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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Solution Annealing of Super Duplex Stainless Steel: Correlating Corrosion Performance with Grain Size and Phase-Specific Chemistry
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Solution Annealing of Super Duplex Stainless Steel: Correlating Corrosion Performance with Grain Size and Phase-Specific Chemistry

机译:超双工不锈钢解决方案退火:将腐蚀性与晶粒尺寸和相位特异性化学相关联

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摘要

A super duplex stainless steel was subjected to solution annealing at 1323 K. This led to grain coarsening, 'limited' (similar to 7 pct by area) austenite-to-ferrite phase transformation and changes in phase-specific chemistry. No changes in the phase boundary nature or galvanic coupling between phases were, however, noted. The general corrosion behavior was determined by the electrochemical performance of the individual phases. The corrosion performance of the ferrite phase degraded monotonically with annealing time. This was related to a combined effect of grain coarsening and dilution in alloying (chromium and molybdenum content) elements. Corrosion of the austenite phase was, however, non-monotonic: as the effects of grain coarsening was counter-balanced, at least during the initial stages of annealing, by relative molybdenum enrichment. This study thus provided clear experimental data relating phase-specific corrosion performance with annealing induced changes in grain size and local chemistry in a super duplex stainless steel.
机译:在1323K K的情况下进行超级双链体不锈钢溶液退火。这导致晶粒粗化,“限制”(相对于7pct面积)奥氏体 - 铁氧体相转化和相位特异性化学的变化。然而,没有在相之间的相位边界性质或电镀耦合的变化。一般腐蚀行为由个体阶段的电化学性能决定。铁氧体相的腐蚀性能随着退火时间单调地降解。这与晶粒粗化和稀释在合金化(铬和钼含量)元件中的稀释效果有关。然而,奥氏体相的腐蚀是非单调的:由于谷粒粗化的影响是反平衡的,至少在退火的初始阶段,通过相对钼富集。因此,本研究提供了明确的实验数据,其在超级双相不锈钢中与退火诱导的晶粒尺寸和局部化学的变化有关的相位特异性腐蚀性能。

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