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- W2013093905 abstract "X-ray powder diffraction, metallographic and differential thermoanalytical methods were used for investigation of the displacive phase transformation Co2Ge(h)→Co2Ge(l), where h and l denote the high- and low-temperature phases, respectively. By liquid quenching of the alloy Co66.7Ge33.3, the high-temperature phase can be retained: Co2Ge(h) Pearson-Parthé symbol hP(6–0.3), space group P63/mmc, Ni2In type, a=3.9639(4) Å, c=5.022(1) Å. By annealing of the same alloy at 773 K for 5 days, the low-temperature phase Co2Ge(l) is obtained: oP12, Pnma (Nr. 62), Co2Si type, a=5.0504(4) Å, b=3.8378(3) Å, c=7.2960(5) Å. The temperature of the phase transformation Co2Ge(l)→Co2Ge(h), as determined by differential scanning calorimetry, is 960 K. By light optical microscopy using polarized light, the occurrence of significant multiple twinning has been detected for the low-temperature phase Co2Ge(l), indicating the displacive nature of this polymorphic phase transformation." @default.
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- W2013093905 date "2003-04-01" @default.
- W2013093905 modified "2023-09-24" @default.
- W2013093905 title "The displacive phase transformation Co2Ge(h)→Co2Ge(l)" @default.
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- W2013093905 doi "https://doi.org/10.1016/s0925-8388(02)01303-8" @default.
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