2022
DOI: 10.1016/j.addma.2022.102600
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Thermally activated dependence of fatigue behaviour of CrMnFeCoNi high entropy alloy fabricated by laser powder-bed fusion

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Cited by 6 publications
(6 citation statements)
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“…[215] Expectedly, the fatigue life improved upon improving the surface finish via machining. [214] Jin et al [216] further scrutinized the temperature dependence of fatigue behavior of the LPBF-fabricated CrMnFeCoNi HEA at strain rates of 10 À2 and 10 À3 s À1 , and strain amplitude of AE0.5%. Similar to their previous study at room temperature, [214] the initial short cyclic hardening was followed by cyclic softening for all the temperature levels.…”
Section: Strain-controlled Fatiguementioning
confidence: 99%
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“…[215] Expectedly, the fatigue life improved upon improving the surface finish via machining. [214] Jin et al [216] further scrutinized the temperature dependence of fatigue behavior of the LPBF-fabricated CrMnFeCoNi HEA at strain rates of 10 À2 and 10 À3 s À1 , and strain amplitude of AE0.5%. Similar to their previous study at room temperature, [214] the initial short cyclic hardening was followed by cyclic softening for all the temperature levels.…”
Section: Strain-controlled Fatiguementioning
confidence: 99%
“…[214] Copyright 2020, Elsevier. [216] Copyright 2022, Elsevier. phase further enhanced the fatigue limit to 325 MPa in the stress-controlled fully-reversed bending fatigue tests.…”
Section: Stress-controlled Fatiguementioning
confidence: 99%
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“…Like refractory HEAs and HEA superalloys, their future applications will target the high-temperature fields. So far, there are very few works investigating the fatigue behavior of HEAs at elevated temperatures (≤ 600 °C) [149,150]. Thus, future works on hightemperature fatigue behavior and fatigue-creep behavior, especially focusing on higher temperatures, of these HEAs needs to be considered as well.…”
Section: Other Future Workmentioning
confidence: 99%