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Experimental Investigation and Analytical Prediction of σ-Phase Precipitation in AISI 316L Austenitic Stainless Steel

机译:AISI 316L奥氏体不锈钢中σ相析出的实验研究和分析预测

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摘要

The phase precipitation in industrial AISI 316L stainless steel during aging for up to 80,000 hours between 823 K and 1073 K (550 °C and 800 °C) lias been studied using transmission electron microscopy, scanning transmission electron microscopy, and carbon replica energy-dispersive X-ray microanalysis. Three phases were identified: Chromium carbides (M23C6), Laves phase ( η), and cr-phase (Fe-Cr). M_(23)C_6 carbide precipitation occurred firstly and was followed by the η and cr-phases at grain boundaries when the aging temperature is higher than 873 K (600 °C). Precipitation and growth of M_(23)C_6 create chromium depletion zones at the grain boundaries and also retard the a-phase formation. Thus, the cr-phase is controlled by the kinetic of chromium bulk diffusion and can appear only when the chromium reaches, at grain boundaries and at the M_(23)C_6/y and M_(23)C_6/η/y interfaces, content higher than a critical value obtained by self-healing. An analytical model, based on equivalent chromium content, has been established in this study and successfully validated to predict the time-temperature— precipitation diagram of the er-phase. The obtained diagram is in good agreement with the experimental results.
机译:使用透射电子显微镜,扫描透射电子显微镜和碳复制能量分散技术研究了工业AISI 316L不锈钢在823 K和1073 K(550°C和800°C)之间老化80,000小时后的相沉淀。 X射线显微分析。确定了三个相:碳化铬(M23C6),拉夫斯相(η)和铬相(Fe-Cr)。当时效温度高于873 K(600°C)时,首先发生M_(23)C_6碳化物沉淀,随后晶界处出现η相和cr相。 M_(23)C_6的析出和生长在晶界处形成了铬耗尽区,并且也阻碍了a相的形成。因此,Cr相受铬大量扩散的动力学控制,仅当铬到达晶界和M_(23)C_6 / y和M_(23)C_6 /η/ y界面时,铬相才会出现高于通过自我修复获得的临界值。本研究建立了基于当量铬含量的分析模型,并成功地验证了该模型可预测er-phase的时间-温度-沉淀图。所得图与实验结果吻合良好。

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