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Microstructure and mechanical properties of TOP-TIG-wire and arc additive manufactured super duplex stainless steel (ER2594)

机译:TOP-TIG焊丝和电弧添加剂制造的超级双相不锈钢(ER2594)的组织和力学性能

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摘要

As the excellent combination of mechanical properties and corrosion resistance for super duplex stainless steel, a prospective method - Wire and Arc Additive Manufacturing - for fabricating this material was proposed, and a wall component was deposited in this study. The microstructure of the as-deposited wall was carefully analyzed along with the variation of mechanical properties. The results revealed that, in the wall-body, the austenite/ferrite phase balance was broken by the overgrowing the austenite phase. During this process, the intergranular secondary austenite leading the increase of austenite phase together with some contributions made by the precipitation of intragranular secondary austenite. Propagation of the intermetallic phases, chi and sigma phase, was not the major reason for the low impact toughness in the last layer area and the root region. Instead, the presence of CrN and "inclusions" (Cr2N and impurities) took the main responsibility not only in the impact toughness but also the ductility. The anisotropic analysis revealed that the UTS and elongation appeared distinct difference in vertical and horizontal direction samples. The varieties in YS were eliminated by the nitrogen work hardening effect to a large extent.
机译:作为超级双相不锈钢的机械性能和耐腐蚀性的完美结合,提出了一种用于制造这种材料的前瞻性方法-线材和电弧增材制造-并在此研究中沉积了壁组件。仔细分析了沉积态壁的微观结构以及机械性能的变化。结果表明,在壁体内,奥氏体相的过度生长破坏了奥氏体/铁素体的相平衡。在此过程中,晶间次奥氏体导致奥氏体相的增加,以及晶内次奥氏体的析出产生一些贡献。金属间相(chi和sigma相)的传播并不是最后一层区域和根部区域低冲击韧性的主要原因。取而代之的是,CrN和“夹杂物”(Cr2N和杂质)的存在不仅对冲击韧性和延展性起着主要作用。各向异性分析表明,UTS和伸长率在垂直和水平方向的样品中存在明显的差异。氮加工硬化作用在很大程度上消除了YS中的品种。

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