn-Si-Cr-Ni alloy - A finite element analysis

机译:Fe-Mn-Si-Cr-Ni合金的异常循环氧化行为-有限元分析

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In previous research, an FeMnSiCrNi alloy presented anomalous behaviour during cyclic oxidation and gained mass after mass loss by spallation. Research clarified this phenomenon, but no stress analysis had been examined. This study investigates this anomalous behaviour using finite element analysis. FeMnSiCrNi alloy oxidation generates a Mn-depleted zone (ferrite) between the substrate (austenite) and oxide layer, and models containing austenite-ferrite-oxide demonstrated that increasing ferrite thickness and roughness (metal/oxide interface) decrease oxide layer stress, helping to comprehend why the alloy stops losing mass. The main cause, increasing roughness, was derived from ferrite plastic deformation and relates to austenite-ferrite thermal expansion mismatch.
机译:在先前的研究中,FeMnSiCrNi合金在循环氧化过程中表现出异常行为,并在通过剥落而损失质量后获得质量。研究澄清了这种现象,但没有进行压力分析。本研究使用有限元分析调查了这种异常行为。 FeMnSiCrNi合金的氧化会在基底(奥氏体)和氧化物层之间生成Mn耗尽区(铁素体),而包含奥氏体-铁素体氧化物的模型表明,增加铁素体厚度和粗糙度(金属/氧化物界面)会降低氧化物层应力,从而有助于理解为什么合金不再失去质量。引起粗糙度增加的主要原因是铁素体塑性变形,与奥氏体-铁素体的热膨胀失配有关。

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