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首页> 外文期刊>Advances in materials science and engineering >Analysis of Intergranular Precipitation in Isothermally Aged Nitrogen-Containing Austenitic Stainless Steels by an Electrochemical Method and Its Relation to Cryogenic Toughness
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Analysis of Intergranular Precipitation in Isothermally Aged Nitrogen-Containing Austenitic Stainless Steels by an Electrochemical Method and Its Relation to Cryogenic Toughness

机译:等温时效含氮奥氏体不锈钢晶间析出的电化学方法及其与低温韧性的关系

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The precipitation process in two N-containing austenitic stainless steels, aged at temperatures between 873 and 1173 K for times from 10 to 1000 min, was analyzed by an electrochemical method based on the anodic polarization test with an electrolyte of 1 N KOH solution. The anodic polarization curves showed the following intergranular precipitation sequence: austenite→austenite + Cr23C6→austenite + Cr23C6 + Cr2N. Besides, the fastest precipitation kinetics was detected in the aged steel with the highest content of nitrogen and carbon due to its higher driving force for precipitation. The higher the aging temperature, the higher volume fraction of precipitates. The precipitation fraction can be associated with the current density of the dissolution peaks of each phase. The Charpy-V-Notch impact energy of the aged specimens decreased with the increase in the volume fraction of precipitates.
机译:使用基于1 polarizationN withKOH电解液的阳极极化电化学方法,通过电化学方法分析了两种含氮奥氏体不锈钢在873和1173,K之间的温度下时效10至1000 min的析出过程。阳极极化曲线显示出以下晶间析出顺序:奥氏体→奥氏体+ Cr23C6→奥氏体+ Cr23C6 + Cr2N。此外,由于其较高的析出驱动力,在氮和碳含量最高的时效钢中检测到最快的析出动力学。时效温度越高,沉淀物的体积分数越高。沉淀分数可以与每个相的溶解峰的电流密度相关。随着沉淀物体积分数的增加,老化试样的夏比-V-缺口冲击能降低。

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