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Duplex Stainless Steel Microstructural Developments as Model Microstructures for Hot Ductility Investigations

机译:双相不锈钢微观结构的发展,作为热延展性研究的模型微观结构

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Duplex stainless steels (DSS) are alloys made of ferrite and austenite, with a proportion of each phase around 50%. Their main advantage in comparison with other austenitic and ferritic stainless steels is the attractive combination of high strength and corrosion resistance together with good formability and weldability. Unfortunately, DSS often present a poor hot workability. This phenomenon can stem from different factors associated to the balance of the phases, the nature of the interface, the distribution, size and shape of the second phase, and possibly also from difference in rheology between ferrite and austenite. In order to determine the specific influence of phase morphology on the hot-workability of DSS, two austenite morphologies (E: Equiaxed and W: Widmanstatten) with very similar phase ratio have been generated using appropriate heat treatments. It was checked that the latter treatments generate stable microstructures so that subsequent hot mechanical tests are performed on the microstructures of interest. One microstructure consists of a ferritic matrix with austenitic equiaxed islands while the other microstructure is composed of a ferritic matrix with Widmanstatten austenite. The latter morphology corresponds to the morphology observed in as-cast slabs.
机译:双相不锈钢(DSS)是由铁素体和奥氏体制成的合金,每相的比例约为50%。与其他奥氏体和铁素体不锈钢相比,它们的主要优点是高强度,耐腐蚀性以及良好的可成型性和可焊接性的完美结合。不幸的是,DSS经常表现出较差的热加工性。这种现象可能源于与相平衡,界面性质,第二相的分布,大小和形状相关的不同因素,也可能源于铁素体和奥氏体之间的流变学差异。为了确定相形态对DSS热加工性的特定影响,使用适当的热处理已生成了两种具有非常相似相比的奥氏体形态(E:等轴晶系和W:Widmanstatten)。检查后一种处理产生稳定的微结构,以便随后对感兴趣的微结构进行热机械测试。一个微观结构由具有奥氏体等轴岛的铁素体基体组成,而另一个微观结构则由具有Widmanstatten奥氏体的铁素体基体组成。后者的形态与在铸坯中观察到的形态相对应。

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