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The impact of powder oxygen content on formability of 12CrNi2 alloy steel fabricated by laser melting deposition

机译:粉末氧含量对激光熔化沉积制造的12crNi2合金钢的成形性的影响

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摘要

Three various 12CrNi2 alloy steels were successfully fabricated on 35CrMo alloy steel by laser melting deposition with the aim of investigating the effect of powder oxygen content on formability of 12CrNi2 alloy steel. The phase constituents, macroscopic morphology, microstructure, and microhardness of powders and samples were studied by some modern analysis methods. The experimental results showed that with the increase of the oxygen content from 220 to 600ppm, the sphericity and density of the powders gradually decreased which led to the appearance of pores in the as-deposited samples. The phase constituent of three as-deposited samples with different oxygen contents was -Fe(M) phase. The percentage porosity in the macroscopic morphology increased with the increase of the oxygen content. Meanwhile, the high oxygen content contributed to more pores and the crack formation in the microstructure. With the increase of oxygen content, the microhardness of the as-deposited samples would decrease.
机译:通过激光熔化沉积在35crmo合金钢上成功制造了三种各种12crni2合金钢,目的是研究粉末氧含量对12crni2合金钢的成形性的影响。通过一些现代分析方法研究了粉末和样品的相成分,宏观形态,微观结构和微硬度。实验结果表明,随着220至600ppm的氧含量的增加,粉末的球形和密度逐渐降低,从而导致了在沉积的样品中的孔的出现。具有不同氧含量的三个沉积样品的相成分为-Fe(m)相。随着氧含量的增加,宏观形态中的孔隙率增加。同时,高氧含量导致更多的孔和微观结构中的裂缝形成。随着氧含量的增加,可沉积的样品的显微硬度会降低。

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