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Influence of the as-cast and cold rolled microstructural conditions over corrosion resistance in an advanced TWIP steel microalloyed with boron

机译:用硼微合金化耐腐蚀和冷轧微观结构条件对硼微合金化的耐腐蚀性影响

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As a high-performance material, advanced TWIP steels have recently received considerable attention, particularly promising to form parts of complex geometry due to the superior mechanical properties. In the present research work, the study of the corrosion resistance of an experimental advanced TWIP steel was carried out with the purpose of establishing the relationship between its chemical composition and processing condition. The aforementioned was achieved by evaluating the effect of boron microaddition and the as-cast and cold rolled microstructural conditions on the corrosion resistance of a low carbon highly-alloyed TWIP steel. The electrochemical tests for corrosion analysis were performed in a 3%-NaCl solution at room temperature. Results reveal that after 30?min of immersion, boron-free TWIP steel in both as-cast and cold rolled microstructural conditions present the better corrosion resistance against boron-containing TWIP steel in almost 0.2?V in its anodic behavior, being more prone to corrosion in almost 7%. Because the strain-induced deformation, a complex interaction is assumed to take place among second-phase particles and boron-rich precipitates with high strain energy active sites in promoting electrochemical reactions at grain boundaries and even into austenitic grains. Thus, a pitting corrosion mechanism is evident as black cavities and agglomerated compounds form on steel surface. Furthermore, a beneficial effect of boron on corrosion performance on this chemically complex TWIP steel is expected to occur after a fully microstructure conditioning, retaining its outstanding mechanical properties.
机译:作为一种高性能材料,最近的高级Twip钢最近受到了相当大的关注,特别是由于卓越的机械性能而形成复杂几何形状的部分。在本研究工作中,对实验先进的Twip钢耐腐蚀性的研究是在制定其化学成分和加工条件之间的关系的目的。通过评价硼微涂层和浇铸和冷轧微观结构条件对低碳高合金钢耐腐蚀性的影响来实现上述达到的。腐蚀分析的电化学试验在室温下在3%-NACL溶液中进行。结果表明,在浸泡30℃后,在铸造和冷轧微观结构条件下,无硼的Twip钢在其阳极行为中呈现出含硼的Twip钢的更好的耐腐蚀性,更容易发生腐蚀近7%。由于应变诱导的变形,假设复合物相互作用在具有高菌株能源活性位点的第二相颗粒和富含硼沉淀物中进行,以促进晶界的电化学反应,甚至进入奥氏体颗粒。因此,在钢表面上作为黑腔和附聚的化合物形式是显而易见的腐蚀机制。此外,硼对该化学复杂的Twip钢上的腐蚀性能的有益作用预期在完全显微结构调理后发生,保持其出色的机械性能。

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