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首页> 外文期刊>Materials Letters >Tailoring microstructural features of wire arc additive manufacturing 2Cr13 part via varying inter-layer dwelling time
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Tailoring microstructural features of wire arc additive manufacturing 2Cr13 part via varying inter-layer dwelling time

机译:通过改变层间停留时间调整电弧增材制造2Cr13零件的微结构特征

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摘要

The phase constitution, the microstructural growth behavior, and the anti-indentation performance of 2Cr13 thin-wall part were successfully tailored through inter-layer dwelling time alteration using cold metal transfer (CMT) technology. The short inter-layer dwelling time induced the presence of a low amount of gamma-Fe phase, as well as extremely elongated ferrite grains containing ultrafine needle-shaped martensite throughout the entire part. This finally led to a narrow fluctuation in microhardness. The long dwelling time contributed to the alpha-Fe phase formation only and a periodic microhardness trendline, which was related to a periodic microstructure featured by martensite laths within the block-shaped ferrite matrix. This method, in an intentional manner, could be adopted to manufacture a particular component with local properties that are altered with location through a single material deposition. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过使用冷金属转移(CMT)技术改变层间的停留时间,成功地量身定制了2Cr13薄壁部件的相组成,微结构生长行为和抗压痕性能。较短的层间停留时间会导致存在少量的γ-Fe相,以及在整个零件中包含超细针状马氏体的超长铁素体晶粒。最终导致显微硬度的窄幅波动。较长的停留时间仅有助于形成α-Fe相和周期性的显微硬度趋势线,这与块状铁素体基体中马氏体板条的周期性显微组织有关。可以有意地采用这种方法来制造具有局部特性的特定组件,该局部特性会通过一次材料沉积而随位置而改变。 (C)2018 Elsevier B.V.保留所有权利。

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