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Determination of nucleation and growth mechanisms of the crystallization of amorphous alloys; application to calorimetric data

机译:非晶合金结晶的形核和生长机理的测定;在量热数据中的应用

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摘要

An analytical phase transformation model has been used to study the kinetics of crystallization of amorphous alloys subjected to either isothermal or isochronal anneals. The model has been applied to Pd_(40)Cu_(30)P_(20)Ni_(10) and Mg_(82.3)Cu_(17.7), employing isothermal and isochronal differential scanning calorimetry. The analytical model comprises different combinations of various nucleation and growth mechanisms for a single transformation. Applying different combinations of nucleation and growth mechanisms to the same experiments, the nucleation and growth modes dominating the crystallization and the values for the corresponding kinetic parameters including the constant activation energies for nucleation and growth, have been determined. Further, the influence of isothermal pre-annealing on subsequent isothermal or isochronal crystallization kinetics, involving a gradual change of nucleation mode up to site saturation with increase of pre-annealing, can be analyzed.
机译:分析相变模型已被用于研究等温或等时退火的非晶合金的结晶动力学。该模型已应用于Pd_(40)Cu_(30)P_(20)Ni_(10)和Mg_(82.3)Cu_(17.7),采用等温和等时差示扫描量热法。该分析模型包括用于单次转化的各种成核和生长机制的不同组合。将成核和生长机制的不同组合应用于相同的实验,已经确定了主导结晶的成核和生长模式以及相应动力学参数的值,包括成核和生长的恒定活化能。此外,还可以分析等温预退火对后续等温或等时结晶动力学的影响,包括随着预退火的增加,成核模式逐渐改变直至位点饱和。

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