2020
DOI: 10.1126/sciadv.aax4002
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Cooperative deformation in high-entropy alloys at ultralow temperatures

Abstract: High-entropy alloys exhibit exceptional mechanical properties at cryogenic temperatures, due to the activation of twinning in addition to dislocation slip. The coexistence of multiple deformation pathways raises an important question regarding how individual deformation mechanisms compete or synergize during plastic deformation. Using in situ neutron diffraction, we demonstrate the interaction of a rich variety of deformation mechanisms in high-entropy alloys at 15 K, which began with dislocation slip, followe… Show more

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Cited by 178 publications
(45 citation statements)
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“…The formation of α′ in Steel C might occur via the γ →α′ process directly and/or via the γ →ε→α′ process indirectly; however, the martensitic transformations in the three alloys was concluded to start from the instability of γ. values of the γ -(111)//LD, γ -(200)//LD, and γ -(220)//TD grains increase, and oppositely, those of the γ -(111)//TD and γ -(220)//LD grains decrease with progressive tensile loading. 23,30) The decreases in the I hkl J rel meas , values in Fig. 3(a) were therefore not always due to the occurrence of martensitic transformation; they included contributions from both texture and martensitic transformation.…”
Section: Fig 1 True Stress-true Strain Curves Of Steel a Steel B Amentioning
confidence: 96%
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“…The formation of α′ in Steel C might occur via the γ →α′ process directly and/or via the γ →ε→α′ process indirectly; however, the martensitic transformations in the three alloys was concluded to start from the instability of γ. values of the γ -(111)//LD, γ -(200)//LD, and γ -(220)//TD grains increase, and oppositely, those of the γ -(111)//TD and γ -(220)//LD grains decrease with progressive tensile loading. 23,30) The decreases in the I hkl J rel meas , values in Fig. 3(a) were therefore not always due to the occurrence of martensitic transformation; they included contributions from both texture and martensitic transformation.…”
Section: Fig 1 True Stress-true Strain Curves Of Steel a Steel B Amentioning
confidence: 96%
“…In a previous report involving commercial 304-type stainless steel, 23) stresses in γ -(hkl)// LD grains evaluated from the ε γ − hkl values by multiplying by the Young's moduli of γ-[hkl] orientations showed the largest values for γ -(200)//LD grains and the smallest values for γ -(111)//LD grains; i.e., intergranular stress partitioning was observed. At Stage III, the ε γ − hkl values increase almost linearly with increasing true stress as long as no phase transformation occurs; 15,23,30,36) however, the ε γ − hkl responses to the true stress change, exhibiting smaller slopes above a true stress of ~650 MPa. This finding suggests that another phase formed as a result of the martensitic transformations bearing larger stress.…”
Section: Martensitic Transformation and Intergranularmentioning
confidence: 97%
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“…For example, at 293 K, the elongation of CoCrFeMnNi HEA can reach 80% [6]. Furthermore, the ductile-brittle transition will not occur even at 15 K, and the elongation can remain about 60% [7,8]. Therefore, the CoCrFeMnNi HEA has an important engineering application prospect in structural materials, especially in the cryogenic field.…”
Section: Introductionmentioning
confidence: 99%
“…Recently a number of studies have investigated low SFE high entropy alloys using in-situ neutron diffraction, demonstrating the ability to relate macroscopic stress-strain response with multiple deformation mechanisms 5,[23][24][25][26][27][28] . Thus, to gain a better understanding of the deformation behavior in both phases, the strengthening in the γ-f.c.c.…”
mentioning
confidence: 99%