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Thermal Expansion of Ni_3A1 Intermetallic Compound:Experiment and Simulation

Thermal Expansion of Ni_3A1 Intermetallic Compound:Experiment and Simulation
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摘要 The thermal expansion of Ni3A1 intermetailic compound is determined by a thermal dilatometer and simulated by the molecular dynamics method. The results of the linear thermal expansion coefficients are presented from 200 K up to the maximum temperature of 1600 K. The single phase of NiaA1 intermetailie compound is confirmed by x-ray diffraction together with DSC melting and solidification peaks, from which the solidus and the liquidus temperatures are obtained to be 1660 and 1695 K, respectively. The measured linear thermal expansion coefficient increases from 1.5 × 10-5 to 2.7 × 10-5 K-1 in the experimental temperature range, in good agreement with the data obtained by the molecular dynamics simulation, just a slight difference from the temperature dependence coefficient. Furthermore, the atomic structure and position are presented to reveal the atom distribution change during thermal expansion of NiaA1 compound. The thermal expansion of Ni3A1 intermetailic compound is determined by a thermal dilatometer and simulated by the molecular dynamics method. The results of the linear thermal expansion coefficients are presented from 200 K up to the maximum temperature of 1600 K. The single phase of NiaA1 intermetailie compound is confirmed by x-ray diffraction together with DSC melting and solidification peaks, from which the solidus and the liquidus temperatures are obtained to be 1660 and 1695 K, respectively. The measured linear thermal expansion coefficient increases from 1.5 × 10-5 to 2.7 × 10-5 K-1 in the experimental temperature range, in good agreement with the data obtained by the molecular dynamics simulation, just a slight difference from the temperature dependence coefficient. Furthermore, the atomic structure and position are presented to reveal the atom distribution change during thermal expansion of NiaA1 compound.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第4期100-103,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos 51327901,51474175 and 51522102
关键词 of in IS that THAN were from for NI
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