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首页> 外文期刊>Optics & Laser Technology >Laser additive manufacturing of CrMnFeCoNi high entropy alloy: Microstructural evolution, high-temperature oxidation behavior and mechanism
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Laser additive manufacturing of CrMnFeCoNi high entropy alloy: Microstructural evolution, high-temperature oxidation behavior and mechanism

机译:CRMNFeconi高熵合金的激光添加剂制造:微观结构演化,高温氧化行为和机制

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Bulk CrMnFeCoNi high entropy alloy (HEA) was successfully fabricated via laser additive manufacturing (LAM) in this work. Distributions of microstructure and microhardness in the LAM-fabricated specimen were studied in detail, and oxidation scales were characterized after high-temperature oxidation tests. Results indicated that the mixed columnar dendrites and equiaxed grains were the main microstructure of the LAM-fabricated specimen. High-density dislocations induced by rapid solidification during the LAM process contributed to an excellent microhardness. Oxidation kinetics of LAM-fabricated specimens followed the parabolic rate law over the temperature ranging from 800 to 1000 degrees C, and the mass gain increased with the increasing temperature. The columnar dendrites and equiaxed grains fully transformed into recrystallized grains, and the dislocation density decreased after high-temperature oxidation. The main compositions of the oxide scale were Mn2O3 and Cr2O3 at 800 degrees C, while Mn2O3 and (Mn, Cr)(2)O-3 were formed in the oxide scale at 900 and 1000 degrees C. The diffusion of Mn and Cr along dendrite grain boundaries significantly affected high-temperature oxidation behaviors of LAM-fabricated CrMnFeCoNi HEA. The high-temperature oxidation mechanism was proposed.
机译:在这项工作中,通过激光添加剂制造(LAM)成功地制造了散装CRMNFeconi高熵合金(HEA)。详细研究了林制品中微观结构和显微硬度的分布,并在高温氧化试验后表征了氧化鳞片。结果表明,混合柱状树枝状和等轴晶粒是林制造标本的主要微观结构。在林工艺期间通过快速凝固诱导的高密度脱位有助于优异的微硬度。林制造标本的氧化动力学跟随抛物速度法在800至1000℃的温度范围内,并且质量增加随着温度的增加而增加。柱状树突和等轴晶粒完全转化为再结晶晶粒,并且在高温氧化后的位错密度降低。氧化物刻度的主要组合物在800℃下为Mn 2 O 3和Cr 2 O 3,而Mn 2 O 3和(Mn,Cr)(2)O-3以900和1000℃的氧化物刻度形成。Mn和Cr的扩散沿着枝晶晶界显着影响林制造CRMNFeconi Hea的高温氧化行为。提出了高温氧化机理。

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