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Investigation of low temperature diffusion of carbon in martensite by Moessbauer spectroscopy and X-ray diffraction

机译:Moessbauer光谱和X射线衍射研究马氏体中碳的低温扩散

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摘要

Martensite containing 0.87 wt.% carbon was studied by Moessbauer spectroscopy at temperatures, T = 10,15, 25, 40 and 78 K and by X-ray diffraction at T = 78 K in the course of 35 days. Samples in the form of 30 μm thick foil of pure carbon martensite with enhanced tetragonality were synthesized applying non-standard technology. The measured by X-rays (c/a - 1) ratio varies within the limits 0.044-0.055 by pulsations with a period of few hours. According to Kurdimov's model any changes in tetragonality of martensite are fully related to the passage of carbon atoms from O_c to O_a and O_b octahedral sites or vice versa. Pulsations of the central and satellite sextets Were observed by Moessbauer spectroscopy. In accordance with the conventional interpretation of satellites, these pulsations result from different spatial distribution of carbon around the Fe atoms in the diffusion process. The data of (c/a - 1) pulsations were used to determine the diffusion coefficient below 78 K. The measured diffusion coefficient of carbon in α-iron below 78 K contradicts the classical approach to the observed temperature dependence. As the temperature is lowered below 78 K, the diffusion constant approaches the nearly temperature-independent value. The low temperature branch is apparently characteristic of a quantum mechanical process dominated by tunnelling in the ground state.
机译:通过Moessbauer光谱在T = 10、15、25、40和78K的温度下以及在T = 78K下的X射线衍射在35天内的过程中研究了含0.87重量%碳的马氏体。采用非标准技术合成了具有增强的四方性的纯碳马氏体厚度为30μm箔形式的样品。 X射线(c / a-1)比率所测量的值在数小时内通过脉动在0.044-0.055的范围内变化。根据库尔迪莫夫模型,马氏体四方性的任何变化都与碳原子从O_c到O_a和O_b八面体位点的传递完全相关,反之亦然。 Moessbauer光谱仪观察到中央和卫星六重奏的脉动。根据卫星的常规解释,这些脉动是由扩散过程中Fe原子周围碳的不同空间分布引起的。 (c / a-1)脉动的数据用于确定低于78 K的扩散系数。低于78 K时测得的碳在α-铁中碳的扩散系数与经典的观察温度依赖性方法相矛盾。当温度降低到78 K以下时,扩散常数接近于温度无关值。低温分支显然是量子力学过程的特征,该量子力学过程以基态中的隧穿为主导。

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