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The microstructure and mechanical properties of duplex stainless steel components fabricated via flux-cored wire arc-additive manufacturing

机译:通过磁通芯弧添加制造制造双相不锈钢组分的微观结构和力学性能

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摘要

In this research, the wire arc additive manufacturing (WAAM) of duplex stainless steel (DSS) was firstly conducted using flux-cored wires as the feedstock material. Homogeneous microstructure was obtained in the WAAM DSS component fabricated using the commercial E2209 welding wire as the filler material. However, the average austenite content reached up to 74%, which exceeded the standard limitation. Electron backscatter diffraction (EBSD) measurements indicated that the austenite phase exhibited strong (101)//Z texture, and the ferrite phase exhibited strong (001)//Z texture. Evaluations of the mechanical properties revealed that the strength of the WAAM DSS component fulfilled the standard requirements of the cast DSS components, and its impact toughness at -40 degrees C exceeded that of commercial hot rolled LDX 2101 DSS plate. To modify the austenite content in the as-deposited DSS, two novel flux-cored wires were designed and produced for the flux-cored wire arc-additive manufacturing (FCWA-AM) process. These materials allowed the reduction of the austenite ratios to 37% and 45% in the as-deposited DSS components. The results of this work demonstrated that the FCWA-AM technique is an applicable WAAM method for producing DSS components with desired microstructures and good mechanical properties.
机译:在该研究中,首先使用磁通芯线作为原料材料进行双相不锈钢(DSS)的线弧添加剂制造(WAAM)。在使用商业E2209焊丝作为填充材料制造的WAAM DSS组分中获得均匀的微观结构。然而,平均奥氏体含量达到高达74%,超过标准限制。电子反向散射衍射(EBSD)测量表明,奥氏体相表现出强(101)// Z质地,并且铁氧体相表现出强(001)// Z纹理。机械性能的评估显示,WAAM DSS组分的强度满足铸造DSS组分的标准要求,其在-40摄氏度下的冲击韧性超过商用热轧LDX 2101 DSS板的韧性。为了改变沉积的DSS中的奥氏体含量,为磁通芯线弧添加制造(FCWA-AM)工艺设计并制造了两根新的磁通芯线。这些材料允许在沉积的DSS组分中降低奥氏体比率为37%和45%。该工作的结果表明FCWA-AM技术是一种适用的WAAM方法,用于生产具有所需微观结构和良好机械性能的DSS组分。

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