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首页> 外文期刊>Scientific reports. >Stacking Fault Energy Analyses of Additively Manufactured Stainless Steel 316L and CrCoNi Medium Entropy Alloy Using In Situ Neutron Diffraction
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Stacking Fault Energy Analyses of Additively Manufactured Stainless Steel 316L and CrCoNi Medium Entropy Alloy Using In Situ Neutron Diffraction

机译:使用原位中子衍射堆叠堆积的不锈钢316L和CRCONI中等熵合金的故障能量分析

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Stacking fault energies (SFE) were determined in additively manufactured (AM) stainless steel (SS 316?L) and equiatomic CrCoNi medium-entropy alloys. AM specimens were fabricated via directed energy deposition and tensile loaded at room temperature. In situ neutron diffraction was performed to obtain a number of faulting-embedded diffraction peaks simultaneously from a set of (hkl) grains during deformation. The peak profiles diffracted from imperfect crystal structures were analyzed to correlate stacking fault probabilities and mean-square lattice strains to the SFE. The result shows that averaged SFEs are 32.8 mJ/msup2/sup for the AM SS 316?L and 15.1 mJ/msup2/sup for the AM CrCoNi alloys. Meanwhile, during deformation, the SFE varies from 46 to 21 mJ/msup2/sup (AM SS 316?L) and 24 to 11 mJ/msup2/sup (AM CrCoNi) from initial to stabilized stages, respectively. The transient SFEs are attributed to the deformation activity changes from dislocation slip to twinning as straining. The twinning deformation substructure and atomic stacking faults were confirmed by electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM). The significant variance of the SFE suggests the critical twinning stress as 830?±?25?MPa for the AM SS 316?L and 790?±?40?MPa for AM CrCoNi, respectively.
机译:堆叠故障能量(SFE)在含有橡皮制造的(AM)不锈钢(SS 316α1)和赤型CRCONI中熵合金中确定。 AM标本通过定向的能量沉积和装载在室温下的拉伸而制造。在原位中子衍射中进行以在变形期间从一组(HKL)颗粒中同时获得多个断层嵌入衍射峰。分析从不完全晶体结构衍射的峰值分布以将堆叠故障概率和平均晶格菌株与SFE相关联。结果表明,平均SFE为AM SS 316的32.8mJ / m 2 为AM Crconi合金的15.1 mj / m 2 。同时,在变形期间,SFE从46到21 mJ / m 2 (am ss 316Δ1)和24至11 mj / m 2 (AM Crconi)。分别初始稳定阶段。瞬态SFE归因于变形活性从位错滑移到孪生作为紧张的变形活动。通过电子反向散射衍射(EBSD)和透射电子显微镜(TEM)确认了孪晶变形次结构和原子堆叠故障。 SFE的显着方差表明,AM SS 316的临界孪晶应力为830?25?MPa,分别为AM Crconi的790?±40?40?MPa。

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