2019
DOI: 10.1016/j.calphad.2019.05.002
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Heat capacity measurement of Zr2Fe and thermodynamic re-assessment of the Fe–Zr system

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Cited by 23 publications
(7 citation statements)
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“…But Yang et al [42] and Lu et al [43] thought Fe 23 Zr 6 as a stable phase and re-modeled the Fe-Zr system. Saenko et al [14] considered the experimental and theoretical thermochemical properties, [44][45][46] determined the heat capacity of FeZr 2 from 220 to 450 K, agreed with Stein et al [40] that Fe 23 Zr 6 was not an equilibrium phase, and carried out the thermodynamic remodeling of the Fe-Zr system. Their calculated results reproduced the experimental data better, hence the thermodynamic parameters of Saenko et al [14] are directly Fig.…”
Section: Fe-zr Systemmentioning
confidence: 82%
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“…But Yang et al [42] and Lu et al [43] thought Fe 23 Zr 6 as a stable phase and re-modeled the Fe-Zr system. Saenko et al [14] considered the experimental and theoretical thermochemical properties, [44][45][46] determined the heat capacity of FeZr 2 from 220 to 450 K, agreed with Stein et al [40] that Fe 23 Zr 6 was not an equilibrium phase, and carried out the thermodynamic remodeling of the Fe-Zr system. Their calculated results reproduced the experimental data better, hence the thermodynamic parameters of Saenko et al [14] are directly Fig.…”
Section: Fe-zr Systemmentioning
confidence: 82%
“…Fig. 2 Fe-Zr phase diagram assessed by Saenko et al [14] Fig. 3 Calculated Co-Zr phase diagram (solid line) compared with the previous work [13] (dotted line) and experimental data.…”
Section: Co-fe-zr Systemmentioning
confidence: 90%
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“…The experimental investigations on the phase relations of the Fe-Zr-Y system [14-20] have been carried out, and several assessments of thermodynamic data have been obtained [21][22][23][24][25][26]. Although there are some controversies about the stability of hex-Fe 2 Zr and Fe 23 Zr 6 , it is widely accepted that both of the two phases exist [3].…”
Section: Introductionmentioning
confidence: 99%